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Ðóñàêîâ Ñåðãåé Ãðèãîðüåâè÷

Ðóñàêîâ Ñåðãåé Ãðèãîðüåâè÷

ä.ò.í., ÷ë.-êîðð. ÐÀÍ, ïðîôåññîð, ãëàâíûé íàó÷íûé ñîòðóäíèê - ñîâåòíèê íàó÷íîãî ðóêîâîäèòåëÿ ÈÏÏÌ ÐÀÍ

Îêîí÷èë Ìîñêîâñêèé èíñòèòóò ýëåêòðîííîãî ìàøèíîñòðîåíèÿ, ôàêóëüòåò àâòîìàòèêè è âû÷èñëèòåëüíîé òåõíèêè, è âå÷åðíåå îòäåëåíèå òîãî æå èíñòèòóòà, ôàêóëüòåò ïðèêëàäíîé ìàòåìàòèêè. Ñ 1974 ãîäà êàíäèäàò òåõíè÷åñêèõ íàóê.  1987 ãîäó çàùèòèë äèññåðòàöèþ äîêòîðà òåõíè÷åñêèõ íàóê. Çàñëóæåííûé äåÿòåëü íàóêè Ðîññèéñêîé Ôåäåðàöèè. Ñ 2008 ãîäà - ÷ëåí-êîððåñïîíäåíò ÐÀÍ. Àâòîð 144 íàó÷íûõ ðàáîò, â òîì ÷èñëå 2 êíèã.

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˜˜˜˜˜ ˜˜˜˜˜˜˜ ˜˜˜˜˜˜˜˜˜

  • àâòîìàòèçàöèÿ ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ,
  • ìåòîäû ìàòåìàòè÷åñêîãî ìîäåëèðîâàíèÿ ÑÁÈÑ,
  • âû÷èñëèòåëüíûå ìåòîäû ñõåìîòåõíè÷åñêîãî àíàëèçà,
  • ìåòîäû ðåäóêöèè ìàòåìàòè÷åñêèõ ìîäåëåé,
  • ýëåêòðè÷åñêîå è ñìåøàííîå ìîäåëèðîâàíèå,
  • ìîäåëèðîâàíèå àíàëîãîâûõ è ðàäèîòåõíè÷åñêèõ ñõåì
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1993 
  Íîðåíêîâ È.Ï., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë.
The development of simulation methods in CAE systems in Russia. In Proceedings of VII International Congress on Communication, Informatics and Economic Development. New Delhi, November 23-25, 1993.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Ëÿëèíñêèé À.À.
The multiterminal subcircuit method in multirate integration techniques for circuit and mixed-mode simulators. Proceedings of 3rd International Design Automation Workshop. Moscow, 1993. - P. 153-160.
1994 
  Ãëåáîâ À.Ë., Ëÿëèíñêèé À.À., Ðóñàêîâ Ñ.Ã.
Optimization of CMOS Circuits Based on Parametrized Cells. Proceedings of Fourth International Workshop PATMOS-94. Barcelona, 1994. - P. 178-185.
  Ãëåáîâ À.Ë., Ëÿëèíñêèé À.À., Ðóñàêîâ Ñ.Ã.
Optimization of CMOS Circuits Based on Parameterized Cells. 4-th International Design Automation Workshop. Moscow, 1994. - Ð. 17-19.
1997 
  Ðóñàêîâ Ñ.Ã.
Ìîäåëèðîâàíèå íåëèíåéíûõ ðàäèî÷àñòîòíûõ ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Àâòîìàòèçàöèÿ ïðîåêòèðîâàíèÿ. - 1997. - Âûï. 2.
  Ãàâðèëîâ Ñ.Â., Ãëåáîâ À.Ë., Ðóñàêîâ Ñ.Ã., Blaauw D., Jones L.G., Vijayan G.
Fast Power Loss Calculation for Digital Static CMOS Circuits. Proceedings of ED&TC-97, Paris., 1997, - P. 411-415.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
Iterative Solution of Linear Systems in Harmonic Balance Analysis. Proceedings of the 1997 IEEE Microwave Theory and Techniques Symposium. Denver, 1997.
1998 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Simulation of High-Q Oscillators. Proc. of the Int. Conf. on Computer-Aided Design. - 1998. - Ð. 162-169.
1999 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Adaptive Preconditioners for the Simulation of Extremely Nonlinear Circuits Using Harmonic Balance. IEEE MTT-S International Microwave Symposium Digest. - 1999.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
New Methods for Speeding up Computation of Newton Updates in Harmonic Balance. Proc. of the Int. Conf. on Computer-Aided Design. -1999. - P. 61-64.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A New Technique to Exploit Frequency Domain Latency in Harmonic Balance Simulators. Proc. of the Asia and South Pacific Design Automation Conference. Hong-Kong, Jan. 1999. - P. 65-68.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A New Numerical Method for Transient Noise Analysis of Nonlinear Circuits. Proc. of the Asia and South Pacific Design Automation Conference. Hong-Kong, Jan. 1999. - P. 165-168.
2000 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A New Computational Approach to Simulate Highly Nonlinear Systems by Harmonic Balance Method. 16th IMACS WORLD CONGRESS 2000 on Scientific Computation, Applied Mathematics and Simulation. Lausanne, August 2000. - P. 366.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Adaptive Preconditioning of Strong Nonlinear Harmonic Balance Problems for Electrical Networks. 16th IMACS WORLD CONGRESS 2000 on Scientific Computation, Applied Mathematics and Simulation. Lausanne, August 2000. - P. 358.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Ìåòîä ìîäåëèðîâàíèÿ øóìîâûõ õàðàêòåðèñòèê íåëèíåéíûõ ýëåêòðîííûõ ñõåì. 3-ÿ Ìåæäóíàðîäíàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ "Ýëåêòðîíèêà è èíôîðìàòèêà - XXI âåê". - Ì.: ÌÈÝÒ, 2000. - C. 222-223.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Âû÷èñëèòåëüíûé ìåòîä èññëåäîâàíèÿ óñòîé÷èâîñòè áîëüøèõ àíàëîãîâûõ ñõåì. 3-ÿ Ìåæäóíàðîäíàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ "Ýëåêòðîíèêà è èíôîðìàòèêà - XXI âåê". - Ì.: ÌÈÝÒ, 2000. - C. 224-225.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Simulation of oscillators. 16th IMACS WORLD CONGRESS 2000 on Scientific Computation, Applied Mathematics and Simulation. Lausanne, August 2000. - P. 8.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Computational Method of Stability Investigation for Large Analog Circuits. Proc. of ISCAS 2000 Conference. Geneva, May 2000. - P. 83.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Àëãîðèòì íåñòàöèîíàðíîãî øóìîâîãî àíàëèçà íåëèíåéíûõ îïòîýëåêòðîííûõ ñõåì. ÕI Ìåæäóíàðîäíàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ "Ëàçåðû â íàóêå è òåõíèêå". Ñî÷è, ñåíòÿáðü 2000.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A New Approach for Computation of Timing Jitter in Phase Locked Loops. Proc. of DATE 2000 Conference. Paris, March 2000. - P. 345-349.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
The Enhancing of Efficiency of the Harmonic Balance Analysis by Adaptation of Preconditioner to Circuit Nonlinearity. Proc. of the Asia and South Pacific Design Automation Conference. Jan. 2000. - P. 537-540.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
A robust and efficient oscillator analysis technique using harmonic balance. Computer methods in applied mechanics and engineering. - 2000. - V. 181(4). - P. 451-466.
2001 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Ìàëâàíè Á.Ä.
Ìåòîä øóìîâîãî àíàëèçà ÊÌÎÏ ôîòîïðèåìíûõ ÑÁÈÑ âî âðåìåííîé îáëàñòè. Ñá. II Ìåæäóíàðîäíàÿ êîíôåðåíöèÿ "Ôîòîíèêà äëÿ òðàíñïîðòà". Ñî÷è, 2001.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Èññëåäîâàíèå óñòîé÷èâîñòè áîëüøèõ àíàëîãîâûõ ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Òðóäû 3 íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè "Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà". - Ì., 2001.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
An Optimum Fitting Algorithm for Generation of Reduced-Order Models. Proc. Of the Asia and South Pacific Design Automation Conference. Jan. 2001. - P. 209-213.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Method of Frequency Adjusting for Transient Noise Analysis of Nonlinear Circuits. Proc.16th Conference on Design of Circuits and Integrated Systems. Porto, Portugal, Nevember 2001.
2003 
  Ãëåáîâ À.Ë., Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Åãîðîâ Þ.Á., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë., Óëüÿíîâ Ñ.Ë.
Àêòóàëüíûå ïðîáëåìû ìîäåëèðîâàíèÿ â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ, ïîä ðåäàêöèåé ÷ë.-êîðð. ÐÀÍ À.Ë.Ñòåìïêîâñêîãî. Àêàäåìèçäàòöåíòð "Íàóêà" ÐÀÍ, 2003 ã., 430 ñ.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Ìîäåëèðîâàíèå âðåìåííûõ ôëóêòóàöèé ïåðåêëþ÷àòåëüíûõ ñîáûòèé â ìèêðîìîùíûõ èíòåãðàëüíûõ ñõåìàõ. Ñáîðíèê íàó÷íûõ òðóäîâ 5 íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè :"Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ìîñêâà, 2003. 4 .
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Åãîðîâ Þ.Á.
