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Continuous Transmission Frequency Modulation Detection under Variable Sonar-Target Speed Conditions

机译:可变声纳目标速度条件下的连续传输调频检测

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摘要

As a ranging sensor, a continuous transmission frequency modulation (CTFM) sonar with its ability for range finding and range profile formation works effectively under stationary conditions. When a relative velocity exists between the target and the sonar, the echo signal is Doppler-shifted. This situation causes the output of the sensor to deviate from the actual target range, thus limiting its applications to stationary conditions only. This work presents an approach for correcting such a deviation. By analyzing the Doppler effect during the propagation process, the sensor output can be corrected by a Doppler factor. To obtain this factor, a conventional CTFM system is slightly modified by adding a single tone signal with a frequency that locates out-of-sweep range of the transmitted signal. The Doppler factor can be extracted from the echo. Both verification experiments and performance tests are carried out. Results indicate the validity of the proposed approach. Moreover, ranging precision under different processing setups is discussed. For adjacent multiple targets, the discrimination ability is influenced by displacement and velocity. A discrimination boundary is provided through an analysis.
机译:作为测距传感器,连续传输频率调制(CTFM)声纳具有测距和形成测距曲线的能力,可以在静止条件下有效地工作。当目标和声纳之间存在相对速度时,回波信号会发生多普勒频移。这种情况会导致传感器的输出偏离实际目标范围,从而将其应用限制在固定条件下。这项工作提出了一种纠正这种偏差的方法。通过分析传播过程中的多普勒效应,可以通过多普勒因子校正传感器输出。为了获得该因子,通过添加频率位于发射信号的扫频范围之外的单个音频信号,对常规的CTFM系统进行了少许修改。可以从回波中提取多普勒因子。进行验证实验和性能测试。结果表明了该方法的有效性。此外,讨论了不同处理设置下的测距精度。对于相邻的多个目标,判别能力受位移和速度的影响。通过分析提供了区分边界。

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