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Maximizing renewable energy penetration through distribution network reconfiguration using mixed-integer conic programming

机译:通过使用混合整数圆锥编程重新配置配电网络,最大程度地提高可再生能源的渗透率

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This paper presents a model to maximize the renewable energy penetration level in reconfigurable radial distribution system when renewable generation and load profile are hardly matched. By means of variable substitution and relaxation method, the original mixed-integer nonlinear programming model can be transformed into a mixed-integer conic programming model, which could guarantee a global optimal solution with better computational efficiency. Different sizes of DG units under different load levels are considered to evaluate the performance of the proposed model and method, and two distinct types of system have been tested. Case study results show the efficiency of the method and an optimal renewable energy penetration level is obtained.
机译:本文提出了一个模型,当可再生能源的发电量和负荷曲线难以匹配时,可重构径向分配系统中的可再生能源渗透水平将最大化。通过变量替换和松弛方法,可以将原始的混合整数非线性规划模型转换为混合整数圆锥规划模型,从而可以保证全局最优解,并且计算效率更高。考虑在不同负载水平下使用不同尺寸的DG装置来评估所提出的模型和方法的性能,并测试了两种不同类型的系统。案例研究结果表明该方法的有效性,并获得了最佳的可再生能源渗透水平。

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