Yang Dexian, Yu Jiong, He Zhenzhen, Li Ping
Xinjiang Vocational and Technical College of Communications, Urumqi, Xinjiang, 831401, China.
Sci Rep. 2025 Jan 17;15(1):2316. doi: 10.1038/s41598-024-67265-6.
This paper aims to construct a green environmental protection system by advancing database energy-saving techniques and optimizing the energy-saving mechanism against the backdrop of blockchain integration. The protocol classification of wireless sensor networks is examined within the context of the rapid growth of information technology. The analysis draws upon the database storage and sharing model and recent research examples that connect blockchain and database technology. Additionally, the paper investigates the blockchain data structure and storage path by analyzing the spatial-temporal correlation properties of blockchain data. The findings demonstrate that increasing the number of network nodes in the database system within a reasonable range can reduce the overall execution time. Additionally, as time progresses, the query traffic of the system database continues to increase. The research has practical implications in the domains of databases and the Internet of Things.
本文旨在在区块链集成的背景下,通过推进数据库节能技术和优化节能机制来构建绿色环保系统。在信息技术快速发展的背景下,研究了无线传感器网络的协议分类。该分析借鉴了数据库存储和共享模型以及连接区块链和数据库技术的近期研究实例。此外,本文通过分析区块链数据的时空相关特性,研究了区块链的数据结构和存储路径。研究结果表明,在合理范围内增加数据库系统中的网络节点数量可以减少总体执行时间。此外,随着时间的推移,系统数据库的查询流量持续增加。该研究在数据库和物联网领域具有实际意义。