Study on the optimal configuration of battery energy storage system in distribution networks considering carbon capture units

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Recent Advances in Electrical & Electronic Engineering Pub Date : 2023-07-14 DOI:10.2174/2352096516666230714154857
Zhenghui Zhao, Zhi-Fei Ma, Yang Wang, Zhihao Hou
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Abstract

The implementation of Battery Energy Storage Systems (BESSs) and carbon capture units can effectively reduce the total carbon emissions of distribution networks. However, their widespread adoption has been hindered by the high investment costs associated with the BESSs and power generation costs of carbon capture units. The objective of this paper is to optimize the location and sizing of BESSs in distribution networks that comprise renewable power plants and coal-fired power units with carbon capture systems. The optimization process aims to minimize the grid’s impact from the configuration while maximizing economic cost savings and the benefits of reducing carbon emissions. A bi-layer optimization model is proposed to determine the configuration of BESSs. The upper layer of the model optimizes the size and operation strategy of the BESSs to minimize the configuration and power generation costs, using YALMIP and CPLEX optimization tools. Carbon emission reduction benefits are considered through deep peak-shaving and carbon tax. The lower layer of the model aims to optimizes the placement of the BESSs to minimize voltage fluctuation and network loss in the power grid. To achieve this, we improved the efficiency of the Non-dominated Sorting Genetic Algorithm II (NSGA-II) to update the BESS’s placement. The IEEE33-bus and IEEE118-bus systems were utilized for simulation and comparison in various scenarios. The findings demonstrate that the proposed configuration method can decrease the cost of investment and power generation. Furthermore, it reduces the degree of node voltage fluctuation and network loss in the distribution network. The study reveals that determining the optimal scale of BESSs can mitigate high energy consumption in carbon capture systems and improve the overall performance of power systems that integrate carbon capture technology and renewable power plants.
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考虑碳捕集单元的配电网电池储能系统优化配置研究
电池储能系统(BESSs)和碳捕获装置的实施可以有效地减少配电网的碳排放总量。然而,它们的广泛采用受到与bess相关的高投资成本和碳捕获装置的发电成本的阻碍。本文的目的是优化由可再生能源发电厂和带有碳捕获系统的燃煤发电机组组成的配电网络中bess的位置和规模。优化过程旨在最大限度地减少配置对电网的影响,同时最大限度地节省经济成本和减少碳排放的好处。提出了一种双层优化模型来确定bess的配置。模型上层利用YALMIP和CPLEX优化工具,对bess的规模和运行策略进行优化,使配置和发电成本最小化。通过深度削峰和碳税来考虑碳减排效益。模型的下层旨在优化bess的布局,以最小化电网中的电压波动和网损。为了实现这一目标,我们改进了非支配排序遗传算法II (NSGA-II)的效率来更新BESS的位置。利用ieee33总线和ieee118总线系统在各种场景下进行了仿真和比较。结果表明,所提出的配置方法可以降低投资成本和发电成本。进一步降低了配电网中节点电压波动的程度和网损。研究表明,确定bess的最优规模可以缓解碳捕集系统的高能耗,提高碳捕集技术与可再生能源发电厂相结合的电力系统的整体性能。
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来源期刊
Recent Advances in Electrical & Electronic Engineering
Recent Advances in Electrical & Electronic Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.70
自引率
16.70%
发文量
101
期刊介绍: Recent Advances in Electrical & Electronic Engineering publishes full-length/mini reviews and research articles, guest edited thematic issues on electrical and electronic engineering and applications. The journal also covers research in fast emerging applications of electrical power supply, electrical systems, power transmission, electromagnetism, motor control process and technologies involved and related to electrical and electronic engineering. The journal is essential reading for all researchers in electrical and electronic engineering science.
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