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Decentralized sliding mode block control of multimachine power systems

机译:多机动力系统的分散滑模控制

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摘要

A decentralized sliding mode stabilizing excitation controller for multimachine Electric Power Systems (EPS) is designed. The block control approach is used in order to derive a nonlinear sliding manifold, on which the inherent plant model nonlinearities are compensated and the mechanical dynamics are linearized. A local Sliding Mode Speed Stabilizer (SMSS) and Sliding Mode Voltage Regulator (SMVR) control is designed to achieve attractiveness of the derived manifold, regulate the terminal voltage and stabilize the speed of each generation unit in spite of high level external disturbances. The simulation of the Western System Coordinating Council (WSCC) system exhibits the comparison between the traditional Automatic Voltage Regulator/Power System Stabilizer (AVR/PSS) and proposed SMSS/SMVR control schemes.
机译:设计了一种用于多机电力系统(EPS)的分散式滑模稳定励磁控制器。使用块控制方法来导出非线性滑动流形,对其上固有的工厂模型非线性进行补偿,并对机械动力学进行线性化。设计了本地滑模速度稳定器(SMSS)和滑模电压调节器(SMVR)控件,以实现派生的歧管的吸引力,调节端子电压并稳定外部环境中每个发电单元的速度。西方系统协调委员会(WSCC)系统的仿真显示了传统的自动电压调节器/电源系统稳定器(AVR / PSS)与建议的SMSS / SMVR控制方案之间的比较。

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