DVR with Sliding Mode Control to alleviate Voltage Sags on a Distribution System for Three Phase Short Circuit Fault

G. V. Kumar, D. Chowdary
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引用次数: 35

Abstract

Control of most of the industrial loads is mainly based on semiconductor devices, which causes such loads to be more sensitive against power system disturbances. Thus, the power quality problems have gained more interest recently. Voltage sags are mainly caused due to starting of large induction motors, switching of large inductive loads, short circuit faults in transmission and distribution systems and energizing of large transformers. Therefore, different solutions are examined to compensate these sags and to avoid production losses at sensitive loads. Dynamic voltage restorer (DVR) is one of the solutions to realize this goal. For a successful compensation, the DVR must be able to detect the voltage sag and control the inverter to restore the voltage. The Sliding mode control is used for the DVR. Using Sliding mode control to the DVR, additional sag detection method is eliminated. This improves the dynamic response of the DVR and also DVR is able to compensate for any variation in source voltage. In this paper, a DVR with sliding mode control strategy is used to alleviate the voltage sags caused due to faults occurring on the parallel feeders in a three-phase distribution system. The DVR along with the other parts of the distribution system are simulated using MATLAB/SIMULINK.
采用滑模控制的DVR减轻配电系统三相短路故障时电压跌落的影响
大多数工业负载的控制主要基于半导体器件,这使得这些负载对电力系统的干扰更加敏感。因此,电能质量问题近年来受到越来越多的关注。电压跌落主要是由于大型感应电动机的起动、大型感性负载的切换、输配电系统的短路故障和大型变压器的通电引起的。因此,研究了不同的解决方案来补偿这些凹陷,并避免在敏感负载下的生产损失。动态电压恢复器(DVR)是实现这一目标的解决方案之一。对于一个成功的补偿,DVR必须能够检测电压下降,并控制逆变器恢复电压。DVR采用滑模控制。通过对DVR进行滑模控制,消除了额外的凹陷检测方法。这提高了DVR的动态响应,并且DVR能够补偿源电压的任何变化。本文采用一种带滑模控制策略的DVR来缓解三相配电系统中并联馈线故障引起的电压跌落。利用MATLAB/SIMULINK对DVR和配电系统的其他部分进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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