在MSTWG的大型模拟多静态场上的SPECSweb跟踪

D. Grimmett
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引用次数: 1

摘要

由于所有声纳节点都存在高水平的假警报杂波,因此有效融合和跟踪多静态主动声纳接触是具有挑战性的。这样的假警报通常会使传感器到融合中心的通信链路和融合/跟踪过程过载,从而产生太多的假轨迹。镜面线索监视网络(SPECSweb)多静态跟踪器通过允许仅在识别高强度镜面目标检测时才发生跟踪启动来缓解这些问题。利用这些“镜面”线索和随后的跟踪状态估计,采用选择性数据检索方法,显著降低了融合/跟踪算法输入端的数据速率,并降低了节点到融合中心的通信链路吞吐量要求。本文给出了该跟踪算法在多静态跟踪工作组(multistatic tracking Working Group, MSTWG)的模拟多静态数据集上的性能结果。该数据集模拟了一个大型多静态场,具有低检测概率(PD)、高虚警率(FAR)和高测量误差的特点。解释了这些具有挑战性的条件对跟踪器性能的影响,包括轴承测量误差大的关联门控的退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPECSweb tracking on a large, simulated multistatic field of the MSTWG
Effective fusion and tracking of multistatic active sonar contacts is challenging, due to high levels of false alarm clutter present on all sonar nodes. Such false alarms often overload the sensor-to-fusion-center communications links and fusion/tracking processes, producing too many false tracks. The Specular-Cued Surveillance Web (SPECSweb) multistatic tracker mitigates these problems by allowing track initiation to occur only when high-strength specular target detections are identified. Using these “specular” cues, and subsequent track state estimates, a selective data retrieval approach is used which significantly reduces the data rate at the input to the fusion/tracking algorithm, and reduces node to fusion-center communication link throughput requirements. This paper provides performance results of this tracking algorithm on a simulated multistatic data set from the Multistatic Tracking Working Group (MSTWG). The data set simulates a large multistatic field, and is characterized by low probability of detection (PD), high false alarm rate (FAR), and high measurement errors. The impacts of these challenging conditions on tracker performance are explained, including the degradation of association gating with large error in bearing measurements.
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