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PAPR reduction in FBMC-OQAM signals with half complexity of trellis-based SLM

机译:基于网格的SLM的一半复杂度可降低FBMC-OQAM信号的PAPR

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The filter Bank Multicarrier (FBMC) modulation with offset-QAM (OQAM) has attracted attention as a major candidate for future wireless communication systems which has several advantages. A disadvantage of FBMC-OQAM is high peak-to-average power ratio (PAPR). To overcome this problem, the trellis-based SLM technique is employed and achieved a much better PAPR reduction performance. However, The Trellis-based algorithm has also the intrinsic disadvantage of high computational complexity, to decreasing the complexity will make the system more desirable. This paper proposes the half-complexity algorithm for trellis-based SLM scheme which achieves lower computational complexity when compared to trellis-based SLM scheme with small degradation of PAPR reduction performance. From various simulation results, the proposed algorithm shows less computational complexity about 50% compared to the trellis-based algorithm with similar PAPR reduction performance.
机译:带有偏移QAM(OQAM)的滤波器组多载波(FBMC)调制作为具有多种优势的未来无线通信系统的主要候选产品已引起关注。 FBMC-OQAM的一个缺点是峰均功率比(PAPR)高。为了克服这个问题,采用了基于网格的SLM技术,并获得了更好的PAPR降低性能。但是,基于网格的算法还具有计算复杂度高的内在缺点,降低复杂度将使系统更加理想。本文提出了一种基于网格的SLM方案的半复杂度算法,与基于网格的SLM方案相比,PAPR降低性能的降低幅度较小,从而实现了较低的计算复杂度。从各种模拟结果来看,与具有类似PAPR降低性能的基于网格的算法相比,该算法显示的计算复杂度降低了约50%。

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