Simultaneous Integration of D-STATCOMs and PV Sources in Distribution Networks to Reduce Annual Investment and Operating Costs

Adriana Rincón-Miranda, Giselle Viviana Gantiva-Mora, O. Montoya
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Abstract

This research analyzes electrical distribution networks using renewable generation sources based on photovoltaic (PV) sources and distribution static compensators (D-STATCOMs) in order to minimize the expected annual grid operating costs for a planning period of 20 years. The separate and simultaneous placement of PVs and D-STATCOMs is evaluated through a mixed-integer nonlinear programming model (MINLP), whose binary part pertains to selecting the nodes where these devices must be located, and whose continuous part is associated with the power flow equations and device constraints. This optimization model is solved using the vortex search algorithm for the sake of comparison. Numerical results in the IEEE 33- and 69-bus grids demonstrate that combining PV sources and D-STATCOM devices entails the maximum reduction in the expected annual grid operating costs when compared to the solutions reached separately by each device, with expected reductions of about 35.50% and 35.53% in the final objective function value with respect to the benchmark case. All computational validations were carried out in the MATLAB programming environment (version 2021b) with our own scripts.
在配电网中同时集成d - statcom和光伏电源,以减少年度投资和运营成本
本研究分析了使用基于光伏(PV)源和配电静态补偿器(D-STATCOMs)的可再生能源的配电网络,以便在20年的规划期内最小化预期的年度电网运行成本。通过混合整数非线性规划模型(MINLP)评估pv和d- statcom的分离和同时放置,其二进制部分涉及选择这些器件必须放置的节点,其连续部分涉及功率流方程和器件约束。为了便于比较,采用涡旋搜索算法对该优化模型进行求解。IEEE 33总线和69总线电网的数值结果表明,与每个设备单独达到的解决方案相比,光伏电源和D-STATCOM设备相结合,可最大限度地降低电网年预期运行成本,相对于基准情况,最终目标函数值的预期降低约为35.50%和35.53%。所有的计算验证都是在MATLAB编程环境(版本2021b)中使用我们自己的脚本进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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