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LLOP localization algorithm with optimal scaling in NLOS wireless propagations

机译:NLOS无线传播中具有最佳缩放比例的LLOP定位算法

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Wireless localization has become an important issue in internet of things, but the non-line-of-sight (NLOS) propagation will degrade the performance of traditional localization algorithms. Therefore, an optimization-based localization algorithm is put forward by exploiting the linear line of position (LLOP) scheme, where the proposed algorithm models the NLOS problem as a quadratic programming problem, and then the position of the mobile node is estimated by solving this problem. Simulations show that the proposed algorithm can mitigate the NLOS error significantly if there are many base stations or there exist a few LOS base stations. Moreover, the simulation also proves that the proposed algorithm outperforms other algorithms in the NLOS environment.
机译:无线定位已成为物联网中的重要问题,但是非视距(NLOS)传播将降低传统定位算法的性能。因此,提出了一种基于位置优化的定位算法,该算法利用线性位置线(LLOP)方案,将NLOS问题建模为二次规划问题,然后通过求解该问题来估计移动节点的位置。问题。仿真表明,该算法可以在基站数量很多或LOS基站数量较少的情况下,大大减轻NLOS误差。此外,仿真还证明了该算法在非视距环境下的性能优于其他算法。

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