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Voltage and reactive power regulation by photovoltaics in distribution systems.

机译:配电系统中光伏发电对电压和无功功率的调节。

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摘要

This research focuses on the design and implementation of two novel controllers within rooftop photovoltaic (PV) inverters. The main objective of the first control scheme is to eliminate the voltage violation (induced voltage rise due to reverse power flow) and to maintain the voltages within acceptable bounds, at essentially no extra investment cost to the PV owner. The second controller can significantly reduce real energy losses in the distribution feeder and reactive energy demand at the substation. Besides, reducing reactive demand at substation leads to loss reduction of substation transformer and transmission network. It can also relieve congestion in transmission network and improve the voltage stability. A significant advantage of the proposed controllers is that they do not require communication or cooperation with other PV inverters. The control objectives are attained by exploiting the inherent reactive power capability of the inverters and the dispatch of their reactive power is calculated in an autonomous fashion. In this context, important theoretical aspects of control design are investigated and a general framework for stability analysis of these types of systems is established. In addition, this work reports on the development of a distribution test feeder with smart-grid functionality. The test feeder is based on an actual distribution feeder. Case studies involving simulations of real (the developed feeder) and realistic distribution feeders with hundreds of households and their appliances modeled in high detail are performed to study the impacts of the proposed controllers on the distribution system. It is shown that implementation of these controllers could have a significant beneficial impact upon the efficiency and operation of the power grid.
机译:这项研究的重点是屋顶光伏(PV)逆变器中两个新型控制器的设计和实现。第一种控制方案的主要目标是消除电压违规(由于反向功率流引起的感应电压上升)并将电压保持在可接受的范围内,而对光伏所有者而言基本上没有额外的投资成本。第二个控制器可以显着减少配电馈线中的实际能量损失和变电站的无功电能需求。此外,减少变电站的无功需求还可以减少变电站变压器和传输网络的损耗。它还可以缓解传输网络中的拥塞并提高电压稳定性。所提出的控制器的显着优点是它们不需要与其他PV逆变器进行通信或协作。通过利用逆变器的固有无功功率能力来实现控制目标,并以自主方式计算其无功功率的分配。在这种情况下,研究了控制设计的重要理论方面,并建立了对这些类型的系统进行稳定性分析的通用框架。此外,这项工作还报告了具有智能电网功能的配电测试馈线的开发。测试进纸器基于实际的分配进纸器。案例研究涉及对具有数百个家庭的真实(已开发的馈线)和现实的馈线馈线进行仿真,并对其​​电器进行了详细建模,以研究拟议的控制器对配电系统的影响。结果表明,这些控制器的实施可能会对电网的效率和运行产生重大的有益影响。

著录项

  • 作者

    Jahangiri, Pedram.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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