Design of Communication System of Underwater Hybrid Voice Communication System

Zhigui Lian, Yi Zheng, Xiaodong Gong, Xiuhui Ni, Lei Kou, Jinlong Gao, Y. Meng, Xiangchao Feng
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引用次数: 2

Abstract

In the field of underwater acoustic communication, some underwater devices often operate voice communication and digital communication separately when communicating, and the existing analog modulated voice communication and digital coded voice communication cannot distinguish between digital communication and voice communication in time, resulting in data The transmission speed is slower and the voice quality is lower. In order to solve this problem, the design proposes the use of hybrid communication for information transmission, and designs a special communication protocol system. At the same time, the system adopts positive and negative hyperbolic frequency modulation in the synchronization head and synchronization tail, and adds a spread spectrum communication data header after the synchronization head. The system uses cyclic redundancy check (CRC) to distinguish between voice information and digital information and to synchronize them. The system uses data communication to aid voice communication. The communication system makes the communication process less affected by the channel, has strong anti-interference ability, and realizes better data transmission. Simulation and laboratory tests show that the system can effectively improve the quality of voice communication.
水下混合语音通信系统的通信系统设计
在水声通信领域,一些水下设备在通信时往往将语音通信和数字通信分开操作,现有的模拟调制语音通信和数字编码语音通信无法及时区分数字通信和语音通信,导致数据传输速度较慢,语音质量较低。为了解决这一问题,本设计提出采用混合通信方式进行信息传输,并设计了专用的通信协议体系。同时,系统在同步头和同步尾采用正负双曲调频,并在同步头后增加扩频通信数据报头。该系统采用循环冗余校验(CRC)来区分语音信息和数字信息并进行同步。该系统采用数据通信辅助语音通信。该通信系统使通信过程受信道影响小,抗干扰能力强,实现了较好的数据传输。仿真和实验室测试表明,该系统能有效提高语音通信质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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