Reverse-Time Tracking to Enhance Passive Sonar

G. Mellema
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引用次数: 5

Abstract

Passive sonar depends on signals of opportunity to detect, track and localize targets. These signals are typically detected and then tracked using Kalman filter-type signal followers. Target motion analysis (TMA) is then used to estimate the target's range and, from this, its position, course and speed. The accuracy of TMA is strongly dependent on the duration of the available track. Initiating a second tracker in reverse time at the time of detection can reduce or eliminate the delay between target detection and localization. A detection and tracking system for a passive sonar using a towed array receiver is described and an example of reverse-time tracking using real data is provided. Reverse-time tracking is able to significantly increase the amount of track data that can be extracted from already available data, highlighting the need for improved data fusion. Potential improvements to this enhanced system through track association are discussed
逆时跟踪增强被动声纳
被动声纳依靠机会信号来探测、跟踪和定位目标。这些信号通常被检测到,然后使用卡尔曼滤波型信号跟踪器进行跟踪。然后使用目标运动分析(TMA)来估计目标的距离,并从中估计其位置,航向和速度。TMA的准确性很大程度上取决于可用航迹的持续时间。在检测时反向启动第二跟踪器可以减少或消除目标检测与定位之间的延迟。介绍了一种采用拖曳阵列接收机的被动声呐探测跟踪系统,并给出了利用真实数据进行逆时跟踪的实例。逆时跟踪能够显著增加从现有数据中提取的跟踪数据量,这突出了改进数据融合的必要性。讨论了通过航迹关联对这一增强系统的潜在改进
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