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High-speed power system stability simulation using analog computation

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EN
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EN
This paper presents a microelectronic emulation approach for high-speed power system computation. First, the problems of existing power system simulators are detailed. This shows that microelectronic emulation is a possible solution for solving the speed problems of existing simulators. Second, this paper presents one specific emulation approach, the so-called AC emulation approach. The ultimate objective of the AC emulation approach is the realization of a power system emulator which reproduces simultaneously a large number of phenomena of different time constants or frequencies with a much higher speed than real time. Frequency dependence of the elements is preserved and the signals propagating in the emulated network are the shrunk or downscaled current and voltage waves of the real power network. The models of the power network components are detailed. Special attention is paid to the generator model which was shown to introduce a systematic error. This systematic error is quantified, analyzed and optimized. Moreover behavioral simulation results confirm the feasibility of this approach which in turn lays the foundation for such an emulator.
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autor
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  • Ecole Polytechnique Federate de Lausanne (EPFL), 1015 Lausanne, Switzerland, ira.nagel@epfl.ch
Bibliografia
  • [1] S C. Savulescu, "Real-time stability in Power Systems: Techniques for Early Detection of the Risk of Blackout", Springer, 2006.
  • [2] J. Machowski, J. Bialek, and J Bumby, "Power system dynamics and stability", Wiley & sons Ltd, 1997.
  • [3] R. Fried, R. Cherkaoui, C. Enz, A. Germond, E. Vittoz, "Approaches for analog VLSI simulation of the transient stability of large power networks", IEEE transactions on Circuits and Systems, vol. 46, pp 1249- 1263, 1999.
  • [4] L. Fabre, I. Nagel, R. Cherkaoui, M. Kayal, "'High-speed, mixed-signal emulation for power system dynamic analysis", PowerTech'09, Romania, June 2009
  • [5] A. Deese, J. Jimenens, and C. Nwankpa, "Utilization of Field Programmable Analog Arrays (FPAA) to Emulate Power System Dynamics", ISCAS'09, Taiwan, May 2009.
  • [6] I. Nagel, L. Fabre, R. Cherkaoui, M. Kayal, "Microelectronic, high-speed data processing calculators for power system analysis: comparison", NEWCAS'09, Canada, June 2010.
  • [7] I. Nagel, D. Seetharamdoo, L. Fabre, R. Chrekaoui, M. Kayal, "Microelectronic emulation for power system computation", PSCC'08, Glasgow, July 2008.
  • [8] I. Nagel, L. Fabre, R. Cherkaoui, and M. Kayal, "High-speed power system stability simulation using analog computation'", MIXDES'09, Poland, June 2009.
  • [9] I. Nagel, L. Fabre, R. Cherkaoui, and M. Kayal, "High-speed power system stability simulation using analog computation: Systematic error analysis", MIXDES'10, Poland, June 2010.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD6-0024-0011
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