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Low PAPR OFDM-Based DCSK Design With Carrier Interferometry Spreading Codes

机译:具有载波干涉测量扩展码的基于低PAPR OFDM的DCSK设计

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摘要

The multi-carrier aided non-coherent differential chaos shift keying (DCSK) modulated systems suffer from high peak-to-average power ratio (PAPR) due to the summations of multiple modulated signals. In this letter, we present a carrier interferometry (CI) code-aided spreading orthogonal frequency-division multiplexing-based DCSK scheme to suppress the PAPR. Instead of directly transmitting DCSK modulated signals via multiple subcarriers, in our design, each chaotic chip is spread over all available subcarriers by using CI codes, which effectively reduces the coherence among the signals, and thereby reducing PAPR. Furthermore, the theoretical PAPR and bit error rate (BER) performances are analyzed. Simulations are performed over additive white Gaussian noise, frequency selective fading, and flat fading channels. The results verify the effectiveness of our theoretical derivations, and demonstrate that the PAPR performance outperforms the counterpart schemes by exploiting the spreading CI codes, while retaining the satisfactory BER performance.
机译:多载波辅助非相干差分混沌键控(DCSK)调制系统由于多个调制信号的总和而遭受高峰均功率比(PAPR)。在这封信中,我们提出了一种基于载波干涉测量(CI)码的扩频正交频分多路复用DCSK方案,以抑制PAPR。在我们的设计中,不是通过多个子载波直接发送DCSK调制信号,而是通过使用CI码将每个混沌芯片扩展到所有可用子载波上,这有效地降低了信号之间的相干性,从而降低了PAPR。此外,分析了理论PAPR和误码率(BER)性能。在加性高斯白噪声,频率选择性衰落和平坦衰落信道上进行仿真。结果验证了我们理论推导的有效性,并证明了PAPR性能通过利用扩展的CI码而优于相应的方案,同时保持了令人满意的BER性能。

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