A New Simulation Technique for Periodic Small-Signal. Proc. of DATE 2003 conf., Munich, March 2003 6 .
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Approximation Approach for for Timing Jitter Characterization in Circuit Simulators. Proc. of DATE 2003 conf., Munich, March 2003 6 .
2004 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Applying Harmonic Newton Method for Distortion Analysis of Electronic Circuits. 34th European Microwave Conference Digest, 2004, pp. 4.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
New Computational Technique for Periodic Distortion Analysis of Communication Circuits. IEEE MTT-S International Microwave Symposium Digest, 2004, pp. 4
2005 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Àäàïòèâíûé ìåòîä ãàðìîíè÷åñêîãî áàëàíñà. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðîýëåêòðîííûõ ñèñòåì - 2005. Ñáîðíèê íàó÷íûõ òðóäîâ / ïîä îáù. ðåä. À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2005. Ñ. 13-18.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå àâòîãåíåðàòîðíûõ ñõåì ìåòîäîì èñêóññòâåííîãî çîíäà. Ñáîðíèê íàó÷íûõ òðóäîâ 7 íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè :"Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ìîñêâà, 2005.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Frequency Adjusting Numerical Technique for Oscillator Simulation. 17th European Conference on Circuit Theory and Design, Cork, August 2005.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Numerical Simulation of Timing Jitter in Nonlinear Electrical Circuits Based on Interval Evaluation. 17th IMACS WORLD CONGRESS on Scientific Computation, Applied Mathematics and Simulation, Paris, July 2005.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Krylov Subspace Method for Solving Parameterized Linear Systems with Multiple Right-Hand Sides. 17th IMACS WORLD CONGRESS on Scientific Computation, Applied Mathematics and Simulation, Paris, July 2005.
2006 
  Åãîðîâ Þ.Á., Ðóñàêîâ Ñ.Ã., Ëÿëèíñêèé À.À.
Ìîäåëèðîâàíèå ðàäèîòåõíè÷åñêèõ ñõåì ñ öèôðîâîé ìîäóëÿöèåé â ðàìêàõ VHDL-AMS ìîäåëèðóþùèõ ñèñòåì. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðîýëåêòðîííûõ ñèñòåì - 2006. Ñáîðíèê íàó÷íûõ òðóäîâ / ïîä îáù. ðåä. À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2006. Ñ. 56-60.
  Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Äâóõóðîâíåâàÿ ðåäóêöèÿ ìîäåëåé ïàðàçèòíûõ öåïåé âûñîêîãî ïîðÿäêà. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðîýëåêòðîííûõ ñèñòåì - 2006. Ñáîðíèê íàó÷íûõ òðóäîâ / ïîä îáù. ðåä. À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2006. Ñ. 87-90.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Ìåòîä ìîäåëèðîâàíèÿ êîëüöåâûõ ãåíåðàòîðîâ â ÷àñòîòíîé îáëàñòè. Ñáîðíèê íàó÷íûõ òðóäîâ íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè: "Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ìîñêâà, 2006.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Spice-oriented Iterative Technique for Distortion Analysis. Proc. of 2006 IEEE International Symposium on Circuits and Systems (ISCAS 2006), Greece, Kos, May 2006
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Efficient Computational Method for Modulation Analysis of Communication Circuits. 36th European Microwave Conference, Manchester, Sept. 2006
2007 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Numerical Approach for Distortion Analysis without High-order Derivatives in Device Models. 5th IEEE East-West Design & Test Symposium (EWDTS&07), 2007
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä., Gullapalli K.K.
New Numerical Technique for Cyclostationary Noise Analysis of Oscillators. 37th European Microwave Conference, Munich, 2007, pp. 1173-1176.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå èíòåãðàëüíûõ ñïèðàëüíûõ èíäóêòèâíîñòåé äëÿ ïðîåêòèðîâàíèÿ ñèñòåì íà êðèñòàëëå ñ ðàäèîòåõíè÷åñêèìè áëîêàìè. Ñáîðíèê íàó÷íûõ òðóäîâ 9 íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè: "Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ìîñêâà, 2007.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
A Numerical Technique for Time Domain Noise Analysis of Oscillators. Proc. of 18th European Conference on Circuit Theory and Design, Seville, 2007, pp. 1002-1006.
2008 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä., Gu B.
Fast Linear Solver for Vector Fitting Method. 7th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2008), Helsinki, 2008, pp. 175-176.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ìàëîñèãíàëüíîãî àíàëèçà äëÿ ìîäåëèðîâàíèÿ ìíîãî÷àñòîòíûõ ðàäèîòåõíè÷åñêèõ ñõåì. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2008. Ñáîðíèê íàó÷íûõ òðóäîâ / ïîä îáù. ðåä. À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2008. Ñ. 71-76.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû âîçìóùåíèé è ñåëåêòèâíûå ìåòîäû â çàäà÷àõ ðåäóêöèè âûñîêîðàçìåðíûõ ìîäåëåé. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2008. Ñáîðíèê íàó÷íûõ òðóäîâ / ïîä îáù. ðåä. À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2008. Ñ. 86-91.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
Analysis of Oscillator Injection Locking by Harmonic Balance Method. Proc. of Design Automation and Test in Europe (DATE) Conf., Munich, March 2008, pp. 318-323.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä., Gullapalli K.K.
Smoothed Form of Nonlinear Phase Macromodel for Oscillators. IEEE/ACM Int. Conf. on Computer-Aided Design, San Jose, 2008, pp. 807-814.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
New Macromodeling Approach to Phase Noise Analysis of Locked Oscillators. Proc. of the 3 European Microwave Circuits Conf., Amsterdam, 2008, pp. 326-329.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Gullapalli K.K., Ìàëâàíè Á.Ä.
Injection Locking Conditions under Small Periodic Excitations. Proc. of 2008 IEEE Int. Symposium on Circuits and Systems (ISCAS 2008), Seattle, USA, May 2008, pp. 544-547.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä., Gullapalli K.K.
Evaluation of Oscillator Phase Transfer Functions. 7th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2008), Helsinki, 2008, pp. 101-102.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Õîäîø Ë.Ñ.
Àïïðîêñèìàöèÿ ïåðåäàòî÷íûõ ôóíêöèé â ÑÀÏÐ ÁÈÑ ñ àâòîìàòè÷åñêèì âûáîðîì ïîðÿäêà ðåäóöèðîâàííûõ ìîäåëåé. Ñá. íàó÷íûõ òðóäîâ íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè :"Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ìîñêâà, 2008, Ñ. 40-47.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Convergence Issues of Ring Oscillator Simulation by Harmonic Balance Technique. 7th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2008), Helsinki, 2008, pp. 145-146.
2009 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Íîâûé ìåòîä àíàëèçà ôàçîâîãî øóìà ñèíõðîíèçèðîâàííîãî àâòîãåíåðàòîðà. Òðóäû Íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè "Ýëåêòðîíèêà ìèêðî è íàíîýëåêòðîíèêà". – 2009
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ïàðàìåòðè÷åñêàÿ ðåäóêöèÿ ìîäåëåé ìåæñîåäèíåíèé ÑÁÈÑ. Òðóäû Íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè "Ýëåêòðîíèêà ìèêðî è íàíîýëåêòðîíèêà". - 2009
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Improved Harmonic Balance Technique for Analysis of Ring Oscillators. Proc. European Conference on Circuit Theory and Design. Antalya 2009, pp. 327-330
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A technique to accelerate the vector fitting algorithm in interconnect simulation. Proc. IEEE East-West Design & Test Symposium EWDTS 2009. Moscow 2009, pp. 59-62
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Frequency Domain Techniques for Simulation of Oscillators. Proc. IEEE East-West Design & Test Symposium EWDTS 2009. Moscow 2009, pp. 63-66
2010 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Ëÿëèíñêèé À.À.
Ïðèìåíåíèå ñåëåêòèâíûõ ìåòîäîâ äëÿ ïàðàìåòðè÷åñêîé è ñòàòèñòè÷åñêîé ðåäóêöèè âûñîêîðàçìåðíûõ ìîäåëåé. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2010. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2010. Ñ. 126-131.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìåòîäîâ àíàëèçà ðåæèìà âçàèìíîé ñèíõðîíèçàöèè àâòîãåíåðàòîðîâ â èíòåãðàëüíûõ ñõåìàõ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2010. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà À.Ë.Ñòåìïêîâñêîãî. Ì.:ÈÏÏÌ ÐÀÍ, 2010. Ñ. 138-143.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A preconditioning method based on partition of unknowns for harmonic balance analysis. 8th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2010), Toulouse, 2010, pp. 23-24.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Evaluation of Oscillator Phase and Frequency Transfer Functions. Scientific Computing in Electrical Engineering, Book series: Mathematics in Industry, Subseries: The European Consortium for Mathematics in Industry, Vol. 14, Springer, 2010, pp. 183-190.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ðàñ÷åòà êîýôôèöèåíòà ìîùíîñòè ñîñåäíåãî êàíàëà ïðè ñõåìîòåõíè÷åñêîì ìîäåëèðîâàíèè ðàäèîñõåì ñ èìïóëüñíîé ìîäóëÿöèåé. Ñá. íàó÷íûõ òðóäîâ íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè: "Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ì.: ÌÈÔÈ, 2010. Ñ. 239-244.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Àâòîìàòèçèðîâàííûé ðàñ÷åò äæèòòåðà â ñõåìàõ ôàçîâîé àâòîïîäñòðîéêè ÷àñòîòû. Ñá. íàó÷íûõ òðóäîâ íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè: "Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà", Ì.: ÌÈÔÈ, 2010. Ñ. 270-277.
