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首页> 外文期刊>International journal of electrical power and energy systems >Phase unbalance and PAR constrained optimal active and reactive power scheduling of Virtual Power Plants (VPPs)
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Phase unbalance and PAR constrained optimal active and reactive power scheduling of Virtual Power Plants (VPPs)

机译:虚拟发电厂(VPPS)的相位不平衡和PAR限制最佳主动和无功功率调度

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摘要

In near future, the integration of unknown and unpredictable quantity of Electric Vehicles (EVs) can violate reliable and quality power service of distribution system. In spite of that, ability of simultaneously regulate active and reactive power by Plug-in-Hybrid Electric Vehicles (PHEVs) in quick response time, without affecting the batteries can help to ensure reliable and quality power service in distribution system. This paper investigates the optimal active and reactive power scheduling of PHEVs and Distributed Generations (DGs) in Virtual Power Plants (VPPs), considering unbalance and Peak-to-Average Ratio (PAR) constraints. To compute stochastic model of PHEVs, we considers dynamic nature of driving pattern based on NHTS 2017 data. The proposed approach is implemented on IEEE-25 bus unbalanced distribution system. The developed planning and operational investigation of VPPs also presents dependencies of cost and losses in terms of Unbalance factor and PAR.
机译:在不久的将来,未知和不可预测的电动汽车数量(EVS)的整合可以违反可靠和质量的配电系统。尽管如此,在快速响应时间内同时调节激活和无功功率的能力和无功功率,而不会影响电池可以帮助确保分配系统中可靠和质量的电力服务。本文研究了虚拟发电厂(VPP)中PHEV和分布代(DGS)的最佳主动和无功率调度,考虑不平衡和峰值平均比率(PAR)约束。为了计算PHEV的随机模型,我们认为基于NHTS 2017数据的驾驶模式的动态性质。所提出的方法是在IEEE-25总线不平衡分配系统上实施的。对VPP的发达的规划和运营调查还提出了在不平衡因子和损失方面的成本和损失的依赖。

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