2016IEEE Transactions on Power SystemsRequires access

Benchmark Models for the Analysis and Control of Small-Signal Oscillatory Dynamics in Power Systems

Claudio A. Cañizares, Tatiane C. C. Fernandes, Edson L. Geraldi, L. Gérin-Lajoie, M.J. Gibbard, Ian A. Hiskens, Jonas Kersulis, Rôman Kuiava, Lucas da Cruz Alarcon Lima, F. DeMarco, N. Martins, Bikash C. Pal, Artur B. Piardi, Rodrigo A. Ramos, Jhonatan dos Santos, D. Silva, Abhinav Kumar Singh, Behnam Tamimi, D.J. Vowles

Open publisher page 308 citations

Abstract

This paper summarizes a set of six benchmark systems for the analysis and control of electromechanical oscillations in power systems, recommended by the IEEE Task Force on Benchmark Systems for Stability Controls of the Power System Dynamic Performance Committee. The benchmark systems were chosen for their tutorial value and particular characteristics leading to control the system design problems relevant to the research community. For each benchmark, the modeling guidelines are provided, along with eigenvalues and time-domain results produced with at least two simulation softwares, and one possible control approach is provided for each system as well. Researchers and practicing engineers are encouraged to use these benchmark systems when assessing new oscillation damping control strategies.

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What this paper is about

This paper summarizes a set of six benchmark systems for the analysis and control of electromechanical oscillations in power systems, recommended by the IEEE Task Force on Benchmark Systems for Stability Controls of the Power System Dynamic Performance Committee. The benchmark systems were chosen for their tutorial value and particular characteristics leading to control the system design problems relevant to the research community. For each benchmark, the modeling guidelines are provided, along with eigenvalues and time-domain results produced with at least two simulation softwares, and one possible control approach is provided for each system as well. Researchers and practicing engineers are encouraged to use these benchmark systems when assessing new oscillation damping control strategies.

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Available abstract

This paper summarizes a set of six benchmark systems for the analysis and control of electromechanical oscillations in power systems, recommended by the IEEE Task Force on Benchmark Systems for Stability Controls of the Power System Dynamic Performance Committee. The benchmark systems were chosen for their tutorial value and particular characteristics leading to control the system design problems relevant to the research community. For each benchmark, the modeling guidelines are provided, along with eigenvalues and time-domain results produced with at least two simulation softwares, and one possible control approach is provided for each system as well. Researchers and practicing engineers are encouraged to use these benchmark systems when assessing new oscillation damping control strategies.

Key concepts: Benchmark (surveying), Electric power system, Computer science, Set (abstract data type), Control theory (sociology), Control engineering, Stability (learning theory), Control system

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