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用于空中目标监视的异步纯方位传感器网络中的一种序贯两阶段航迹关联方法

A Sequential Two-Stage Track-to-Track Association Method in Asynchronous Bearings-Only Sensor Networks for Aerial Targets Surveillance.

作者信息

Yu Yang, Hou Qingyu, Zhang Wei, Zhang Jinxiu

机构信息

School of Astronautics, Harbin Institute of Technology, Harbin 150080, China.

出版信息

Sensors (Basel). 2019 Jul 19;19(14):3185. doi: 10.3390/s19143185.

Abstract

Successful track-to-track association (TTTA) in a multisensor and multitarget scenario is predicated on a reasonable likelihood function to evaluate the similarity of asynchronous mono tracks. To deal with the lack of synchronous data and prior knowledge of the targets in practical applications, this paper investigates a global optimization method with a novel likelihood function constructed by finite asynchronous measurements with joint temporal and spatial constraints (JTSC). For a scenario with more than two independent sensors, a sequential two-stage strategy is proposed to calculate the similarity of multiple asynchronous mono tracks. For the first stage, based on the temporal features of measurements from different sensors, a pairwise fusion model to estimate the position of the target with two mono tracks is established based on the asynchronous crossing location approach. For the other stage, to evaluate the similarity of the outputs, a pairwise similarity model is constructed by searching for the optimal matching points by setting temporal and spatial constraints. Thus, the likelihood of multiple asynchronous tracks is obtained. Simulations are performed to verify that the proposed method can achieve favorable performance without data-synchronization, and also demonstrate the superiority over the methods based on hinge angle differences (HADs) in some scenarios.

摘要

在多传感器和多目标场景中,成功的航迹间关联(TTTA)取决于一个合理的似然函数,用于评估异步单条航迹的相似性。为了应对实际应用中缺乏同步数据和目标先验知识的问题,本文研究了一种全局优化方法,该方法具有由具有联合时间和空间约束(JTSC)的有限异步测量构建的新型似然函数。对于具有两个以上独立传感器的场景,提出了一种顺序两阶段策略来计算多个异步单条航迹的相似性。在第一阶段,基于来自不同传感器测量的时间特征,基于异步交叉位置方法建立一个成对融合模型,以估计具有两条单条航迹的目标位置。在另一阶段,为了评估输出的相似性,通过设置时间和空间约束搜索最优匹配点来构建成对相似性模型。从而获得多个异步航迹的似然性。进行了仿真以验证所提出的方法在无需数据同步的情况下能够实现良好的性能,并且还证明了在某些场景中相对于基于铰链角差(HAD)的方法的优越性。

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