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Blockchain based uniform price double auctions for energy markets

机译:基于区块链的能源市场统一价格两次拍卖

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摘要

The energy sector is undergoing a massive transformation that greatly affects and is being affected by its market mechanisms. This paper presents the design, the prototype implementation and the analysis of a decentralized, real-time, uniform-price double auction energy market. The proposed market is a distributed and decentralized application and its rules may be specified through a smart contract. Market participants interact with the smart contract sending their asks and offers and the distributed application clears the market based on a uniform-price economic dispatch model. We propose and analyze three different implementation approaches on an Ethereum blockchain network. A model representing a physical demonstration project conducted in Seattle, USA, is utilized to simulate the power grid and to provide real-life scenarios for our analysis. We systematically evaluate our three implementation approaches and elucidate several blockchain issues regarding the decentralization of next-generation energy markets. In particular, we identify that certain computation modules may be installed on smart consuming devices in order to increase efficiency, security and decentralization and reduce the overall blockchain overhead cost. Furthermore, we show that in order to fulfill the market's high demand for step timing, we ought to have the block generation time several magnitudes smaller compared to the auction period.
机译:能源行业正在经历着巨大的变革,它极大地影响着市场机制并受到其影响。本文介绍了一个分散的,实时的,统一价格的双重拍卖能源市场的设计,原型实现以及分析。提议的市场是一个分散的,分散的应用程序,其规则可以通过智能合约来指定。市场参与者与智能合约进行交互,发送他们的要价和报价,而分布式应用程序根据统一价格经济调度模型来清理市场。我们提出并分析了以太坊区块链网络上的三种不同的实现方法。一个代表在美国西雅图进行的物理演示项目的模型被用来模拟电网并为我们的分析提供真实的情景。我们系统地评估了三种实施方法,并阐明了有关下一代能源市场分散化的几个区块链问题。特别是,我们确定某些计算模块可以安装在智能消费设备上,以提高效率,安全性和分散性并降低总体区块链开销成本。此外,我们表明,为了满足市场对步进时序的高要求,我们应该使块生成时间比拍卖时段短几个数量级。

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