Multi-hop Routing Implementation in Spatially Distributed Wireless Sensor Networks for Large-Scale Environmental Monitoring Applications

Afzal Ahmad, Muhammad Adeel Pasha, S. Masud, Manuel Schappacher, Assila Belhouichet, A. Sikora
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引用次数: 1

Abstract

With the surge in global data consumption with proliferation of Internet of Things (IoT), remote monitoring and control is increasingly becoming popular with a wide range of applications from emergency response in remote regions to monitoring of environmental parameters. Mesh networks are being employed to alleviate a number of issues associated with single-hop communication such as low area coverage, reliability, range and high energy consumption. Low-power Wireless Personal Area Networks (LoWPANs) are being used to help realize and permeate the applicability of IoT. In this paper, we present the design and test of IEEE 802.15.4-compliant smart IoT nodes with multi-hop routing. We first discuss the features of the software stack and design choices in hardware that resulted in high RF output power and then present field test results of different baseline network topologies in both rural and urban settings to demonstrate the deployability and scalability of our solution.
面向大规模环境监测应用的空间分布式无线传感器网络多跳路由实现
随着全球数据消费的激增和物联网(IoT)的普及,远程监测和控制越来越受欢迎,从偏远地区的应急响应到环境参数监测的广泛应用。网状网络被用来缓解与单跳通信相关的一些问题,如低区域覆盖、可靠性、范围和高能耗。低功耗无线个人区域网络(lowpan)被用于帮助实现和渗透物联网的适用性。在本文中,我们提出了符合IEEE 802.15.4标准的多跳路由智能物联网节点的设计和测试。我们首先讨论了导致高射频输出功率的软件堆栈和硬件设计选择的特性,然后展示了农村和城市环境中不同基线网络拓扑的现场测试结果,以展示我们的解决方案的可部署性和可扩展性。
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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