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Optimum design of passive power filter (PPF) at the output of 5-level CHB-MLI using genetic algorithm (GA)

机译:利用遗传算法(GA)优化5级CHB-MLI输出的无源功率滤波器(PPF)

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While harmonics have adverse effects on both power utilities and customers, harmonic filtering is considered the most widely applied method among different harmonic-mitigation techniques. Passive power filters (PPFs) are currently more economical and commonly applied than active power filters (APFs). The problem of passive power filter (PPF) design is considered to be a combinatorial optimisation problem that can be solved by applying artificial intelligence. For PPF design, heuristic methods are powerful optimisation techniques and have many advantages such as: no requirement for detailed information about the power system and ability to achieve optimum PPF design compared to the conventional method. In addition, the cost of PPF implementation can be added to the optimisation objective, which is not considered in conventional design. The Authors of this paper propose an optimisation model based on genetic algorithm (GA) to design a composite PPF. As a case study, the model is applied to find the optimum filter design at the output of 5-level cascaded H-bridge multilevel invert (CHB-MLI). MATLAB-SIMULINK is used for the modelling and simulation.
机译:尽管谐波对电力公用事业和用户都有不利影响,但谐波滤波被认为是不同谐波缓解技术中应用最广泛的方法。当前,无源功率滤波器(PPF)比有源功率滤波器(APF)更经济,更常用。无源功率滤波器(PPF)设计问题被认为是可以通过应用人工智能解决的组合优化问题。对于PPF设计,启发式方法是强大的优化技术,并且具有许多优点,例如:与常规方法相比,不需要有关电源系统的详细信息以及实现最佳PPF设计的能力。另外,PPF实现的成本可以添加到优化目标中,而这在常规设计中是不考虑的。本文的作者提出了一种基于遗传算法(GA)的优化模型来设计复合PPF。作为案例研究,该模型用于在5级级联H桥多级反相器(CHB-MLI)的输出端找到最佳滤波器设计。 MATLAB-SIMULINK用于建模和仿真。

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