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Comparison of Voltage Calculation Techniques for Varying Load Distribution in DG-Integrated Networks

机译:DG-Integrated Networks中用于改变负荷分配的电压计算技术的比较

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Voltage profile of a network is ruled by the network attributes i.e. power flow, load distribution, conductor sizing inter alia. Distributed Generation (DG) impacts the voltage profile and this in turn will impact network devices. This paper explores two different techniques (Method A and Method B) of calculating a voltage profile. Each technique uses a different equation to calculate the change in voltage in a feeder. The techniques are subjected to simulations on a linear, uniformly distributed feeder with a constant R and X per unit length. The impedance of the network is altered to represent varying R and X per unit length along the distance of the feeder. Using a feeder with non-uniform network impedance, the load distribution is varied from a uniform load distribution to a non-uniform load distribution. Here extreme cases on non-uniformly distributed feeders were tested. The aim of the paper is to compare two methods of determining the voltage profile of an MV network with DG connected and quantify the voltage deviation between the calculated and actual voltage profile under varying network conditions. This will determine the accuracy of each method which may influence its application. All simulations were completed using DIgSILENT Powerfactory on a test feeder to verify the accuracy of both techniques (Method A and Method B). The voltage profiles are plotted, providing a visual representation, and the accuracy compared.
机译:网络的电压曲线受网络属性(即功率流,负载分布,导体尺寸等)的支配。分布式发电(DG)会影响电压曲线,进而会影响网络设备。本文探讨了两种不同的计算电压曲线的技术(方法A和方法B)。每种技术使用不同的方程式来计算馈线中的电压变化。在线性,均匀分布的馈线上对这些技术进行了仿真,每单位长度的R和X恒定。改变网络的阻抗,以表示沿着馈线的距离每单位长度的R和X变化。使用具有不均匀网络阻抗的馈线,负载分布会从均匀负载分布变为不均匀负载分布。在此测试了非均匀分布馈线的极端情况。本文的目的是比较两种确定连接DG的MV网络的电压曲线的方法,并量化在变化的网络条件下计算出的电压曲线与实际电压曲线之间的电压偏差。这将确定可能影响其应用的每种方法的准确性。使用DIgSILENT Powerfactory在测试进纸器上完成所有模拟,以验证两种技术(方法A和方法B)的准确性。绘制了电压曲线,提供了直观的表示,并比较了精度。

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