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The Impact of Increased Penetration of Photovoltaic Generation on Smart Grids.

机译:光伏发电渗透率的提高对智能电网的影响。

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摘要

With the rapid growth of power systems and the concomitant technological advancements, the goal of achieving smart grids is no longer a vision but a foreseeable reality. Hence, the existing grids are undergoing infrastructural modifications to achieve the diverse characteristics of a smart grid. While there are many subjects associated with the operation of smart grids, this dissertation addresses two important aspects of smart grids: increased penetration of renewable resources, and increased reliance on sensor systems to improve reliability and performance of critical power system components. Present renewable portfolio standards are changing both structural and performance characteristics of power systems by replacing conventional generation with alternate energy resources such as photovoltaic (PV) systems. The present study investigates the impact of increased penetration of PV systems on steady state performance as well as transient stability of a large power system which is a portion of the Western U.S. interconnection. Utility scale and residential rooftop PVs are added to replace a portion of conventional generation resources. While steady state voltages are observed under various PV penetration levels, the impact of reduced inertia on transient stability performance is also examined. The simulation results obtained effectively identify both detrimental and beneficial impacts of increased PV penetration both for steady state stability and transient stability performance.;With increased penetration of the renewable energy resources, and with the current loading scenario, more transmission system components such as transformers and circuit breakers are subject to increased stress and overloading. This research work explores the feasibility of increasing system reliability by applying condition monitoring systems to selected circuit breakers and transformers. A very important feature of smart grid technology is that this philosophy decreases maintenance costs by deploying condition monitoring systems that inform the operator of impending failures; or the approach can ameliorate problematic conditions. A method to identify the most critical transformers and circuit breakers with the aid of contingency ranking methods is presented in this study.;The work reported in this dissertation parallels an industry sponsored study in which a considerable level of industry input and industry reported concerns are reflected.
机译:随着电力系统的快速发展和随之而来的技术进步,实现智能电网的目标不再是愿景,而是可预见的现实。因此,现有的网格正在进行基础结构修改,以实现智能网格的各种特性。尽管有许多与智能电网的运行相关的主题,但本文着眼于智能电网的两个重要方面:增加可再生资源的渗透率,以及增加对传感器系统的依赖以提高关键电力系统组件的可靠性和性能。当前的可再生能源投资组合标准正在通过用诸如光伏(PV)系统等替代能源替代常规发电来改变电力系统的结构和性能特征。本研究调查了光伏系统渗透率增加对稳态性能以及作为美国西部互联网络一部分的大型电力系统的暂态稳定性的影响。增加了公用事业规模和住宅屋顶PV,以替代一部分常规发电资源。虽然在各种PV穿透水平下都可以观察到稳态电压,但还研究了惯性减小对瞬态稳定性能的影响。获得的仿真结果有效地确定了增加PV穿透力对于稳态稳定性和暂态稳定性能的有害影响和有益影响。随着可再生能源资源渗透率的提高以及当前的负载情况,更多的输电系统组件,例如变压器和断路器承受更大的压力和过载。这项研究工作探讨了通过将状态监视系统应用于选定的断路器和变压器来提高系统可靠性的可行性。智能电网技术的一个非常重要的特征是,这种理念通过部署状态监测系统来通知操作人员即将发生的故障,从而降低了维护成本。否则该方法可以改善问题状况。本研究提出了一种通过权变排序方法识别最关键的变压器和断路器的方法。本文所报告的工作与一项行业赞助的研究相平行,其中反映了相当多的行业投入和行业报告的关注点。

著录项

  • 作者

    Eftekharnejad, Sara.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 249 p.
  • 总页数 249
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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