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Active power filter design based on dual-DSP

机译:基于双DSP的有源电力滤波器设计

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摘要

With non-linear loads such as power electronic equipment getting more and more widely used in industrial and civil applications, harmonic current are becoming more damaging to electricity systems on both the power grid side and user side. An effective way to solve the problem is to us e the harmonic filter equipments. Active power filter (Active Power Filter, APF) compensates each harmonics simultaneously, is provided with real-time dynamic reactive power compensation and other advantages. Active power filter application is considered the most effective means to treat grid harmonics and improve power quality. In this paper, a shunt 3-phase 3-wire active power filter is researched, using two-level topology. The paper analyzes the main circuit topology and control system principles, and then provides capacitors and inductor selection methods with different power rating. Through real-time detection of load current harmonics, negative-sequence current and reactive current command, the modified prospective proportional resonant method for frequency dividing control and Space Vector Pulse Widths Modulation are used for controlling APF output current. To further validate the proposed method, a 3-phase 3-wire APF experimental apparatus is built.
机译:通过诸如电力电子设备的非线性载荷越来越广泛地用于工业和民用应用,谐波电流对电网侧和用户侧的电力系统变得更加损害。解决问题的有效方法是谐波滤波器设备。有源电力滤波器(有源电力滤波器,APF)同时补偿每个谐波,提供实时动态无功功率补偿和其他优点。有源电力滤波器应用被认为是治疗网格谐波的最有效手段,提高电力质量。在本文中,使用两级拓扑研究了分流器3相3线有源电力滤波器。本文分析了主电路拓扑结构和控制系统原理,然后提供具有不同功率额定值的电容器和电感器选择方法。通过实时检测负载电流谐波,负序电流和无功电流指令,用于频分控控制和空间矢量脉冲宽度调制的改进的前瞻性比例谐振方法用于控制APF输出电流。为了进一步验证所提出的方法,建立了3阶段3线APF实验装置。

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