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Design and Implementation of Active Voltage Conditioner in Low-Voltage Distribution System

机译:低压配电系统中有源电压调节器的设计与实现

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One of the main problems in low voltage (LV) distribution system is maintaining voltage magnitude close to the nominal value for sensitive loads such as industrial manufacturing or communication devices. This paper introduces a novel concept of a three-phase Active Voltage Conditioner (AVC) system that is able to compensate voltage sag and swell. The AVC is based on a three-phase voltage source inverter and a three full-bridge voltage-source converters with a common DC-link, which is implemented in this work to overcome the conventional dynamic voltage restorers (DVR). The design and implementation of the proposed AVC concept effectively regulate the load voltage with an ignorable overshoot within just one cycle of grid voltage. The proposed concept is verified in a 5kVA three-phase prototype active voltage conditioner with the control system implemented on a 32-bit floating-point digital signal processor (DSP) TMS320F28377s. The efficacy of the proposed work is demonstrated through comprehensive experimental results.
机译:低电压(LV)分配系统中的主要问题之一是维持接近敏感载荷的标称值的电压幅度,例如工业制造或通信设备。本文介绍了一种能够补偿电压凹槽和膨胀的三相有源电压调节器(AVC)系统的新颖概念。 AVC基于三相电压源逆变器和具有普通DC-Link的三个全桥电压源转换器,其在该工作中实现,以克服传统的动态电压恢复器(DVR)。所提出的AVC概念的设计和实现有效地调节了在电网电压的一个循环内的忽略过冲的负载电压。所提出的概念在5kVA三相原型有源电压调节器中验证,控制系统在32位浮点数字信号处理器(DSP)TMS320F28377S上实现。通过综合实验结果证明了所提出的工作的功效。

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