首页> 外文会议>Industrial Electronics Society, 2001. IECON '01. The 27th Annual Conference of the IEEE >A full compensating system for general loads, based on a combination of thyristor binary compensator, and a PWM-IGBT active power filter
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A full compensating system for general loads, based on a combination of thyristor binary compensator, and a PWM-IGBT active power filter

机译:基于晶闸管二进制补偿器和PWM-IGBT有源功率滤波器的组合,适用于一般负载的完整补偿系统

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A full compensating system for distribution networks which is able to eliminate harmonics, correct unbalanced loads and generate or absorb reactive power is presented. The system is based on a combination of a thyristor binary compensator (TBC), and a PWM-IGBT active power filter (APF) connected in cascade. The TBC compensates the fundamental reactive power and balances the load connected to the system. The APF eliminates the harmonics and compensates the small amounts of load unbalances or power factor that the TBC cannot eliminate due to its binary condition. The TBC is based on a chain of binary-scaled capacitors and one inductor per phase. This topology allows, with an adequate number of capacitors, a soft variation of reactive power compensation and a negligible generation of harmonics. The capacitors are switched on when the line voltage reaches its peak value, avoiding inrush currents generation. The inductor helps to balance the load, and absorbs reactive power when required. The APF works by measuring the source currents, forcing them to be sinusoidal. The two converters (TBC and APF) work independently, making the control of the system simpler and more reliable. The system is able to respond to many kinds of transient perturbations in no more than a couple of cycles. The paper analyzes the circuit proposed, the way it works and the results obtained under operation with different types of loads.
机译:提出了一种用于配电网络的完整补偿系统,该系统能够消除谐波,校正不平衡负载并产生或吸收无功功率。该系统基于晶闸管二进制补偿器(TBC)和级联连接的PWM-IGBT有源功率滤波器(APF)的组合。 TBC补偿基本无功功率并平衡连接到系统的负载。 APF消除了谐波并补偿了TBC由于其二进制条件而无法消除的少量负载不平衡或功率因数。 TBC基于一系列二进制比例的电容器和每相一个电感器。这种拓扑结构允许使用足够数量的电容器来实现无功功率补偿的软变化和可忽略的谐波产生。当线路电压达到峰值时,电容器会接通,从而避免产生浪涌电流。电感器有助于平衡负载,并在需要时吸收无功功率。 APF通过测量源电流,迫使它们为正弦波来工作。两个转换器(TBC和APF)独立工作,使系统的控制更简单,更可靠。该系统能够在不超过几个周期的情况下响应多种瞬态扰动。本文分析了所建议的电路,其工作方式以及在不同类型的负载下工作时获得的结果。

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