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Integrated design of electrical distribution systems: Phase balancing and phase prediction case studies.

机译:配电系统的集成设计:相平衡和相预测案例研究。

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摘要

Distribution system analysis and design has experienced a gradual development over the past three decades. The once loosely assembled and largely ad hoc procedures have been progressing toward being well-organized. The increasing power of computers now allows for managing the large volumes of data and other obstacles inherent to distribution system studies. A variety of sophisticated optimization methods, which were impossible to conduct in the past, have been developed and successfully applied to distribution systems.; Among the many procedures that deal with making decisions about the state and better operation of a distribution system, two decision support procedures will be addressed in this study: phase balancing and phase prediction. The former recommends re-phasing of single- and double-phase laterals in a radial distribution system in order to improve circuit loss while also maintaining/improving imbalances at various balance point locations. Phase balancing calculations are based on circuit loss information and current magnitudes that are calculated from a power flow solution. The phase balancing algorithm is designed to handle time-varying loads when evaluating phase moves that will result in improved circuit losses over all load points.; Applied to radial distribution systems, the phase prediction algorithm attempts to predict the phases of single- and/or double phase laterals that have no phasing information previously recorded by the electric utility. In such an attempt, it uses available customer data and kW/kVar measurements taken at various locations in the system. It is shown that phase balancing is a special case of phase prediction.; Building on the phase balancing and phase prediction design studies, this work introduces the concept of integrated design, an approach for coordinating the effects of various design calculations. Integrated design considers using results of multiple design applications rather than employing a single application for a distribution system in need of improvement relative to some system aspect. Also presented is a software architecture supporting integrated design.
机译:在过去的三十年中,配电系统的分析和设计经历了逐步发展。曾经是松散的,很大程度上是临时的程序已经朝着组织良好的方向发展。现在,计算机功能的增强使得可以管理大量数据以及配电系统研究固有的其他障碍。已经开发了过去无法进行的各种复杂的优化方法,并将它们成功地应用于配电系统。在处理有关配电系统的状态和更好运行的决策的许多程序中,本研究将解决两个决策支持程序:相位平衡和相位预测。前者建议在径向分布系统中重新定相单相和双相支路,以改善电路损耗,同时还可以维持/改善各个平衡点位置的不平衡。相位平衡计算基于电路损耗信息和从功率流解决方案计算出的电流大小。相位平衡算法设计用于在评估相位移动时处理随时间变化的负载,这将改善所有负载点上的电路损耗。在径向分布系统中,相位预测算法尝试预测单相和/或双相输电管道的相位,这些相位没有电力公司先前记录的相位信息。在这种尝试中,它使用了可用的客户数据和在系统中各个位置进行的kW / kVar测量。结果表明,相位平衡是相位预测的一种特殊情况。在相位平衡和相位预测设计研究的基础上,这项工作引入了集成设计的概念,这是一种协调各种设计计算效果的方法。集成设计考虑使用多个设计应用程序的结果,而不是针对需要在某些系统方面进行改进的配电系统采用单个应用程序。还介绍了支持集成设计的软件体系结构。

著录项

  • 作者

    Dilek, Murat.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.; Energy.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;能源与动力工程;
  • 关键词

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