An overview of blockchain efficient interaction technologies

Feng Liu, Sihao He, Zhenghao Li, Panwei Xiang, Jiayin Qi, Zhibin Li
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引用次数: 2

Abstract

The successful operation of Bitcoin has made its underlying blockchain technology receive wide attention. As the application scenarios of blockchain technology are enriched, the requirements for its performance are getting higher. Therefore, it is of utmost importance to effectively solve the problem of high-performance data interaction in the blockchain. In this paper, based on relevant domestic and foreign research literature, we start from the development history of blockchain technology and review the relevant research work on improving the performance of blockchain from three perspectives: on-chain interaction technology, off-chain interaction technology, and cross-chain interaction technology in turn. The on-chain and off-chain interaction technologies improve performance by improving the architecture of the blockchain system. The performance improvement solution of on-chain interaction technology is to modify and optimize the basic protocol and architecture of the blockchain itself to achieve a performance improvement. Still, the impact of this approach is limited in terms of performance improvement. The performance improvement solution of off-chain interaction technology is to transfer part of the data processing to off-chain and only return the final result to on-chain for storage and recording, which reduces the burden of on-chain operation and improves the efficiency of data processing. In terms of cross-chain interaction technology, this paper analyses four mainstream technology, namely, Notary Scheme, Side chain and Chain relay, Hash-Locking, and Distributed Private Key Control, and ultimately concludes through comparative analysis that cross-chain technology has a significant impact on improving blockchain performance. Finally, the paper provides a systematic overview of the above and an outlook on the possible future development of technologies related to enhancing blockchain performance.
区块链高效交互技术概述
比特币的成功运作使得其底层区块链技术受到广泛关注。随着区块链技术应用场景的丰富,对其性能的要求也越来越高。因此,有效解决区块链中高性能数据交互问题至关重要。本文在国内外相关研究文献的基础上,从区块链技术的发展历史出发,依次从链上交互技术、链下交互技术、跨链交互技术三个角度,对提升区块链性能的相关研究工作进行了回顾。链上和链下交互技术通过改进区块链系统的架构来提高性能。链上交互技术的性能提升方案是对区块链本身的基础协议和架构进行修改和优化,从而实现性能提升。但是,就性能改进而言,这种方法的影响有限。脱链交互技术的性能提升方案是将部分数据处理转移到脱链,只将最终结果返回链上进行存储和记录,减轻了链上操作的负担,提高了数据处理的效率。在跨链交互技术方面,本文分析了公证方案、侧链中继、哈希锁定和分布式私钥控制四种主流技术,通过对比分析,最终得出跨链技术对提高区块链性能有显著影响的结论。最后,本文对上述内容进行了系统概述,并展望了与增强区块链性能相关的技术未来可能的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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