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Distributed Generation Allocation For Power Loss Minimization And Voltage Improvement Of Radial DistributionudSystems Using Genetic Algorithmud

机译:分布式发电分配,可最大程度地降低功率损耗并改善径向分布的电压 ud使用遗传算法的系统 ud

摘要

Numerous advantages attained by integrating Distributed Generation (DG) in distribution systems. These advantages include decreasing power losses and improving voltage profiles. Such benefits can be achieved and enhanced if DGs are optimally sized and located in the systems. This theses presents a distribution generation (DG) allocation strategy to improve node voltage and power loss of radial distribution systems using genetic algorithm (GA). The objective is to minimize active power losses while keep the voltage profiles in the network within specified limit. This approach finds optimal DG active power and optimal OLTC position for tap changing transformer. Also uncertainty in load and generation are considered. Thus, in this work, the load demand at each node and the DG power generation at candidate nodes are considered as a possibilistic variable represented by two different triangular fuzzy number. The simulation results shows that reduction of power loss in distribution system is possible and all node voltages variation can be achieved within the required limit if DG are optimally placed in the system. Induction DG placement into the distribution system also give a better performance from capacitor bank placement. In modern load growth scenario uncertainty load and generation model shows that reduction of power loss in distribution system is possible and all node voltages variation can be achieved within the required limit without violating the thermal limit of the system.
机译:通过将分布式发电(DG)集成到配电系统中可以获得许多优势。这些优点包括减少功率损耗和改善电压曲线。如果将DG设置为最佳大小并放置在系统中,则可以实现并增强这些好处。本文提出了一种分布式发电(DG)分配策略,以使用遗传算法(GA)改善径向配电系统的节点电压和功率损耗。目的是使有功功率损失最小化,同时将网络中的电压曲线保持在规定的限制内。该方法为抽头变换变压器找到最佳的DG有功功率和最佳的OLTC位置。还考虑了负载和发电的不确定性。因此,在这项工作中,每个节点的负载需求和候选节点的DG发电被视为由两个不同的三角模糊数表示的可能变量。仿真结果表明,如果将DG最佳放置在系统中,则可以降低配电系统的功率损耗,并且可以在要求的极限内实现所有节点电压的变化。将感应式DG放置在配电系统中的效果也优于电容器组的放置。在现代负载增长场景中,不确定性负载和发电模型表明可以降低配电系统的功率损耗,并且可以在要求的限制内实现所有节点电压的变化而不会违反系统的热限制。

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    Samajpati Dipanjan;

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  • 年度 2014
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