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Evaluation of rooftop photovoltaic allocation strategies of hosting capacity analysis in low-voltage grid

机译:低压网格托管能力分析屋顶光伏分配策略评价

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To prevent the performance degradation of a low-voltage distribution grid, in dealing with large-scale rooftop photovoltaic penetration, a hosting capacity analysis needs to be provided. Since accuracy is a necessity in determining the hosting capacity, an evaluation of the rooftop photovoltaic allocation strategies concerning its accuracy is required. Therefore, the objective of this work is to provide a study of rooftop photovoltaic allocation strategies evaluation of hosting capacity analysis in the low-voltage distribution grid. To consider the actual issues, a real low-voltage distribution grid from Indonesia is employed. Over/undervoltage and feeder operating power factor are assigned as the operational performance limits considered for determining the hosting capacity. This work begins with assessing six possible scenarios concerning rooftop photovoltaic distribution flow direction. The results show that the feeder operating power factor is observed as the most restrictive limit. These also indicate that several distinct locations must be considered to develop allocation strategies. According to these results, three LDCRPA (locational dependence constrained rooftop photovoltaic allocation) strategies are developed, including strategy with null locational dependence, two locational dependences, and three locational dependences. Furthermore, these strategies are employed to determine the rooftop photovoltaic hosting capacities, and the accuracy assessment is applied. The results show that, with a tolerance value of 0.09, the strategy considering two locational dependences generates the highest accuracy of 0.952381 compared with the other strategies.
机译:为防止低压配电电网的性能劣化,在处理大规模的屋顶光伏渗透时,需要提供托管能力分析。由于精度是确定托管能力的必要性,因此需要对其精度的屋顶光伏分配策略进行评估。因此,这项工作的目的是提供对低压分布电网托管能力分析的屋顶光伏分配策略研究。要考虑实际问题,采用来自印度尼西亚的实际低压分布网格。超过/欠压和馈线操作功率因数被分配为用于确定托管能力的操作性能限制。这项工作始于评估六个可能的方案,涉及屋顶光伏分配流动方向。结果表明,观察到进料器工作功率因数作为最严格的极限。这些还表明必须考虑几个不同的位置来开发分配策略。根据这些结果,开发了三个LDCRPA(位置依赖约束屋顶光伏分配)策略,包括具有空的位置依赖性的策略,两个位置依赖和三个位置依赖性。此外,采用这些策略来确定屋顶光伏托管能力,并应用精度评估。结果表明,具有0.09的公差值0.09,考虑两个位置依赖的策略与其他策略相比产生0.952381的最高精度。

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