利用信号空间分集提高副载波功率调制OFDM的可靠性

Mohammed Hijazi, Jehad M. Hamamreh
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摘要

随着对更高数据速率的需求呈指数级增长,人们开始转向探索可能提供更高频谱效率的现代技术。最近提出了一种新的调制技术——正交频分复用子载波功率调制(OFDM - SPM)。这是一种原始的技术,在很大程度上仍未得到充分的探索,其目的是通过控制OFDM块中子载波的功率来传输每个子载波更多的比特,除了那些通常通过传统调制方案(如M-PSK)传输的比特。在研究和理论测试阶段,发现子载波功率传输的附加数据流比传统调制方式传输的数据流具有更高的误码率(BER)性能。为了克服这一不足,本研究提出将信号空间分集(SSD)和坐标交错技术与OFDM - SPM相结合,以帮助提高整体BER性能。通过这样做,表明在信噪比为15 dB的情况下可以获得10-3的误码率性能,这意味着与使用无SSD的OFDM - SPM相比,实现了超过5 dB的改进。此外,将OFDM - SPM - SSD的性能结果与最大比值组合(MRC)的OFDM - SPM性能结果进行了比较,结果表明OFDM - SPM - SSD具有更优的性能。此外,还研究了星座旋转对OFDM - SPM的影响,并就两个主要性能指标对子载波功率调制的不同功率策略进行了深入分析;即BER和吞吐量。仿真结果表明,与普通OFDM - SPM和OFDM - SPM - MRC相比,SSD在误码率方面都有很大的提高。分析还表明,在考虑不同功率策略的情况下,采用功率重分配策略的误码率效果最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signal Space Diversity for Improving the Reliability Performance of OFDM with Subcarrier Power Modulation
As the demand for higher data rates continues to increase exponentially, there is a shift towards exploring contemporary techniques that are likely to offer higher spectral efficiency. A new modulation technique termed as orthogonal frequency division multiplexing with sub‐carrier power modulation (OFDM‐SPM) has recently been introduced. It is an original technique that is still largely under-explored and aims at transmitting more bits per sub‐carrier by manipulating the power of the sub‐carriers in an OFDM block, in addition to those bits that are usually transmitted by conventional modulation schemes such as M-PSK. During the investigation and theoretical testing stages, it was found that the additional data stream conveyed by subcarriers' power has higher bit error rate (BER) performance compared to the data stream conveyed by conventional modulation schemes. To overcome this shortfall, signal space diversity (SSD) along with coordinate interleaving is proposed in this work to be integrated with OFDM‐SPM to help improve the overall BER performance. By doing so, it is shown that a BER performance of 10-3 can be obtained at SNR of 15 dB, which means achieving an improvement of more than 5 dB compared to the case of using OFDM‐SPM without SSD. Furthermore, the performance results of OFDM‐SPM‐SSD is compared with those of OFDM‐SPM with maximal ratio combining (MRC) and the obtained results show that OFDM‐SPM‐SSD offers superior performance. Additionally, a study of the effect of the constellation rotation on OFDM‐SPM is provided and an in‐depth analysis is also carried out for different power polices of sub‐carrier power modulation with regards to two main performance metrics; namely BER and the throughput. Simulation results show that SSD provides a considerable improvement in the BER over both plain OFDM‐SPM and OFDM‐SPM‐MRC. The analysis also reveal that when considering the different power policies of SPM, the BER results are optimum in the case of using power‐reassignment policy.
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