Single-Machine Infinite-Bus Power System Excitation Control Design With Resilient Extended Kalman Filter

Author:

Wang Xin12,Gu Patrick2

Affiliation:

1. Assistant Professor

2. Department of Electrical and Computer Engineering, Southern Illinois University, Edwardsville, IL 62026 e-mail:

Abstract

To effectively control and maintain the transient stability of power systems, traditionally, the extended Kalman filter (EKF) is used as the real-time state estimator (RTSE) to provide the unmeasurable state information. However, the EKF estimation may degrade or even become unstable when the measurement data are inaccurate through random sensor failures, which is a widespread problem in data-intensive power system control applications. To address this issue, this paper proposes an improved EKF that is resilient against sensor failures. This work focuses on the resilient EKF’s (REKF’s) derivation with its application to single-machine infinite-bus (SMIB) power system excitation control. The sensor failure rate is modeled as a binomial distribution with a known mean value. The performance of REKF is compared with the traditional EKF for power system observer-based control under various chances of sensor failures. Computer simulation studies have shown the efficacy and superior performance of the proposed approach in power system control applications.

Publisher

ASME International

Subject

Mechanical Engineering,Safety Research,Safety, Risk, Reliability and Quality

Reference33 articles.

1. Partial Feedback Linearizing Excitation Controller for Multi-Machine Power Systems to Improve Transient Stability;IEEE Trans. Power Syst.,2014

2. Recent Applications of Linear Analysis Techniques;IEEE Trans. Power Syst.,2001

3. A New Method to Design Robust Power Oscillation Dampers for Distributed Synchronous Generation Systems;ASME J. Dyn. Syst. Meas. Control,2013

4. A Decentralized Nonlinear Feedback Controller With Prescribed Degree of Stability for Damping Power System Oscillations;Electr. Power Syst. Res.,2007

5. Multi Machine Power System Excitation Control Design via Theories of Feedback Linearization Control and Nonlinear Robust Control;Int. J. Syst. Sci.,2000

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