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Implementation and Analysis of a Wireless Sensor Network-Based Pet Location Monitoring System for Domestic Scenarios

机译:基于无线传感器网络的宠物场景监控系统的实现与分析

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摘要

The flexibility of new age wireless networks and the variety of sensors to measure a high number of variables, lead to new scenarios where anything can be monitored by small electronic devices, thereby implementing Wireless Sensor Networks (WSN). Thanks to ZigBee, RFID or WiFi networks the precise location of humans or animals as well as some biological parameters can be known in real-time. However, since wireless sensors must be attached to biological tissues and they are highly dispersive, propagation of electromagnetic waves must be studied to deploy an efficient and well-working network. The main goal of this work is to study the influence of wireless channel limitations in the operation of a specific pet monitoring system, validated at physical channel as well as at functional level. In this sense, radio wave propagation produced by ZigBee devices operating at the ISM 2.4 GHz band is studied through an in-house developed 3D Ray Launching simulation tool, in order to analyze coverage/capacity relations for the optimal system selection as well as deployment strategy in terms of number of transceivers and location. Furthermore, a simplified dog model is developed for simulation code, considering not only its morphology but also its dielectric properties. Relevant wireless channel information such as power distribution, power delay profile and delay spread graphs are obtained providing an extensive wireless channel analysis. A functional dog monitoring system is presented, operating over the implemented ZigBee network and providing real time information to Android based devices. The proposed system can be scaled in order to consider different types of domestic pets as well as new user based functionalities.
机译:新时代的无线网络的灵活性以及用于测量大量变量的各种传感器导致了新的场景,其中小型电子设备可以监视任何事物,从而实现了无线传感器网络(WSN)。借助ZigBee,RFID或WiFi网络,可以实时了解人或动物的精确位置以及某些生物学参数。但是,由于无线传感器必须连接到生物组织并且高度分散,因此必须研究电磁波的传播以部署有效且运行良好的网络。这项工作的主要目的是研究无线信道限制对特定宠物监控系统运行的影响,该监控在物理信道以及功能级别上均得到验证。从这个意义上讲,通过内部开发的3D射线发射仿真工具研究了运行在ISM 2.4 GHz频段上的ZigBee设备产生的无线电波传播,以便分析覆盖范围/容量关系以优化系统选择和部署策略就收发器的数量和位置而言。此外,针对模拟代码开发了简化的狗模型,不仅要考虑其形态,还要考虑其介电特性。获得了相关的无线信道信息,例如功率分布,功率延迟曲线和延迟扩展图,从而提供了广泛的无线信道分析。提出了一种功能犬监测系统,该系统可在已实现的ZigBee网络上运行,并向基于Android的设备提供实时信息。可以缩放提出的系统,以便考虑不同类型的家庭宠物以及基于新用户的功能。

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