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Efficient PAPR Reduction in OFDM Systems Based on a Companding Technique With Trapezium Distribution

机译:基于梯形分布压扩技术的OFDM系统有效PAPR降低

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摘要

Orthogonal Frequency Division Multiplexing (OFDM) has become the most widely adopted technology in wireless communication systems. OFDM is limited mainly by its high Peak-to-Average Power Ratio (PAPR). A uniformly distributed nonlinear companding scheme efficiently reduces PAPR with a low Bit Error Rate (BER). However, the uniformly distributed companding scheme cannot perform variably to satisfy the different performance requirements for the systems. Therefore, this work proposes a novel scheme that transforms the OFDM signals into a trapezium distribution. The uniformly distributed companding scheme is a special case of the proposed scheme. The general formulas of the proposed scheme are derived and the trade-off between PAPR reduction and BER performance is achieved by setting the value of a parameter. Then, the simulation results show the PAPR reduction and the BER over the AWGN and multipath channels, indicating that the proposed scheme provides a favorable trade-off between the PAPR reduction and the BER.
机译:正交频分复用(OFDM)已成为无线通信系统中使用最广泛的技术。 OFDM主要受到其较高的峰均功率比(PAPR)的限制。均匀分布的非线性压扩方案以低误码率(BER)有效地降低了PAPR。但是,均匀分布的压扩方案不能可变地执行以满足系统的不同性能要求。因此,这项工作提出了一种将OFDM信号转换为梯形分布的新颖方案。均匀分布的压扩方案是所提出方案的特例。推导了该方案的一般公式,并通过设置参数值来实现PAPR降低与BER性能之间的权衡。然后,仿真结果显示了在AWGN和多径信道上的PAPR降低和BER,表明所提出的方案在PAPR降低和BER之间提供了有利的权衡。

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