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Research on the optoacoustic communication system for speech transmission by variable laser-pulse repetition rates

机译:可变激光脉冲重复频率的语音传输光声通信系统研究

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摘要

For the optoacoustic communication from in-air platforms to submerged apparatus, a method based on speech recognition and variable laser-pulse repetition rates is proposed, which realizes character encoding and transmission for speech. Firstly, the theories and spectrum characteristics of the laser-generated underwater sound are analyzed; and moreover character conversion and encoding for speech as well as the pattern of codes for laser modulation is studied; lastly experiments to verify the system design are carried out. Results show that the optoacoustic system, where laser modulation is controlled by speech-to-character baseband codes, is beneficial to improve flexibility in receiving location for underwater targets as well as real-time performance in information transmission. In the overwater transmitter, a pulse laser is controlled to radiate by speech signals with several repetition rates randomly selected in the range of one to fifty Hz, and then in the underwater receiver laser pulse repetition rate and data can be acquired by the preamble and information codes of the corresponding laser-generated sound. When the energy of the laser pulse is appropriate, real-time transmission for speaker-independent speech can be realized in that way, which solves the problem of underwater bandwidth resource and provides a technical approach for the air-sea communication.
机译:针对从空中平台到水下设备的光声通信,提出了一种基于语音识别和可变激光脉冲重复率的语音编码方法,该方法可以实现语音的字符编码和传输。首先,分析了激光产生的水下声的理论和频谱特性;此外,还研究了语音的字符转换和编码以及激光调制的码型。最后进行了验证系统设计的实验。结果表明,通过语音转字符基带代码控制激光调制的光声系统,有利于提高水下目标接收位置的灵活性以及信息传输的实时性能。在水上发射器中,控制脉冲激光,以语音信号辐射具有在1至50 Hz范围内随机选择的几种重复率的语音信号,然后在水下接收器中,激光的脉冲重复率和数据可通过前导码和信息获取。激光产生的声音的代码。当激光脉冲能量合适时,可以实现与说话人无关的语音的实时传输,解决了水下带宽资源不足的问题,为海海通信提供了一种技术手段。

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