Design of a center-point-clamped AC-AC converter based power-line conditioner

Pankaj Bhowmik, S. Essakiappan, M. Manjrekar
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引用次数: 1

Abstract

A new approach for power line conditioning has been presented in the paper. State of the art line-conditioning devices like Static Voltage Restorer (SVR), Dynamic Voltage Restorer (DVR) and AC-AC power line conditioner offer higher bandwidth and low filter size requirement due to their high switching frequencies. However, commercial utilization of such devices is limited by the voltage blocking capability of power semiconductor devices employed in these converters. Recent literature reports a center-point-clamped converter topology in which the grid voltage is clamped to its midpoint to reduce the voltage stress on the bi-directional switches in the converter by 50%. This paper introduces a line conditioner based on the center-point-clamped ac-ac converter topology. A duty cycle control scheme has also been implemented for feedback control of the line conditioner. Simulation results verify that proposed line conditioner offers superior spectral content, high power transfer efficiency and reduced voltage stress on the bi-directional switches. Furthermore, the control scheme has been shown to provide up to 10% load voltage regulation under dynamic line voltage and loading conditions. Detailed experimental results from a scaled down laboratory prototype rated 500 W, verifying the operation and closed loop control of the proposed power line conditioner have been presented in this paper.
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一种基于中心点箝位AC-AC变换器的电力线调节器的设计
本文提出了一种新的电力线调节方法。静态电压恢复器(SVR)、动态电压恢复器(DVR)和交流-交流电力线调理器等最先进的线路调理设备由于其高开关频率,可提供更高的带宽和低滤波器尺寸要求。然而,这种器件的商业利用受到这些变换器中采用的功率半导体器件的电压阻断能力的限制。最近的文献报道了一种中心点箝位转换器拓扑结构,其中电网电压被箝位到其中点,以减少转换器中双向开关上的电压应力50%。本文介绍了一种基于中心点箝位交流变换器拓扑结构的线路调节器。采用占空比控制方案对线路调节器进行反馈控制。仿真结果验证了所提出的线路调节器具有优越的频谱含量、高功率传输效率和降低双向开关电压应力的优点。此外,该控制方案已被证明在动态线路电压和负载条件下提供高达10%的负载电压调节。本文给出了功率为500w的实验室样机的详细实验结果,验证了所提出的电力线调节器的运行和闭环控制。
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