Developing Low-Cost Testbeds for Enhancing Security Techniques in Wireless Sensor Network Protocols

George D. O’Mahony, Philip J. Harris, Colin C. Murphy
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引用次数: 2

Abstract

Wireless sensor network (WSN) applications have expanded considerably over the past decade or so and now, solutions exit for various innovative applications. These wireless networks adopt commercial off the shelf devices and standardized protocols, which inherently creates security challenges. These challenges are ever changing as malicious interference and intrusion techniques evolve and dynamic efficient hardware becomes increasingly accessible. This paper presents the development of multiple low-cost hardware and software platforms designed so security enhancements and modifications to WSN protocol architecture and packet structure can be designed and tested. Each testbed has been built satisfying the requirements of being available as unmodified commercial off the shelf (COTS) components and based on open source software. The testbeds provide versatility through operating on various operating systems including Windows and Linux, are reproducible and can be deployed in a way which replicates real world WSNs. Each distinct system provides remote access, real time and off line data analysis, specific control of each network node and the ability to upload data from the WSN. This paper describes in-detail the individual pieces of suitable hardware for WSN protocol and packet structure design and illustrates the system architecture required to form testbeds which can experimentally validate modifications to a WSN protocol. Additionally, a baseline is defined and encapsulates the ZigBee standard. Example results of the distinct testbeds in operation are provided along with the specific open source software being used.
开发低成本测试平台以增强无线传感器网络协议中的安全技术
无线传感器网络(WSN)的应用在过去十年左右的时间里得到了相当大的扩展,现在出现了各种创新应用的解决方案。这些无线网络采用商用现成设备和标准化协议,这本身就带来了安全挑战。随着恶意干扰和入侵技术的发展以及动态高效硬件的日益普及,这些挑战也在不断变化。本文介绍了多种低成本硬件和软件平台的开发,旨在设计和测试WSN协议体系结构和分组结构的安全性增强和修改。每个测试平台的构建都满足了作为未修改的商用现货(COTS)组件可用的需求,并且基于开源软件。测试平台通过在各种操作系统(包括Windows和Linux)上运行提供多功能性,是可复制的,并且可以以复制真实世界wsn的方式部署。每个不同的系统都提供远程访问、实时和离线数据分析、对每个网络节点的特定控制以及从WSN上传数据的能力。本文详细描述了适用于WSN协议和分组结构设计的各个硬件部件,并举例说明了形成试验台所需的系统架构,该试验台可以实验验证对WSN协议的修改。此外,还定义了基线并封装了ZigBee标准。文中还提供了不同测试平台运行的示例结果,以及所使用的特定开源软件。
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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