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Virtual Flux Sensorless Control for Shunt Active Power Filters With Quasi-Resonant Compensators

机译:具有准谐振补偿器的并联有源电力滤波器的虚拟无磁通传感器控制

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摘要

This paper presents a sensorless control strategy for pulsewidth modulated active filters. The complete solution uses only two current sensors, which are located in the grid interface. The compensation is performed by the imposition of sinusoidal current references in the grid, and does not require algorithms for disturbance estimation. The virtual flux concept for grid synchronization and multiple quasi-resonant compensators in the current scheme are employed for selective harmonic mitigation. A discretization analysis is presented in order to obtain a precise digital realization of the current controllers. It is proposed as a regulator for the direct-current bus voltage in the active filter, which employs only information of the modulated voltage and is compatible with the previous sensorless synchronization solution. Experimental results from a 1-kVA prototype converter are presented, covering the solution with and without the voltage sensor in the direct current bus. Analyses of stationary and transient responses are performed by using a six-pulse diode rectifier as nonlinear load.
机译:本文提出了一种用于脉宽调制有源滤波器的无传感器控制策略。完整的解决方案仅使用两个电流传感器,它们位于电网接口中。补偿是通过在电网中施加正弦电流参考来执行的,不需要进行干扰估计的算法。在当前方案中,用于电网同步和多个准谐振补偿器的虚拟通量概念被用于选择性谐波抑制。进行离散化分析是为了获得电流控制器的精确数字实现。提出将其作为有源滤波器中直流总线电压的调节器,该调节器仅采用调制电压的信息,并且与以前的无传感器同步解决方案兼容。给出了一个1-kVA原型转换器的实验结果,涵盖了直流母线中带或不带电压传感器的解决方案。通过使用六脉冲二极管整流器作为非线性负载来执行稳态和瞬态响应的分析。

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