基于虚拟实验滤波技术改善电能质量的并联有源滤波器优化设计

E. Gouda, Hosam El Sharabasy, Fareed Abdalber, Gaber El Saady
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引用次数: 0

摘要

有源电力滤波器(APF)是目前公认的改善电能质量的技术,它能将谐波水平降低到可接受的比例,并能克服电压凹陷,提高功率因数。根据应用的不同,有源滤波器有不同的类型。本文将详细介绍一种并联型有源电力滤波器的设计。首先采用试错法对传统的滤波器PI控制器参数进行可接受值的选择,然后采用粒子群优化(PSO)技术通过优化最优控制器增益对滤波器PI控制器进行整定。利用MATLAB-SIMULINK工具箱对设计进行了建模和仿真。除了对非线性荷载进行实际建模外,还对系统的非线性荷载影响进行了设计和仿真。最后进行了实际验证,并与仿真系统进行了比较。实验结果与模型结果吻合较好。基于虚拟实验技术的无成本方法也被应用于大型系统,以获得精度可接受的预设计系统。在IEEE(519-1992)标准下,所提出的滤波器可以适用于具有可接受的总谐波失真(THD)的任何其他负载。
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Optimal Design of Shunt Active Power Filter for Power Quality Improvement Based on Virtual Experimental Filter Technique
Nowadays active power filter (APF) is well known technique for improving the power quality .It mitigates the level of harmonics to acceptable ratio, also it overcomes voltage sag and improves power factor. There are different types of APF according to its application. This paper will introduce a detailed design of a Shunt Active Power filter (SAPF). Firstly trial and error method will be used to select acceptable value for conventional filter PI controller parameters, Secondly particle swarm optimization (PSO) technique is used for tuning the filter PI controller by optimizing the optimal controller gains. The presented design is modeled and simulated by using MATLAB-SIMULINK toolbox. Many contributions such as design and simulation of SAPF, besides practical modeling of a nonlinear load for studying the effect of SAPF on the integrated system. A practical verification is done and compared to the proposed simulated system. It is found that a good agreement between the experimental result and the modeled one. A costless method based on Virtual experimental technique is also used and applied to large scale systems for obtaining predesign system with acceptable accuracy. The proposed filter can be adapted for any other loads with acceptable total harmonic distortion (THD) under the norms of IEEE (519-1992).
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