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A framework to measure the technical, economic, and rate impacts of distributed solar, electric vehicles, and storage

机译:衡量分布式太阳能电动汽车和储存的技术,经济和速率影响的框架

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摘要

This study explores the joint impacts across the power system of distributed energy resources (DER) that could be deployed in utility distribution systems through an analysis of generation, transmission, and distribution expansion and costs driven by DER adoption. We identify six adoption scenarios that combine deployment levels of rooftop solar photovoltaic modules (PV), electric vehicle charging (EV), and battery storage in residential and commercial customers connected to representative feeders in Indiana by 2025 and 2040. Indiana is a good proxy for many U.S. states with low current DER adoption but potentially high future growth. The economic value of DER is assessed by developing capacity expansion and power flow analysis of the generation and distribution segments, respectively, under future hourly demand assumptions based on each adoption scenarios. Results for the distribution system power flow simulations show that voltage violations are relatively rare. Voltage violations can be mitigated at a very low cost using a combination of smart inverters in future rooftop PV systems and voltage adjustments in the feeder heads. Line loading issues are minimal, with only 0.2% of simulation hours showing loading levels above 100% of capacity. Generation capacity impacts are driven by unmanaged EV charging and could be mitigated with charging management. We estimate that the incremental rate impact from power system investment and operation of increased DER adoption in Indiana will be between -1.6% to + 2% in 2025 and + 0.2% to + 15% in 2040 relative to the base case.
机译:本研究探讨了分布式能源(DER)电力系统的关节影响,该电力系统可以通过分析通过发电,传输和分布扩展和由DAR采用驱动的成本进行分析。我们确定六个采用方案,将屋顶太阳能光伏模块(PV),电动车辆充电(EV)以及住宅和商业客户的电池存储在印第安纳州的住宅和商业客户的电池储存,在2025年和2040年,印第安纳州是一个很好的代理许多美国具有低当前的领导,但潜在的未来增长率很高。通过基于每次采用方案的未来每小时需求假设,在未来的每小时需求假设下,通过开发生成和分配段的能力扩张和功率流分析来评估DER的经济价值。分配系统电流模拟结果表明,电压违规是相对罕见的。可以使用未来屋顶光伏系统中的智能逆变器的组合和馈线头中的电压调节,以非常低的成本减轻电压违规。线路加载问题是最小的,只有0.2%的仿真时间,显示出高于容量的100%。生成容量影响由非托管的EV充电驱动,并可通过收费管理进行减轻。我们估计,在印第安纳州印第安纳州的电力系统投资和增加的损失率的影响将在印第安纳州的越来越多的采用的影响将在-1.6%至+ 2%之间,20世纪40年相对于基本案例+ 0.2%至+ 15%。

著录项

  • 来源
    《Applied Energy》 |2021年第1期|117160.1-117160.16|共16页
  • 作者单位

    Lawrence Berkeley Natl Lab Elect Markets & Policy Dept 1 Cyclotron Rd MS 90R4000 Berkeley CA 94720 USA;

    Nexant Inc 49 Stevenson St Suite 700 San Francisco CA 94105 USA;

    Nexant Inc 49 Stevenson St Suite 700 San Francisco CA 94105 USA;

    Lawrence Berkeley Natl Lab Grid Integrat Grp 1 Cyclotron Rd MS 90R4000 Berkeley CA 94720 USA;

    Lawrence Berkeley Natl Lab Grid Integrat Grp 1 Cyclotron Rd MS 90R4000 Berkeley CA 94720 USA;

    Purdue Univ State Util Forecasting Grp Discovery Pk W Lafayette IN 47907 USA;

    Lawrence Berkeley Natl Lab Elect Markets & Policy Dept 1 Cyclotron Rd MS 90R4000 Berkeley CA 94720 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Distributed energy resources; Power system; Cost benefit analysis; Rooftop solar;

    机译:分布式能源;电力系统;成本效益分析;屋顶太阳能;

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