Two Stage Generation-Grid-Load-Energy Storage Interactive Optimization Operation Strategy to Promote Distributed Photovoltaic Consumption

Wenhao Zhang, Junyong Wu, Ran Ding, Yinchi Shao, Yi Wang
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引用次数: 7

Abstract

With the construction of new power system with new energy as the main body, large-scale distributed photovoltaic (PV) access to distribution network has caused serious problems such as power flow return and voltage out of limit. Based on game theory and NSGA-II algorithm, a two stage generation-grid-load-energy storage interactive optimization operation strategy to promote distributed PV consumption was proposed. Firstly, Dynamic loadability of distribution network (DLDN) is defined to endow demand response resources in distribution network with time and space characteristics. It provides a “bridge” for the distribution system to promote the two stage optimization of distributed PV local consumption power scheduling and active/reactive power coordination control, and gives the solution method of DLDN. Secondly, a two stage interactive optimization operation framework of generation-grid-load-energy storage is proposed. In the first stage, an electricity trading strategy is formulated based on game theory, which can promote the local consumption of distributed PV and balance the income of supply and demand. In the second stage, the power trading strategy of the first stage is tracked through the active/reactive power coordination control of the distribution system to optimize the operation state of the distribution network. Finally, an example is given to verify the effectiveness of the proposed method.
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促进分布式光伏消纳的两级发电-网负荷-储能交互优化运行策略
随着以新能源为主体的新型电力系统的建设,大规模分布式光伏接入配电网造成了严重的潮流回流、电压超限等问题。基于博弈论和NSGA-II算法,提出了一种促进分布式光伏消纳的两阶段发电-电网-负荷-储能交互优化运行策略。首先,定义了配电网动态负荷,赋予配电网中的需求响应资源以时间和空间特征。为配电系统推进分布式光伏本地用电调度和有功/无功协调控制两阶段优化提供了“桥梁”,并给出了DLDN的解决方法。其次,提出了发电-电网-储能两阶段交互优化运行框架。第一阶段,基于博弈论,制定促进分布式光伏本地消费,平衡供需收益的电力交易策略。第二阶段,通过配电网有功/无功协调控制,跟踪第一阶段的电力交易策略,优化配电网运行状态。最后通过一个算例验证了所提方法的有效性。
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