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A New Topology to Improve Performance of SAPF Using ZVS

机译:使用ZVS改善SAPF性能的新拓扑

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This paper presents new topology using soft switching to improve performance of shunt active power filter (SAPF). The proposed inverter can be used without employing Snubber capacitor under Zero voltage switching and high frequency conditions. To create ZVS conditions for the switches in this converter, an auxiliary circuit is used that includes two IGBT and LC resonant circuit. Soft switching causes the effective improvement of active filter performance and lowers stress voltage level effectively and the strokes of switch voltage as well as decrease of EMI emission reduction. In addition, the new topology will eliminate the problem of reverse recovery of diode of components body, and in addition, voltage stress on the PI controller, will greatly reduce used in power active filter. Today, with advances in power electronic technology and increasing use of power converters and other non-linear loads in the harmonics industry existing in the power system have largely increased that from the adverse effects of harmonics, the losses increase and incorrect performance of power lines equipment and interferential issues of waves can be named in telecommunication lines. Power active filters are used to eliminate harmonics of current and voltage. Numerous method of performance that use an active auxiliary circuit to help the main switch of a PWM modulated converter switch on with zero voltage switching have been proposed. These methods reduce switching losses in the main power switch, reduce reverse-recovery losses in the main power diode, and reduce EMI in the converter. Although closely all previously proposed auxiliary circuits include only a single active switch because of cost, but this paper used Two-switch auxiliary circuits for ZCS-PWM converters are usually used in high current applications..By the way to simulate this topology has been used of MATLAB and CADENCE softwares.
机译:本文提出了一种使用软开关的新拓扑,以改善并联有源功率滤波器(SAPF)的性能。所建议的逆变器可以在零电压开关和高频条件下不使用缓冲电容器而使用。为了为该转换器中的开关创建ZVS条件,使用了一个辅助电路,其中包括两个IGBT和LC谐振电路。软开关可有效改善有源滤波器的性能,并有效降低应力电压水平,降低开关电压的冲程,并降低EMI辐射。此外,新的拓扑结构将消除组件主体二极管反向恢复的问题,此外,PI控制器上的电压应力将大大减少在功率有源滤波器中的使用。如今,随着电力电子技术的进步以及电力系统中谐波行业中功率转换器和其他非线性负载的使用不断增加,由于谐波的不利影响,电力线设备的损耗增加和性能不正确,这一点已大大增加。电波的干扰问题可以在电信线路中命名。功率有源滤波器用于消除电流和电压的谐波。已经提出了许多使用有源辅助电路来帮助PWM调制转换器的主开关以零电压开关导通的性能方法。这些方法减少了主电源开关中的开关损耗,减少了主电源二极管中的反向恢复损耗,并降低了转换器中的EMI。尽管出于成本考虑,虽然几乎所有以前提出的辅助电路都只包括一个有源开关,但是本文使用的ZCS-PWM转换器的两开关辅助电路通常用于大电流应用中。通过这种方式来模拟这种拓扑MATLAB和CADENCE软件。

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