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Distributed target tracking by time of arrival and received signal strength with unknown path loss exponent

机译:到达时间和接收信号强度的分布式目标跟踪,路径损耗指数未知

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摘要

The problem of distributed target tracking using time of arrival and received signal strength with unknown path loss exponent (PLE) is studied. The PLE is modelled as a Markov chain with three states and an adaptive gridding strategy is adopted to adjust the PLE recursively in a bounded interval. Therefore, the target tracking model is formulated as a jump Markov non-linear system. The interacting multiple model () estimator is applied to derive the target state estimates for each sensor and the covariance intersection approach is used to fuse sensor-based estimates in a distributed fashion. Simulation results show a promising performance for the proposed filter.
机译:研究了到达时间和接收信号强度具有未知路径损耗指数(PLE)的分布式目标跟踪问题。 PLE被建模为具有三个状态的马尔可夫链,并采用自适应网格化策略在有界区间内递归地调整PLE。因此,目标跟踪模型被表述为跳跃马尔可夫非线性系统。应用交互的multi-model()估计器来推导每个传感器的目标状态估计,并且使用协方差相交方法以分布式方式融合基于传感器的估计。仿真结果表明该滤波器具有良好的性能。

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