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Distributed series reactance: A new approach to realize grid power flow control.

机译:分布式串联电抗:一种实现电网潮流控制的新方法。

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摘要

The objective of the proposed research is to develop a cost-effective power flow controller to improve the utilization and reliability of the existing transmission, subtransmission, and distribution networks. Over the last two decades, electricity consumption and generation have continually grown at an annual rate of around 2.5%. At the same time, investments in the Transmission and Distribution (T&D) infrastructure have steadily declined. Further, it has become increasingly difficult and expensive to build new power lines. As a result, the aging power-grid has become congested and is under stress, resulting in compromised reliability and higher energy costs. In such an environment it becomes important that existing assets are used effectively to achieve highest efficiency.;System reliability is sacrosanct and cannot be compromised. Utility system planners are moving from radial towards networked systems to achieve higher reliability, especially under contingency conditions. While enhancing reliability, this has degraded the controllability of the network, as current flow along individual lines can no longer be controlled. The transfer capacity of the system gets limited by the first line that reaches the thermal capacity, even when majority of the lines are operating at a fraction of their capacity. The utilization of the system gets further degraded as the lines are operated with spare capacity to sustain overloads under contingencies. Market efficiency is also suboptimal, with congestion on key corridors restricting the low-cost generators to connect to the end users, resulting in higher electricity prices for the consumers.;The proposed technology offers the capability to realize a controllable meshed-network, with the ability to utilize static and dynamic capacity of the grid to provide system-wide benefits, including---increased line and system-capacity utilization, increased reliability, improved operation under contingencies, and rapid implementation. It would allow a broadening of the energy market, permitting owners to direct how energy flows on their wires, and making it easier to connect to new sources of generation.
机译:拟议研究的目的是开发一种具有成本效益的功率流控制器,以提高现有传输,子传输和配电网络的利用率和可靠性。在过去的二十年中,电力消耗和发电量一直以每年约2.5%的速度增长。同时,对输配电基础设施的投资稳步下降。此外,建造新的电力线变得越来越困难和昂贵。结果,老化的电网变得拥挤并承受压力,从而导致可靠性受损和较高的能源成本。在这样的环境中,有效利用现有资产以实现最高效率就变得很重要。系统可靠性是神圣不可侵犯的,不会受到损害。公用事业系统规划人员正在从放射状系统转向联网系统,以实现更高的可靠性,尤其是在紧急情况下。在提高可靠性的同时,这也降低了网络的可控性,因为沿着单个线路的电流不再受到控制。系统的传输容量受到达到热容量的第一条线路的限制,即使大多数线路以其一部分容量运行时也是如此。随着生产线以备用容量运行以在意外情况下维持过载,系统的利用率会进一步下降。市场效率也不是最理想的,主要走廊上的交通拥堵限制了低成本发电机与最终用户的连接,从而为消费者带来了更高的电价。所提出的技术提供了实现可控网状网络的能力,利用网格的静态和动态容量来提供全系统效益的能力,包括增加线路和系统容量的利用率,提高可靠性,在突发情况下改善操作以及快速实施。这将拓宽能源市场,使业主能够控制能源在电线上的流动方式,并使连接新的发电来源变得更加容易。

著录项

  • 作者

    Johal, Harjeet.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Economics General.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 268 p.
  • 总页数 268
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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