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Optimal size and location of shunt capacitors on distribution feeders using the reduction of PPL and EL.

机译:通过减少PPL和EL来优化配电馈线上并联电容器的尺寸和位置。

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摘要

Shunt capacitors are installed at primary feeders in electric power distribution systems to improve voltage profiles and the power factor as well as to reduce power losses generated by the flow of reactive power in the system. Furthermore, increasing the capacity of the distribution system by released KVA is another objective. Reducing peak power and energy losses, improving the power factor and keeping the voltage profile within the maximum and minimum permissible range (+/- 10% of the nominal voltage) providing that the voltage drop on the feeder is within the allowable value (5% of the voltage value) are investigated in this work. The benefits are achieved through the proper selection of capacitors by finding the optimal location and compensation levels as well as the maximum net dollar savings due to optimized shunt capacitor installation. The optimization technique used is based on an objective function that takes into account the maximum net dollar savings due to the reduction of peak power and energy losses while deducting the cost of the capacitor bank installation. The method is simple and does not require sophisticated optimization techniques. The optimal capacitor location and compensation level problem is solved using the Optimal Reduction of Peak Power and Energy Losses (ORPPL& EL). Practically, feeders and distributed loads are non-uniform and their models have to be converted to uniform using the base resistance technique. The reduction loss formula for determining the optimum location and compensation level of the capacitor banks considering an end-load on the uniform feeders is used. Analysis of optimal reduction of OPPL & EL is carried out for three different values of fixed end load reactive current using one to five capacitors. Results of optimal location and size of shunt capacitors, maximum net savings, improvements in voltage drop, power factor and released KVA are obtained and evaluated using a realistic test feeder system. The consequences of the changes in cost coefficients, the load growth and the installation of two capacitors on a realistic distribution feeder are studied and presented from an economical point of view to decide whether a relocation scheme is required or not.
机译:并联电容器安装在配电系统的主馈线上,以改善电压曲线和功率因数,并减少系统中无功功率流产生的功率损耗。此外,通过发布的KVA增加分配系统的容量是另一个目标。降低峰值功率和能量损耗,提高功率因数,并使电压曲线保持在最大和最小允许范围内(额定电压的+/- 10%),前提是馈线上的电压降在允许值(5%)内电压值的最大值)在这项工作中进行了研究。通过找到最佳位置和补偿水平以及通过优化并联电容器安装而节省的最大净成本,可以通过正确选择电容器来获得好处。所使用的优化技术基于目标函数,该目标函数考虑了由于减少峰值功率和能量损耗而导致的最大净美元节省额,同时还减少了电容器组安装成本。该方法很简单,不需要复杂的优化技术。最佳的电容器位置和补偿水平问题可通过最佳降低峰值功率和能量损耗(ORPPL&EL)来解决。实际上,馈线和分布式负载是不均匀的,必须使用基本电阻技术将它们的模型转换为均匀的。使用减少损耗公式来确定电容器组的最佳位置和补偿水平,并考虑均匀馈线上的终端负载。使用1到5个电容器对三种不同的固定端负载无功电流值进行了OPPL和EL最佳降低的分析。使用实际的测试馈线系统,可以获得并评估了并联电容器的最佳位置和尺寸,最大的净节省,电压降,功率因数和释放的KVA改善的结果。研究成本系数变化,负载增长以及在实际的配电馈线上安装两个电容器的后果,并从经济角度出发,以决定是否需要重新安置方案。

著录项

  • 作者

    Milad, Houssen Salh.;

  • 作者单位

    Dalhousie University (Canada).;

  • 授予单位 Dalhousie University (Canada).;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 非洲史;
  • 关键词

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