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Investigation of Voltage Unbalance Profile in Low Voltage Electrical Distribution Network with Normal Mode Operation Using MATLAB

机译:利用MATLAB的正常模式操作对低压电气分配网络电压不平衡曲线的研究

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With ever increasing use of semiconductor devices and information technology (ICT) equipment in the industry, homes and offices, power quality is gaining attention to both industry and the electric utility. Power voltage quality cause huge economic losses to businesses all over the world. It is estimated to cost industry and commerce about €100 billion per annum in European Union, since voltage quality problem is one of the major power quality disturbances. This paper presents an investigative a study of the 11/0.4 kV, low voltage electrical distribution network and analyzes voltage unbalance. It recommends an effective method of improving the voltage profile and reducing the voltage unbalance to acceptable standard. The network was modelled using distribution network standard parameters for low voltage distribution network using MATLAB/Simulink sim power system tool box. The simulation results show that the percentage voltage unbalance, correct voltage profile and minimum voltage drop of 0.5 km distribution feeder line is of standard acceptable statutory limit, hence the distribution line operates at optimum performance. However, it is also established that the voltage profile for distribution network feeder lengths of 0.8 km to 5 km for balanced and unbalanced distribution lines from the beginning to the customer terminal of the distribution lengths are less than the acceptable allowable limit of -5 %, of the nominal voltage value, hence voltages are inadmissible for customers use. Moreso, the percentage voltage unbalance, voltage profile and voltage drop on 0.8 km to 5 km distribution feeder line are all less than standard acceptable statutory limit, hence the distribution line operates below optimum performance. It was established that mitigating these problems require the electricity distribution company to install an effective voltage boosting devices along the network lengths in order provide admissible, permissible and normalize end users standard acceptable voltage.
机译:随着在行业,家庭和办公室的半导体器件和信息技术(ICT)设备的使用,电力质量正在关注行业和电力效用。电源电压质量对全世界的企业造成巨大的经济损失。据估计,欧盟每年约1000亿欧元的成本和商业,因为电压质量问题是主要的电能质量障碍之一。本文介绍了11 / 0.4 kV,低压配电网络的研究,分析了电压不平衡。它建议改善电压曲线并将电压不平衡降低到可接受的标准的有效方法。使用Matlab / Simulink SIM电源系统工具盒使用用于低压配电网络的分销网络标准参数进行建模。仿真结果表明,百分比电压不平衡,校正电压曲线和最小电压下降0.5公里分布送料管线是标准的可接受的法定限制,因此配电线在最佳性能下运行。然而,还建立了分配网络馈线的电压型材,从开始到客户终端的平衡和不平衡分布线的平衡和不平衡分配线的电压型材长度为0.8 km至5km的尺寸小于可接受的允许极限-5%,在标称电压值中,因此对客户使用不可受理。 Moreso,百分比电压不平衡,电压曲线和电压下降0.8 km至5公里的分配馈线均小于标准可接受的法定限制,因此配电线路运行下降至最佳性能。建立了减轻这些问题要求电力分配公司沿着网络长度安装有效的电压升压装置,以便提供可接受,允许的和标准化最终用户标准可接受电压。

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