Study on the State Feedback Selection and Measurement for the Application of an LQRI Secondary Voltage Regulator to a Transmission System

A. Vicenzutti, F. Marzolla, G. Sulligoi, G. Giannuzzi, C. Pisani
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Abstract

The electrical power system is being significantly affected by the climate change mitigation actions. The power generation, originally centralized, is transitioning towards a more decentralized paradigm due to the coal-fired power plants shut off and the increase in renewable power. Issues in transmission system’s voltage control may arise, if the voltage regulation architecture is not modified accordingly. To this aim, in this paper it is investigated the use of a Linear Quadratic Regulator with Integral action (LQRI) for the secondary voltage regulation, aimed at exploiting several reactive power sources as actuators. Being the LQR class of regulators requiring the system state to correctly operate, and being a transmission system a complex system, a critical investigation must be done. In particular, it is needed to identify the variables that are directly measured in a real system, determine if they can be useful for the LQRI state feedback, and finally study the effect of the different possible feedback selection on the regulation performance.
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LQRI二次稳压器在输电系统中的状态反馈选择与测量研究
电力系统正受到减缓气候变化行动的重大影响。由于燃煤电厂的关闭和可再生能源的增加,最初集中的发电正在向更分散的模式过渡。如果不对电压调节结构进行相应的修改,输电系统的电压控制可能会出现问题。为此,本文研究了利用积分作用线性二次调节器(LQRI)进行二次电压调节的方法,旨在利用多个无功电源作为执行器。作为要求系统状态正确运行的LQR类调节器,以及作为一个复杂系统的传输系统,必须进行关键的研究。特别是需要识别真实系统中直接测量的变量,确定它们是否可以用于LQRI状态反馈,最后研究不同可能的反馈选择对调节性能的影响。
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