赤道高频天波MIMO分组无线电误码率性能研究

Elsa Lolita Anggraini, G. Hendrantoro, T. Suryani
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引用次数: 0

摘要

在发送数据的过程中使用配备数据链协议的高频信道已证明对偏远地区的通信系统是有用的。然而,高频信道的传播条件往往不稳定,因此需要一个多输入多输出(MIMO)系统来利用电离层中的波弯曲来增加高频信道的容量,这种波弯曲形成两种波模式,即普通(O)波和特殊(X)波。这两种波具有正交极化,使它们适合应用于MIMO系统。在本文中,我们利用MIMO 2×2系统来最大限度地发挥高频信道的能力,并使用第三代自动链路建立(ALE)数据链路协议,该协议配备了以循环冗余校验(CRC)和卷积码(CC)形式的双层错误编码。MIMO 2×2系统将与单输入单输出系统进行比较,以了解信道容量的增加。从这些结果来看,添加MIMO 2×2系统和第三代ALE被证明可以增加信道容量,并保护数据免受高频信道传输过程中由于干扰而产生的错误。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Error Rate Performance of Equatorial HF Skywave MIMO Packet Radio
The use of High Frequency (HF) channels equipped with data-link protocols for the process of sending data has proven to be useful for communication systems in remote areas. However, the HF channel has propagation conditions that tend to be unstable, therefore a Multiple Input Multiple Output (MIMO) system is needed to be able to increase the capacity of the HF channel by utilizing the wave bending in the ionosphere layer that forms two wave modes, namely Ordinary (O) waves and Extraordinary (X) waves. The two waves have orthogonal polarizations, making them suitable to be applied to MIMO systems. In this paper, we utilize a MIMO 2×2 system to maximize the ability of the HF channel and use the third generation of Automatic Link Establishment (ALE) data-link protocol which is equipped with double layer error coding in the form of Cyclic Redundancy Check (CRC) and Convolutional Code (CC). The MIMO 2×2 system will be compared with the Single Input Single Output system to see the increase in channel capacity. From these results, the addition of a MIMO 2×2 system and the third generation of ALE proved to increase the channel capacity and protect the data from errors due to disturbances during the transmission process through the HF channel.
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