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首页> 外文期刊>Communications Letters, IEEE >Low-Complexity ML Detector and Performance Analysis for OFDM With In-Phase/Quadrature Index Modulation
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Low-Complexity ML Detector and Performance Analysis for OFDM With In-Phase/Quadrature Index Modulation

机译:具有相/正交索引调制的OFDM低复杂度ML检测器和性能分析

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A novel variant of orthogonal frequency division multiplexing (OFDM) techniques, which carries additional information bits through the index domain including in-phase and quadrature dimensions, is recently proposed. For its nature, we refer to this technique as . In this letter, we propose a novel low-complexity detector based on the maximum-likelihood (ML) criterion for OFDM-I/Q-IM, which does not need to know the variance of the noise and the possible realizations of the active subcarrier indices. With the proposed ML detector, the asymptotic average bit error probability (ABEP) and the exact coding gain achieved by OFDM-I/Q-IM are also derived.
机译:最近提出了一种新颖的正交频分复用(OFDM)技术变体,该技术通过包括同相和正交维在内的索引域携带附加信息位。就其性质而言,我们将此技术称为。在这封信中,我们提出了一种基于最大似然(ML)准则的OFDM-I / Q-IM新型低复杂度检测器,该检测器不需要知道噪声的方差和有效副载波的可能实现索引。利用所提出的ML检测器,还可以得出渐近平均误码率(ABEP)和OFDM-I / Q-IM所获得的精确编码增益。

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