通过固定和移动资源增强微电网能源弹性的成本意识战略

IF 3.7 Q1 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
S.M. Safayet Ullah , Kouhyar Sheida , Farzad Ferdowsi , Terrence Chambers
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引用次数: 0

摘要

本研究的主要目标是提高能源弹性,重点关注成本效率。为了实现这一目标,确定了两个关键目标:(1)减少未服务负载,(2)实施具有成本效益的资源分配策略。开发了太阳能+储能微电网的高保真详细模型,以模拟各种假设情景。该模型基于校园微电网设施的概念设计,该设施计划在UL Lafayette与当地电力公司密切合作进行调试。该研究考察了微电网在不同配置下的性能,包括固定电池和移动电池存储选项。为了确保情景的真实性,使用了路易斯安那州发生三次主要飓风后特定日子的真实太阳数据。该分析包括对各种情况下未服务负载的评估,以及对投资决策和移动存储系统规划和操作的弹性影响的调查。结果表明,所提出的规划和操作将提高弹性,同时保持在盈利范围内。对弹性进行量化,并与其他情景进行比较,为决策者提供有见地的规划框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cost-aware strategies for enhancing energy resilience in microgrids via stationary and mobile resources
The primary goal of this research study is to enhance energy resilience with a focus on cost efficiency. To achieve this objective, two key objectives have been identified: (1) reducing unserved loads, and (2) implementing cost-effective resource allocation strategies. A high-fidelity detailed model of a solar plus storage microgrid is developed to simulate a variety of what-if scenarios. This model is based on the conceptual design of a campus microgrid facility, which is slated for commissioning at UL Lafayette in close collaboration with a local power utility. The study examines the microgrid’s performance under different configurations, including both stationary battery and mobile battery storage options. To ensure the realism of the scenarios, real solar data from specific days following the occurrence of three major hurricanes in Louisiana is utilized. The analysis includes an assessment of unserved loads under various scenarios, as well as an investigation into the resilience impact of investment decisions and the planning and operation of mobile storage systems. The results indicate the proposed planning and operation will improve resilience while staying within the profitable range. The resilience is quantified and compared with other scenarios providing an insightful planning framework for decision-makers.
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来源期刊
安全科学与韧性(英文)
安全科学与韧性(英文) Management Science and Operations Research, Safety, Risk, Reliability and Quality, Safety Research
CiteScore
8.70
自引率
0.00%
发文量
0
审稿时长
72 days
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