(Nanjing Linyang Electric Power Technology Co., Ltd, Nanjing 210019, China)
Abstract: In large-scale, high-frequency data collection scenarios, how to efficiently manage and store data has become an urgent problem to be solved. Centering on the optimization of data storage performance and data security guarantee for intelligent terminals, optimization methods are proposed from three perspectives: read and write performance optimization, data security design, and proactive prevention strategies. By introducing data partitioning, in-memory database and cache technology, and analyzing based on write amplification factors, a test system was designed to evaluate the impact of optimization measures on performance and storage life. Experimental results show that the optimized data storage system significantly improves data read and write performance, especially in high-frequency access and large-scale data scenarios, with data read performance improved by 48.9% and synchronous write performance improved by 57.6%. At the same time, by optimizing the write amplification factor, the data volume written to the eMMC memory has been reduced to 4.9% of the original, effectively extending the lifespan of the storage device and enhancing data security.
Key words: intelligent terminal; storage performance; in-memory database; data cache; data security; proactive prevention strategy
参考文献
[1] 钟加勇,熊小伏,何迎春,等. 面向台区智能终端的即插即用和拓扑识别方法[J] . 电力系统自动化,2021,45(10) :166-173.
[2] 陈伟铭,陈金玉,范元亮,等. 基于智能融合终端云边协同的智能台区实用化设计及应用[J] . 中国电力,2024,57(4) :190-199.
[3] 金荣江,陈企楚,沈昌国,等. 基于双数据库结合技术的用电信息采集终端[J] . 电力系统自动化,2010,34(9) :109-111.
[4] 葛磊蛟,王守相,瞿海妮. 智能配用电大数据存储架构设计[J]. 电力自动化设备,2016,36(6) :194-202.
[5] 李凌,张徐东,钱声攀,等. 数据中心能耗数据实时采集机制的研究与设计[J] . 电力信息与通信技术,2021,19(3) :26-33.
[6] 王丽珍,周丽华,陈红梅. 数据仓库与数据挖掘原理及应用[M]. 北京:科学出版社,2005.
[7] 袁智勇,肖泽坤,于力,等. 智能电网大数据研究综述[J]. 广东电力,2021,34(1) :1-12.
[8] 李国良,周煊赫,孙佶,等. 基于机器学习的数据库技术综述[J]. 计算机学报,2020,43(11) :2019-2049.
[9] 张鸿,徐攀,庄卫金,等. 电网调度控制系统分布式高速数据缓存集群关键技术[J] . 电力信息与通信技术,2021,19(11) :9-16.
[10] 杨青霖,吴桂勇,张广艳. 分布式存储系统中的数据高效缓存方法[J]. 大数据,2021,7(2) :147-157.
[11] 罗维根. 非易失铁电存储器的进展和若干问题[J]. 物理,1999,28(4) :216-221.
[12] 陈桂生,李志刚. 嵌入式 Flash 文件系统的设计与实现[J]. 计算机系统应用,2010,19(5) :36-40.
[13] 李远哲,贺海文,万丽,等. 嵌入式系统大容量 NAND Flash 存储器分区管理设计[J] . 计算机测量与控制,2019,27(2) :212-215.
[14] 徐远超.eMMC 可靠性分析与增强对策研究[J]. 计算机应用研究,2017,34(11) :3367-3372.
[15] 俞丁翠, 罗龙飞, 宋云鹏, 等. 面向高密度闪存的内存页大小探索[J] . 计算机工程与科学,2024,46(7) :1167-1174.