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Systems-based modeling of generation variability under alternate geographic configurations of photovoltaic (PV) installations in Virginia

机译:弗吉尼亚州光伏(PV)装置的备用地理配置下基于系统的发电变异性建模

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摘要

With increased focus on renewable energy in our modern era, it is increasingly important to understand the impact of policies on the performance and reliability of regional energy systems. This research develops a model to understand how geographic dispersion of PV installations impacts the reliability of electricity generated from the total PV network, measured by the variance of the distribution of generated electricity. Using NREL data, beta probability distributions of sunlight (kWh/m~2/day) in various regions of Virginia are estimated using a fitting method that minimizes the Kolmogorov-Smirnov test statistic. A Monte Carlo simulation model is developed to measure PV electricity generation from multiple centralized and dispersed configurations over 100,000 days of probabilistic sunlight. There is a calculable tradeoff between average generation and generation variability, and increased geographic dispersion of PV installations can decrease this variability. Controlling variable generation through policies that promote efficient PV siting can help provide reliable power, minimizing the need for load-balancing peaking power infrastructure and costly electricity purchases from the grid. Using a tradeoff framework of generation and costs, this paper shows that geographically dispersed generation can mitigate the risk of unreliable solar generation that can significantly impact the end-user costs and make PV infrastructure unattractive.
机译:随着现代社会对可再生能源的日益关注,了解政策对区域能源系统的性能和可靠性的影响变得越来越重要。这项研究开发了一个模型,以了解光伏装置的地理位置分散如何影响由整个光伏网络产生的电力的可靠性(通过发电量分布的变化来衡量)。使用NREL数据,使用最小化Kolmogorov-Smirnov检验统计量的拟合方法,估算弗吉尼亚州各个地区的太阳β概率分布(kWh / m〜2 / day)。开发了蒙特卡罗模拟模型,以测量超过100,000天的概率太阳光来自多个集中式和分散式配置的PV发电量。在平均发电量和发电量可变性之间存在可计算的折衷,而光伏装置的地理分散性增加可以减小该可变性。通过促进有效光伏选址的政策来控制变量的产生,可以帮助提供可靠的电力,最大程度地减少平衡负载的峰值电力基础设施和从电网购电的成本。使用发电量和成本的权衡框架,本文表明,地理上分散的发电量可以减轻不可靠太阳能发电的风险,这可能会严重影响最终用户成本,并使光伏基础设施失去吸引力。

著录项

  • 来源
    《Energy Policy 》 |2011年第10期| p.6262-6270| 共9页
  • 作者单位

    Engineering Systems Division,Massachusetts Institute of Technology, 77 Massachusetts Ave, Cambridge. MA 02139, USA;

    rnMulti-Disciplined Systems Engineer, Preparedness and Infrastructure Resilience Department, MITRE Corporation, 7515 Colshire Drive, McLean, VA 22102, 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

    photovoltaic generation; systems modeling; tradeoff analysis;

    机译:光伏发电系统建模;权衡分析;

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