高频无线电自动链路建立

A. Bilal, Guangmin Sun
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引用次数: 4

摘要

在过去的三十年里,电信行业取得了重大的技术和经济发展。高频通信现已成为电信行业的主要特征。使用高频通信的一个优点是,高频系统价格低廉,可以用最少的设备进行长距离通信,并且易于在偏远地区实施。1.6 MHz ~ 30mhz的频率称为高频频谱。高频通信的重要发展之一是自动链路建立。ALE方法被军队和其他组织广泛使用。本文试图描述ALE军用标准(188-141A)的实现。本标准定义了2G HF ALE标准。利用Matlab环境,设计了一个能够实现高频无线电可靠数据通信的通信系统。我们的工作分为两部分。在第一部分中,我们在发送端执行编码器,对数据位进行编码,以便使用高阶码进行纠错和检测。在编码器之后,将编码的数据位交错并执行8阵列FSK调制以传输数据。在接收器的第二部分,我们解调数据,然后去交错。在去交错之后,我们使用golay解码器执行解码器。最后进行了性能分析,包括信噪比和误码率图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic link establishment for HF radios
In the past three decades, major technologies and economic developments have been made on the telecommunication sector. HF communication has now become the main feature of the telecommunication industry. An advantage of the use of HF communication is that high frequency system is inexpensive and allows long range communication with minimal equipment requirements and easy to implement in the isolated areas as well. Frequencies ranging from 1.6 MHz to 30 MHz is called High Frequency spectrum. One of the important developments in the HF communication is Automatic Link Establishment. ALE method is widely used by the military and other organizations. In this paper we have tried to describe the implementation of ALE military standard (188-141A). This standard defines a 2G HF ALE standard. We design a communication system that allows reliable data communication over HF radio by using the Matlab environment. Our work is divided into two parts. In first part at the transmitter level, we perform the encoder to encode the data bits for error correction and detection by using the golay code. After the encoder, interleave the encoded data bits and perform the 8 array FSK modulation to transmit the data. In the second part at the receiver, we demodulated the data and then deinterleave it. After the deinterleaving we perform the decoder by using the golay decoder. At the end there is a performance analysis that comprises SNR and BER plots.
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