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Probabilistic voltage sensitivity analysis (PVSA) for random spatial distribution of active consumers

机译:概率电压敏感性分析(PVSA)用于活性消费者的随机空间分布

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The future grid is expected to support many active consumers who will act as prosumers, and schedule their load as well as generation in accordance with real-time electricity prices. The impact of spatially distributed active consumers with rooftop photovoltaics on the distribution system must be quantified for operational planning. Most current studies are scenario-based, and derived results are scenario specific. Determining the impact of multiple active consumers with temporally variable behavior requires investigation of a large number of scenarios, which is computationally complex using current iterative power flow algorithms. This paper presents an upper bound for change in voltage at a particular bus due to change in power at other buses in a radial distribution network. Next, this bound is used to derive the probability distribution of voltage change at a bus due to random behavior of spatially distributed multiple active consumers. Results from the proposed probabilistic voltage sensitivity analysis (PVSA) are validated via traditional scenario based simulation of the IEEE 69 bus test system.
机译:预计未来网格将支持许多活跃的消费者,这些消费者将根据实践,并按照实时电价安排其负荷。必须量化空间分布的活性消费者对分配系统上的屋顶光伏的影响,以进行操作规划。大多数目前的研究是基于方案的,并且派生结果是具体场景。确定多个有源消费者对时间变量行为的影响需要调查大量方案,这是使用电流迭代电力流算法计算复杂的。由于径向分配网络中的其他总线的电力变化,本文提出了特定总线上电压变化的上限。接下来,由于空间分布的多个活动消费者的随机行为,该绑定用于导致总线上的电压变化的概率分布。通过基于IEEE 69总线测试系统的传统场景仿真,验证了所提出的概率电压灵敏度分析(PVSA)的结果。

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