A simultaneous routing and localization algorithm for wireless sensor networks in emergency scenario

S. Panzieri, F. Pascucci, L. Sciavicco
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Abstract

A Wireless Sensor Network (WSN) is an emerging technology for a wide range of potential applications, including the environmental monitoring, medical, and target tracking systems. A WSN comprises a set of sensor nodes deployed in an area of interest. Sensor nodes are normally located in a dense and ad hoc manner, communicating each other in a multi-hop fashion in order to collect, process, and relay data. Most of WSNs are built on wireless, battery-powered sensor nodes. In such networks, it is hard to recharge or replace the energy-depleted nodes due to the desolate or harsh environment of the target area. Therefore, the efficient use of limited energy is a primary concern in designing protocols and usage strategies for WSNs. In this work an emergency scenario is considered and a WSN is used to monitoring the emergency area. To limit the power consumption, the WSN is activated only when the emergency occurs. Moreover an integrated protocol for routing and localization is developed to reduce communication, which is the most power-consuming operation in WSNs.
紧急情况下无线传感器网络的同步路由和定位算法
无线传感器网络(WSN)是一项新兴技术,具有广泛的应用前景,包括环境监测、医疗和目标跟踪系统。WSN由一组部署在感兴趣区域的传感器节点组成。传感器节点通常以密集和特别的方式定位,以多跳方式相互通信,以便收集、处理和中继数据。大多数无线传感器网络都是建立在无线、电池供电的传感器节点上。在这种网络中,由于目标区域荒凉或恶劣的环境,很难对能量耗尽的节点进行充电或替换。因此,有效利用有限的能量是设计无线传感器网络协议和使用策略的首要问题。在此工作中,考虑了一个紧急情况,并使用无线传感器网络对紧急区域进行监控。为了限制功耗,WSN仅在发生紧急情况时激活。此外,为了减少无线传感器网络中最耗电的通信,还开发了一种集成的路由和定位协议。
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