A Spectral Approach to Inter-Carrier Interference Mitigation in OFDM Systems

Communications, IEEE Transactions  (2014)

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摘要
In this paper, we propose a new method for intercarrier interference (ICI) mitigation in orthogonal frequency-division multiplexing (OFDM) systems. The proposed approach views the signal reconstruction problem at the receiver end as an integer least squares (ILS) problem, and uses a recently developed spectral approach called sequential probabilistic ILS (SPILS) to solve it. The proposed approach outperforms other state-of-the-art approaches while having the same computational complexity. In addition, we present a novel extension to the SPILS scheme that allows the generation of soft decisions (for communication systems which use soft-decision decoding). The use of soft-decision decoding (naturally) brings significant improvement in the detection reliability, and we show that the proposed method again outperforms other state-of-the-art approaches. To better address the tradeoff between performance and complexity, we first suggest a novel method to reduce the number of matrix inversions required and hence, to reduce the implementation complexity without any degradation in performance. We also introduce a novel low complexity scheme termed Quick SPILS (QSPILS) in which we lose a little in detection reliability, but significantly reduce the implementation complexity. Index Terms-Digital communications,
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关键词
OFDM modulation,computational complexity,decoding,intercarrier interference,interference suppression,least squares approximations,matrix inversion,probability,reliability,signal reconstruction,ICI mitigation,OFDM system,QSPILS problem,computational complexity,detection reliability,intercarrier interference mitigation,matrix inversion,orthogonal frequency-division multiplexing system,quick sequential probabilistic integer least square problem,signal reconstruction,soft-decision decoding,Digital communications,communication systems,decoding,fading channels
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