论文标题

与子载波功率调制的正交频施加多路复用

Orthogonal Frequency Division Multiplexing With Subcarrier Power Modulation for Doubling the Spectral Efficiency of 6G and Beyond Networks

论文作者

Hamamreh, Jehad M., Hajar, Abdulwahab, Abewa, Mohamedou

论文摘要

随着新应用的出现(例如,扩展现实和触觉),不仅需要具有低潜伏期和足够的可靠性,而且要具有高频谱效率,因此未来的网络(即6G)应该能够通过引入新的有效传输设计来满足这一需求。由此激励,提出了一种新型调制技术,称为用子载波功率调制(OFDM-SPM)的正交频施加多路复用(OFDM-SPM),用于为未来的6G无线通信系统提供高频谱有效的数据传输,并且具有低延迟性和较低的复杂性。 OFDM-SPM利用OFDM块中的子载体的力量作为第三维,以传达额外的信息位,同时与常规方案相比,同时降低了复杂性和潜伏期。在本文中,引入了OFDM-SPM的概念,并通过无线多路径雷利褪色渠道研究了其作为未来采用的调制技术的有效性。解释了所提出的系统结构,得出了位错误率(BER)的分析表达,并对OFDM-SPM的BER和吞吐量性能进行数值模拟。发现OFDM-SPM可大大提高光谱效率,使其能够使其加倍。此外,OFDM-SPM向系统引入可忽略的复杂性,不会显示出误差传播,减少传输延迟并将传输功率降低了一半。

With the emergence of new applications (e.g., extended reality and haptics), which require to be simultaneously served not just with low latency and sufficient reliability, but also with high spectral efficiency, future networks (i.e., 6G) should be capable of meeting this demand by introducing new effective transmission designs. Motivated by this, a novel modulation technique termed as orthogonal frequency division multiplexing with subcarrier power modulation (OFDM-SPM) is proposed for providing highly spectral-efficient data transmission with low-latency and less-complexity for future 6G wireless communication systems. OFDM-SPM utilizes the power of subcarriers in OFDM blocks as a third dimension to convey extra information bits while reducing both complexity and latency compared to conventional schemes. In this paper, the concept of OFDM-SPM is introduced and its validity as a future adopted modulation technique is investigated over a wireless multipath Rayleigh fading channel. The proposed system structure is explained, an analytical expression of the bit error rate (BER) is derived, and numerical simulations of BER and throughput performances of OFDM-SPM are carried out. OFDM-SPM is found to greatly enhance the spectral efficiency where it is capable of doubling it. Additionally, OFDM-SPM introduces negligible complexity to the system, does not exhibit error propagation, reduces the transmission delay, and decreases the transmission power by half.

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