考虑储能全生命周期的新能源电站储能容量优化配置及经济性分析

Z. Yao, Kai Wu, Yu Zhang, Qihui Yan, Junjiao Shi, Jie Sun, Hao Hu, Bin Li, Jilei Ye
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引用次数: 0

摘要

由于新能源输出的不确定性,独立运行的新能源电站往往存在弃电问题。新能源发电与负荷用电量在时间上的差异,使得新能源发电的弃用和部分时期的电力供应不足。新能源电站的储能可以解决这些问题。首先,建立了新能源电站独立运行的支出模型。然后,建立储能全生命周期模型,利用成本电价计算新能源电站的发电成本。然后,制定储能的充放电策略。以新能源电站总支出最小为目标,以满足区域负荷供电和储能的充放电功率为约束,采用遗传算法求解电站配置不同储能时的问题。本文通过仿真分析,比较了新能源电站配置电化学储能、抽水蓄能和压缩空气储能时,千瓦时储能的不同成本和电站的支出。算例表明了新能源电站的经济效益。同时,对影响千瓦时储能成本和电站支出的敏感因素进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Allocation and Economic Analysis of Energy Storage Capacity of New Energy Power Stations Considering the Full Life Cycle of Energy Storage
New energy power stations operated independently often have the problem of power abandonment due to the uncertainty of new energy output. The difference in time between new energy generation and load power consumption makes the abandonment of new energy power generation and the shortage of power supply in some periods. Energy storage for new energy power stations can solve these problems. Firstly, the expenditure model of independent operation of new energy power station is established. Then, the whole life cycle of energy storage is modeled, and the generation cost of new energy power stations is calculated by cost electricity price. Then, formulate the charging and discharging strategy of energy storage. With the goal of minimizing the total expenditure of the new energy power station and the constraint of meeting the charge and discharge power of regional load power supply and energy storage, the genetic algorithm is used to solve the problem when the power station is configured with different energy storage. Through simulation analysis, this paper compares the different cost of kilowatt-hour energy storage and the expenditure of the power station when the new energy power station is configured with electrochemical energy storage, pumped energy storage, and compressed air energy storage. The calculation example shows the economic efficiency of the new energy power station. At the same time, the sensitive factors affecting the cost of kilowatt-hour energy storage and the expenditure of the power station are analyzed.
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