  Ñòåìïêîâñêèé À.Ë., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Development of RF circuits simulation techniques for nanoscale design. 3 Nanotechnology Int. Forum. Moscow, November 2010.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Numerical Aspects of Adaptive Harmonic Balance Method in Circuit Simulation. Zbornik radova konferencije MIT-2009, Beograd, Serbia, 2010, pp. 155-162.
2011 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Network reduction by inductance elimination. Model Reduction for Circuit Simulation Series: Lecture Notes in Electrical Engineering (LNEE). Springer, 2011. V. 74. P. 149-161.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Numerical Techniques for Oscillator Analysis in Circuit Simulators. Proc. of Conf. Mathematical and Informational Technologies MIT 2011. P. 84.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Circuit Distortion Analysis Based on the Simplified Newton&s Method. Journal of Electrical and Computer Engineering. Article ID 540305. 2011. 11 pages.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Injection Locking/Pulling Analysis of Oscillators Under Fractional Excitation Frequency. 20th European Conference on Circuit Theory and Design ECCTD 2011. Linkoping, Sweden. August 2011. P. 545-548.
2012 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Àëãîðèòìû ðåäóêöèè ìíîãîïîðòîâûõ ëèíåéíûõ öåïåé ñ èíäóêòèâíîñòÿìè íà áàçå ñåëåêòèâíûõ ìåòîäîâ èñêëþ÷åíèÿ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2012. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2012. Ñ. 175-180.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå NBTI-ýôôåêòà â àíàëîãîâûõ èíòåãðàëüíûõ ñõåìàõ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2012. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2012. Ñ. 153-156.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàñ÷åò ïàðàìåòðîâ ìíîãîñåêöèîííîé ìîäåëè ñïèðàëüíîé èíòåãðàëüíîé èíäóêòèâíîñòè (¹2012611696).
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Mutual Injection Locking of Oscillators under Parasitic Couplings. Scientific Computing in Electrical Engineering, Book series: Mathematics in Industry, Subseries: The European Consortium for Mathematics in Industry. 2012. V. 16. Springer, pp. 303-312, ISBN 978-3-642-22452-2.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðåäóöèðîâàíèå ðàöèîíàëüíîé ïåðåäàòî÷íîé ôóíêöèè ñ àâòîìàòè÷åñêèì âûáîðîì ïîðÿäêà (¹2012611694).
2013 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Ðóñàêîâ À.Ñ.
Ìåòîäû ãåíåðàöèè óïðîùåííûõ âû÷èñëèòåëüíûõ ìîäåëåé èíòåãðàëüíûõ ñïèðàëüíûõ èíäóêòèâíîñòåé. Ñáîðíèê íàó÷íûõ òðóäîâ «Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà». Ì: ÍÈßÓ ÌÈÔÈ, 2013. Ñ. 178-184.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä àíàëèçà óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ ÈÑ ñ ó÷åòîì ýëåêòðîòåïëîâîãî âçàèìîäåéñòâèÿ ýëåìåíòîâ. Ñáîðíèê íàó÷íûõ òðóäîâ «Ýëåêòðîíèêà, ìèêðî- è íàíîýëåêòðîíèêà» . Ì.: ÍÈßÓ ÌÈÔÈ, 2013. Ñ. 172-177.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä àíàëèçà ðåæèìîâ ñèíõðîíèçàöèè è áèåíèé àâòîãåíåðàòîðà ïðè ïàðàçèòíîì âîçáóæäåíèè ñèãíàëîì ïðîèçâîëüíîé ôîðìû è ÷àñòîòû. Èçâåñòèÿ âóçîâ. Ýëåêòðîíèêà. 2013. ¹ 3 (101). Ñ. 73-81.
2014 
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ýëåêòðè÷åñêèå ìîäåëè ìåìðèñòîðíûõ ýëåìåíòîâ. Èíôîðìàöèîííûå òåõíîëîãèè. 2014. ¹8. Ñ. 50-58.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû ìîäåëèðîâàíèÿ â ÷àñòîòíîé îáëàñòè ïåðèîäè÷åñêèõ ðåæèìîâ àâòîãåíåðàòîðíûõ ñõåì. Èíôîðìàöèîííûå òåõíîëîãèè. 2014. ¹ 10. Ñ. 36-43.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ôàçîâàÿ íåëèíåéíàÿ ìàêðîìîäåëü äëÿ àíàëèçà àâòîãåíåðàòîðíûõ ñõåì. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2014. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2014. ×àñòü I. Ñ. 77-82.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Ñòåìïêîâñêèé À.Ë., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
The Elimination Techniques to Solve Computational Problems of Model Order Reduction for Large Multi-terminal Circuits. Ñá. èçáðàííûõ òðóäîâ Ìåæäóíàðîäíîé êîíôåðåíöèè «Ìàòåìàòè÷åñêèå è èíôîðìàöèîííûå òåõíîëîãèè». 2014. C. 251-259.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ãàðìîíè÷åñêîãî áàëàíñà äëÿ ýëåêòðîòåïëîâîãî àíàëèçà óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ ÈÑ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2014. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2014. ×àñòü I. Ñ. 71-76.
  Ðóñàêîâ Ñ.Ã., Ãóðàðèé Ì.Ì., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
The Concept of Redundancy for Techniques of Model Order Reduction in Circuit Simulation. Ñá. èçáðàííûõ òðóäîâ Ìåæäóíàðîäíîé êîíôåðåíöèè «Ìàòåìàòè÷åñêèå è èíôîðìàöèîííûå òåõíîëîãèè». 2014. C. 260-266.
  Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Àëãîðèòìû ðåäóêöèè ìîäåëåé, ñîõðàíÿþùèå ñòðóêòóðíóþ ðàçðåæåííîñòü â çàäà÷àõ ñõåìîòåõíè÷åñêîãî àíàëèçà. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì - 2014. Ñáîðíèê òðóäîâ / ïîä îáù. ðåä. àêàäåìèêà ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2014. ×àñòü I. Ñ. 111-116.
2015 
  Ðóñàêîâ Ñ.Ã., Ðàêèòèí Â.Â.
Ãåíåðàòîðíûå ñõåìû íà ìåìðèñòîðíûõ ýëåìåíòàõ. Èíôîðìàöèîííûå òåõíîëîãèè. 2015. ¹ 10. Ñ. 772-781.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Àëèåâ Ð.Ð.
Ïðèìåíåíèå ìåòîäîâ ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ äëÿ àíàëèçà áèîýëåêòðè÷åñêèõ ïðîöåññîâ â ìíîãîêëåòî÷íûõ ñèñòåìàõ. Èíôîðìàöèîííûå òåõíîëîãèè. 2015. ¹ 21. ¹ 9. Ñ. 699-705.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû ìîäåëèðîâàíèÿ â ÷àñòîòíîé îáëàñòè íåëèíåéíûõ ðàäèîòåõíè÷åñêèõ ñõåì. Âåñòíèê Ðÿçàíñêîãî ãîñóäàðñòâåííîãî ðàäèîòåõíè÷åñêîãî óíèâåðñèòåòà. 2015. Âûï. 51. ¹1. Ñ. 52-60.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Õîäîø Ë.Ñ.
Ýôôåêòèâíûé àëãîðèòì ðåàëèçàöèè ìåòîäà âåêòîðíîé àïïðîêñèìàöèè. Ìåõàòðîíèêà, Àâòîìàòèçàöèÿ, Óïðàâëåíèå. 2015. ¹ 9. Ñ. 579-584.
  Æàðîâ Ì.Ì., Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ñâèäåòåëüñòâî ¹2015663089. Ïðîãðàììà äëÿ ðåøåíèÿ ïåðåîïðåäåëåííîé ñèñòåìû ëèíåéíûõ àëãåáðàè÷åñêèõ óðàâíåíèé â ìåòîäå âåêòîðíîé àïïðîêñèìàöèè. Ïðèîðèòåò 13.10.2015; äàòà ðåãèñòðàöèè 10.12.2015.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ýëåêòðîòåïëîâîé àíàëèç ìîíîëèòíûõ èíòåãðàëüíûõ ñõåì â ñèñòåìàõ ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ. Èíôîðìàöèîííûå òåõíîëîãèè è ìàòåìàòè÷åñêîå ìîäåëèðîâàíèå ñèñòåì - 2015. Òðóäû ìåæäóíàðîäíîé íàó÷íî-òåõíè÷åñêîé êîíôåðåíöèè. Ì.: ÖÈÒÏ ÐÀÍ, 2015. Ñ. 51-55.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Âû÷èñëèòåëüíûå àëãîðèòìû èññëåäîâàíèÿ óñòîé÷èâîñòè äèíàìè÷åñêèõ ñèñòåì â çàäà÷àõ ñõåìîòåõíè÷åñêîãî àíàëèçà. Ìåõàòðîíèêà, àâòîìàòèçàöèÿ, óïðàâëåíèå. 2015. Ò. 16. ¹ 12. Ñ. 801-806.
