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Source signal correction of high resolution wide band parametric subbottom profiler

机译:高分辨率宽带参数亚底部轮廓仪的源信号校正

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Because parametric array can generate wide band and narrow beam low frequency signals, it is widely used in high resolution subbottom profiling. Parametric sonar has been one of the most effective equipment in seabed configuration detection and property identification. Emphases of this paper are on source signal correction of wide band parametric subbottom profiler, so we can get desired difference frequency detective signals after non-linear self-demodulation of the wide-band parametric arrays. In order to generate desired Chirp subbottom profiling signal, we have to divide the Chirp waveform which is the envelope of wide-band parametric array's primary wave by its instantaneous frequency. The correction method which is called fragment correction is analyzed subsequently, it is used to correct 1/8 Sine-Square weighted Chirp envelope signal which is a high resolution source signal of subbottom profiler. The expressions of Chirp difference signals after self-demodulation of the wide-band parametric array are derived, and the simplified forms are also proposed at the same time. We can see that the Chirp difference frequency signals with its frequency and bandwidth twice of the primary frequency wave's envelope will be generated by self-demodulation process of wide-band parametric array no matter it was weighted or not. The comparison between expressions before and after simplification indicated that simplify process and the correction methods are all reasonable, computer simulations are given simultaneously. Researches on source signal correction of wide-band parametric array are important in designing source signals of high resolution wide-band parametric subbottom profiling and some other relevant engineering applications.
机译:因为参数阵列可以生成宽带和窄波束低频信号,所以它广泛用于高分辨率亚底轮廓分析中。参数声纳已成为海床构造检测和属性识别中最有效的设备之一。本文的重点是宽带参数亚底轮廓仪的源信号校正,因此,在宽带参数阵列进行非线性自解调之后,我们可以获得所需的差频检测信号。为了生成所需的Chirp底层信号,我们必须将Chirp波形除以其瞬时频率,该Chirp波形是宽带参数阵列主波的包络。随后分析了称为片段校正的校正方法,该方法用于校正1/8正弦平方加权Chirp包络信号,该信号是下层轮廓分析仪的高分辨率源信号。推导了宽带参数阵列自解调后Chirp差信号的表达式,并同时提出了简化形式。我们可以看到,其频宽和带宽是主频波包络的两倍的线性调频差频信号将通过宽带参量阵列的自解调过程产生,无论其是否经过加权。简化前后表达式之间的比较表明,简化过程和校正方法都是合理的,同时给出了计算机模拟。宽带参数阵列源信号校正的研究对于设计高分辨率宽带参数亚底轮廓分析的源信号以及其他一些相关工程应用具有重要意义。

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