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Stochastic Expansion Planning of Various Energy Storage Technologies in Active Power Distribution Networks

机译:各种能量存储技术在有源配电网络中的随机膨胀规划

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摘要

This work aims to minimize the cost of installing renewable energy resources (photovoltaic systems) as well as energy storage systems (batteries), in addition to the cost of operation over a period of 20 years, which will include the cost of operating the power grid and the charging and discharging of the batteries. To this end, we propose a long-term planning optimization and expansion framework for a smart distribution network. A second order cone programming (SOCP) algorithm is utilized in this work to model the power flow equations. The minimization is computed in accordance to the years (y), seasons (s), days of the week (d), time of the day (t), and different scenarios based on the usage of energy and its production (c). An IEEE 33-bus balanced distribution test bench is utilized to evaluate the performance, effectiveness, and reliability of the proposed optimization and forecasting model. The numerical studies are conducted on two of the highest performing batteries in the current market, i.e., Lithium-ion (Li-ion) and redox flow batteries (RFBs). In addition, the pros and cons of distributed Li-ion batteries are compared with centralized RFBs. The results are presented to showcase the economic profits of utilizing these battery technologies.
机译:这项工作旨在尽量减少操作的历时20年的费用,其中包括运营电网的成本安装可再生能源(光伏系统)以及储能系统(电池),除了成本并且充电和电池的放电。为此,我们提出了一个智能配网长期规划的优化和扩展框架。二阶锥规划(SOCP)算法被用在这项工作中的功率流方程建模。最小化的计算依据的年(Y),四季(S),周(d)的日子,这一天(t)的时间,不同的方案基础上的能源,其生产(C)的使用。一个IEEE 33总线均衡分布试验台被利用来评估性能,效率和所提出的优化和预测模型的可靠性。数值研究是在两个在目前的市场,即,锂离子(Li离子)和氧化还原液流电池(区域渔业机构)最高性能的电池的进行。此外,专业人士和分布式锂离子电池的缺点与集中区域渔业机构进行比较。结果呈现,以展示利用这些电池技术的经济效益。

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