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Basic Study on Acoustic Communication Using Direct-Sequence Spread Spectrum for Underwater Acoustic Positioning

机译:直接序列扩频声通信在水下声定位中的基础研究

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Supershort baseline (SSBL) underwater acoustic positioning is commonly utilized in estimating the positions of transponders, observation devices and submersibles. The new SSBL system in which a sea surface station and a sea bottom station communicate using the spectrum spread (SS) technique was studied with simulation. An M-sequence was adopted as pseudonoise (PN) code and PN code length was set for 15, 31, 63 and 127. Random noise and Doppler shift were considered as distortions. It became clear that the system becomes useless due to Doppler shift exponentially, and that under the condition with a large Doppler shift, the system is not available if the PN code length is longer than 31, that if the relative velocity between the transmitter and the receiver is less than 5 m/s, the system has the highest performance with a PN code length of 31 and that in case of a PN code length of 15 the system is stable under the same condition.
机译:超短基线(SSBL)水下声学定位通常用于估算应答器,观察装置和潜水器的位置。通过仿真研究了一种新的SSBL系统,其中海面站和海底站使用频谱扩展(SS)技术进行通信。采用M序列作为伪噪声(PN)码,并将PN码长度设置为15、31、63和127。随机噪声和多普勒频移被视为失真。很明显,由于多普勒频移,该系统变得无用,并且在多普勒频移较大的情况下,如果PN码长度大于31,并且如果发射机与发射机之间的相对速度较大,则该系统将不可用。如果接收器的接收器小于5 m / s,则PN码长度为31时系统性能最高,而PN码长度为15时,系统在相同条件下稳定。

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