Localization in wireless sensor network based on mobile anchor and chord selection

G. Karthiga, C. Preethi, R. Devi
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引用次数: 9

Abstract

Accurate and low-cost sensor localization is a critical requirement for the deployment of wireless sensor networks in a wide variety of applications. Many applications require the sensor nodes to know their locations with a high degree of precision. Various localization methods based on mobile anchor nodes have been proposed for assisting the sensor nodes to determine their locations. However, none of these methods attempt to optimize the trajectory of the mobile anchor node. Accordingly, this project presents a path planning scheme, which ensures that the trajectory of the mobile anchor node minimizes the localization error and guarantees that all of the sensor nodes can determine their locations. The obstacle-resistant trajectory is also proposed to handle the obstacles in the sensing field. Later this path planning algorithm is adjusted so that it suits most of the effective localization algorithms. The performance of the proposed scheme is to be evaluated through a series of simulations with the ns-2 network simulator.
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基于移动锚和弦选择的无线传感器网络定位
准确和低成本的传感器定位是在各种应用中部署无线传感器网络的关键要求。许多应用要求传感器节点以高精度了解其位置。人们提出了各种基于移动锚节点的定位方法,以帮助传感器节点确定其位置。然而,这些方法都没有尝试优化移动锚节点的轨迹。因此,本课题提出了一种路径规划方案,该方案保证移动锚节点的轨迹使定位误差最小化,并保证所有传感器节点都能确定自己的位置。在传感领域中,为了处理障碍物,还提出了抗障轨迹。随后对该路径规划算法进行了调整,使其适用于大多数有效的定位算法。通过ns-2网络模拟器的一系列仿真来评估所提出方案的性能。
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