文章摘要
叶 婷,邓 星,黄 堃,梁加本,张智俊.电动汽车充换储一体化电站的优化调度策略及应用[J].电力需求侧管理,2021,23(4):67-72
电动汽车充换储一体化电站的优化调度策略及应用
Optimal dispatching strategy and application of electric vehicle charge-exchange-storage integrated power plant
投稿时间:2021-03-02  修订日期:2021-05-27
DOI:10. 3969 / j. issn. 1009-1831. 2021. 04. 013
中文关键词: 电动汽车  充换储一体化电站  优化调度策略  目标函数  粒子群算法
英文关键词: electric vehicle  charge -exchange -storage integrated power plant  optimal scheduling strategy  objective function  particle swarm algorithm
基金项目:国家电网有限公司科技项目(SGJS0000DKJS1901020)
作者单位
叶 婷 国网江苏省电力有限公司 南京供电分公司南京 210019 
邓 星 国网江苏省电力有限公司 南京供电分公司南京 210019 
黄 堃 国电南瑞科技股份有限公司南京 211100 
梁加本 国电南瑞科技股份有限公司南京 211100 
张智俊 南京邮电大学南京 210023 
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中文摘要:
      随着电动汽车数目的增加,需要不断提升其能源优化管理策略,以充分发挥电动汽车潜能,实现低碳经济供电的目标。针对含电动汽车的充换储一体化电站,研究其预测能源优化管理问题。首先,基于电动汽车出行链特性分析,采用蒙特卡洛算法对电动汽车负荷量进行预测。然后,针对电动汽车充换储一体化电站、可中断负荷和分布式电站组成的虚拟电厂,以运行成本最小化即经济效益最大化构建综合目标函数,并利用基于改进的粒子群优化算法,对虚拟电厂的运行进行源荷储协同优化调度,以确定电动汽车充放电功率大小、储能电池充放电策略和可中断负荷的调度策略。最后,将该分布式能源优化策略应用到一产业园区中,仿真结果验证了该策略的有效性。
英文摘要:
      With the increase of electric vehicles, it’s necessary to continuously improve the energy optimization management strategies in order to give full play to the potential of electric vehicles and achieve the goal of low - carbon economic power supply.The forecasting energy optimization management problem is studied for the electric vehicle charge-exchange-storage integrated pow-er station. Firstly, the Monte Carlo algorithm is used to predict the loads of electric vehicles based on the analysis of the characteristics of the electric vehicle travel chain. Then, aiming at the virtual power plant composed of the electric vehicle charge-exchange-storage integrated power station, interruptible load and distributed power station, a comprehensive objective function using the improved particle swarm optimization algorithm is built to optimize the virtual power station to minimize the operation cost and maximize the economic benefit. In order to determine the optimal charging and discharging power of the electric vehicle charging and storage integrated power station, the coordinated optimal scheduling of exchange power of electrical vehicle, storage and load is carried out. Finally, the distributed energy optimization strategy is applied to an industrial park, and the simulation results verify the effectiveness of the strategy.
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