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Modeling and simulation of unbalanced distribution systems for time-domain analysis under different operating conditions

机译:不同操作条件下的时域分析不平衡分配系统的建模与仿真

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In this paper, a comprehensive model of the IEEE 13-node power distribution system is modeled and simulated according to the governing differential equations of the system. The unbalanced nature and mutual coupling of the system are considered. Moreover, different types of loads such as concentrated, distributed loads and capacitor banks are taken into consideration. Various case studies of variable R/X ratio for line branches as well as load factor are investigated. The solution of the power distribution system is compared to a power-flow program and the results are verified with an acceptable range under different R/X and load factor ratios. It is found that the maximum voltage percentage error is less than 1% between the proposed solution and the forward/backward power flow solution. Moreover, the greatest phase error is found to be less than one degree between the two solutions. In general, the maximum voltage percentage error increases with increasing the R/X ratio or load factor.
机译:在本文中,根据系统的控制微分方程建模和模拟IEEE 13节点配电系统的综合模型。考虑了系统的不平衡性质和相互耦合。此外,考虑了不同类型的负载,例如集中,分布式负载和电容器组。研究了线分支的可变R / X比的各种案例研究以及负载因子。将配电系统的解决方案与流程程序进行比较,并且在不同R / x和负载因数比率下通过可接受的范围验证结果。发现,在所提出的解决方案和前进/后向电源流溶液之间,最大电压百分比误差小于1 %。此外,发现最大的相位误差在两个解决方案之间小于一个度。通常,最大电压百分比误差随着r / x比或负载系数的增加而增加。

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