Adaptive Modulation and Coding with Selective Retransmission under OFDM signaling.

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Title: Adaptive Modulation and Coding with Selective Retransmission under OFDM signaling.
Authors: Qadri, Muhammad Ikram1 ikram@ele.qau.edu.pk, Zia, Muhammad1 mzia@ucdavis.edu
Source: Wireless Personal Communications. Aug2018, Vol. 101 Issue 4, p1787-1805. 19p.
Subjects: Adaptive modulation, Adaptive codes, Orthogonal frequency division multiplexing, Cross layer optimization, Signal-to-noise ratio
Abstract: In this paper, we present bandwidth efficient selective retransmission method in conjunction with adaptive modulation and coding (AMC) scheme for OFDM waveform. In the proposed method, when a packet failure occurs, receiver requests retransmission of information symbols prone to error corresponding to the low signal-to-noise ratio (SNR) sub-carriers of OFDM modulation. The selective retransmission avoids unnecessary retransmission and AMC chooses a proper modulation and coding scheme with an objective to maximize the throughput. Our method achieves higher throughput as compared to conventional retransmission methods such as Chase combining hybrid automatic repeat reQuest (CC-HARQ) and incremental redundancy hybrid automatic repeat reQuest (IR-HARQ). We also provide the throughput and delay analysis of the proposed method for non-truncated ARQ. The simulation results demonstrate throughput gain without significant impact on delay as compared to the conventional retransmission approaches. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:In this paper, we present bandwidth efficient selective retransmission method in conjunction with adaptive modulation and coding (AMC) scheme for OFDM waveform. In the proposed method, when a packet failure occurs, receiver requests retransmission of information symbols prone to error corresponding to the low signal-to-noise ratio (SNR) sub-carriers of OFDM modulation. The selective retransmission avoids unnecessary retransmission and AMC chooses a proper modulation and coding scheme with an objective to maximize the throughput. Our method achieves higher throughput as compared to conventional retransmission methods such as Chase combining hybrid automatic repeat reQuest (CC-HARQ) and incremental redundancy hybrid automatic repeat reQuest (IR-HARQ). We also provide the throughput and delay analysis of the proposed method for non-truncated ARQ. The simulation results demonstrate throughput gain without significant impact on delay as compared to the conventional retransmission approaches. [ABSTRACT FROM AUTHOR]
ISSN:09296212
DOI:10.1007/s11277-018-5672-y