Dynamic reputation–based consensus mechanism: Real-time transactions for energy blockchain

Author:

Cai Wenjun12ORCID,Jiang Wei3,Xie Ke4,Zhu Yan12,Liu Yingli12,Shen Tao12

Affiliation:

1. School of Information Engineering and Automation, Kunming University of Science and Technology, Kunming, China

2. Computer Technology Application Key Lab of Yunnan Province, Kunming University of Science and Technology, Kunming, China

3. State Grid Corporation of China, Beijing, China

4. State Grid Information & Telecommunication Co., Ltd, Beijing, China

Abstract

The energy blockchain is a distributed Internet protocol for energy transactions between nodes in power systems. The consensus algorithm is the core component of the energy blockchain and has an essential impact on its application. At present, in the implementation of the energy blockchain, there are problems such as low transaction throughput (transactions per second) and high latency, which cannot meet the application requirements of real-time processing transactions in the energy field. To this end, according to the analysis of conventional blockchain consensus algorithm and traditional practical Byzantine fault tolerance algorithm, a dynamic-reputation practical Byzantine fault tolerance algorithm for the energy blockchain is proposed. The dynamic-reputation practical Byzantine fault tolerance algorithm adopts a credit-based consortium node consensus election method. The monitoring node divides the remaining nodes into two types of nodes according to the reputation value: the consensus node and the secondary node, which, respectively, participate in different stages of the block generation process, and dynamically update the consensus nodes with low reputation ratings. By constructing the experimental platform simulation, the test results verify the effectiveness of the dynamic-reputation practical Byzantine fault tolerance algorithm. Compared with the algorithm of the fabric platform, the dynamic-reputation practical Byzantine fault tolerance algorithm improves the transaction processing speed and is suitable for the blockchain application in the energy field.

Funder

Yunnan Young Top Talents of Ten Thousands Plan

the State Grid ICT Industry Group Two-level Collaborative Research and Development Project in 2019

kunming university of science and technology

Yunnan Applied Basic Research Projects

Yunnan Reserve Talents of Young and Middle-aged Academic and Technical Leaders

national natural science foundation of china

Publisher

SAGE Publications

Subject

Computer Networks and Communications,General Engineering

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1. A Blockchain Consensus Mechanism to Optimize Reputation-Based Distributed Energy Trading in Urban Energy System;IEEE Access;2024

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3. A Decentralized Vehicle-to-Vehicle Energy Trading System Based on Efficient Sharding Services;2023 IEEE Intl Conf on Parallel & Distributed Processing with Applications, Big Data & Cloud Computing, Sustainable Computing & Communications, Social Computing & Networking (ISPA/BDCloud/SocialCom/SustainCom);2023-12-21

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