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Development of a new adaptive LQG system generator for high-speed damping control techniques of power system oscillation

机译:开发用于电力系统振荡的高速阻尼控制技术的新型自适应LQG系统发生器

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摘要

With the advent of interconnection of large-scale electric power systems, many new dynamics power system problems have emerged, which include low-frequency intersystem oscillations and many others. To date, most major generators in trunk electric power systems in Japan are equipped with supplementary excitation control, commonly referred to as the conventional single and two input PSS. However, low-frequency oscillations still occur. It is difficult for these conventional PSS to improve the additional damping of power system oscillation, because of the hardware and design of fixed PSS control constants from a one-machine infinite-bus model. It has therefore become necessary to develop a new adaptive LQG system generator. This paper explains the development of the new adaptive LQG system and the simulation of low-frequency and local mode oscillation for this new adaptive LQG system.
机译:随着大规模电力系统的互连的出现,出现了许多新的动态电力系统问题,其中包括低频系统间振荡等。迄今为止,日本干线电力系统中的大多数大型发电机都配备了辅助励磁控制,通常称为常规单输入和双输入PSS。但是,仍然会发生低频振荡。这些常规的PSS难以改善电力系统振荡的额外阻尼,这是因为硬件和单机无限总线模型中固定PSS控制常数的设计。因此,有必要开发一种新的自适应LQG系统发生器。本文介绍了新的自适应LQG系统的发展以及该新的自适应LQG系统的低频和本地模式振荡的仿真。

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