Compansation of Electrical Voltage in Distribution System by Dynamic Voltage Restorer

Soe Soe Ei Aung, May Phone Thit
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Abstract

Electrical ac power systems consist of generation systems, transmission and distribution networks. The large three phase industrial loads at various distribution and transmission voltages as well as single-phase residential and commercial loads are supplied by the networks. Nowadays, the power quality such as voltage sags/swell, transient interrupts and harmonic distortions in sinusoidal waveforms are concerned with most of the electrical loads. The power quality problems such as voltage sags, swells and harmonics are caused by the widespread using of power electronics devices in power system. In this paper, electrical voltage sags/swells of power quality problems are considered because this problem is one of the most severe disturbances to the industrial equipment of distribution system. Thus, mitigation of these voltages in distribution system is necessary. So, series connected power electronics based device such as Dynamic Voltage Restorer (DVR) is chosen to compensate these voltage for mitigating quickly the voltage sag/swell in the system and restoring the load voltage to the nominal value. For case study, Myaungtagar industrial zone is chosen due to furnaces and large motor drives that cause the common problems such as voltage sag/swell in this system. In this paper, performance analysis of voltage sag/swell compensation of power distribution system with Dynamic Voltage Restorer (DVR) under various fault conditions is carried out. The proposed configuration model uses MATLAB/SIMULINK and the performance of voltage compensation and restoration of load voltage to the nominal value with DVR under various fault conditions is verified by the simulation results.
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动态电压恢复器对配电系统电压的补偿
交流电力系统由发电系统、输配电网络组成。各种配电和输电电压下的大型三相工业负荷以及单相住宅和商业负荷均由电网供电。目前,电压跌落/膨胀、瞬态中断和正弦波形谐波畸变等电能质量问题是大多数电力负荷所关注的问题。由于电力电子设备在电力系统中的广泛应用,造成了电压跌落、电压膨胀、谐波等电能质量问题。由于电压跌落/膨胀问题是配电系统工业设备中最严重的干扰之一,因此本文考虑了电能质量问题。因此,在配电系统中降低这些电压是必要的。因此,选择基于串联的电力电子设备(如动态电压恢复器(DVR))来补偿这些电压,以快速缓解系统中的电压下降/膨胀,并将负载电压恢复到标称值。对于案例研究,选择Myaungtagar工业区是因为该系统中存在导致电压下降/膨胀等常见问题的熔炉和大型电机驱动器。本文对采用动态电压恢复器(DVR)的配电系统在各种故障条件下的电压跌落/膨胀补偿进行了性能分析。该组态模型采用MATLAB/SIMULINK进行仿真,仿真结果验证了DVR在各种故障条件下的电压补偿和负载电压恢复到标称值的性能。
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发文量
10
审稿时长
24 weeks
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