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Frequency Hopping Waveforms Design and Targets Detection for Continuous Active Sonar

机译:连续有源声纳的跳频波形设计与目标检测

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In order to improve the performance of anti-interception and information update rate for continuous active sonar (CAS), frequency hopping linear frequency-modulated (FH-LFM) waveforms were proposed. The expressions of transmitting waveforms and base band signals were presented, and the echo model of underwater moving targets was established. The method of multi-channel quadrature demodulation and matched filtering was proposed to detect sub-pulses of the FH-LFM waveforms. In order to improve sonar detection performance, the output results of matched filters were delayed and processed by non-coherent integration. The proposed algorithm can shorten the update time of target information, and provided enough information for target tracking. To verify detection performance of FHLFM, the receiver operating characteristic (ROC) curves were obtained by simulation. The performance and feasibility of the proposed waveform and signal processing algorithm were verified by sea trial.
机译:为了提高连续有源声纳(CAS)的抗拦截性能和信息更新率,提出了跳频线性调频(FH-LFM)波形。给出了发射波形和基带信号的表达式,建立了水下运动目标的回波模型。提出了一种多通道正交解调和匹配滤波的方法来检测FH-LFM波形的子脉冲。为了提高声纳检测性能,对匹配滤波器的输出结果进行了延迟和非相干积分处理。该算法可以缩短目标信息的更新时间,并为目标跟踪提供足够的信息。为了验证FHLFM的检测性能,通过仿真获得了接收器工作特性(ROC)曲线。通过海试验证了所提波形和信号处理算法的性能和可行性。

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