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Hardware Implementation of a Mamdani Fuzzy Logic Controller for a Static Compensator in a Multimachine Power System

机译:多机电源系统中用于静态补偿器的Mamdani模糊逻辑控制器的硬件实现

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摘要

A Mamdani-type fuzzy logic controller is designed and implemented in hardware for controlling a static compensator (STATCOM), which is connected to a ten-bus multimachine power system. Such a controller does not need any mathematical model of the plant to be controlled and can efficiently provide control signals for the STATCOM over a wide range of operating conditions of the power system and during different disturbances. The proposed controller is implemented using the M67 digital signal processor board and is interfaced to the multimachine power system simulated on a real-time digital simulator. Experimental results are provided, showing that the proposed Mamdani fuzzy logic controller provides superior damping compared to the conventional proportional-integral (PI) controller for both small and large scale disturbances. In addition, the proposed controller manages to restore the power system to the steady state conditions with less control effort exerted by the STATCOM, which, in turn, leads to smaller megavar rating and, therefore, less cost for the device. The matrix pencil method analysis of the damping provided by the different controllers indicates that the proposed controller provides higher damping than the PI controller and also mitigates the modes present with the conventional PI control.
机译:设计并在硬件中实现了Mamdani型模糊逻辑控制器,以控制静态补偿器(STATCOM),该补偿器连接到十总线多机电源系统。这样的控制器不需要控制工厂的任何数学模型,并且可以在电力系统的广泛操作条件下以及在不同的干扰期间有效地为STATCOM提供控制信号。拟议的控制器使用M67数字信号处理器板实现,并与在实时数字模拟器上模拟的多机电源系统接口。提供的实验结果表明,与常规比例积分(PI)控制器相比,所提出的Mamdani模糊逻辑控制器在小规模和大规模扰动方面均提供了出色的阻尼。另外,所提出的控制器设法通过STATCOM施加的控制力较小而将电力系统恢复到稳态状态,从而导致兆瓦额定值更小,因此设备的成本更低。由不同控制器提供的阻尼的矩阵铅笔方法分析表明,所提出的控制器比PI控制器提供更高的阻尼,并且还减轻了常规PI控制所存在的模式。

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