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    • 4. 发明公开
    • DUAL DETECTION PROCESSING FOR DETECTING SIGNALS WITH HIGH ACCELERATION UNCERTAINTY
    • DOPPELDETEKTIONSVERARBEITUNG ZUM DETEKTIEREN VON SIGNALEN MIT HOHER BESCHLEUNIGUNGSUNBESTIMMTHEIT
    • EP1287377A4
    • 2003-07-02
    • EP01932607
    • 2001-04-24
    • LOCKHEED CORP
    • MATTOX BARRY G
    • G01S7/292G01S13/58
    • G01S7/292
    • Dual path detection processing in which a low SNR signal processor (520) detects signals over a limited range of low acceleration values and a high SNR signal processor (540) detects signals over a wider range of acceleration values. The low SNR signal processor (520) uses acceleration bins formed from a noncoherent FFT array to detect low SNR signals of far away objects which tend to have lower angular acceleration. Because close proximity target objects tend to have higher SNR return signals, it is not necessary to rely on acceleration bins formed from an FFT array for signal detection. Close proximity targets with high SNR can often be detected in individual coherently integrated FFT templates, despite the likelihood of large acceleration uncertainty from higher angular acceleration rates. Since signal detection of higher SNR signals is much less computationally burdensome than signal detection using a noncoherent FFT array, the present invention is able to realize computational efficiencies by using dual path detection processing.
    • 其中低SNR信号处理器(520)在低加速度值的有限范围内检测信号并且高SNR信号处理器(540)在更宽范围的加速度值上检测信号的双路径检测处理。 低SNR信号处理器(520)使用由非相干FFT阵列形成的加速度二进制来检测倾向于具有较低角加速度的远距离物体的低SNR信号。 由于近距离目标物体倾向于具有较高的SNR返回信号,因此不需要依靠由FFT阵列形成的加速箱来进行信号检测。 尽管从较高的角加速度可能出现较大的加速度不确定性,但通常可以在单个相干集成的FFT模板中检测到具有高SNR的近距离目标。 由于较高SNR信号的信号检测比使用非相干FFT阵列的信号检测在计算上负担小得多,所以本发明能够通过使用双路径检测处理来实现计算效率。