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Development of power flow with distributed generators and reconfiguration for restoration of unbalanced distribution systems.

机译:利用分布式发电机开发潮流并重新配置以恢复不平衡的配电系统。

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摘要

With the increasing interest in distribution automation, distribution power flow is important for applications like VAR planning, switching, state estimation and especially optimization. Typically, a distribution system originates at a substation and continues to a lower voltage for delivery to the customers. There are several tools for transmission system analysis. These tools include Newton Raphson, Gauss Seidel and fast decoupled techniques. These techniques however sometimes fail to converge when applied to distribution systems due to their higher resistance/reactance (R/X) ratio of the lines, making them ill conditioned. Distribution systems typically have a radial topological structure where the loads are not always constant power. With the increase in distributed generation (DG) there is a critical need to develop analysis tools to study the effect they will have on the distribution systems. Also, shipboard power systems are different from terrestrial distribution systems, as they are tightly coupled and have multiple generators. This dissertation focuses on developing a software program to perform the power flow analysis of terrestrial as well as shipboard power systems. Components are modeled considering the mutual coupling of cables and the tightly coupled nature of the ship systems. The algorithm is built and tested on IEEE test cases. The distributed generator is modeled as both a PQ (constant power factor) and a PV (constant voltage) node.; This dissertation also focuses on reconfiguration for restoration of unbalanced distribution systems. Reconfiguration is changing the status (OFF/ON) of switches and reconfiguration for restoration is changing the switch status to maximize the supply to loads that are left unsupplied after fault removal. Methods exist for restoration of distribution systems and can be categorized into heuristics, knowledge based, metaheuristics and intelligent techniques. However, the application of these methods have not considered the unbalanced nature of distribution system operation with mutual coupling. The restoration in this dissertation is achieved using optimization with multiple objectives; that of maximizing the load giving priority to vital loads and minimizing the number of switch operations. Also a restoration scheme for shipboard power systems with an IPS and distributed generation has been developed. Restoration with possible islanding is demonstrated.
机译:随着对配电自动化的兴趣日益浓厚,配电功率流对于诸如VAR规划,切换,状态估计尤其是优化之类的应用非常重要。通常,配电系统始于变电站,并持续降低电压以交付给客户。有几种用于传输系统分析的工具。这些工具包括Newton Raphson,Gauss Seidel和快速解耦技术。但是,由于这些技术的线路的电阻/电抗(R / X)比率较高,因此有时在应用于配电系统时可能无法收敛,从而使它们处于不良状态。配电系统通常具有径向拓扑结构,其中负载并不总是恒定功率。随着分布式发电(DG)的增加,迫切需要开发分析工具来研究它们对配电系统的影响。而且,船上电力系统与地面配电系统不同,因为它们紧密耦合并具有多个发电机。本文的重点是开发一种软​​件程序,以执行地面和舰船动力系统的潮流分析。考虑到电缆的相互耦合以及船舶系统的紧密耦合性质,对组件进行建模。该算法是在IEEE测试用例上构建和测试的。分布式发电机被建模为PQ(恒定功率因数)和PV(恒定电压)节点。本文还着重于重构非平衡配电系统。重新配置正在更改开关的状态(OFF / ON),而用于恢复的重新配置正在更改开关的状态,以最大程度地提供故障排除后未提供的负载的电源。存在用于恢复配电系统的方法,并且可以将其分类为启发式,基于知识的,元启发式和智能技术。但是,这些方法的应用并未考虑具有相互耦合的配电系统运行的不平衡性质。本文的修复是通过多目标优化实现的。最大负载优先考虑重要负载,并最大程度减少开关操作次数。还已经开发了用于具有IPS和分布式发电的舰船动力系统的恢复方案。演示了可能的孤岛恢复。

著录项

  • 作者

    Khushalani, Sarika.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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