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A Dynamic Constrained Cooperative Localization Algorithm

机译:动态约束协作定位算法

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Cooperative localization (CL) algorithms are widely used in various systems, such as wireless sensor networks (WSNs), urban vehicular networks and unmanned aerial vehicle (UAV) networks. The performance of traditional CL algorithms degrades when these algorithms are applied to sparse distribution and high mobility scenarios. In this paper, a dynamic constrained CL algorithm based on the sum-product algorithm (SPA) is proposed. Dynamic constraints can effectively reduce the negative impact caused by the network nodes' mobility, and improve the accuracy of the prior position estimates. Based on the prior information, the SPA is used to fuse range measurements. Simulation results show that the proposed algorithm has better localization performance than EKF-based CL algorithms and SPAWN in critical environment.
机译:协作定位(CL)算法广泛用于各种系统,例如无线传感器网络(WSNS),城市车辆网络和无人驾驶飞行器(UAV)网络。当这些算法应用于稀疏分布和高移动性方案时,传统CL算法的性能降低。本文提出了一种基于SUM-MATER算法(SPA)的动态约束CL算法。动态约束可以有效地降低网络节点移动性造成的负面影响,并提高了现有位置估计的准确性。基于先前的信息,SPA用于熔断范围测量。仿真结果表明,该算法具有比基于EKF的CL算法更好的本地化性能并在临界环境中产生产卵。

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