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Coherent track-before-detection processing in a ship-based multifunction radar

机译:舰载多功能雷达的相干事前检测处理

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In simple radar environments the human operator is notably successful at initiating and updating tracks. However, manual tracking performance deteriorates in complex target environments and is hastened by the onset of operator fatigue. Automatic detection and tracking (ADT) schemes aim to address this problem and provide reliable performance under all conditions. Multiple tasks may be performed concurrently in a single resource known as a multifunction array radar (MFAR), and performance may be optimised independently. The problem of track initiation and evolution in a ship-based environment is addressed by jointly considering MFAR waveforms which are good or optimal for ADT in conjunction with a data association technique termed, track-before-detection (TBD). The paper discusses a new application of TBD processing to ADT in microwave MFAR, and in particular a coherent TBD scheme for constant false track rate processing is described.
机译:在简单的雷达环境中,操作员在启动和更新航迹方面尤为成功。但是,手动跟踪性能在复杂的目标环境中会变差,并且会因操作员疲劳而加速。自动检测和跟踪(ADT)方案旨在解决此问题,并在所有情况下均提供可靠的性能。可以在称为多功能阵列雷达(MFAR)的单个资源中同时执行多个任务,并且可以独立地优化性能。通过共同考虑对ADT良好或最佳的MFAR波形,结合称为先行检测(TBD)的数据关联技术,可以解决基于舰船的环境中航迹启动和演化的问题。该文讨论了将TBD处理应用于微波MFAR中ADT的新应用,特别是描述了用于恒定假跟踪速率处理的相干TBD方案。

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