积分弱解耦方法在电力系统控制中的应用

S. Kawashima
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引用次数: 0

摘要

现代电力系统是如此庞大,以至于不可能设计一个单一的中央控制系统来处理整个控制工作。多变量控制系统设计技术的发展具有重要的实际意义。该系统具有多种控制方法,如模糊控制、神经控制、多通道控制等。本文报道了分层电力系统的动态特性,并综合了互联电力系统和弱解耦状态反馈积分器的负荷频率控制方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrator weakly decoupling method applied to power system control
Modern power systems are so large that it is impossible to design a single central control system that would handle the overall control job. A development of techniques for the design of multivariable control systems is of considerable practical importance. The systems have a great variety of control methods, i.e., fuzzy control, neural control, multichannel control, etc. This paper reports the hierarchy power system's dynamic characteristics, accompanied by the synthesis of the interconnected power system and load frequency control method of weakly decoupling state feedback integrator.
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