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首页> 外文期刊>International Journal of Information and Communication Technology >PTS using novel constellation extension scheme for PAPR reduction of OFDM signals without side information
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PTS using novel constellation extension scheme for PAPR reduction of OFDM signals without side information

机译:PTS采用新型星座扩展方案进行PAPR减少OFDM信号而无侧信息

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摘要

>High peak to average power ratio (PAPR) is a major hindrance in the performance of orthogonal frequency division multiplex (OFDM) systems. When OFDM signal with high PAPR passed through high power amplifiers (HPA), it requires a large back-off to operate in linear region, this leads to large dynamic range of HPA, such HPA are costly and complex with poor efficiency. Partial transmit sequence (PTS) is one of the most promising techniques for PAPR reduction. The major drawback of this technique is it requires exhaustive searching of all possible and allowable phase factors to find the optimal phase factor with lowest PAPR. This information is to be sent to a receiver as side information (SI) for decoding purpose. Sending SI puts additional burden on the transmission bandwidth thus reducing bandwidth efficiency. In this paper, a novel constellation extension-based PTS is proposed which uses novel octagonal geometry (OM-PTS) for mapping purpose. This scheme does not require transmission of any side information for decoding purpose at the receiver. Simulations are presented to show that the proposed scheme provides the same PAPR performance as conventional PTS but without need of SI transmission.
机译:>高峰平均功率比(PAPR)是正交频分复用(OFDM)系统性能的主要障碍。当具有高PAPR的OFDM信号通过高功率放大器(HPA)时,需要大量的退掉时间在线性区域中操作,这导致HPA的大动态范围,这种HPA昂贵且效率差复杂。部分透射序列(PTS)是PAPR减少最有前途的技术之一。这种技术的主要缺点是需要详尽的搜索所有可能的和允许的阶段因素,以找到具有最低PAPR的最佳相位因子。该信息将被发送到接收器作为侧信息(SI)以进行解码目的。发送SI对传输带宽进行额外负担,从而降低了带宽效率。本文提出了一种新的基于星座扩展的PTS,其使用新颖的八角形几何形状(OM-PTS)来绘制目的。该方案不需要在接收器处进行解码目的的任何侧面信息的传输。提出了模拟以表明所提出的方案提供与常规PTS相同的PAPR性能,但不需要SI传输。

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