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Optimal Location of DGs in DC Power Grids Using a MINLP Model Implemented in GAMS

机译:使用GAMS中实现的MINLP模型在直流电网中优化DG的位置

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This paper addresses the problem of optimal location and sizing of distributed generators (DGs) in direct-current (dc) power grids by using a mixed-integer nonlinear programming (MINLP) formulation. The reduction of the power losses in all branches of the network are considered as the objective function; while the restrictions are the power balance, voltage regulation, maximum penetration and maximum distributed generation units available. The general algebraic modeling system (GAMS) is selected as nonlinear optimizing package to solve this problem; besides, a small numerical example of energy production is introduced to illustrate the usability of using GAMS. Finally, a 21-node dc grid with two ideal generators, and multiple constant power loads, is used as test system.
机译:本文通过使用混合整数非线性规划(MINLP)公式解决了直流(dc)电网中分布式发电机(DG)的最佳位置和尺寸问题。将网络所有分支中的功率损耗的减少视为目标函数;而限制包括功率平衡,电压调节,最大穿透力和可用的最大分布式发电单元。选择通用代数建模系统(GAMS)作为非线性优化程序包来解决该问题;此外,还介绍了一个较小的能源生产数值示例,以说明使用GAMS的可用性。最后,将一个具有两个理想发电机和多个恒定功率负载的21节点直流电网用作测试系统。

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