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Îñîáåííîñòè ïðîåêòèðîâàíèÿ áåçðåàêòèâíûõ ãåíåðàòîðîâ íà ìåìðèñòîðàõ. Âòîðàÿ Ðîññèéñêî-Áåëîðóññêàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ «Ýëåìåíòíàÿ áàçà îòå÷åñòâåííîé ðàäèîýëåêòðîíèêè: èìïîðòîçàìåùåíèå è ïðèìåíåíèå» èì. Î.Â. Ëîñåâà. Íèæíèé Íîâãîðîä, 17-19 íîÿáðÿ 2015. 381-385.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ìóõèí È.È., Èîíîâ Ë.Ï., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû ìàêðîìîäåëèðîâàíèÿ ñõåì ôàçîâîé àâòîïîäñòðîéêè ÷àñòîòû äëÿ àíàëèçà ïàðàçèòíûõ âîçäåéñòâèé. Ìåæäóíàðîäíàÿ êîíôåðåíöèÿ «Ìèêðîýëåêòðîíèêà 2015». Èíòåãðàëüíûå ñõåìû è ìèêðîýëåêòðîííûå ìîäóëè – ïðîåêòèðîâàíèå, ïðîèçâîäñòâî è ïðèìåíåíèå. Ñá. òåçèñîâ. Àëóøòà, 2015. Ì.: Òåõíîñôåðà, 2015. C. 235-236.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ïðîáëåìû ìîäåëèðîâàíèÿ àâòîãåíåðàòîðíûõ ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Âòîðàÿ Ðîññèéñêî-Áåëîðóññêàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ «Ýëåìåíòíàÿ áàçà îòå÷åñòâåííîé ðàäèîýëåêòðîíèêè: èìïîðòîçàìåùåíèå è ïðèìåíåíèå» èì. Î.Â. Ëîñåâà. Íèæíèé Íîâãîðîä, 17-19 íîÿáðÿ 2015. Ñ. 451-456.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìåòîäîâ ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ ðàäèîòåõíè÷åñêèõ èíòåãðàëüíûõ ñõåì ñ íàíîìåòðîâûìè ïðîåêòíûìè íîðìàìè. Ìåæäóíàðîäíàÿ êîíôåðåíöèÿ «Ìèêðîýëåêòðîíèêà 2015». Èíòåãðàëüíûå ñõåìû è ìèêðîýëåêòðîííûå ìîäóëè – ïðîåêòèðîâàíèå, ïðîèçâîäñòâî è ïðèìåíåíèå. Ñá. òåçèñîâ. Àëóøòà, 2015. Ì.: Òåõíîñôåðà, 2015. C. 233-234.
2016 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå âîçìóùåííûõ ðåæèìîâ ñõåì ôàçîâîé àâòîïîäñòðîéêè ÷àñòîòû íà îñíîâå ïåðåäàòî÷íûõ õàðàêòåðèñòèê áëîêîâ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì – 2016. Ñá. òðóäîâ / ïîä îáù. ðåä. àêàä. ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2016. ×àñòü I, Ñ. 117-123.
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ïðèíöèïû ôóíêöèîíèðîâàíèÿ áåçðåàêòèâíûõ ãåíåðàòîðîâ íà ìåìðèñòîðàõ. Ðàäèîòåõíèêà è ýëåêòðîíèêà, ¹ 6, 2016. Ñ. 601-606
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ìåìðèñòîðíûé ãåíåðàòîð íà òðèããåðå Øìèòòà ñ íåñêîëüêèìè óñòîé÷èâûìè ñîñòîÿíèÿìè äèíàìè÷åñêîãî ðàâíîâåñèÿ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì – 2016. Ñá. òðóäîâ / ïîä îáù. ðåä. àêàä. ÐÀÍ À.Ë. Ñòåìïêîâñêîãî. Ì.: ÈÏÏÌ ÐÀÍ, 2016. ×àñòü I, Ñ. 79-85.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû ìîäåëèðîâàíèÿ àâòîãåíåðàòîðíûõ ñõåì ïðè ñëàáîì âîçáóæäåíèè äëÿ ñèñòåì àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Íåëèíåéíûé ìèð. 2016. ¹ 5. Ñ. 42-52.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Ëÿëèíñêèé À.À.
Ïîäñèñòåìà ïàðàìåòðè÷åñêîé îïòèìèçàöèè ÊÌÎÏ îïåðàöèîííûõ óñèëèòåëåé. VII Âñåðîññèéñêàÿ íàó÷íî-òåõíè÷åñêàÿ êîíôåðåíöèÿ «Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì – 2016»: ñá. íàó÷í. òð. / ïîä îáùåé ðåä. À.Ë. Ñòåìïêîâñêîãî. ×àñòü I. Ñ. 109-116. 2016.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìåòîäîâ ìîäåëèðîâàíèÿ óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ ñõåì àâòîãåíåðàòîðîâ. Ìåæäóíàðîäíûé ôîðóì «Ìèêðîýëåêòðîíèêà 2016». Èíòåãðàëüíûå ñõåìû è ìèêðîýëåêòðîííûå ìîäóëè – ïðîåêòèðîâàíèå, ïðîèçâîäñòâî è ïðèìåíåíèå. Ñá. òåçèñîâ, Àëóøòà, 2016. Ì.: Òåõíîñôåðà, 2016. C. 283-285.
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ìîäåëèðîâàíèå ýëåêòðè÷åñêèõ õàðàêòåðèñòèê ñõåì íà ìåìðèñòîðàõ ñðåäñòâàìè ñèñòåì àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Ìåæäóíàðîäíûé ôîðóì «Ìèêðîýëåêòðîíèêà 2016». Èíòåãðàëüíûå ñõåìû è ìèêðîýëåêòðîííûå ìîäóëè – ïðîåêòèðîâàíèå, ïðîèçâîäñòâî è ïðèìåíåíèå. Ñá. òåçèñîâ, Àëóøòà, 2016. Ì.: Òåõíîñôåðà, 2016. C. 285-287.
2017 
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ïðèíöèïû ôóíêöèîíèðîâàíèÿ áåçðåàêòèâíûõ ãåíåðàòîðîâ íà ìåìðèñòîðàõ. Ðàäèîòåõíèêà è ýëåêòðîíèêà. 2017. Ò. 62. ¹ 6. Ñ. 601-606.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
PLL Simulation by Equivalent Circuit Approach. Problems of Advanced Micro- and Nanoelectronic Systems Development/ edited by A. Stempkovsky. Moscow: IPPM RAS, 2017. Part I. P. 33-38.
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Operating Principles of Nonreactive Oscillators Based on Memristors. Journal of Communications Technology and Electronics. 2017. Vol. 62. ¹ 6. Ðp. 621–625.
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
The Signal Converter based on Monostable Memristor Oscillator. Problems of Advanced Micro- and Nanoelectronic Systems Development./ edited by A. Stempkovsky. Moscow: IPPM RAS, 2017. Part I. P. 29-32.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Implementation of Elements with Laplace Transfer Functions in the Circuit Simulator. Problems of Advanced Micro- and Nanoelectronic Systems Development/ edited by A. Stempkovsky. Moscow: IPPM RAS, 2017. Part I. P. 39-45.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå õàðàêòåðèñòèê ÔÀÏ× íà îñíîâå ïðåäñòàâëåíèÿ ôàçîâîé ìàêðîìîäåëè â âèäå ýêâèâàëåíòíîé ýëåêòðè÷åñêîé ñõåìû. Íàíîèíäóñòðèÿ. 2017. ¹ 74. Ñ. 351-356.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ðàññàäèí À.Ý.
SPICE Models of Nonlinear Capacitors for Simulation of Ferroelectric Circuits. Proc. of IEEE East-West Design & Test Symposium. Novi Sad, Serbia, 2017. P. 113-116.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Optimization Approach to Design of Linear Voltage Regulators for System on Chip. 2017 International Siberian Conference on Control and Communications (SIBCON). June 29–30, 2017. Astana, Kazakhstan. 7998578.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä îãèáàþùèõ äëÿ ðàñ÷åòà ïåðåõîäíîãî ïðîöåññà è óñòàíîâèâøåãîñÿ ðåæèìà ýëåêòðîííûõ ñõåì. Ìåæäóíàðîäíûé ôîðóì «Ìèêðîýëåêòðîíèêà 2017». Ýëåêòðîííàÿ êîìïîíåíòíàÿ áàçà è ýëåêòðîííûå ìîäóëè. Ñá. òåçèñîâ. Àëóøòà, 2017. Ì.: Òåõíîñôåðà, 2017. C. 321-323.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìàêðîìîäåëüíûé ïîäõîä äëÿ àíàëèçà ñèíòåçàòîðà ÷àñòîò ñ äðîáíûì êîýôôèöèåíòîì äåëåíèÿ. Ìåæäóíàðîäíûé ôîðóì «Ìèêðîýëåêòðîíèêà 2017». Ýëåêòðîííàÿ êîìïîíåíòíàÿ áàçà è ýëåêòðîííûå ìîäóëè. Ñá. òåçèñîâ. Àëóøòà, 2017. Ì.: Òåõíîñôåðà, 2017. C. 320-321.
  Ïðîêîïåíêî Í.Í., Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ñàâ÷åíêî Å.Ì.
Parameter Optimization of High-Speed CMOS Operational Amplifiers Based on Dual-Input Stage. Proc. of IEEE East-West Design & Test Symposium. Novi Sad, Serbia, 2017. P. 567-570.
