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V-I Controllability-Based Optimal Allocation of Resources in Smart Distribution Systems

机译:智能配送系统中基于V-I可控性的资源最优分配

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摘要

The use of distributed generators (DGs) has increased in the past decade and projections indicate that penetration will further increase. In this scenario, with the improvements in power-electronics-based converters, the DG units have the potential to effectively resolve voltage/current control issues in low-voltage distribution systems. In this paper, a new probabilistic index is defined to measure the controllability of voltages and currents in the buses and lines of distribution systems. Using this index greatly facilitates the analysis and measurement of voltage/current controllability levels of distribution systems. Different types of DGs are allocated in the system to optimize the voltage/current controllability by using the defined index. The results are compared with those obtained through the conventional approach of DG allocation, which is based on the minimization of energy losses. A new combined index is defined to include both V-I controllability and energy losses. Several sensitivity studies are then performed to show the effect of the penetration level of different types of DGs on the proposed indices.
机译:在过去的十年中,分布式发电机(DG)的使用有所增加,并且预测表明普及率将进一步增加。在这种情况下,随着基于电力电子转换器的改进,DG单元有可能有效解决低压配电系统中的电压/电流控制问题。在本文中,定义了一种新的概率指标来测量配电系统的总线和线路中电压和电流的可控性。使用该指数极大地方便了配电系统的电压/电流可控性水平的分析和测量。系统中分配了不同类型的DG,以通过使用定义的索引来优化电压/电流可控性。将结果与通过常规DG分配方法获得的结果进行比较,后者基于最小化能量损失。定义了一个新的组合索引,以同时包括V-1可控性和能量损失。然后进行了几项敏感性研究,以显示不同类型DG的渗透水平对建议指标的影响。

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