Design of E-commerce Data Scalable Storage System Based on Mobile Internet Communication Technology

Q4 Engineering
Jiejie Cui, Xiang Li, Yang Wang
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引用次数: 0

Abstract

The traditional encrypted storage system is inefficient when it encrypts the data of the Internet of Things, and there are few IOT data nodes that can be encrypted in a short time. In order to solve the above problems, a new Internet of Things data effective information encryption storage system is proposed. The hardware and software of the system are mainly designed. The chip selected for the collector is TTSAD251, which can expand the collection range. The processor is set with multiple cores to reduce the system power consumption. The memory uses SPRTAN-2 chip as the structure chip. The software work consists of three parts: collecting effective information of Internet of Things big data, establishing encrypted documents and storing effective information of big data of Internet of Things. In order to detect the working effect of the system, the experimental comparison with the traditional system shows that the proposed encryption storage system can improve the storage range of big data effective information of the Internet of Things by 20.58%, and the work efficiency by 5.64%. Compared with the traditional system, the designed system also has obvious advantages in the number of big data node secrets. In different files, the average number of big data information node encryption in this system is about 166,700. The experimental data show that the designed system has ideal application performance and provides a reliable basis for related fields.
基于移动互联网通信技术的电子商务数据可扩展存储系统设计
传统的加密存储系统在对物联网数据进行加密时效率不高,而且短时间内能够加密的物联网数据节点很少。为了解决上述问题,提出了一种新的物联网数据有效信息加密存储系统。主要对系统的硬件和软件进行了设计。采集器选用的芯片为TTSAD251,可以扩大采集范围。处理器采用多核配置,降低系统功耗。存储器采用SPRTAN-2芯片作为结构芯片。软件工作包括物联网大数据有效信息采集、建立加密文档和存储物联网大数据有效信息三个部分。为了检测系统的工作效果,与传统系统的实验对比表明,所提出的加密存储系统可将物联网大数据有效信息的存储范围提高20.58%,工作效率提高5.64%。与传统系统相比,所设计的系统在大数据节点秘密数量上也具有明显优势。在不同的文件中,本系统大数据信息节点加密的平均数量约为16.67万个。实验数据表明,所设计的系统具有理想的应用性能,为相关领域提供了可靠的依据。
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来源期刊
International Journal of Circuits, Systems and Signal Processing
International Journal of Circuits, Systems and Signal Processing Engineering-Electrical and Electronic Engineering
自引率
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发文量
155
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