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Reliability benefits of wide-area renewable energy planning across the Western United States

机译:美国西部广域可再生能源规划的可靠性优势

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In response to near-and long-term market and policy shifts, power systems are integrating increasingly distant renewable energy resources. No analyses quantify the spatial heterogeneity of resource adequacy contributions of renewables at the interconnection-scale in the United States, which would indicate the value to resource adequacy of integrating increasingly-distant renewables. To fill this gap, we develop a Monte Carlo-based probabilistic reliability model to estimate the effective load carrying capability (ELCC) of wind or solar generators. We apply our model to estimate the ELCCs of new solar or wind generators at 1406 locations across the Western Interconnection when contributing to each of five power pools within the Interconnection. Across the five power pools, we find solar ELCCs range from 0% to 44% and wind ELCCs range from 0% to 55% across the Western Interconnection. Solar ELCCs increase from east to west for all but one power pool, incentivizing integration of western renewables into eastern power pools. Deploying storage with wind or solar generators increases their ELCCs, with larger increases occurring at locations with lower renewable-only ELCC values. Thus, resource adequacy gains from deploying storage with renewables can partly substitute for those from integrating increasingly-distant renewables. (c) 2021 Elsevier Ltd. All rights reserved.
机译:为了应对近期和长期的市场和政策转变,电力系统正在整合越来越远的可再生能源。没有分析量化了在美国互联规模的可再生能源资源充足贡献的空间异质性,这将表明资源充足的价值集成越来越多的可再生能源。为了填补这种差距,我们开发了一种基于蒙特卡罗的概率可靠性模型,以估算风或太阳能发电机的有效负载承载能力(ELCC)。当互连内的五个功率池中有助于贡献时,我们将模型应用于估计在西方互连的1406个位置。在五个电源池中,我们发现太阳能ELCCS的范围从0%到44%,风紫外线的范围从西部互连的0%到55%。除了一个电源游泳池之外的所有电源池,Solar Elccs从东部增加到西方,激励西部可再生能源将西方再生能够进入东部电力池。随风或太阳能发电机部署存储增加了他们的魅力,在可再生的ELCC值较低的位置上发生较大的增加。因此,资源充足性从部署存储带有可再生能源的资源充分收益可以部分地代替那些集成越来越多的可再生能源的人。 (c)2021 elestvier有限公司保留所有权利。

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