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Battery Storage System Planning in an Academic Campus Distribution Network

机译:学术校园配送网络中的电池存储系统规划

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Energy storage such as Battery Energy Storage System (BESS) is used in electrical power networks to improve the flexibility in its operation. They can store energy during one time instance and discharge when required. With ongoing research, BESS is expected to have reduced cost and higher energy density, making it a promising storage option in future. BESS need to be of proper size and located at appropriate place so that the network operation cost is minimal and all operational constraints are satisfied. In this work, optimal location and size of lead acid and lithium ion BESS is determined for the academic campus distribution network of Indian Institute of Technology Kharagpur using Genetic Algorithm with embedded module for optimal power flow. The main objective of this work is to mathematically formulate optimization function to minimize the investment and operation-maintenance cost of BESS as well as the net operation cost of the system. This is followed by the analysis to verify the performance with and without BESS in the network. The simulation results show that lithium ion BESS is economically effective in reducing the overall operation cost of the network by reducing energy and demand charges.
机译:诸如电池储能系统(BESS)的储能存储器用于电力网络,以提高其操作的灵活性。他们可以在一次性实例期间存储能量并在需要时放电。随着正在进行的研究,贝斯预计将降低成本和更高的能量密度,使其成为未来有前途的存储选项。 BESS需要具有适当的尺寸并位于适当的地方,以便网络运行成本最小,并且满足所有操作约束。在这项工作中,利用具有嵌入模块的遗传算法,确定了印度工业研究所的学术校园分配网络,利用嵌入式模块的遗传算法确定了铅酸和锂离子二丝的最佳位置和尺寸。这项工作的主要目的是在数学上制定优化功能,以最大限度地减少BESS的投资和操作维护成本以及系统的净运行成本。接下来是分析,以验证在网络中使用和不使用BESS的性能。仿真结果表明,通过减少能量和需求充电来降低网络的整体运营成本,锂离子峰值是在经济上有效的。

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