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TRANSAX: A Blockchain-Based Decentralized Forward-Trading Energy Exchanged for Transactive Microgrids

机译:Cransax:交换了基于区块的分散转交能量,用于过载微电网

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Power grids are undergoing major changes due to rapid growth in renewable energy and improvements in battery technology. Prompted by the increasing complexity of power systems, decentralized IoT solutions are emerging, which arrange local communities into transactive microgrids. The core functionality of these solutions is to provide mechanisms for matching producers with consumers while ensuring system safety. However, there are multiple challenges that these solutions still face: privacy, trust, and resilience. The privacy challenge arises because the time series of production and consumption data for each participant is sensitive and may be used to infer personal information. Trust is an issue because a producer or consumer can renege on the promised energy transfer. Providing resilience is challenging due to the possibility of failures in the infrastructure that is required to support these market based solutions. In this paper, we develop a rigorous solution for transactive microgrids that addresses all three challenges by providing an innovative combination of MILP solvers, smart contracts, and publish-subscribe middleware within a framework of a novel distributed application platform, called Resilient Information Architecture Platform for Smart Grid. Towards this purpose, we describe the key architectural concepts, including fault tolerance, and show the trade-off between market efficiency and resource requirements.
机译:由于可再生能源的快速增长和电池技术的改进,电网正在接受重大变化。由于电力系统的复杂性越来越多,分散的物联网解决方案正在出现,将当地社区安排进入过型微电网。这些解决方案的核心功能是为确保系统安全的同时提供与消费者的生产者匹配生产者的机制。但是,这些解决方案仍然存在多种挑战:隐私,信任和恢复力。隐私挑战产生,因为每个参与者的生产和消费数据的时间序列是敏感的,并且可用于推断个人信息。信任是一个问题,因为生产者或消费者可以撤离承诺的能源转移。由于支持这些市场基于市场的基础设施的失败可能性,提供弹性是具有挑战性的。在本文中,我们开发了一种严格的解决方案,用于通过在新颖的分布式应用程序平台的框架内提供莫尔普求解器,智能合同和发布中间件的创新组合来解决所有三个挑战,称为弹性信息架构平台智能电网。为此目的,我们描述了关键的架构概念,包括容错,并显示市场效率与资源要求之间的权衡。

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