利用载波干涉扩频码消除OFDM中的峰均功率比问题:多星座分析

D. Wiegandt, C. Nassar, Z. Wu
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引用次数: 23

摘要

正交频分复用(OFDM)显示了峰值-平均功率比(PAPR)的逐符号波动,这是独立调制载波的直接结果。这反过来又导致发射功率放大器工作效率低下,和/或由于功率放大器饱和造成的带内和带外失真。本文扩展了我们之前的工作,解释了如何将载波干涉(CI)扩展码应用于OFDM(创建CI/OFDM)以消除PAPR波动。具体来说,我们分析了CI码在高阶星座OFDM系统(QPSK、16-QAM和64-QAM OFDM)中的PAPR优势。这项工作证实,所提出的技术(将数据符号扩散到所有载波上)确保消除信号包络中的峰值(从而消除PAPR问题):进一步表明,星座大小的选择对CI扩散技术的PAPR优势几乎没有改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The elimination of peak-to-average power ratio concerns in OFDM via carrier interferometry spreading codes: a multiple constellation analysis
Orthogonal frequency division multiplexing (OFDM) demonstrates symbol-by-symbol fluctuations in peak-to-average power ratio (PAPR), a direct consequence of independently modulated carriers. This, in turn, leads to inefficient operation of the transmit power amplifier, and/or in-band and out-of-band distortion due to power amplifier saturation. This paper extends our previous work, which explains how carrier interferometry (CI) spreading codes may be applied to OFDM (creating CI/OFDM) to eliminate PAPR fluctuations. Specifically, we analyze the PAPR benefits of CI codes in higher-order constellation OFDM systems (QPSK, 16-QAM, and 64-QAM OFDM). This work confirms that the proposed technique (of spreading the data symbols onto all carriers) ensures the elimination of high peaks in the signal envelope (thereby eliminating the PAPR problem): It is further shown that the choice of constellation size does little to change the PAPR benefits of the CI spreading technique.
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