棕榈枣叶剪枝部分传输序列的PAPR值降低仿真分析

Vincent, A. Suhartomo, J. W. Simatupang, M. Galina
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引用次数: 0

摘要

FFT作为OFDM系统的核心概念,具有很高的PAPR值。可以实现几种技术来减少它,如棕榈枣叶剪辑和部分传输序列。之前的研究人员分别评估了每种技术。本文提出将部分传输序列(PTS)与棕榈枣叶(PDL)裁剪技术相结合的效果来评价PAPR值。评估是用几种调制技术完成的,如QPSK、8-PSK、16-PSK、8-QAM和16-QAM。由于低的PAPR性能不利于信号的误码率值恶化,因此在评价时也考虑误码率性能。在这种情况下,作者关注的是AWGN信道上的误码率性能。结果表明,在所有情况下,PTS技术都可以改善低CR值(如5 dB和7 dB)下信号的BER和PAPR性能。此外,对于更高的CR值,如10db和20db,误码率性能与普通OFDM信号相似。即便如此,它也提供了大约3 dB的一致的PAPR降低。请注意,PAPR是在CCDF为10−3时计算的。这样,PTS技术总能提供信号误码率性能的改进。在PAPR性能方面,PTS技术除了在低截波比(如5db)下采用截波技术的8-QAM和16-QAM信号外,其他情况下均能得到改善。然而,PTS技术仍然需要侧信息(SI),并且具有较高的计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation Analysis of Partial Transmit Sequence on Palm Date Leaf Clipping for PAPR Value Reduction
FFT, as the key concept in the OFDM system, produces a high PAPR value. Several techniques can be implemented to reduce it, such as the Palm Date Leaf clipping and the Partial Transmit Sequence. Previous researchers have evaluated each technique individually. This paper proposes to evaluate the PAPR value as the effect of combining the Partial Transmit Sequence (PTS) with the Palm Date Leaf (PDL) clipping technique. The evaluation is done with several modulation techniques, such as QPSK, 8-PSK, 16-PSK, 8-QAM, and 16-QAM. Since low PAPR performance is not advantageous if the signal’s BER value worsens, thus the evaluation also considers the BER performance. In this case, the Authors focus on the BER performance over the AWGN channel. The result shows that in all of the scenarios, the PTS technique could improve the signal’s BER and PAPR performance for low CR values such as 5 dB and 7 dB. Additionally, for higher CR values such as 10 dB and 20 dB, the BER performance is similar to the normal OFDM signal. Even so, it provides a consistent PAPR reduction of approximately 3 dB. Do note that the PAPR is evaluated at CCDF of 10−3. This way, the PTS technique always provides an improvement in signal BER performance. As for the PAPR performance, the PTS technique can improve all cases except for 8-QAM and 16-QAM signals with clipping technique at low clipping ratio such as 5 dB. However, the PTS technique still requires Side Information (SI), and it has high computational complexity.
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