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Distributed optimization of power profiles on a local energy community using blockchain

机译:使用区块链在本地能源社区进行分布式电源配置优化

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This paper presents a private blockchain environment designed to optimize energy exchanges and reach consensus between different users on a university grid. The objectives of this work are to present a fully distributed energy sharing framework that takes into account the individual preferences of the users, and to give guidelines for development of blockchain applications relative to energy sharing. A private Ethereum blockchain with a Proof-of-Authority mechanism is deployed on a local energy community. A smart contract written in Solidity is used to perform distributed optimization under a global power constraint. Python client are used to enable direct interactions between users and the smart contract. The simulations performed on real data show that consensus is obtained after a few iterations, and thus prove that our framework has the potential to be practically used in real situations.
机译:本文提出了一个私有区块链环境,旨在优化能源交换并在大学网格上的不同用户之间达成共识。这项工作的目的是提出一个完全分布式的能源共享框架,该框架考虑了用户的个人喜好,并为开发与能源共享相关的区块链应用程序提供了指导。具有权限证明机制的私有以太坊区块链已部署在本地能源社区中。用Solidity编写的智能合约用于在全局功率约束下执行分布式优化。 Python客户端用于启用用户与智能合约之间的直接交互。对真实数据进行的仿真表明,经过几次迭代即可获得共识,从而证明我们的框架具有在实际情况下实际使用的潜力。

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