论文标题

卫星通信中的非连接大规模MIMO整合

Non-Coherent Massive MIMO Integration in Satellite Communication

论文作者

Monzon, Victor, Ha, Vu N., Querol, Jorge, Chatzinotas, Symeon

论文摘要

大量的多重输入 - 元素输出(MMIMO)技术被认为是有效的标准,可以显着提高以下无线通信系统(例如5G及以后)的传输速率。但是,实施这项技术一直面临着获取大量渠道状态信息的关键问题。首先,由于可数的高传输延迟,该问题在集成的卫星和地面网络(3GPP释放15)中变得更加批评。为了解决这个具有挑战性的问题,MMIMO授权的非连锁技术可能是一个有前途的解决方案。据我们所知,本文是考虑在卫星通信系统中采用非共同MMIMO的第一项工作。这项工作旨在通过这种整合来分析出现的挑战和机遇。此外,我们确定了此连词中的问题。这项工作中提出的初步结果表明,以位错误率(BER)测量的性能和天线的数量距离陆地链路所需的性能不远。此外,由于MMIMO与非共连接方法的结合,我们可以以低信噪比(SNR)制度工作,这对于卫星链接来说是一个极好的优势。

Massive Multiple Input-Multiple Output (mMIMO) technique has been considered an efficient standard to improve the transmission rate significantly for the following wireless communication systems, such as 5G and beyond. However, implementing this technology has been facing a critical issue of acquiring much channel state information. Primarily, this problem becomes more criticising in the integrated satellite and terrestrial networks (3GPP-Release 15) due to the countable high transmission delay. To deal with this challenging problem, the mMIMO-empowered non-coherent technique can be a promising solution. To our best knowledge, this paper is the first work considering employing the non-coherent mMIMO in satellite communication systems. This work aims to analyse the challenges and opportunities emerging with this integration. Moreover, we identified the issues in this conjunction. The preliminary results presented in this work show that the performance measured in bit error rate (BER) and the number of antennas are not far from that required for terrestrial links. Furthermore, thanks to mMIMO in conjunction with the non-coherent approach, we can work in a low signal-to-noise ratio (SNR) regime, which is an excellent advantage for satellite links.

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