CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading

Distributed energy trading has become an essential part of the energy trading market and provides a useful supplement to traditional centralized energy trading, but there are still problems such as opaque trading information and asymmetric user data. The blockchain technology has the advantages of t...

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Main Authors: Meng Hu, Tao Shen, Jinbao Men, Zhuo Yu, Yingli Liu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9257446/
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author Meng Hu
Tao Shen
Jinbao Men
Zhuo Yu
Yingli Liu
author_facet Meng Hu
Tao Shen
Jinbao Men
Zhuo Yu
Yingli Liu
author_sort Meng Hu
collection DOAJ
description Distributed energy trading has become an essential part of the energy trading market and provides a useful supplement to traditional centralized energy trading, but there are still problems such as opaque trading information and asymmetric user data. The blockchain technology has the advantages of traceability, trade openness, and data transparency, which is naturally suitable for distributed energy transactions. The electricity information data transmission represented by distributed energy transaction has the characteristics of real-time, which has a high-efficiency requirement on the selected blockchain technology. The consensus algorithm is the core of blockchain technology and affects the efficiency of the blockchain system. The efficiency of the existing consensus algorithms for energy transaction-oriented blockchain still needs to be improved. In this paper, a consensus resource slicing model(CRSM) is designed to meet the requirements of consensus efficiency in energy trading scenarios. Specifically, CRSM divides consensus nodes into different consensus domains for concurrent consensus, and the storage domain only stores block information without consensus. By building an experimental platform, the efficiency of CRSM was verified, the communication pressure of the blockchain system was reduced, and the consensus speed was effectively improved.
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spelling doaj.art-840093c5772745eaafb27ff196b481d82022-12-21T19:54:08ZengIEEEIEEE Access2169-35362020-01-01820687620688710.1109/ACCESS.2020.30376949257446CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy TradingMeng Hu0https://orcid.org/0000-0002-2332-3641Tao Shen1https://orcid.org/0000-0003-1273-7950Jinbao Men2https://orcid.org/0000-0002-3411-5872Zhuo Yu3https://orcid.org/0000-0002-2185-3948Yingli Liu4https://orcid.org/0000-0003-0298-9257Faculty of Information Engineering and Automation, Kunming University of Science and Technology, Kunming, ChinaFaculty of Information Engineering and Automation, Kunming University of Science and Technology, Kunming, ChinaBeijing Zhongdian Puhua Information Technology Company, Ltd., Beijing, ChinaBeijing Zhongdian Puhua Information Technology Company, Ltd., Beijing, ChinaFaculty of Information Engineering and Automation, Kunming University of Science and Technology, Kunming, ChinaDistributed energy trading has become an essential part of the energy trading market and provides a useful supplement to traditional centralized energy trading, but there are still problems such as opaque trading information and asymmetric user data. The blockchain technology has the advantages of traceability, trade openness, and data transparency, which is naturally suitable for distributed energy transactions. The electricity information data transmission represented by distributed energy transaction has the characteristics of real-time, which has a high-efficiency requirement on the selected blockchain technology. The consensus algorithm is the core of blockchain technology and affects the efficiency of the blockchain system. The efficiency of the existing consensus algorithms for energy transaction-oriented blockchain still needs to be improved. In this paper, a consensus resource slicing model(CRSM) is designed to meet the requirements of consensus efficiency in energy trading scenarios. Specifically, CRSM divides consensus nodes into different consensus domains for concurrent consensus, and the storage domain only stores block information without consensus. By building an experimental platform, the efficiency of CRSM was verified, the communication pressure of the blockchain system was reduced, and the consensus speed was effectively improved.https://ieeexplore.ieee.org/document/9257446/Consensus mechanismmulti-consensus domainblockchaindistributed energy trading
spellingShingle Meng Hu
Tao Shen
Jinbao Men
Zhuo Yu
Yingli Liu
CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
IEEE Access
Consensus mechanism
multi-consensus domain
blockchain
distributed energy trading
title CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
title_full CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
title_fullStr CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
title_full_unstemmed CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
title_short CRSM: An Effective Blockchain Consensus Resource Slicing Model for Real-Time Distributed Energy Trading
title_sort crsm an effective blockchain consensus resource slicing model for real time distributed energy trading
topic Consensus mechanism
multi-consensus domain
blockchain
distributed energy trading
url https://ieeexplore.ieee.org/document/9257446/
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