High-Performance Carbon Cycle Supply Data Sharing Method Based on Blockchain Multichain Technology

Yuanjun Liu, Lin Zhang, Ashim Khadka · Journal of Intelligent Management Decision · 2024

In the evolution of blockchain technology, the traditional single-chain structure has faced significant challenges, including low throughput, high latency, and limited scalability.This paper focuses on leveraging multichain sharding technology to overcome these constraints and introduces a high-performance carbon cycle supply data sharing method based on a blockchain multichain framework.The aim is to address the difficulties encountered in traditional carbon data processing.The proposed method involves partitioning a consortium chain into multiple subchains and constructing a unique "child/parent" chain architecture, enabling cross-chain data access and significantly increasing throughput.Furthermore, the scheme enhances the security and processing capacity of subchains by dynamically increasing the number of validator broadcasting nodes and implementing parallel node operations within subchains.This approach effectively solves the problems of low throughput in single-chain blockchain networks and the challenges of cross-chain data sharing, realizing more efficient and scalable blockchain applications.

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