Multiple MIMO with Joint Block Antenna Number Modulation and Adaptive Antenna Selection for Future Wireless Systems

Muhammet Kirik, Jehad M. Hamamreh
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引用次数: 4

Abstract

Multiple MIMO with joint block Antenna Number Modulation (M-MIMO-ANM) is proposed in this paper as a novel transmission method that exploits the features of both Massive Multiple Input Multiple Output (M-MIMO) and Antenna Number Modulation (ANM) concepts. In this scheme, the main purpose is to increase the number of additionally transmitted data bits, which are sent without any consumption in the bandwidth. To achieve this, the antenna elements of a large array are divided into blocks, whose numbers are utilized to convey additional data bits along with those bits sent by the number of antenna elements within each block as well as those sent by conventional modulation schemes (e.g., BPSK). The implementation of M-MIMO-ANM scheme relies on the idea of dividing the whole antenna array into blocks, where each block corresponds to a group of bits depending on the total number of available blocks, thus ANM concept is applied not only to the antennas within each block but also to the blocks forming the entire antenna array. This creates an opportunity to convey even more additional data bits, compared with the conventional ANM scheme, 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 the properties of Massive MIMO and ANM. The introduced system is investigated, and its validity is proven, where analytical and simulation results in terms of the bit error rate (BER) and throughput of the system are given. The numerical computer simulations furthermore compare the performances of M-MIMO-ANM with MIMO-ANM to show its superiority, and the advantages of the concept are discussed. M-MIMO-ANM is promising a highly reliable and resilient system thanks to its cascaded simultaneous bit transmission by the different number of both antenna blocks and antenna elements within each block.
基于联合块天线数调制和自适应天线选择的多MIMO未来无线系统
本文提出了带联合块天线数调制(M-MIMO-ANM)的多输入多输出(M-MIMO)多输入多输出(M-MIMO)和天线数调制(ANM)概念的新型传输方式。在这种方案中,主要目的是增加额外传输的数据位的数量,这些数据位在不消耗带宽的情况下发送。为了实现这一点,将大型阵列的天线单元划分为块,其数量用于传输额外的数据位,以及每个块内天线单元数量发送的那些位以及由传统调制方案(例如,BPSK)发送的那些位。M-MIMO-ANM方案的实现依赖于将整个天线阵列划分为块的思想,其中每个块根据可用块的总数对应一组位,因此ANM概念不仅适用于每个块内的天线,而且适用于构成整个天线阵列的块。与传统的ANM方案相比,这创造了传输更多额外数据位的机会,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、鲁棒性以及数据和信道依赖的数据传输特性来自大规模MIMO和ANM的特性。对系统进行了研究,证明了系统的有效性,并给出了系统误码率和吞吐量的分析和仿真结果。数值模拟进一步比较了M-MIMO-ANM与MIMO-ANM的性能,并讨论了该概念的优点。M-MIMO-ANM有望成为一个高度可靠和弹性的系统,这要归功于它通过每个模块内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。
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