2018 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä îãèáàþùèõ äëÿ ðàñ÷åòà ïåðåõîäíîãî ïðîöåññà è óñòàíîâèâøåãîñÿ ðåæèìà ýëåêòðîííûõ ñõåì. Íàíîèíäóñòðèÿ. 2018. ¹S (82). Ñ. 410-411. DOI:10.22184/1993-8578.2018.82.410.411.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Èòåðàöèîííûé ìåòîä ðåøåíèÿ ïàðàìåòðèçîâàííîé ñèñòåìû ëèíåéíûõ àëãåáðàè÷åñêèõ óðàâíåíèé ñ ìíîãèìè ïðàâûìè ÷àñòÿìè. Èíôîðìàöèîííûå òåõíîëîãèè. 2018. N6. C. 363–370. DOI:10.17587/it.24.363-370.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðåäóöèðîâàííàÿ ïîâåäåí÷åñêàÿ ìîäåëü ëèíåéíîãî äèíàìè÷åñêîãî áëîêà äëÿ çàäà÷ ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ. Âåñòíèê Ðÿçàíñêîãî ãîñóäàðñòâåííîãî ðàäèîòåõíè÷åñêîãî óíèâåðñèòåòà. 2018. ¹ 64. Ñ. 35-45. DOI:10.21667/1995-4565-2018-64-2-35-45.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðàññàäèí À.Ý., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå ñõåì ñ ñåãíåòîýëåêòðè÷åñêèìè åìêîñòÿìè. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì. 2018. Âûïóñê I. Ñ. 83-88.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ïðèìåíåíèå îäíîøàãîâûõ ìåòîäîâ èíòåãðèðîâàíèÿ âûñîêîãî ïîðÿäêà òî÷íîñòè äëÿ àíàëèçà óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ â èíòåãðàëüíûõ ñõåìàõ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì. 2018. Âûïóñê I. Ñ. 103-109.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ìîäåëèðîâàíèÿ íåëèíåéíûõ èñêàæåíèé äëÿ ïåðèîäè÷åñêîãî ðåæèìà ðàáîòû ðàäèîòåõíè÷åñêèõ èíòåãðàëüíûõ ñõåì. Æóðíàë ðàäèîýëåêòðîíèêè. 2018. ¹5. DOI:10.30898/1684-1719.2018.5.3.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ïðîêîïåíêî Í.Í., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ïðèìåíåíèå ìåòîäîâ îïòèìèçàöèè ïðè ïðîåêòèðîâàíèè àíàëîãîâûõ ñõåì ðàäèîýëåêòðîíèêè. Æóðíàë ðàäèîýëåêòðîíèêè. 2018. ¹4. ISSN 1684-1719. DOI:10.30898/1684-1719.2018.4.6.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìèíèìàêñíàÿ îïòèìèçàöèÿ â çàäà÷àõ ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Èíôîðìàöèîííûå òåõíîëîãèè. 2018. Ò. 24. ¹ 7. Ñ. 435-444. DOI:10.17587/it.24.435-444.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Macromodeling approaches for simulation of coupled oscillator networks. Moscow Workshop on Electronic and Networking Technologies. MWENT 2018 - Proceedings 1. 2018. Ñ. 1-4. DOI:10.1109/MWENT.2018.8337277.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Èñïîëüçîâàíèå ýëåêòðè÷åñêèõ ìàêðîìîäåëåé äëÿ àíàëèçà ñèíòåçàòîðà ÷àñòîò ñ äðîáíûì êîýôôèöèåíòîì äåëåíèÿ. Íàíîèíäóñòðèÿ. 2018. ¹ S (82). Ñ. 385-391. DOI: 10.22184/1993-8578.2018.82.385.391.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È.
Computational algorithms for fractional-N PLL noise simulation in the phase domain. Moscow Workshop on Electronic and Networking Technologies. MWENT 2018 - Proceedings 1. 2018. Ñ. 1-4. DOI:10.1109/MWENT.2018.8337274.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Introducing of linear dependence measure into multipoint projection techniques for model order reduction. Moscow Workshop on Electronic and Networking Technologies. MWENT 2018 - Proceedings 1. 2018. Ñ. 1-5. DOI:10.1109/MWENT.2018.8337264.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðåäóöèðîâàíèå ìîäåëè ýëåêòðè÷åñêîé ñõåìû ñ ó÷åòîì õàðàêòåðèñòèê âíåøíèõ öåïåé. Èíôîðìàöèîííûå òåõíîëîãèè. 2018. Ò. 24. ¹ 9. Ñ. 563-572. DOI:10.17587/it.24.563-572.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Development of Time-Varying PLL Macromodel for Jitter Evaluation. 2018 IEEE East-West Design & Test Symposium (EWDTS). Kazan, 2018. Page(s):1-7. DOI:10.1109/EWDTS.2018.8524678.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
The Implementation of High-Order Single-Step Integration Technique into Circuit Simulator. 2018 IEEE East-West Design & Test Symposium (EWDTS), Kazan, 2018. Page(s): 1-6. DOI:10.1109/EWDTS.2018.8524667.
2019 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Frequency Adjusting Technique for Transient Noise Analysis of Nonlinear Integrated Circuits. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì (ÌÝÑ). 2019. ¹ 1. Ñ. 21-24.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
The Periodic Steady-State Analysis Based on Single-Step High Order Integration Methods. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì (ÌÝÑ). 2019. ¹ 1. Ñ. 25-30. DOI: 10.31114/2078-7707-2019-1-25-30.
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Òåí È.Ì., Óëüÿíîâ Ñ.Ë.
Ôàçîâàÿ ìàêðîìîäåëü ñõåì ÔÀÏ× ñ ó÷åòîì íåëèíåéíûõ ýôôåêòîâ. Íàíîèíäóñòðèÿ. 2019. ¹ S (89). Ñ. 344-345. DOI: 10.22184/NanoRus.2019.12.89.344.345
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Principles of the Functioning of Nonreactive Double Memristor Oscillators. Journal of Communications Technology and Electronics. 2019. V. 64. ¹ 6. Pp. 622-628. DOI:10.1134/S1064226919060081. Q4
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
Analysis of Oscillator Ensemble with Dynamic Couplings. in Book “Advances in Artificial Systems for Medicine and Education II”. Series Title: Advs in Intelligent Syst., Computing. 2019. Vol. N 902. Pp. 161-172. Springer Nature Switzerland AG. Chapter DOI: 10.1007/978-3-030-12082-5_15. ISBN: 978-3-030-12081-8 (Scopus)
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
Technique to Simulate Oscillator Circuits with the Degradation Models. 2019 IEEE East-West Design & Test Symposium (EWDTS). Batumi, Georgia, 2019. Pp. 1-4. DOI: 10.1109/EWDTS.2019.8884454 (Scopus)
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì.
A Technique for the Accounting of Surrounding Circuitry During Generation of the Simplified Models. 2019 IEEE East-West Design & Test Symposium (EWDTS). Batumi, Georgia, 2019. Pp. 1-6. DOI: 10.1109/EWDTS.2019.8884462 (Scopus)
2020 
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Òåí È.Ì., Óëüÿíîâ Ñ.Ë.
Ìàêðîìîäåëèðîâàíèå ñõåìû ôàï÷ ñ èñïîëüçîâàíèåì ïîëíîé ïðèíöèïèàëüíîé ñõåìû ôàçîâîãî äåòåêòîðà. Íàíîèíäóñòðèÿ. 2020. ¹ S96-1. C. 295-299 DOI: 10.22184/1993-8578.2020.13.3s.295.299 RSCI
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Àíàëèç ñõåì ñ êîëåáàòåëüíûìè ðåæèìàìè ñ èñïîëüçîâàíèåì îäíîøàãîâûõ ìåòîäîâ èíòåãðèðîâàíèÿ âûñîêîãî ïîðÿäêà òî÷íîñòè. Íàíîèíäóñòðèÿ. 2020. Ò. 13. ¹S5-2 (102). Ñ. 437-441. DOI: 10.22184/1993-8578.2020.13.5s.437.441.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Æàðîâ Ì.Ì., Óëüÿíîâ Ñ.Ë.
