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Approaches To Integrating A High Penetration Of Solar PV and CPV Onto The Electrical Grid.

机译:将高穿透率的太阳能PV和CPV集成到电网的方法。

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摘要

The United States has ample potential renewable energy resources, especially in wind and solar having a combined 15,000 Gigawatts of potential capacity.;For the past 30 years, California has led the nation in promoting and using energy efficiency programs and has led the nation with the most aggressive Renewable Portfolio Standard (RPS) goals. Energy efficiency and demand response programs are key strategies for addressing climate change and meeting AB 32 (California's 33% RPS law). RPS goals have been adopted by 43 states that require on average 20% of energy delivered to customers by 2020 by from renewable resources.;Solar cost reductions, increasing cost of traditional resources, and Renewable Portfolio Standards have created the possibility of significant levels of distributed solar generation being installed on the grid and specifically, the distribution system. Federal law requires grid modernization to enable an increased dependency on variable and distributed energy resources. This means that existing market and grid control systems, based on traditional centralized resources and one-way distributed power flows, require new operational paradigms, systems architectures and market structures. California's utility rate design and the NEM program for rooftop solar will also require future changes.;Land use challenges, both local and remote, may lead to new applications of installing solar PV on water. Studies performed by the California Transmission Planning Group (CTPG) have shown the proposed "high potential" transmission upgrades may be insufficient, by themselves, to allow California to meet its 33% RPS goal. Because integrating a high penetration of distributed resources on to the distribution network is evolving with its own unique challenges, a floating water-borne solar PV design is discussed to assist in bridging the gap to assist in meeting RPS goals, energy efficiency goals and the Governor's goal to achieve 12,000MW of distributed generation in California. The floating water-borne PV system is capable of installation on waste water treatment plant (WWT) settling ponds. California has more than 800 WWT plants and estimates predict floating water-borne PV on WWT ponds could potentially generate greater than 1000 MW without the need to build additional transmission.
机译:美国拥有丰富的潜在可再生能源,特别是在风能和太阳能领域,潜在能力总计达15,000吉瓦。;在过去30年中,加利福尼亚州一直在推动和使用能源效率计划方面处于全国领先地位,并在能源效率方面处于领先地位最积极的可再生能源投资组合标准(RPS)目标。能源效率和需求响应计划是解决气候变化和达到AB 32(加利福尼亚州33%RPS法)的关键策略。 RPS目标已被43个州采用,这些州到2020年平均需要可再生资源向客户提供20%的能源;太阳能成本的降低,传统资源成本的增加以及可再生能源投资组合标准已创造了很大程度的分布式能源供应可能性太阳能发电安装在电网上,特别是配电系统上。联邦法律要求电网现代化,以增加对可变和分布式能源的依赖。这意味着基于传统的集中式资源和单向分布式潮流的现有市场和电网控制系统需要新的运营模式,系统架构和市场结构。加州的公用事业费率设计和屋顶太阳能的NEM计划也将需要未来的改变。本地和偏远地区的土地使用挑战可能会导致在水上安装太阳能PV的新应用。加利福尼亚传输计划小组(CTPG)进行的研究表明,提议的“高潜力”传输升级本身可能不足以使加利福尼亚实现其33%的RPS目标。由于将高度分散的分布式资源集成到配电网络中正面临着自身独特的挑战,因此,我们讨论了浮动水上太阳能光伏设计,以弥合差距,以帮助实现RPS目标,能效目标和州长的目标。目标是在加利福尼亚实现12,000MW的分布式发电。浮动式水基光伏系统可安装在废水处理厂(WWT)的沉淀池上。加利福尼亚州拥有超过800座WWT电厂,据估计,在WWT池塘上漂浮的水基光伏发电量可能会产生1000 MW以上,而无需增加额外的输电能力。

著录项

  • 作者

    Hill, Steven Craig.;

  • 作者单位

    University of California, Merced.;

  • 授予单位 University of California, Merced.;
  • 学科 Engineering Environmental.;Engineering Electronics and Electrical.;Alternative Energy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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