基于智能合约的分布式交易能源拍卖校园示范

A. Hahn, Rajveer Singh, Chen-Ching Liu, Sijie Chen
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引用次数: 130

摘要

交互能源模式将使来自分布式产消者的能源交换成为可能。虽然产消者可以获得分布式能源,但这些资源是间歇性可用的。有必要建立分布式市场,以便在交易环境中进行能源交换,然而,大量潜在的产消者给产消者之间建立信任带来了挑战。交易环境的市场带来了其他挑战,例如建立能源的清算价格和在生产消费者之间交换货币。区块链提供了一种独特的技术,通过使用分布式账本、加密货币和执行智能合约来解决这种分布式信任问题。本文介绍了一种智能合约,它实现了一种无需可信实体监督的交易能源拍卖。拍卖机制实行维克里第二价格拍卖,保证竞标者提交诚实的出价。该合同是在华盛顿州立大学校园内与72kW光伏阵列和以太坊区块链交互的交互式代理上实施的。然后,该合同将用于根据光伏阵列的能量和模拟建筑负载执行拍卖,以演示拍卖操作。
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Smart contract-based campus demonstration of decentralized transactive energy auctions
Transactive energy paradigms will enable the exchange of energy from a distributed set of prosumers. While prosumers have access to distributed energy resources, these resources are intermittently available. There is a need for distributed markets to enable the exchange of energy in transactive environments, however, the large number of potential prosumers introduces challenges in the establishment of trust between prosumers. Markets for transactive environments create other challenges, such as establishing clearing prices for energy and exchanging money between prosumers. Blockchains provide a unique technology to address this distributed trust problem through the use of a distributed ledger, cryptocurrencies, and the execution of smart contracts. This paper introduces a smart contract that implements a transactive energy auction that operates without the need for a trusted entitys oversight. The auction mechanism implements a Vickrey second price auction, which guarantees bidders will submit honest bids. The contract is implemented on transactive agents on the WSU campus interacting with a 72kW PV array and the Ethereum blockchain. The contract is then used to execute auctions based on the energy from the the PV array and simulated building loads to demonstrate the auctions operations.
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