Optimal voltage profile control and losses minimization of radial distribution feeders

H. Attia
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引用次数: 24

Abstract

The primary function of the power system is to satisfy load and energy requirements for customers with a reasonable assurance of continuity and quality of supply. The electricity sector in all countries is interested in improving system quality not only to achieve legal obligations and standard regulation but also to increase the revenue. Improving system quality leads to increasing electricity sales, which represent a profit to the utility, and contract damage. The appliances and equipments will operate more efficiency during its lifetime which is a return to the customer. Two main items identifying the quality of service were considered that directly affect the system operation besides the utility revenue and also customer satisfaction. Voltage profile control and losses minimization were the two items considered. Owing to the load growth, the utility lies in a criticality due to the increasing voltage drop and losses in addition to the capabilities of the distribution network. This paper introduces a new method to find out the optimal location and quantity of capacitor banks for reactive power compensation. There before a step voltage regulator for voltage profile control is assigned and allocated to achieve the highest benefits for customer load patterns and utility loss reduction. The compensation problem under study is an optimization problem solved using nonlinear programming technique. Appropriate voltage profile control and regulator allocation depends on the sight of the operation engineer and distribution feeder.
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径向配电馈线的最佳电压分布控制与损耗最小化
电力系统的主要功能是满足用户的负荷和能源需求,并合理保证供电的连续性和质量。各国电力部门都对提高系统质量感兴趣,这不仅是为了实现法律义务和标准监管,也是为了增加收入。提高系统质量会增加电力销售,这对公用事业公司来说是一笔利润,同时也会增加合同损失。电器和设备将在其生命周期内更有效地运行,这是对客户的回报。除了公用事业收入和客户满意度外,确定服务质量的两个主要项目被认为直接影响系统运行。电压分布控制和损耗最小化是考虑的两个项目。由于负荷的增长,除了配电网的能力外,由于电压降和损耗的增加,公用事业处于临界状态。介绍了一种确定无功补偿电容器组最佳位置和数量的新方法。在此之前,分配和分配用于电压剖面控制的阶跃电压调节器,以实现客户负载模式和公用事业损失减少的最高效益。所研究的补偿问题是一个用非线性规划技术求解的最优化问题。适当的电压分布控制和调节器分配取决于操作工程师和配电馈线的视线。
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