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Economic Feasibility Analysis of User-Side Battery Energy Storage Based on Three Electricity Price Policies

机译:基于三次电价政策的用户侧电池储能的经济可行性分析

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With the continuous development of energy Internet, the demand for distributed energy storage is increasing day by day. The high cost and unclear benefits of energy storage system are the main reasons affecting its large-scale application. Firstly, a general energy storage cost model is established to calculate and analyze the energy storage costs of three types of batteries. Then, the user side energy storage benefit sources are analyzed. Starting from the three modes of peak-valley arbitrage, maximum demand management and reactive power regulation service corresponding to time-of-use price, two-part price and reactive power price adjustment electricity charge, an optimization model of energy storage system operation considering optimized load characteristics is proposed. Taking the revenue maximization within the monthly scheduling cycle of the energy storage system as the objective function, the optimization of charging and discharging in each period of user side energy storage system is studied. Combined with the engineering practice, the hybrid integer linear programming was used to solve the optimization model, and the calculation example was used to test and compare the energy storage cost under different batteries and the net user side income before and after the installation of energy storage. Meanwhile, the influence of energy storage cost and various electricity price policies on the economic benefit of energy storage on the user side were analyzed.
机译:随着能源互联网的持续发展,对分布式能源储存的需求日益增加。能量存储系统的高成本和不明确的益处是影响其大规模应用的主要原因。首先,建立了一般能量储存成本模型来计算和分析三种类型的电池的能量储存成本。然后,分析了用户侧能量存储益处源。从三种模式开始,最大需求管理和无功功率调节服务对应于使用时间价格,两部分价格和无功价格调整电费,考虑优化的能量存储系统操作的优化模型提出了负载特性。在能量存储系统的月度调度周期内以目标函数的每月调度周期中的收益最大化,研究了在用户侧能量存储系统的每个时段中的充电和放电的优化。结合工程实践,使用混合整数线性规划来解决优化模型,并且计算示例用于测试和比较在安装能量存储之前和之后的不同电池下的能量储存成本和网络用户侧收入。同时,分析了能量储存成本的影响和各种电价政策对用户侧的能量存储经济效益的影响。

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