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A new balancing three level three dimensional space vector modulation strategy for three level neutral point clamped four leg inverter based shunt active power filter controlling by nonlinear back stepping controllers

机译:基于非线性反步控制器的三电平中性点钳位四脚逆变器并联有功功率滤波器的新型平衡三电平三维空间矢量调制策略

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In this paper is proposed a new balancing three-level three dimensional space vector modulation (B3L-3DSVM) strategy which uses a redundant voltage vectors to realize precise control and high-performance for a three phase three-level four-leg neutral point clamped (NPC) inverter based Shunt Active Power Filter (SAPF) for eliminate the source currents harmonics, reduce the magnitude of neutral wire current (eliminate the zero-sequence current produced by single-phase nonlinear loads), and to compensate the reactive power in the three-phase four-wire electrical networks. This strategy is proposed in order to gate switching pulses generation, dc bus voltage capacitors balancing (conserve equal voltage of the two dc bus capacitors), and to switching frequency reduced and fixed of inverter switches in same times. A Nonlinear Back Stepping Controllers (NBSC) are used for regulated the dc bus voltage capacitors and the SAPF injected currents to robustness, stabilizing the system and to improve the response and to eliminate the overshoot and undershoot of traditional PI (Proportional-Integral). Conventional three-level three dimensional space vector modulation (C3L-3DSVM) and B3L-3DSVM are calculated and compared in terms of error between the two dc bus voltage capacitors, SAPF output voltages and THDy, THDi of source currents, magnitude of source neutral wire current, and the reactive power compensation under unbalanced single phase nonlinear loads. The success, robustness, and the effectiveness of the proposed control strategies are demonstrated through simulation using Sim Power Systems and S-Function of MATLAB/SIMULINK. (C) 2016 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种新的平衡三级三维空间矢量调制(B3L-3DSVM)策略,该策略使用冗余电压矢量来实现对三相三级四脚中性点钳位的精确控制和高性能(基于NPC)基于逆变器的并联有源功率滤波器(SAPF),用于消除源电流谐波,减小中性线电流的大小(消除单相非线性负载产生的零序电流)并补偿这三个中的无功功率相四线电网。提出该策略的目的是为了控制开关脉冲的产生,平衡直流母线电压电容器(保持两个直流母线电容器相等的电压)以及同时降低开关频率和固定逆变器开关。非线性反步控制器(NBSC)用于调节直流总线电压电容器和SAPF注入电流的鲁棒性,从而稳定系统并改善响应,并消除传统PI(比例积分)的过冲和下冲。计算并比较了两个直流母线电压电容器之间的误差,SAPF输出电压和THDy,源电流THDi,源中性电流THDi,源中性线幅值等方面的常规三级三维空间矢量调制(C3L-3DSVM)和B3L-3DSVM电流,以及不平衡单相非线性负载下的无功功率补偿。通过使用Sim Power Systems和MATLAB / SIMULINK的S函数进行仿真,证明了所提出控制策略的成功性,鲁棒性和有效性。 (C)2016 ISA。由Elsevier Ltd.出版。保留所有权利。

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