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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Low-Complexity Selected Mapping Scheme Using a Bank of Butterfly Circuits in Orthogonal Frequency Division Multiplexing Systems
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Low-Complexity Selected Mapping Scheme Using a Bank of Butterfly Circuits in Orthogonal Frequency Division Multiplexing Systems

机译:低复杂度使用正交频分复用系统中的蝴蝶电路的映射方案

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摘要

Selected mapping schemes (SLMs) have gained popularity to improve the peak-to-average power ratio (PAPR) reduction performance. Even so, the computational load increases greatly owing to the many inverse fast Fourier transforms (IFFTs) in conventional SLM (CSLM) and to overcome this disadvantage, several low-complexity schemes are in vogue. This paper proposes two -point IFFTs, where N is the number of subcarriers in OFDM, and a bank of butterfly circuits (BFCs) to replace multiple IFFTs in the CSLM. The output sequence of the two -point IFFTs are simultaneously sent to a bank of M-BFCs to generate a set of M statistically independent candidate signals, including the original OFDM signal. The parameters of the first BFC, which generates the original OFDM signal, are derived. To simplify the complexity, constraints are imposed on the selection of parameters of the remaining M - 1 BFCs. The results indicate that the proposed SLM (PSLM), when compared with the CSLM, achieves an appreciable computational complexity reduction gain with the loss of a slight PAPR reduction performance.
机译:所选映射方案(SLMS)获得了普及,以提高峰值平均功率比(PAPR)减少性能。即便如此,由于传统SLM(CSLM)中的许多逆快速傅里叶变换(IFFTS)并且克服了这个缺点,计算负荷越大,几种低复杂性方案是流行的。本文提出了两个 - 点IFFT,其中N是OFDM中的子载波的数量,以及蝴蝶电路(BFC)的银行,以替换CSLM中的多个IFFT。两个 - 点IFFT的输出序列同时发送到M-BFC的银行,以生成一组M统计上独立的候选信号,包括原始OFDM信号。导出生成原始OFDM信号的第一BFC的参数。为了简化复杂性,对剩余M-1 BFC的参数的选择施加约束。结果表明,与CSLM相比,所提出的SLM(PSLM)实现了明显的计算复杂性降低增益,随着轻微的PAPR降低性能的损失。

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