Performance Evaluation of Hybrid ACE-TRNS PAPR Reduction Technique

Mohamed Mounir, M. El-Mashade
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引用次数: 2

Abstract

Orthogonal Frequency Division Multiplexing (OFDM) is widely used in high data rate wireless applications, due to its ability to mitigate frequency selectivity. However, OFDM suffers from high Peak-to-Average Power Ratio (PAPR) problem. In literature, there are various PAPR reduction techniques among them only; Active Constellation Extension (ACE), Tone Reservation based on Null Subcarriers (TRNS), and Partial Transmit Sequence (PTS) whose can work as downward-compatible techniques, i.e. receivers doesnt have to be modified. Generally, PAPR reduction techniques are required to have downward compatibility, no data rate loss, no Side Information (SI), small computational complexity, and large PAPR reduction gain. However, no one of them has all these requirements and no PAPR reduction technique can be considered as the best among others. Thus, recent trend in this field is to make hybridization between different PAPR reduction techniques in one scheme, to gain the advantages of two or more conventional techniques. In literature, there are plenty of hybrid PAPR reduction techniques. Among them, only hybrid ACE- PTS that has downward compatibility, however its downward compatibility depends on channel estimation and the used application. In this paper we propose hybrid ACE- TRNS that is downward compatible technique regardless the used application and independent of channel estimation. Results showed that, for different modulation schemes, ACE- TRNS has PAPR reduction performance better than that of ACE-PTS, with less computational complexity.
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ACE-TRNS复合还原技术的性能评价
正交频分复用技术(OFDM)由于具有降低频率选择性的能力,在高数据速率无线应用中得到了广泛的应用。然而,OFDM存在峰值平均功率比(PAPR)过高的问题。在文献中,减少PAPR的方法多种多样;主动星座扩展(ACE)、基于空子载波的音调保留(TRNS)和部分发射序列(PTS),它们可以作为向下兼容的技术,即无需修改接收器。一般来说,PAPR减少技术需要具有向下兼容性、无数据速率损失、无侧信息(SI)、计算复杂度小和较大的PAPR减少增益。然而,没有哪一种技术能满足所有这些要求,也没有哪一种降低PAPR的技术能被认为是最好的。因此,将不同的PAPR还原技术在一种方案中进行杂交,以获得两种或两种以上传统还原技术的优点是该领域的最新趋势。在文献中,有大量的混合PAPR降低技术。其中,只有混合ACE- PTS具有向下兼容性,但其向下兼容性取决于信道估计和所使用的应用。本文提出了一种不受信道估计影响的向下兼容的混合ACE- TRNS技术。结果表明,在不同的调制方案下,ACE- TRNS的PAPR降低性能优于ACE- pts,且计算复杂度更低。
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