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Optimal allocation of wind-based DG based on analytical expression with time-varying combined generation-load models in distribution networks

机译:基于解析表达式和时变组合发电-负荷模型的风电DG最优分配

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This study presents an analytical expressions for finding optimal size and corresponding optimum location of wind-based distributed generation (DG) units in a radial distribution network. DG units are allocated in order to achieve the highest loss reduction in distribution networks. In most DG planning studies a constant or voltage-dependent load model is considered. Therefore, this study considers several different types of time-varying voltage-dependent load models to identify the penetration level of wind-based DG (wind DG) units in a radial distribution system. This presented analytical expression first size wind DG unit, which can inject both active and reactive powers. This is based on derivation of a multi-objective index (IMO) including two indexes of active power loss (ILP) and reactive power loss (ILQ). Then, while considering time-varying load models and probabilistic wind DG generation this expression allocate wind DG. To reveal the validity of the presented analytical method, a 69-bus IEEE radial distribution test system has been examined. The results demonstrate that load models can significantly affect the optimal size and location of DG resources, and allocation of wind DG with each load model has its own penetration level.
机译:这项研究提出了一种解析表达式,用于寻找径向分布网络中基于风的分布式发电(DG)单元的最佳尺寸和相应的最佳位置。分配DG单位是为了最大程度地减少配电网络中的损耗。在大多数DG规划研究中,考虑的是恒定或电压相关的负载模型。因此,本研究考虑了几种不同类型的随时间变化的电压相关负载模型,以识别径向配电系统中基于风的DG(风力DG)单元的穿透水平。该解析表达式表示第一级风力发电DG单元,它可以注入有功功率和无功功率。这基于多目标指标(IMO)的推导,该指标包括有功功率损耗(ILP)和无功功率损耗(ILQ)的两个指标。然后,在考虑时变负载模型和概率风DG的生成时,此表达式分配风DG。为了揭示所提出的分析方法的有效性,已经研究了69总线IEEE径向分布测试系统。结果表明,负荷模型会极大地影响DG资源的最佳大小和位置,并且每种负荷模型对风DG的分配都有其自己的渗透水平。

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