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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Simulation and performance evaluation of shunt hybrid power filter using fuzzy logic based non-linear control for power quality improvement
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Simulation and performance evaluation of shunt hybrid power filter using fuzzy logic based non-linear control for power quality improvement

机译:基于模糊逻辑的非线性控制功率质量改进模糊逻辑的分流混合电力滤波器仿真与性能评价

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摘要

This paper deals with design and simulation of a three-phase shunt hybrid power filter consisting of a pair of 5th and 7th selective harmonic elimination passive power filters connected in series with a conventional active power filter with reduced kVA rating. The objective is to enhance the power quality in a distribution network feeding variety of non-linear, time-varying and unbalanced loads. The theory and modelling of the entire power circuit in terms of synchronously rotating reference frame and leading to a non-linear control scheme is presented. This work involves introduction of individual fuzzy logic controllers for d and q axis current control and for voltage regulation of the DC link capacitor. The simulation schematic covering the power and control circuits have been developed taking into account severe harmonic distortion caused by non-linear and unbalanced loads. The effectiveness of the fuzzy logic controller for the compensation of harmonics and reactive power has been verified by successive simulation runs and analysis of the results. The proposed controller is also able to compensate the distortion generated by the voltage-and current-fed non-linear loads, unbalanced and dynamically varying loads. Further, excellent regulation of the DC link voltage is accomplished, which significantly contributes to improvement of power quality.
机译:本文涉及三相分流混合动力电滤波器的设计和仿真,包括一对第五和第7次选择性谐波消除无源电力滤波器,其与传统的有源电力滤波器串联连接,具有减少的KVA额定值。该目的是提高供给各种非线性,时变和不平衡负载的配电网中的电能质量。提出了在同步旋转参考帧和通向非线性控制方案方面的整个电源电路的理论和建模。这项工作涉及为D和Q轴电流控制和DC链路电容器的电压调节引入单独的模糊逻辑控制器。已经开发了覆盖电力和控制电路的仿真示意图,以考虑由非线性和不平衡负载引起的严重谐波失真。通过连续仿真运行和结果分析,通过连续的模拟运行验证了模糊逻辑控制器的效力,并验证了结果。所提出的控制器还能够补偿由电压和电流的非线性负载,不平衡和动态变化的负载产生的失真。此外,完成了直流链路电压的优异调节,这显着有助于提高电能质量。

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