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On Companding Schemes for PAPR Reduction in OFDM Systems Employing Higher Order QAM

机译:关于采用高阶QAM的OFDM系统中降低PAPR的扩展方案

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Large peak-to-average power ratio (PAPR) of the signal is an imperative problem in orthogonal frequency division multiplexing (OFDM) systems, as it impedes the efficient design of their analog front end. Companding is a well-known technique that reduces the PAPR by using a deterministic amplitude transform, which is designed by assuming Rayleigh distribution for the signal amplitude. But in OFDM systems employing higher order QAM, like 16- or 64-QAM, this probabilistic model is insufficient to model the true characteristics of the signal. This is due to the stochastic nature of average symbol power, which alters the complete amplitude distribution from one OFDM symbol to another. This leads to degradation in the companders' PAPR reduction performance. In this paper, we propose two novel schemes that modify the companding operation to accommodate the randomness of symbol power. Probabilistic analysis of symbol's average power, in relationship with the amplitude of its constituent samples, is carried out. This yields the theoretical framework employed in the design of the proposed low-complexity solutions. The proposed schemes essentially make the companding operation itself nondeterministic/adaptive, i.e., it adjusts to comply with the changing symbol amplitude distribution during application runtime.
机译:信号的大峰均功率比(PAPR)在正交频分复用(OFDM)系统中是当务之急,因为它妨碍了其模拟前端的高效设计。压扩是一种众所周知的技术,它通过使用确定性幅度变换来降低PAPR,确定性幅度变换是通过假设信号幅度的瑞利分布来设计的。但是,在采用更高阶QAM(例如16-QAM或64-QAM)的OFDM系统中,这种概率模型不足以对信号的真实特性进行建模。这是由于平均符号功率的随机性所致,它会将完整的幅度分布从一个OFDM符号更改为另一个。这导致压扩器的PAPR降低性能下降。在本文中,我们提出了两种新颖的方案,它们修改了压扩操作以适应符号功率的随机性。对符号平均功率及其组成样本的幅度进行概率分析。这产生了在所提出的低复杂度解决方案的设计中采用的理论框架。所提出的方案实质上使压扩操作本身不确定/自适应,即在应用程序运行期间它进行调整以符合变化的符号幅度分布。

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