海洋语音信道灾害传播数字叠加技术分析

Vrinda N. Menon, A. Suresh
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引用次数: 3

摘要

尽管陆地通信技术取得了很大的进步,但在过去的几十年里,海洋通信技术一直停滞不前,尤其是渔船。将一种新的通信技术引入海上是很困难的,因为它应该考虑海事法规,并且应该与现有系统互操作。尽管GPS辅助导航设备试图弥补这一差距,但它们仅限于大型海上船只,并支持高数据速率传输,而这并不需要警报信息。目前迫切需要一种低数据速率的渔船数字通信网络。本文分析了各种物理层特性,以优化甚高频海上网络的性能。这包括选择和研究合适的收发器IC,并分析使用NI PXIe的IC支持的调制方案。调制模块在Lab VIEW中实现,并根据我们的要求通过改变频率范围、分辨率和数据速率来分析频谱。设计了一种按需跳频算法,并利用NI-PXIe分析了模拟信道上数字传输的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing digital overlay technique over marine voice channel for disaster dissemination
Regardless of much advancement in terrestrial communication technologies, marine communication technology has been stagnating for the last few decades especially with fishing vessels. Bringing a new communication technology in marine is difficult because it should consider maritime regulations and should be interoperable with the existing systems. Even though GPS assisted navigation aids have attempted to bridge this gap, they are restricted to large marine vessels and support high data rate transmission which is not required for alert messaging. There is an imperative need for a low data rate digital communication network for fishing vessels. This work analyzes various PHY layer characteristics for optimizing the performance of VHF maritime networks. This involves the selection and study of a suitable transceiver IC and analysis of modulation schemes supported by the IC using NI PXIe. Modulation blocks are implemented in Lab VIEW and the frequency spectrums are analyzed by varying the frequency range, resolution, and data rate according to our requirements. An on demand hopping algorithm is also devised and the effect of digital transmission over analog channels is also analyzed using NI-PXIe.
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