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Study on control strategy of TSC reactive power compensator based on fuzzy control

机译:基于模糊控制的TSC无功补偿器控制策略研究

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This thesis presents historical background of fuzzy control and fundamentals of TSC reactive power compensator. It is designed with dual-input of voltage deviation and reactive power deviation, and output fuzzy control system of class number of TSC switches. The system is divided into two groups according to different membership functions, the first group using triangle membership function and the second group using trapezoid and triangle membership functions. The system is controlled by using Mamdani inference method and the fuzziness is solved using centroid method, supplemented with MATLAB to carry out research and simulation so as to verify feasibility of the system. By data comparison of the two groups, it is found that the second group of strategy system has high stability and more than 50% of TSC action is reduced. Simulation results show that the second group of fuzzy control system designed in the thesis is optimal.
机译:本文介绍了模糊控制的历史背景和TSC无功补偿器的基本原理。它设计有电压输入和无功功率输入的双输入,以及TSC开关等级的输出模糊控制系统。该系统根据不同的隶属度函数分为两组,第一组使用三角形隶属度函数,第二组使用梯形和三角形隶属度函数。该系统采用Mamdani推理方法控制,模糊性采用质心法解决,并辅以MATLAB进行研究和仿真,验证了系统的可行性。通过对两组的数据比较,发现第二组策略系统具有较高的稳定性,并且减少了超过50%的TSC动作。仿真结果表明,本文设计的第二组模糊控制系统是最优的。

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