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A novel range-free localization algorithm to turn connectivity traces and motion data into localization information

机译:一种新颖的无范围定位算法,可将连接轨迹和运动数据转换为定位信息

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摘要

This paper presents a novel range-free localization algorithm that has been originally designed to help in the characterization of human behavior by turning connectivity traces of mobile nodes into localization information. It is based on an error function that uses connectivity between nodes and information about their maximum velocity and that is solved by iterative minimization using unconstrained optimization. The resultant trajectories are evaluated with respect to the localization solution space (LSS), a multi-dimensional space consisting of all solutions that satisfy completely the conditions of the problem. The algorithm is evaluated through extensive simulations in scenarios with different levels of connectivity and under regular and irregular conditions in the communications. The complementarity with other localization algorithms is presented by using their results as initialization stage for this algorithm. Finally, it is applied to a real database that provides information about Bluetooth-based connectivity and motion of people in an office scenario, rendering satisfactory results and hence, validating the practicability of the proposed algorithm as a framework to obtain localization traces.
机译:本文提出了一种新颖的无范围定位算法,该算法最初旨在通过将移动节点的连接迹线转变为定位信息来帮助描述人类行为。它基于误差函数,该误差函数使用节点之间的连通性以及有关其最大速度的信息,并通过使用无约束优化的迭代最小化来解决。相对于局部解决方案空间(LSS)评估所得的轨迹,该解决方案是一个完全满足问题条件的所有解决方案组成的多维空间。通过在连接级别不同以及通信中规则和不规则条件下进行的大量仿真,对算法进行评估。通过将其他定位算法的结果用作该算法的初始化阶段,可以得出与其他定位算法的互补性。最后,它被应用于一个真实的数据库,该数据库提供有关办公室场景中基于蓝牙的连接性和人员活动的信息,从而提供令人满意的结果,从而验证了所提出算法作为获取定位轨迹的框架的实用性。

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