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Utility-Scale Portable Energy Storage Systems

机译:实用规模便携式能量存储系统

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摘要

Battery storage is expected to play a crucial role in the low-carbon transformation of energy systems. The deployment of battery storage in the power grid, however, is currently limited by its low economic viability, which results from not only high capital costs but also the lack of flexible and efficient utilization schemes and business models. Making utility-scale battery storage portable through trucking unlocks its capability to provide various on-demand services. We introduce the potential applications of utility-scale portable energy storage and investigate its economics in California using a spatiotemporal decision model that determines the optimal operation and transportation schedules of portable storage. We show that mobilizing energy storage can increase its life-cycle revenues by 70% in some areas and improve renewable energy integration by relieving local transmission congestion. The life-cycle revenue of spatiotemporal arbitrage can fully compensate for the costs of a portable energy storage system in several regions in California.
机译:预计电池储存将在能量系统的低碳转换中发挥至关重要的作用。然而,在电网中部署电池存储器目前受到其低经济可行性的限制,这不仅是高资本成本,而且缺乏灵活高效的利用方案和商业模式。通过Trucking携带便携式尺度的电池存储可解锁其提供各种按需服务的能力。我们介绍了实用规模便携式能量存储的潜在应用,并使用了时空决策模型来研究加利福尼亚州的经济学,该模型确定便携式存储的最佳操作和运输计划。我们表明,动员能量储存可以在某些领域将其生命周期收入增加70%,并通过缓解当地传输拥堵来改善可再生能源集成。时空套利的生命周期收入可以完全弥补加利福尼亚州几个地区的便携式能量存储系统的成本。

著录项

  • 来源
    《Joule》 |2021年第2期|379-392|共14页
  • 作者单位

    MIT Energy Initiative Massachusetts Institute of Technology|Department of Engineering and Public Policy Carnegie Mellon University;

    Department of Engineering and Public Policy Carnegie Mellon University|Department of Mechanical Engineering Carnegie Mellon University;

    Department of Electrical and Computer Engineering Carnegie Mellon University;

    Department of Electrical Engineering Tsinghua University;

    Institute of Energy Environment and Economy Tsinghua University|MIT Joint Program on the Science and Policy of Global Change Massachusetts Institute of Technology;

    Department of Engineering and Public Policy Carnegie Mellon University|Department of Materials Science and Engineering Carnegie Mellon University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    portable energy storage; spatiotemporal decision; renewable energy integration; grid congestion relief; electric truck; battery;

    机译:便携式能量存储;时尚决策;可再生能源集成;电网拥塞救济;电动车;电池;

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