Âû÷èñëèòåëüíûå àëãîðèòìû ïîíèæåíèÿ ïîðÿäêà äðîáíî-ðàöèîíàëüíûõ ïåðåäàòî÷íûõ ôóíêöèé. Òðóäû ÑÏÈÈÐÀÍ. 2020. Ò. 19. ¹ 2. Ñ. 330-357. DOI: 10.15622/sp.2020.19.2.4 SCOPUS
  Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Øóìîâîé àíàëèç âî âðåìåííîé îáëàñòè àâòîãåíåðàòîðíûõ ñõåì. Æóðíàë ðàäèîýëåêòðîíèêè. 2020. ¹ 3. Ñ. 15. DOI: 10.30898/1684-1719.2020.3.6 RSCI
2021 
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Functional Capabilities of Coupled Memristor-Based Reactance-Less Oscillators. IntechOpen, May 19th 2021. DOI: 10.5772/intechopen.97808. Available from: https://www.intechopen.com/online-first/functional-capabilities-of-coupled-memristor-based-reactance-less-oscillators. DOI: 10.5772/intechopen.97808
  Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Àíàëèç óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ â èíòåãðàëüíûõ ñõåìàõ ñ ïîìîùüþ ìåòîäîâ ãîìîòîïèè. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì (ÌÝÑ). 2021. Âûïóñê IV. Ñ. 7-13.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
Technique to Simulate an Oscillator Ensemble Represented by the Kuramoto Model. Advances in Science, Technology and Engineering Systems. 2021. V. 6. ¹ 3. Pp. 311-318. DOI: 10.25046/aj060335.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
The Merging Technique to Simulate Synchronization Mode of Coupled Oscillators. International Conference on Synthesis, Modeling, Analysis and Simulation Methods and Applications to Circuit Design (SMACD). 2021. P. 1-4. https://www.vde-verlag.de/proceedings-en/455588046.html.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ñòðàòåãèÿ ìíîãîòî÷å÷íîé ãåíåðàöèè ìàòðèö ïðîåêòèðîâàíèÿ â çàäà÷àõ ðåäóêöèè ìîäåëåé äëÿ ñõåìîòåõíè÷åñêîãî àíàëèçà. Íàíîèíäóñòðèÿ. Ñïåöâûïóñê. 2021. Ò. 14. ¹ S7(107). Ñ. 399-400. DOI: 10.22184/1993-8578.2021.14.7s.399.400. (RSCI). ID: 46704512.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Âû÷èñëèòåëüíûé àëãîðèòì øóìîâîãî àíàëèçà äëÿ äâóõóðîâíåâûõ ÷àñòîòíî-âðåìåííûõ ìîäåëåé ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì (ÌÝÑ). 2021. Âûïóñê III. Ñ. 2-9.
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìîäåëè ìíîãîïîëþñíîãî ýëåìåíòà ñ ïðîèçâîëüíûì ÷èñëîì ïîëþñîâ äëÿ ïðîãðàìì ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ. Ïðîáëåìû ðàçðàáîòêè ïåðñïåêòèâíûõ ìèêðî- è íàíîýëåêòðîííûõ ñèñòåì (ÌÝÑ). 2021. Âûïóñê IV. Ñ. 14-21.
2022 
  Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
Ïàðàìåòðèçàöèÿ ìîäåëè ñâÿçàííûõ îñöèëëÿòîðîâ äëÿ âêëþ÷åíèÿ ÷àñòîòíî-çàâèñèìûõ ýêâèâàëåíòíûõ öåïåé ìåæñîåäèíåíèé. Ñáîðíèê òåçèñîâ 8-îé Íàó÷íîé êîíôåðåíöèÿ «Ýëåêòðîííàÿ êîìïîíåíòíàÿ áàçà è ìèêðîýëåêòðîííûå ìîäóëè». Ñ. 301-302. ÀÎ «ÐÈÖ «ÒÅÕÍÎÑÔÅÐÀ», 2022. ID 49808202. (ÐÈÍÖ).
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Êîìáèíèðîâàíèå òèïîâ óïðàâëåíèÿ â ñõåìàõ áåçðåàêòèâíûõ ìåìðèñòîðíûõ ãåíåðàòîðîâ. Ñáîðíèê òåçèñîâ 8-îé Íàó÷íîé êîíôåðåíöèÿ «Ýëåêòðîííàÿ êîìïîíåíòíàÿ áàçà è ìèêðîýëåêòðîííûå ìîäóëè». Ñ. 474-475. ÀÎ «ÐÈÖ «ÒÅÕÍÎÑÔÅÐÀ», 2022. ID 49808202. (ÐÈÍÖ).
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
The Control Types in Memristor-Based Reactance-Less Oscillators. 2022 Moscow Workshop on Electronic and Networking Technologies (MWENT). 2022. Pp. 1-4. doi: 10.1109/MWENT55238.2022.9802440. (ÐÈÍÖ; Scopus).
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Coupled Nonreactive Memristor Generators for Binary-oscillator Networks. Nanobiotechnology Reports. 2022. Vol. 17. ¹ 6. Ðp. 874–880. © Pleiades Publishing, Ltd., 2022. ISSN 2635-1676. (ÐÈÍÖ; Scopus).
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Câÿçàííûå áåçðåàêòèâíûå ìåìðèñòîðíûå ãåíåðàòîðû äëÿ áèíàðíûõ îñöèëëÿòîðíûõ ñåòåé. Ðîññèéñêèå íàíîòåõíîëîãèè. 2022. Âûï. 1. Ñ. 117-124. DOI (CrossRef): 10.56304/S1992722321060194. (ÂÀÊ; ÐÈÍÖ; Scopus).
  Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Âû÷èñëèòåëüíûå ìåòîäû îãèáàþùèõ äëÿ ìîäåëèðîâàíèÿ ðàäèîòåõíè÷åñêèõ èíòåãðàëüíûõ ñõåì ñ áîëüøèì ðàçáðîñîì ÷àñòîò. Æóðíàë ðàäèîýëåêòðîíèêè. 2022. ¹3. Pp. 1-23. DOI:10.30898/1684-1719.2022.3.3. (RSCI).
2023 
  Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
The Coupled Reactance-Less Memristor Based Relaxation Oscillators for Binary Oscillator Networks. Micromachines. 2023. 14 (2). no. 2: 365. Ð p. 1-13. DOI: 10.3390/mi14020365.
 

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2005 
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Æàðîâ Ì.Ì., Ìàëâàíè Á.Ä.
Àäàïòèâíûé ìåòîä ãàðìîíè÷åñêîãî áàëàíñà
2006 
 Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Äâóõóðîâíåâàÿ ðåäóêöèÿ ìîäåëåé ïàðàçèòíûõ öåïåé âûñîêîãî ïîðÿäêà
 Åãîðîâ Þ.Á., Ðóñàêîâ Ñ.Ã., Ëÿëèíñêèé À.À.
Ìîäåëèðîâàíèå ðàäèîòåõíè÷åñêèõ ñõåì ñ öèôðîâîé ìîäóëÿöèåé â ðàìêàõ VHDL-AMS ìîäåëèðóþùèõ ñèñòåì
2008 
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîäû âîçìóùåíèé è ñåëåêòèâíûå ìåòîäû â çàäà÷àõ ðåäóêöèè âûñîêîðàçìåðíûõ ìîäåëåé
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ìàëîñèãíàëüíîãî àíàëèçà äëÿ ìîäåëèðîâàíèÿ ìíîãî÷àñòîòíûõ ðàäèîòåõíè÷åñêèõ ñõåì
2010 
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìåòîäîâ àíàëèçà ðåæèìà âçàèìíîé ñèíõðîíèçàöèè àâòîãåíåðàòîðîâ â èíòåãðàëüíûõ ñõåìàõ
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Ëÿëèíñêèé À.À.
Ïðèìåíåíèå ñåëåêòèâíûõ ìåòîäîâ äëÿ ïàðàìåòðè÷åñêîé è ñòàòèñòè÷åñêîé ðåäóêöèè âûñîêîðàçìåðíûõ ìîäåëåé
2012 
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå NBTI-ýôôåêòà â àíàëîãîâûõ èíòåãðàëüíûõ ñõåìàõ
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Àëãîðèòìû ðåäóêöèè ìíîãîïîðòîâûõ ëèíåéíûõ öåïåé ñ èíäóêòèâíîñòÿìè íà áàçå ñåëåêòèâíûõ ìåòîäîâ èñêëþ÷åíèÿ
2014 
 Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã.
Àëãîðèòìû ðåäóêöèè ìîäåëåé, ñîõðàíÿþùèå ñòðóêòóðíóþ ðàçðåæåííîñòü â çàäà÷àõ ñõåìîòåõíè÷åñêîãî àíàëèçà
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìåòîä ãàðìîíè÷åñêîãî áàëàíñà äëÿ ýëåêòðîòåïëîâîãî àíàëèçà óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ ÈÑ
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ôàçîâàÿ íåëèíåéíàÿ ìàêðîìîäåëü äëÿ àíàëèçà àâòîãåíåðàòîðíûõ ñõåì
2016 
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Èîíîâ Ë.Ï., Ìóõèí È.È., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå âîçìóùåííûõ ðåæèìîâ ñõåì ôàçîâîé àâòîïîäñòðîéêè ÷àñòîòû íà îñíîâå ïåðåäàòî÷íûõ õàðàêòåðèñòèê áëîêîâ
 Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã.
Ìåìðèñòîðíûé ãåíåðàòîð íà òðèããåðå Øìèòòà ñ íåñêîëüêèìè óñòîé÷èâûìè ñîñòîÿíèÿìè äèíàìè÷åñêîãî ðàâíîâåñèÿ
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë., Ëÿëèíñêèé À.À.
Ïîäñèñòåìà ïàðàìåòðè÷åñêîé îïòèìèçàöèè ÊÌÎÏ îïåðàöèîííûõ óñèëèòåëåé
2018 
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ïðèìåíåíèå îäíîøàãîâûõ ìåòîäîâ èíòåãðèðîâàíèÿ âûñîêîãî ïîðÿäêà òî÷íîñòè äëÿ àíàëèçà óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ â èíòåãðàëüíûõ ñõåìàõ
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðàññàäèí À.Ý., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå ñõåì ñ ñåãíåòîýëåêòðè÷åñêèìè åìêîñòÿìè
2020 
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
Ïàðàìåòðèçîâàííàÿ ìîäåëü Êóðàìîòî äëÿ ñâÿçàííûõ îñöèëëÿòîðîâ ñ äðîáíûìè ñîîòíîøåíèÿìè ÷àñòîò
 Ãóðàðèé Ì.Ì., Æàðîâ Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Àäàïòèâíûé àëãîðèòì àíàëèçà ñõåì ñ êîëåáàòåëüíûìè ðåæèìàìè
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã.
