On the design of communication and transaction anonymity in blockchain-based transactive microgrids

Jonatan Bergquist, Aron Laszka, Monika Sturm, A. Dubey
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引用次数: 28

Abstract

Transactive microgrids are emerging as a transformative solution for the problems faced by distribution system operators due to an increase in the use of distributed energy resources and a rapid acceleration in renewable energy generation, such as wind and solar power. Distributed ledgers have recently found widespread interest in this domain due to their ability to provide transactional integrity across decentralized computing nodes. However, the existing state of the art has not focused on the privacy preservation requirement of these energy systems - the transaction level data can provide much greater insights into a prosumer's behavior compared to smart meter data. There are specific safety requirements in transactive microgrids to ensure the stability of the grid and to control the load. To fulfil these requirements, the distribution system operator needs transaction information from the grid, which poses a further challenge to the privacy goals. In this paper, we extend a recently developed trading workflow called PETra and describe our solution for communication and transactional anonymity.
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基于区块链的交互微电网通信与交易匿名设计研究
由于分布式能源使用的增加以及风能和太阳能等可再生能源发电的迅速加速,交互式微电网正在成为配电系统运营商面临的问题的变革性解决方案。分布式账本最近在这一领域引起了广泛的兴趣,因为它们能够跨分散计算节点提供事务完整性。然而,现有的技术水平并没有关注这些能源系统的隐私保护要求——与智能电表数据相比,交易级数据可以提供更深入地了解产消者的行为。为了保证电网的稳定性和控制负荷,交互微电网有特定的安全要求。为了满足这些要求,配电系统运营商需要从电网获取交易信息,这对隐私目标提出了进一步的挑战。在本文中,我们扩展了最近开发的名为PETra的交易工作流,并描述了我们的通信和交易匿名解决方案。
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