High resolution modeling and analysis of cryptocurrency mining’s impact on power grids: Carbon footprint, reliability, and electricity price

IF 13 Q1 ENERGY & FUELS
Ali Menati , Xiangtian Zheng , Kiyeob Lee , Ranyu Shi , Pengwei Du , Chanan Singh , Le Xie
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引用次数: 0

Abstract

Blockchain technologies are considered one of the most disruptive innovations of the last decade, enabling secure decentralized trust-building. However, in recent years, with the rapid increase in the energy consumption of blockchain-based computations for cryptocurrency mining, there have been growing concerns about their sustainable operation in electric grids. This paper investigates the tri-factor impact of such large loads on carbon footprint, grid reliability, and electricity market price in the Texas grid. We release open-source high-resolution data to enable high-resolution modeling of influencing factors such as location and flexibility. We reveal that the per-megawatt-hour carbon footprint of cryptocurrency mining loads across locations can vary by as much as 50% of the crude system average estimate. We show that the flexibility of mining loads can significantly mitigate power shortages and market disruptions that can result from the deployment of mining loads. These findings suggest policymakers to facilitate the participation of large mining facilities in wholesale markets and require them to provide mandatory demand response.

加密货币挖矿对电网影响的高分辨率建模和分析:碳足迹、可靠性和电价
区块链技术被认为是过去十年中最具颠覆性的创新之一,能够实现安全的去中心化信任建设。然而,近年来,随着基于区块链的加密货币挖矿计算能耗的快速增长,人们越来越担心其在电网中的可持续运营。本文研究了德克萨斯电网中如此大的负荷对碳足迹、电网可靠性和电力市场价格的三因素影响。我们发布开源的高分辨率数据,以实现对位置和灵活性等影响因素的高分辨率建模。我们发现,不同地点加密货币采矿负载的每兆瓦时碳足迹可能会变化,变化幅度高达原油系统平均估计值的50%。我们表明,采矿负载的灵活性可以显著缓解采矿负载部署可能导致的电力短缺和市场中断。这些发现建议政策制定者为大型采矿设施参与批发市场提供便利,并要求它们提供强制性的需求响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Applied Energy
Advances in Applied Energy Energy-General Energy
CiteScore
23.90
自引率
0.00%
发文量
36
审稿时长
21 days
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