Îñîáåííîñòè ïðèìåíåíèÿ ìåòîäîâ îãèáàþùèõ äëÿ àíàëèçà àâòîíîìíûõ ãåíåðàòîðîâ
2021 
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ðàçðàáîòêà ìîäåëè ìíîãîïîëþñíîãî ýëåìåíòà ñ ïðîèçâîëüíûì ÷èñëîì ïîëþñîâ äëÿ ïðîãðàìì ñõåìîòåõíè÷åñêîãî ìîäåëèðîâàíèÿ
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Âû÷èñëèòåëüíûé àëãîðèòì øóìîâîãî àíàëèçà äëÿ äâóõóðîâíåâûõ ÷àñòîòíî-âðåìåííûõ ìîäåëåé ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ
 Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Àíàëèç óñòàíîâèâøèõñÿ ïåðèîäè÷åñêèõ ðåæèìîâ â èíòåãðàëüíûõ ñõåìàõ ñ ïîìîùüþ ìåòîäîâ ãîìîòîïèè
2022 
 Ðàêèòèí Â.Â., Ðóñàêîâ Ñ.Ã., Óëüÿíîâ Ñ.Ë.
Ìîäåëèðîâàíèå ñâÿçàííûõ ìåìðèñòîðíûõ îñöèëëÿòîðîâ ñ ïðèìåíåíèåì ñõåìíûõ ñèìóëÿòîðîâ
 Ðóñàêîâ Ñ.Ã., Ãóðàðèé Ì.Ì.
Ìåòîä ñëèÿíèÿ ìîäåëåé äëÿ àíàëèçà ðåæèìîâ ñèíõðîíèçàöèè ñâÿçàííûõ îñöèëëÿòîðîâ
 

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 Áàòàëîâ Á.Â., Åãîðîâ Þ.Á., Ðóñàêîâ Ñ.Ã. // Îñíîâû ìàòåìàòè÷åñêîãî ìîäåëèðîâàíèÿ ÁÈÑ íà ÝÂÌ. - Ì.: Ðàäèî è ñâÿçü, 1982. - 159 ñ. (pdf+zip) (part 1) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Áàòàëîâ Á.Â., Åãîðîâ Þ.Á., Ðóñàêîâ Ñ.Ã. // Îñíîâû ìàòåìàòè÷åñêîãî ìîäåëèðîâàíèÿ ÁÈÑ íà ÝÂÌ. - Ì.: Ðàäèî è ñâÿçü, 1982. - 159 ñ. (pdf+zip) (part 2) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ (â ñîàâòîðñòâå) // Àêòóàëüíûå ïðîáëåìû ìîäåëèðîâàíèÿ â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ / ïîä ðåäàêöèåé ÷ë.-êîðð. ÐÀÍ À.Ë.Ñòåìïêîâñêîãî, Ì.: "Íàóêà", 2003 ã. - 430 ñ.

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 S.G. Rusakov, // Techniques for Forming Simplified Computational Models for Circuit Simulation, Proceedings of the Synthesis and Simulation Meeting and Interchange. SASIMI-92, Kobe,1992
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Iterative Solution of Linear Systems in Harmonic Balance Analysis // Proceedings of the 1997 IEEE Microwave Theory and Techniques Symposium. Denver, 1997.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Simulation of High-Q Oscillators // Proc. of the Int. Conf. on Computer-Aided Design. - 1998. - Ð. 162-169.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney // A New Numerical Method for Transient Noise Analysis of Nonlinear Circuits // Proc. of the Asia and South Pacific Design Automation Conference. Hong-Kong, Jan. 1999. - P. 165-168.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // A New Technique to Exploit Frequency Domain Latency in Harmonic Balance Simulators // Proc. of the Asia and South Pacific Design Automation Conference. Hong-Kong, Jan. 1999. - P. 65-68.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Adaptive Preconditioners for the Simulation of Extremely Nonlinear Circuits Using Harmonic Balance // IEEE MTT-S International Microwave Symposium Digest. - 1999.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // New Methods for Speeding up Computation of Newton Updates in Harmonic Balance // Proc. of the Int. Conf. on Computer-Aided Design. -1999. - P. 61-64.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // The Enhancing of Efficiency of the Harmonic Balance Analysis by Adaptation of Preconditioner to Circuit Nonlinearity // Proc. of the Asia and South Pacific Design Automation Conference. Jan. 2000. - P. 537-540.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // A robust and efficient oscillator analysis technique using harmonic balance // Computer methods in applied mechanics and engineering. - 2000. - V. 181(4). - P. 451-466.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // A New Approach for Computation of Timing Jitter in Phase Locked Loops // Proc. of DATE 2000 Conference. Paris, March 2000. - P. 345-349.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Computational Method of Stability Investigation for Large Analog Circuits // Proc. of ISCAS 2000 Conference. Geneva, May 2000. - P. 83.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // A New Computational Approach to Simulate Highly Nonlinear Systems by Harmonic Balance Method // 16th IMACS WORLD CONGRESS 2000 on Scientific Computation, Applied Mathematics and Simulation. Lausanne, August 2000. - P. 366.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Adaptive Preconditioning of Strong Nonlinear Harmonic Balance Problems for Electrical Networks // 16th IMACS WORLD CONGRESS 2000 on Scientific Computation, Applied Mathematics and Simulation. Lausanne, August 2000. - P. 358.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney // An Optimum Fitting Algorithm for Generation of Reduced-Order Models // Proc. Of the Asia and South Pacific Design Automation Conference. Jan. 2001. - P. 209-213.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // Approximation Approach for for Timing Jitter Characterization in Circuit Simulators Proc. of DATE 2003 conf., Munich, March 2003 6 .
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney // A New Simulation Technique for Periodic Small-Signal Proc. of DATE 2003 conf., Munich, March 2003 6 .
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, K.K. Gullapalli, B.J. Mulvaney // New Computational Technique for Periodic Distortion Analysis of Communication Circuits IEEE MTT-S International Microwave Symposium Digest, 2004, pp. 4
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney // Applying Harmonic Newton Method for Distortion Analysis of Electronic Circuits 34th European Microwave Conference Digest, 2004, pp. 4.
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B. J. Mulvaney // "Numerical Simulation of Timing Jitter in Nonlinear Electrical Circuits Based on Interval Evaluation", 17th IMACS WORLD CONGRESS on Scientific Computation, Applied Mathematics and Simulation, Paris, July 2005.
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B. J. Mulvaney // "Krylov Subspace Method for Solving Parameterized Linear Systems with Multiple Right-Hand Sides", 17th IMACS WORLD CONGRESS on Scientific Computation, Applied Mathematics and Simulation, Paris, July 2005.
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B. J. Mulvaney // "Frequency Adjusting Numerical Technique for Oscillator Simulation", 17th European Conference on Circuit Theory and Design, Cork, August 2005.
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B.J. Mulvaney, // "Spice-oriented Iterative Technique for Distortion Analysis", Proc. of 2006 IEEE International Symposium on Circuits and Systems (ISCAS 2006), Greece, Kos, May 2006
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B.J. Mulvaney, // "Efficient Computational Method for Modulation Analysis of Communication Circuits", 36th European Microwave Conference, Manchester, Sept. 2006
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B.J. Mulvaney, // "A Numerical Technique for Time Domain Noise Analysis of Oscillators," Proc. of 18th European Conference on Circuit Theory and Design, Seville, 2007, pp. 1002-1006.
 M. M. Gourary, S. G. Rusakov, S. L. Ulyanov, M. M. Zharov, B.J. Mulvaney, // "New Numerical Technique for Cyclostationary Noise Analysis of Oscillators," 37th European Microwave Conference, Munich, 2007, pp. 1173-1176.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Analysis of Oscillator Injection Locking by Harmonic Balance Method", Proc. of Design Automation and Test in Europe (DATE) Conf., Munich, March 2008, pp. 318-323.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Injection Locking Conditions under Small Periodic Excitations", Proc. of 2008 IEEE Int. Symposium on Circuits and Systems (ISCAS 2008), Seattle, USA, May 2008, pp. 544-547.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, // "New Macromodeling Approach to Phase Noise Analysis of Locked Oscillators", Proc. of the 3 European Microwave Circuits Conf., Amsterdam, 2008, pp. 326-329.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Smoothed Form of Nonlinear Phase Macromodel for Oscillators", IEEE/ACM Int. Conf. on Computer-Aided Design, San Jose, 2008, pp. 807-814.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Convergence Issues of Ring Oscillator Simulation by Harmonic Balance Technique", 7th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2008), Helsinki, 2008, pp. 145-146
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Fast Linear Solver for Vector Fitting Method". 7th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2008), Helsinki, 2008, pp. 175-176
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, // "A technique to accelerate the vector fitting algorithm in interconnect simulation", Proc. IEEE East-West Design & Test Symposium EWDTS 2009, Moscow, 2009, pp. 59-62.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, // "Improved Harmonic Balance Technique for Analysis of Ring Oscillators", Proc. of the European Conference on Circuit Theory and Design, Antalya, Turkey, August 2009, pp. 327-330.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Evaluation of Oscillator Phase and Frequency Transfer Functions", Scientific Computing in Electrical Engineering, Book series: Mathematics in Industry, Subseries: The European Consortium for Mathematics in Industry, Vol. 14, Springer, 2010, pp. 183-190.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, // "Mutual Injection Locking of Oscillators under Parasitic Couplings", 8th Int. Conf. on Scientific Computing in Electrical Engineering (SCEE 2010), Toulouse, 2010, pp. 79-80.
