浅水环境软声调制解调器的开发

T. Santoso, E. Widjiati, Wirawan, G. Hendrantoro
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引用次数: 2

摘要

发展水声通信系统对印度尼西亚的大部分海域来说是必要的。印度尼西亚的海洋大部分面积较浅,环境与其他国家相比具有独特的特点。这是水声通信系统研究中的一个难题。本文对利用OFDM技术开发水声通信系统软声调制解调器试验台进行了初步研究。用Matlab在PC机上实现了调制解调器,目的是对算法的发展进行评价。JPEG格式的图像文件使用离散余弦变换(DCT)进行编码。为了提高性能,信息采用前向纠错(FEC-Hamming)编码。该系统采用BPSK调制、OFDM传输技术,以声信号为载波。该系统的占用带宽为5.3 kHz,传输速率为3.7 k sps,中心频率为13.3 kHz。作为初始阶段,该模型以模拟器测试的通带形式呈现,并使用先前在拖曳槽中测量得到的传播参数进行处理。第二阶段是通过实验室实验,对PC声卡上电信号到音频信号的转换过程的效果和接收机恢复信息的能力进行测试评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft acoustic modem development for shallow water environment
Development of an underwater acoustic communication system is a necessity for the majority of the nation as a sea area of Indonesia. Most area s of the ocean in Indonesia is shallow, the environment has unique characteristics compared to other countries. It is a challenge in the research underwater acoustic communication system. This paper presented a preliminary study of the developing of soft acoustic modem testbed for underwater acoustic communication system with OFDM technique. Modem has been implemented on a PC with Matlab, with the objective to evaluate the algorithm development. Image file in JPEG format is encoded with a discrete cosine transform (DCT). To improve performance, information is encoded with a forward error correction, FEC-Hamming. The system uses BPSK modulation, OFDM transmission techniques, and using acoustic signal as carrier wave. In this system, the occupation bandwidth is 5.3 kHz, transmission rate of 3.7 k sps, and center frequency at 13.3 kHz. As an initial stage, the model presented in the form of simulator tesbed passband, and is treated with the propagation parameters that was obtained from measurements in a Towing Tank in previous experiment. The next stage is tesbed evaluation through experimental in a laboratory, such the effect of conversion process from electrical to audio signal at PC sound card and the capability of the receiver to recover the information.
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