结合区块链和机器学习的电力市场交易模型设计

Y. Liu, Feng Zhou
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引用次数: 0

摘要

随着环境的恶化和国家各项政策的出台,绿色能源开始兴起,成为能源市场的重要组成部分。传统的能源交易模式是集中式的管理模式,新能源分布广泛,不适合当前的情况。一些传统的交易模式,所以我们用区块链技术来解决这个问题。针对交易方式、能源价格竞争以及区块链在能源交易中的实现等问题,利用机器学习中的k近邻算法同时实现自动竞价,并研究了基于多时间尺度的蚁群算法竞争。游戏实现了利用智能合约约束市场交易的合法性,解决了分布式绿色能源并网问题,并结合适当的激励机制,提高绿色能源的利用率,促进生态和人类生活的合理发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electricity market transaction model design combining blockchain and machine learning
With the deteriorating environment and the issuance of various national policies, green energy has begun to rise and become an important part of the energy market. The traditional energy trading model is a centralized management model, and new energy is not suitable for the current situation due to its wide distribution. Some traditional transaction models, so we use blockchain technology to solve this problem. Aiming at the problems of transaction methods, energy price competition and how to implement the blockchain in energy transactions, the K-nearest neighbor algorithm in machine learning is used to realize the automatic auction at the same time, and the ACO algorithm competition based on multiple time scales is studied. The game realizes the legality of using smart contracts to restrict market transactions, solves the problem of distributed green energy grid connection, and combines with appropriate incentive mechanisms to increase the utilization rate of green energy and promote the rational development of ecology and human life.
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