 M.M. Gourary, S.G. Rusakov, S.L. Ulyanov, M.M. Zharov, B.J. Mulvaney, // "Network Reduction by Inductance Elimination", Lectures Notes in Electrical Engineering (LNEE), Vol. 74, Springer, 2011, pp. 145-158.

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 Ì.Ì.Ãóðàðèé, Ä.Ì.Çàðóäíûé, Ñ.Ã.Ðóñàêîâ // Ìîäåëèðîâàíèå íà ÝÖÂÌ ïåðèîäè÷åñêèõ ïðîöåññîâ â èíòåãðàëüíûõ ñõåìàõ. - ÀÍ Ëàòâèéñêîé ÑÑÐ - Àâòîìàòèêà è âû÷èñëèòåëüíàÿ òåõíèêà, 1973, 1, ñ. 83-85. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ, Ë.Ñ.Õîäîø // Ìàøèííûé ðàñ÷åò ñòàòè÷åñêèõ ðåæèìîâ ÌÄÏ-áèïîëÿðíûõ èíòåãðàëüíûõ ñòðóêòóð. Èçâåñòèÿ ÂÓÇîâ ÑÑÑÐ - Ðàäèîýëåêòðîíèêà. òîì XVI, ¹6, 1973. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ì.Ì.Ãóðàðèé, Â.Â.Åðìàê, Ä.Ì.Çàðóäíûé, Ñ.Ã.Ðóñàêîâ // Ïðèìåíåíèå ìåòîäà ìíîãîïîëþñíûõ ïîäñõåì â ïðîãðàììàõ àíàëèçà ýëåêòðè÷åñêèõ õàðàêòåðèñòèê áîëüøèõ èíòåãðàëüíûõ ñõåì. Óïðàâëÿþùèå ñèñòåìû è ìàøèíû. 5, 1973. "Íàóêîâà äóìêà", Êèåâ. ñ.55-58. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ, Â.À.Øèëèí // Àëãîðèòìû ìàøèííîãî ðàñ÷åòà õàðàêòåðèñòèê èíòåãðàëüíûõ ñõåì íà ïðèáîðàõ ñ çàðÿäîâîé ñâÿçüþ. ÀÍ ÑÑÑÐ, Ìèêðîýëåêòðîíèêà, òîì 2, âûï. 5, 1973. Ìîñêâà. ñ.436-441. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ, À.Á.Ñâÿòñêèé // Ìåòîä àâòîìàòè÷åñêîãî ðàçáèåíèÿ íà ïîäñõåìû äëÿ ìàøèííîãî àíàëèçà áîëüøèõ èíòåãðàëüíûõ ñõåì. Óïðàâëÿþùèå ñèñòåìû è ìàøèíû. 3, 1975. "Íàóêîâà äóìêà", Êèåâ. ñ.116-119. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ì.Ì.Ãóðàðèé, Ñ.Ã.Ðóñàêîâ // Ìåòîä îïòèìàëüíîãî ðàñ÷åòà ïàðàìåòðîâ áîëüøèõ èíòåãðàëüíûõ ñõåì ïðè èåðàðõè÷åñêîì ïðåäñòàâëåíèè èõ ìàòåìàòè÷åñêèõ ìîäåëåé. Óïðàâëÿþùèå ñèñòåìû è ìàøèíû. 4, 1976. "Íàóêîâà äóìêà", Êèåâ. ñ.115-119. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã. // Ìàøèííûé ðàñ÷åò ñëîæíûõ ýëåêòðîííûõ ñèñòåì ìåòîäîì ïîäñõåì // Òåõíè÷åñêàÿ êèáåðíåòèêà ÀÍ ÑÑÑÐ, 1977 ã., ¹ 1 ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ãóðàðèé Ì.Ì., Ðóñàêîâ Ñ.Ã. // Ñèíòåç ìàêðîìîäåëåé ôðàãìåíòîâ ÁÈÑ ìåòîäîì âîçìóùåíèé // Ìèêðîýëåêòðîíèêà ÀÍ ÑÑÑÐ, 1977 ã., ò. 6, ¹ 5, ñòð.406-409 ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ðóñàêîâ Ñ.Ã. // Ôîðìèðîâàíèå ýëåêòðè÷åñêèõ ìàêðîìîäåëåé äëÿ ìàøèííîãî ðàñ÷åòà ñëîæíûõ ñõåì ïî ïîëíûì ìàòåìàòè÷åñêèì ìîäåëÿì ïîäñõåì. - Ýëåêòðîííàÿ òåõíèêà, 1979, Ñåðèÿ 10, âûïóñê 1(13). Ìèêðîýëåêòðîííûå óñòðîéñòâà. Ìàøèííîå ïðîåêòèðîâàíèå. - ñ.57-64 (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ðóñàêîâ Ñ.Ã. // Ôîðìèðîâàíèå ýëåêòðè÷åñêèõ ìàêðîìîäåëåé ôðàãìåíòîâ ÁÈÑ ïî èõ ïîëíûì ìàòåìàòè÷åñêèì ìîäåëÿì // Ýëåêòðîííàÿ òåõíèêà. Ñåðèÿ 11. Ìèêðîýëåêòðîííûå óñòðîéñòâà 1979 ã., ¹ 1 ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ // Ìåòîä ìíîãîïîëþñíûõ ïîäñõåì ïðè ïàðàëëåëüíîì ìîäåëèðîâàíèè ÁÈÑ. Àâòîìàòèçàöèÿ ïðîåêòèðîâàíèÿ ÈÑ, 1980. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 À.Â.Êè÷èãèí, Ñ.Ã.Ðóñàêîâ // Àëãîðèòì ðàçáèåíèÿ íà ïîäñõåìû äëÿ ìàøèííîãî àíàëèçà ÁÈÑ, èñïîëüçóþùèé äâóäîëüíûå ãðàôû. 1980. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Âàòàãèí Â.Ï., Ðóñàêîâ Ñ.Ã. // Ïðîáëåìû àâòîìàòèçàöèè ôîðìèðîâàíèÿ ìàêðîìîäåëåé ôðàãìåíòîâ ÁÈÑ // Âîïðîñû êèáåðíåòèêè, ÂÊ-102, ÀÍ ÑÑÑÐ, 1984 ã., ñòð 105-121 (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ëÿëèíñêèé À.À., Ðóñàêîâ Ñ.Ã. // Ìåòîäû óñêîðåííîãî ìîäåëèðîâàíèÿ ýëåêòðè÷åñêèõ õàðàêòåðèñòèê ÌÄÏ ÁÈÑ. - Àâòîìåòðèÿ, ÑÎ ÀÍ ÑÑÑÐ, 1986, ¹6, ñ.7-10. Ìèêðîýëåêòðîííûå óñòðîéñòâà. Ìàøèííîå ïðîåêòèðîâàíèå. - ñ.57-64 (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ, Ñ.Ë.Óëüÿíîâ // Äèàëîãîâàÿ ñèñòåìà ïàðàìåòðè÷åñêîé èäåíòèôèêàöèè ìîäåëåé ýëåìåíòîâ ÈÑ. - Èçâåñòèÿ ÂÓÇîâ Ì è ÑÑÎ ÑÑÑÐ, Ðàäèîýëåêòðîíèêà, Êèåâ, 1986. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ // Ïðèìåíåíèå îäíîøàãîâûõ ìåòîäîâ èíòåãðèðîâàíèÿ ïðè ìîäåëèðîâàíèè ïåðåõîäíûõ ïðîöåññîâ â ÁÈÑ. 1987. (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ // Ïðèìåíåíèå ñîñòàâíûõ ìåòîäîâ ÷èñëåííîãî èíòåãðèðîâàíèÿ ïðè ìîäåëèðîâàíèè äèíàìè÷åñêèõ ðåæèìîâ ðàáîòû ÁÈÑ ìåòîäîì ïîäñõåì. - Ýëåêòðîííîå ìîäåëèðîâàíèå, 1987, ò.9, ¹1, ñ.35-39. Êèåâ, "Íàóêîâà äóìêà". (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 S.G. Rusakov, A.A.Lialinsky // Directions of Reducing the Computational Complexity in LSI Circuit Simulation. Proceedings of Joint Symposium Information Processing and Software System Design Automation, Springer Verlag, 1990, ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Sergey G. Rusakov // Techniques for Forming Simplified Computational Models for Circuit Simulation. Proceedings of the Synthesis and Simulation Meeting and Interchange. SASIMI-92, Kobe,1992 (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜
 Ñ.Ã.Ðóñàêîâ // Ìîäåëèðîâàíèå íåëèíåéíûõ ðàäèî÷àñòîòíûõ ñõåì â ñèñòåìàõ àâòîìàòèçàöèè ñõåìîòåõíè÷åñêîãî ïðîåêòèðîâàíèÿ. Àâòîìàòèçàöèÿ ïðîåêòèðîâàíèÿ ÐÀÍ, 1997, 2. ñòð.2-8 (pdf) ˜˜˜˜˜˜ ˜˜ ˜˜˜˜˜˜˜