NC-OFDM-SPM:一种二维非相干调制方案,用于在发送额外数据流的同时实现OFDM的相干性能

Mohamedou Abewa, Jehad M. Hamamreh
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引用次数: 1

摘要

降低未来无线系统复杂性的一个有希望的候选解决方案是使用非相干设计;然而,在文献中众所周知,非相干格式比相干格式表现得更差。为了解决这个长期存在的具有挑战性的权衡,我们在这项工作中展示并证明了所提出的二维调制方案的能力,该方案被称为非相干正交频分复用,具有子载波功率调制和差分相移键控,可以实现相干设计的性能,同时降低了复杂性。虽然提出的设计是非相干的(即,它使用差分相移键控和功率差来传输信息),但它实现了与具有相干BPSK的传统OFDM相同的误码率(BER)性能。此外,由于所提出的方案同时采用二维调制(即DPSK和子载波功率电平),因此可以通过功率子载波的电平传输额外的数据流。因此,提出的设计不仅通过实现相同的误码率来解决相干和非相干调制在可靠性方面的权衡,而且通过探索功率域作为传输额外数据位的额外维度来提供更高的数据速率,同时保持低复杂度的收发器设计,从而使其对物联网应用非常有吸引力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NC-OFDM-SPM: A Two-Dimensional Non-Coherent Modulation Scheme for Achieving the Coherent Performance of OFDM along with Sending an Additional Data-stream
A promising candidate solution for reducing complexity in future wireless systems is the use of non-coherent designs; however, it is very well known in the literature that non-coherent schemes perform worse than their coherent counterparts. To address this longstanding challenging trade-off, we demonstrate and prove in this work the ability of the proposed two-dimensional modulation scheme termed as non-coherent orthogonal frequency division multiplexing with subcarrier power modulation and differential phase shift keying in achieving the performance of a coherent design, while reducing complexity. Although the proposed design is non-coherent (i.e., it uses differential phase shift keying and power difference to convey information), it achieves the same bit error rate (BER) performance as conventional OFDM with coherent BPSK. Furthermore, since the proposed scheme employs two-dimensional modulations simultaneously (i.e., DPSK and subcarrier power levels), an additional data stream can be transmitted through the power subcarriers’ levels. Thus, the proposed design not only solves the trade-off between coherent and non-coherent modulations in terms of reliability by achieving the same BER, but also provides higher data rates by exploring the power domain as an additional dimension for conveying extra data bits, while maintaining low complexity transceiver design, thus making it very appealing for IoT applications.
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