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Power flow controller based on bipolar direct PWM AC/AC converter operation with active load

机译:基于双极直接PWM AC / AC转换器操作的电源流量控制器,有源负载

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The uncontrolled power flow in the AC power system caused by renewable energy sources (restless sources, distributed energy sources), dynamic loads, etc., is one of many causes of voltage perturbation, along with others, such as switching effects, faults, and adverse weather conditions. This paper presents a three-phase voltage and power flow controller, based on direct PWM AC/AC converters. The proposed solution is intended to protect sensitive loads against voltage fluctuation and problems with power flow control in an AC power system. In comparison to other solutions, such as DVR, UPFC, the presented solution is based on bipolar matrix choppers and operates without a DC energy storage unit or DC link. The proposed solution is able to compensate 50% voltage sags, in the case of three-phase symmetrical voltage perturbation, and single phase voltage interruptions. Additionally, by means of a voltage phase control with a range of 60? in each phase, it is possible to control the power flow in an AC power system. The paper presents an operational description, a theoretical analysis based on the averaged state space method and four terminal descriptions, and the experimental test results from a 1 kVA laboratory model operating under active load.
机译:由可再生能源(不安全源,分布式能源),动态负载等引起的交流电源系统中的不受控制的功率流是电压扰动的许多原因之一,以及其他转换效果,故障和不利的天气条件。本文介绍了一种三相电压和电流控制器,基于直接PWM AC / AC转换器。所提出的解决方案旨在保护敏感载荷免受交流电力系统中的电力流量控制的电压波动和问题。与其他解决方案(例如DVR,UPFC)相比,所呈现的解决方案基于双极矩阵切换,并且在没有DC能量存储单元或DC链路的情况下操作。所提出的解决方案能够在三相对称电压扰动和单相电压中断的情况下补偿50%电压凹凸。另外,通过电压相位控制,范围为60?在每个阶段中,可以控制交流电源系统中的功率流。本文提出了一种操作描述,基于平均状态空间方法和四个终端描述的理论分析,以及在主动负荷下操作的1 kVA实验室模型的实验测试结果。

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