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Optimum design consideration and implementation of a parallel hybrid active power filter integrated into a three-phase capacitive diode rectifier

机译:集成到三相电容二极管整流器中的并联混合有源电滤波器的最佳设计考虑和实现

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This paper describes the design and performance of a parallel hybrid active power filter integrated into a three-phase diode rectifier with a capacitive load. The hybrid filter is composed by a three-phase LC filter and a small rated active filter based on a three-phase voltage-source PWM converter. The passive filter is designed with focus on characteristic impedance, resonant frequency, influence on DC-bus voltage and filtering characteristics. In addition, a repetitive control algorithm with differential compensator is proposed to eliminate steady-state error in the control loop, and the design method is given in detail. The optimum design of circuit and control parameters including passive filter and repetitive controller allows the hybrid filter to minimize current THD drawn from the utility while minimizing the size and cost of the filter. The validity of the system design is confirmed by experimental results obtained from a 380 V, 20 kVA experimental prototype made in the Lab.
机译:本文介绍了集成到具有电容负载的三相二极管整流器中的并联混合有源电力滤波器的设计和性能。混合滤波器由三相LC滤波器和基于三相电压源PWM转换器组成的三相LC滤波器和小型有源滤波器。无源滤波器设计专注于特征阻抗,谐振频率,对直流母线电压和滤波特性的影响。另外,提出了一种具有差分补偿器的重复控制算法来消除控制回路中的稳态误差,并详细给出设计方法。电路和控制参数包括无源滤波器和重复控制器的最佳设计允许混合滤波器最小化从实用程序汲取的电流THD,同时最小化过滤器的尺寸和成本。通过在实验室中制造的380 V,20 kVA实验原型获得的实验结果,确认了系统设计的有效性。

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