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首页> 外文期刊>IEEE Transactions on Broadcasting >Optimization of Partial Transmit Sequences for PAPR Reduction of OFDM Signals Without Side Information
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Optimization of Partial Transmit Sequences for PAPR Reduction of OFDM Signals Without Side Information

机译:优化部分发射序列,以减少无侧面信息的OFDM信号的PAPR

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This paper develops a novel optimization of partial transmit sequences (PTS) with phase quantization to reduce the peak-to-average-power ratio (PAPR) of orthogonal frequency-division multiplexing (OFDM) signals and enable data detection without side information. Since the formulated optimization problem is non-convex and has exponential time complexity, we employ a convex relaxation method to convert the original optimization problem into a series of convex programming whose solutions converge to a sub-optimal point satisfying the Karush-Kuhn-Tucker (KKT) conditions in polynomial time. Moreover, the obtained phase factors are quantized to enable the maximum likelihood (ML) phase estimation at the receiver, hence removing the need of sending side information. Analytical and numerical results are provided to show that our proposed PTS design achieves better PAPR reduction over existing PTS methods, while no performance degradation is incurred in data detection when the number of phase factors is properly chosen.
机译:本文开发了一种具有相位量化功能的部分发射序列(PTS)的新颖优化方法,以降低正交频分复用(OFDM)信号的峰均功率比(PAPR),并在没有侧向信息的情况下实现数据检测。由于所提的优化问题是非凸的,并且具有指数级的时间复杂度,因此采用凸松弛方法将原始优化问题转换为一系列凸规划,其解在多项式时间内收敛到满足Karush-Kuhn-Tucker(KKT)条件的次优点。此外,获得的相位因子被量化,以实现接收器的最大似然(ML)相位估计,从而消除了发送侧信息的需要。分析和数值结果表明,与现有的PTS方法相比,我们提出的PTS设计实现了更好的PAPR降低,而当正确选择相位因子的数量时,数据检测的性能不会下降。

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