Title :
Queue-Aware Channel-Adapted Scheduling and Congestion Control for Best-Effort Services in LTE Networks
Author :
Zolfaghari, Azita ; Taheri, Hassan
Author_Institution :
Dept. of Electr. Eng., Amirkabir Univ. of Technol., Tehran, Iran
Abstract :
In this paper, we study the performance of long-term evolution (LTE) for various types of channel-adapted scheduling for nonreal-time flows, while an end-to-end congestion control algorithm controls the rate of elastic traffic at the end users. First, we propose a new type of queue-aware channel-adapted scheduling at a base station, and explain how it allocates resources to competing nonreal-time flows where channel conditions are time-varying. We also introduce a new congestion measure function for a minimum cost flow control (MCFC) algorithm in the LTE and call it an individual flow-based congestion measure. We show that using different combinations of channel-adapted scheduling at the base station and congestion control algorithms can lead to major differences in the obtained throughput and fairness for the best-effort traffic. The results clearly show that the transport protocol and scheduling algorithm can cause significant conflict in some situations. We show the advantages of the proposed queue-aware channel-adapted scheduling in performance improvement and we also show that the combination of an MCFC algorithm (in which the new individual flow-based congestion measure is applied), with queue-aware proportional fair scheduling, leads to a better tradeoff between overall throughput and fairness compared with the other studied combinations.
Keywords :
Long Term Evolution; queueing theory; resource allocation; telecommunication congestion control; telecommunication scheduling; telecommunication traffic; transport protocols; LTE networks; Long-Term Evolution; MCFC algorithm; base station; best-effort services; channel conditions; congestion measure function; elastic traffic rate; end-to-end congestion control algorithm; flow-based congestion measure; minimum cost flow control algorithm; nonreal-time flows; queue-aware channel-adapted scheduling; queue-aware proportional fair scheduling; resource allocation; transport protocol; Base stations; Downlink; Irrigation; Long Term Evolution; Real-time systems; Scheduling; Throughput; Cellular networks; downlink scheduling; end-to-end congestion control; long-term evolution (LTE);
Journal_Title :
Electrical and Computer Engineering, Canadian Journal of
DOI :
10.1109/CJECE.2015.2417858