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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Global node selection for localization in a distributed sensor network
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Global node selection for localization in a distributed sensor network

机译:用于在分布式传感器网络中定位的全局节点选择

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This work considers the problem of selecting the best nodes for localizing (in the mean squared (MS) position error sense) a target in a distributed wireless sensor network. Each node consists of an array of sensors that are able to estimate the direction of arrival (DOA) to a target. Different computationally efficient node selection approaches that use global network knowledge are introduced. Performance bounds based on the node/target geometry are derived, and these bounds help to determine the necessary communication reach of the active nodes. The resulting geolocation performance and energy usage, based on communication distance, is evaluated for a decentralized extended Kalman filter (EKF) that is exploiting the different selection approaches.
机译:这项工作考虑了选择最佳节点以定位(在均方(MS)位置误差意义上)分布式无线传感器网络中目标的问题。每个节点由传感器阵列组成,这些传感器阵列能够估计到达目标的到达方向(DOA)。介绍了使用全局网络知识的不同计算有效的节点选择方法。得出基于节点/目标几何的性能界限,这些界限有助于确定活动节点的必要通信范围。根据通信距离,对利用不同选择方法的分散扩展卡尔曼滤波器(EKF)评估得到的地理位置性能和能源使用情况。

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