Localization in resource constrained sensor networks using a mobile beacon with in-ranging

T. Srinath
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引用次数: 35

Abstract

In this paper, we provide a mechanism for the problem of localization in resource constrained sensor networks by extending the principles of in-range technique using a mobile beacon. The main advantage of this mechanism is that, it inherits all the advantages of in-range technique, eliminates the need to deploy beacons in the sensor network and satisfy the requirements of localization algorithms for the sensor networks. Location awareness of sensor nodes plays a critical role in most of the sensor network applications. Our mechanism assumes only a basic communication capability of sensor nodes and does not require any additional infrastructure. We employ a single mobile beacon equipped with a GPS receiver for localization. Each broadcast position of the mobile beacon acts as a stationary beacon at that point (known as a virtual beacon) thereby eliminating the need to deploy GPS equipped beacons in the sensor network. The motion of the mobile beacon localizes some of the sensor nodes, which in turn aid in localization of their neighbors using the iterative in-range technique. Simulation results are presented to evaluate the performance of the proposed mechanism. An implementation on sensor network of MICA2 motes is used to evaluate the functionality of the proposed algorithm
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基于移动信标的资源约束传感器网络定位
在本文中,我们通过扩展使用移动信标的距离内技术原理,为资源受限的传感器网络中的定位问题提供了一种机制。该机制的主要优点是继承了距离内技术的优点,省去了在传感器网络中部署信标的需要,满足了传感器网络对定位算法的要求。传感器节点的位置感知在大多数传感器网络应用中起着至关重要的作用。我们的机制只假设传感器节点具有基本的通信能力,不需要任何额外的基础设施。我们使用一个装有GPS接收器的单一移动信标进行定位。移动信标的每个广播位置在该点充当固定信标(称为虚拟信标),从而消除了在传感器网络中部署配备GPS的信标的需要。移动信标的运动定位了一些传感器节点,这些节点反过来又有助于使用迭代距离内技术定位它们的邻居。给出了仿真结果来评估所提出的机制的性能。利用MICA2粒子的传感器网络实现对算法的功能进行了评价
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