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A novel LQR based optimal tuning method for IMP-based linear controllers of power electronics/power systems

机译:电力电子/电力系统中基于IMP的线性控制器的基于LQR的新型优化调整方法

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This paper presents a new method for tuning linear controllers such as Proportional-Integrating (PI) and Proportional-Resonant (PR) structures which are frequently used in different power electronic and power system applications. Those controllers are placed within a general structure offered by the Internal Model Principle (IMP) of control theory. In this paper, the first perspective uses the well-known concept of Linear Quadratic Regulator (LQR) to address the problem as a regulation problem. Matrix Q of the LQR design is then finely adjusted in order to assure desired transient response for the system. The second perspective is based on redefining the LQR problem in order to make it capable of addressing the optimal tracking problem. Two specific examples of the method applications, one in a UPS inverter system and the other one in a DG system, as applied to tuning of a PR and a PI controller are studied in detail. Both examples are simulated in PSCAD and the results confirm analytical derivations.
机译:本文提出了一种新的线性控制器调整方法,例如比例积分(PI)和比例谐振(PR)结构,它们经常在不同的电力电子和电力系统应用中使用。这些控制器位于控制理论的内部模型原理(IMP)提供的通用结构内。在本文中,第一个观点使用了众所周知的线性二次调节器(LQR)概念来解决作为调节问题的问题。然后,对LQR设计的矩阵Q进行微调,以确保系统具有所需的瞬态响应。第二个观点是基于重新定义LQR问题,以便使其能够解决最佳跟踪问题。详细研究了方法应用的两个具体示例,一个应用于UPS逆变器系统,另一个应用于DG系统,用于调优PR和PI控制器。这两个示例都在PSCAD中进行了仿真,结果证实了分析推导。

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