在物联网规模的设备上托管分布式数据库

D. Richardson, Alan C. Lin, John M. Pecarina
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引用次数: 2

摘要

在物联网(IoT)时代,数十亿互连设备能够在物理世界和数字世界之间提供新的交互,提供新的内容和服务范围。在基础层面上,物联网节点是现实世界中存在的物理设备,由网络、传感器和处理组件组成。一些应用程序示例包括移动和普适计算或传感器网络,并且需要分布式设备部署,将信息提供给数据库以供利用。虽然数据可以集中,但采用分散架构也有优势,例如系统弹性和安全性,可以将计算和存储推到网络边缘和物联网设备上。然而,这些设备的计算能力往往比传统的机架服务器要有限得多。本研究探讨了在物联网代表性设备规范上使用Cassandra分布式数据库。在虚拟机和树莓派上进行了模拟物联网设备的实验,检查了网络压缩、处理工作负载以及实验室环境中各种内存和节点配置的延迟问题。我们证明了分布式数据库在树莓派上作为物联网代表设备是可行的,并展示了可能有助于应用程序设计的发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hosting distributed databases on internet of things-scale devices
The Internet of Things (IoT) era envisions billions of interconnected devices capable of providing new interactions between the physical and digital worlds, offering new range of content and services. At the fundamental level, IoT nodes are physical devices that exist in the real world, consisting of networking, sensor, and processing components. Some application examples include mobile and pervasive computing or sensor nets, and require distributed device deployment that feed information into databases for exploitation. While the data can be centralized, there are advantages, such as system resiliency and security to adopting a decentralized architecture that pushes the computation and storage to the network edge and onto IoT devices. However, these devices tend to be much more limited in computation power than traditional racked servers. This research explores using the Cassandra distributed database on IoT-representative device specifications. Experiments conducted on both virtual machines and Raspberry Pi's to simulate IoT devices, examined latency issues with network compression, processing workloads, and various memory and node configurations in laboratory settings. We demonstrate that distributed databases are feasible on Raspberry Pi's as IoT representative devices and show findings that may help in application design.
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