基于 Zigbee 的无线传感器网络移动传感

Alberto Coboi, Minh T. Nguyen, Van Nam Pham, Thang C. Vu, Mui D. Nguyen, Dung T. Nguyen
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摘要

无线传感器网络因其适应性和在不同行业的广泛应用而备受关注。由于传感器节点通常由电池供电,资源有限,因此无线传感器网络在能源效率方面面临着巨大挑战。为了解决这个问题,人们提出了一些节能方法和协议,如占空比、数据聚合和拓扑管理。此外,WSN 与无人机、平板电脑和智能手机等移动和静态设备的整合为移动无线传感器网络带来了新的发展潜力。在本研究中,我们建议利用 Zigbee 技术为固定和移动传感器建立一个强大而灵活的监控系统。包括医疗保健、智能农业、资产跟踪、能源管理、智能家居自动化以及工业监控在内的众多行业都已广泛使用 Zigbee。通过利用 Zigbee 的功能,我们希望在建立节点间可靠通信链路、分析通信范围和评估环境条件影响的同时,提高协议的性能。在本研究中,我们将介绍在移动机器人中部署 Zigbee 的系统模型。它将涉及 Zigbee 的基础知识、通信困难、与 Zigbee 的联网以及模拟或实际结果。我们将通过研究基于 Zigbee 的系统的架构和功能,了解其在移动无线传感器网络中创建可靠通信链路方面的优缺点。这项研究的结果将有助于我们理解 Zigbee 在改进监控系统方面的潜力,并为各行各业做出更好的决策。这项研究对移动监控系统的重视,标志着我们在满足动态环境中无线传感器网络不断发展的需求方面又向前迈进了一步。
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Zigbee Based Mobile Sensing for Wireless Sensor Networks
Wireless sensor networks, have drawn a lot of interest because of their adaptability and range of uses in different industries. WSNs face significant challenges when it comes to energy efficiency because sensor nodes are usually battery-powered and have limited resources. Several energy-efficient methods and protocols, such as duty cycling, data aggregation, and topology management, have been put forth to address this problem. Moreover, new potential for mobile wireless sensor networks are presented by the integration of WSNs with mobile and static devices, such as drones, tablets, and smartphones. In this study, we suggest utilizing Zigbee technology to establish a robust and flexible monitoring system for both stationary and mobile sensors. Numerous industries, including healthcare, smart agriculture, asset tracking, energy management, smart home automation, and industrial monitoring and control, have made extensive use of Zigbee. By leveraging Zigbee's capabilities, we hope to improve the protocol's performance while establishing dependable communication links between nodes, analyzing the communication range, and assessing the influence of environmental conditions. In this study, a system model for Zigbee deployment in mobile robots will be presented. It will address the basics of Zigbee, communication difficulties, networking with Zigbee, and simulations or real-world outcomes. We will learn about the strengths and weaknesses of Zigbee-based systems in terms of creating reliable communication links in mobile wireless sensor networks by looking at their architecture and functionality. The results of this study will help us comprehend Zigbee's potential to improve monitoring systems and make better decisions across a range of industries. The study's emphasis on mobile monitoring systems signifies a step forward in addressing the evolving needs of wireless sensor networks in dynamic environments.
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