天线数调制的多MIMO

Muhammet Kirik, Jehad M. Hamamreh
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引用次数: 5

摘要

本文提出了一种新的数据传输方法——天线数调制多MIMO系统(M-MIMO-ANM),通过增加系统中的天线数并分组,进一步发挥传统天线数调制(ANM)的优点,提高频谱效率。有了这一改进,M-MIMO-ANM可以在不使用带宽的情况下传输更多的比特,同时数据传输的可靠性也有了明显的提高。有了所有这些动态,M-MIMO-ANM概念是为物联网(IoT)应用创造新视角的候选者,其节能、频谱高效、鲁棒性以及来自ANM的数据和信道依赖数据传输特性。通过在瑞利衰落信道上使用二进制相移键控(BPSK)符号调制来测试M-MIMO-ANM的概念。通过数值模拟和解析计算验证了该系统的有效性。由于所获得的吞吐量,可以说M-MIMO-ANM有望成为一个高度可靠和弹性的系统,这要归功于它通过不同数量的天线块和天线元件级联同时传输比特。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple MIMO with Antenna Number Modulation
In this paper, a novel data transmission method, Multiple MIMO system with Antenna Number Modulation (M-MIMO-ANM) is proposed to take the advantages of conventional antenna number modulation (ANM) one step further and increase the spectral efficiency, by increasing the number of antennas in the system and grouping them in blocks. With this improvement, M-MIMO-ANM creates an availability to convey more bits without any usage of bandwidth, while there is a noticeable improvement in the reliability of data transmission. With all these dynamics, M-MIMO-ANM concept is a candidate to create a new perspective to the Internet of Things (IoT) applications, with its energy efficient, spectrum efficient, robust, and both data and channel dependent data transmission nature that comes from ANM. The concept of M-MIMO-ANM is tested by using Binary Phase Shift Keying (BPSK) symbol modulation over a Rayleigh fading channel. The validity of the system is investigated by numerical simulations and analytical calculations. As a result of the acquired throughput, it can be said that M-MIMO-ANM is promising a highly reliable and resilient system thanks to its cascaded simultaneous bit transmission by its different number of antenna blocks and antenna elements.
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