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Exploiting signal processing approaches for broadband echosounders

机译:利用宽带回声测深仪的信号处理方法

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摘要

Broadband echosounders, which transmit frequency-modulated pulses, increase the spectral characterization of targets relative to narrowband echosounders, which typically transmit single-frequency pulses, and also increase the range resolution through broadband matched-filter signal processing approaches. However, the increased range resolution does not necessarily lead to improved detection and characterization of targets close to boundaries due to the presence of undesirable signal processing side lobes. The standard approach to mitigating the impact of processing side lobes is to transmit tapered signals, which has the consequence of also reducing spectral information. To address this, different broadband signal processing approaches are explored using data collected in a large tank with both a Kongsberg-Simrad EK80 scientific echosounder with a combination of single-and split-beam transducers with nominal centre frequencies of 18, 38, 70, 120, 200, and 333 kHz, and with a single-beam custom-built echosounder spanning the frequency band from 130 to 195 kHz. It is shown that improved detection and characterization of targets close to boundaries can be achieved by using modified replica signals in the matched filter processing. An additional benefit to using broadband echosounders involves exploiting the frequency dependence of the beam pattern to calibrate single-beam broadband echosounders using an off-axis calibration sphere.
机译:发射调频脉冲的宽带回声测深仪相对于通常发射单频脉冲的窄带回声测深仪,提高了目标的频谱特性,并且还通过宽带匹配滤波器信号处理方法提高了距离分辨率。但是,由于存在不希望的信号处理旁瓣,增加的距离分辨率并不一定会导致改善对边界附近目标的检测和表征。减轻处理旁瓣影响的标准方法是传输锥形信号,其结果是还减少了频谱信息。为了解决这个问题,研究人员使用了在大型水箱中收集的数据(采用Kongsberg-Simrad EK80科学回声测深仪,结合了标称中心频率为18、38、70、120的单波束和分离波束传感器)探索了不同的宽带信号处理方法,200和333 kHz,并具有跨130至195 kHz频带的单波束定制回声测深仪。结果表明,通过在匹配滤波器处理中使用修改后的副本信号,可以改善对边界附近目标的检测和表征。使用宽带回声测深仪的另一个好处是,利用离轴图样的频率依赖性,可以利用离轴校准球来校准波束图的频率依赖性,从而校准单波束宽带回声测深仪。

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