首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Optimal allocation for combined heat and power system with respect to maximum allowable capacity for reduced losses and improved voltage profile and reliability of microgrids considering loading condition
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Optimal allocation for combined heat and power system with respect to maximum allowable capacity for reduced losses and improved voltage profile and reliability of microgrids considering loading condition

机译:相对于减少损耗的最大允许容量和考虑负载条件的微电网的最大允许容量的最佳分配和微电网的可靠性

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This paper presents a method that uses particle swarm optimization to select the optimal allocation of a combined heat and power system that considers the maximum allowable capacity with the aim of reducing losses, improving the voltage profile and reliability of microgrids considering networks loading condition. Decision variables are optimal location and capacity of the combined heat and power systems. The location and maximum capacity of the combined heat and power system were specified in a way to reduce losses, improve the voltage profile, reliability improvement as energy not supplied reduction and maintain the operating constraints. The method is applied to 84- and 32-bus standard microgrids. Capability of the proposed method is proved in obtained results which demonstrated a significant enhancement in voltage profile and a decrease in power losses and customer's energy not supplied as reliability improvement. Minimum microgrid losses can be achieved with considering these constraints. The power loss, minimum voltage and reliability is improved 43.9%, 3,4% and 80.31% for 84 bus network and 72%, 6.2% and 83.6% for 32 us network, respectively by optimal combined heat and power systems allocation. Also, the superiority of the particle swarm optimization is confirmed in comparison with the genetic algorithm. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种方法,它使用粒子群优化来选择综合热量和电力系统的最佳分配,该发电系统考虑了考虑网络负载条件的微电网的电压曲线和可靠性的最大允许容量。决策变量是组合热电系统的最佳位置和容量。组合热量和电力系统的位置和最大容量以减少损耗的方式指定,改善电压曲线,可靠性改善,因为不能减少能量并保持操作约束。该方法应用于84-和32母线标准微电网。在获得的结果中证明了该方法的能力,该结果证明了电压曲线的显着增强,并且功率损耗降低,并且客户的能量不能作为可靠性改进。考虑到这些约束,可以实现最小微电网损耗。通过最佳组合的热量和电力系统分配,84总线网络的功率损耗,最低电压和可靠性可提高84总线网络的43.9%,3,4%和80.31%,32%,6.2%和83.6%。而且,与遗传算法相比,确认了粒子群优化的优越性。 (c)2020 elestvier有限公司保留所有权利。

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