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Improving transmission reliability of inductive coupling temperature-salinity-depth mooring cable system

机译:提高感应耦合温度-盐度-深度系泊缆系统的传输可靠性

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Inductive coupling temperature-salinity-depth mooring cable is an important instrument for measuring deep sea environment. However, the channel characteristics change depending on the load and marine environment, and these characteristics affect the signal transmission reliability. In this paper, an inductive coupling temperature salinity-depth communication system is developed and channel characteristics are derived theoretically. The amplitude-frequency and phase-frequency characteristics in seawater and freshwater environments are measured using the frequency-sweep method in laboratory. The measured results are compared with the theoretical results. The accuracy of the results is verified by recovering a square-wave using the measured amplitude-frequency and phase-frequency characteristics. Next, amplitude shift keying modulation is used to test the signal transmission reliability and the results show that the error rates are high due to the influence of noise. Finally, to improve the signal transmission reliability, a concatenated code comprising of Reed-Solomon and convolution code is used. The concatenated code can make the error rate less than 1.906% and 6.502% in sea water and fresh water, respectively. The study provides an important experimental evidence for understanding the channel characteristics and improving signal transmission reliability of inductive coupling temperature-salinity-depth mooring cable.
机译:感应耦合温度-盐度-深度系泊缆是测量深海环境的重要仪器。然而,信道特性根据负载和海洋环境而改变,并且这些特性影响信号传输的可靠性。本文开发了一种感应耦合温度盐度深度通信系统,并从理论上推导了信道特性。在实验室中使用扫频法测量海水和淡水环境中的幅频和相频特性。将测量结果与理论结果进行比较。通过使用测得的幅频特性和相频特性恢复方波,可以验证结果的准确性。接下来,使用幅度移位键控调制来测试信号传输的可靠性,结果表明由于噪声的影响,误码率很高。最后,为了提高信号传输的可靠性,使用了由里德-所罗门和卷积码组成的级联码。串联代码可使海水和淡水中的错误率分别小于1.906%和6.502%。该研究为理解感应耦合温度-盐度-深度系泊缆的通道特性和提高信号传输可靠性提供了重要的实验证据。

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