JOURNAL ARTICLE

Joint Evaluation of Channel Feedback Schemes, Rate Adaptation, and Scheduling in OFDMA Downlinks With Feedback Delays

Subhojit GuharoyNeelesh B. Mehta

Year: 2012 Journal:   IEEE Transactions on Vehicular Technology Vol: 62 (4)Pages: 1719-1731   Publisher: Institute of Electrical and Electronics Engineers

Abstract

Orthogonal frequency-division multiple access (OFDMA) systems divide the available bandwidth into orthogonal subchannels and exploit multiuser diversity and frequency selectivity to achieve high spectral efficiencies. However, they require a significant amount of channel state feedback for scheduling and rate adaptation and are sensitive to feedback delays. We develop a comprehensive analysis for OFDMA system throughput in the presence of feedback delays as a function of the feedback scheme, frequency-domain scheduler, and rate adaptation rule. Also derived are expressions for the outage probability, which captures the inability of a subchannel to successfully carry data due to the feedback scheme or feedback delays. Our model encompasses the popular best- n and threshold-based feedback schemes and the greedy, proportional fair, and round-robin schedulers that cover a wide range of throughput versus fairness tradeoff. It helps quantify the different robustness of the schedulers to feedback overhead and delays. Even at low vehicular speeds, it shows that small feedback delays markedly degrade the throughput and increase the outage probability. Further, given the feedback delay, the throughput degradation depends primarily on the feedback overhead and not on the feedback scheme itself. We also show how to optimize the rate adaptation thresholds as a function of feedback delay.

Keywords:
Computer science Scheduling (production processes) Orthogonal frequency-division multiple access Throughput Orthogonal frequency-division multiplexing Overhead (engineering) Channel (broadcasting) Link adaptation Frequency-division multiple access Bandwidth (computing) Computer network Control theory (sociology) Real-time computing Fading Wireless Mathematical optimization Telecommunications Mathematics

Metrics

25
Cited By
1.97
FWCI (Field Weighted Citation Impact)
34
Refs
0.89
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

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