DocumentCode
86220
Title
Delay-Based Back-Pressure Scheduling in Multihop Wireless Networks
Author
Bo Ji ; Changhee Joo ; Shroff, Ness B.
Author_Institution
Dept. of ECE, Ohio State Univ., Columbus, OH, USA
Volume
21
Issue
5
fYear
2013
fDate
Oct. 2013
Firstpage
1539
Lastpage
1552
Abstract
Scheduling is a critical and challenging resource allocation mechanism for multihop wireless networks. It is well known that scheduling schemes that favor links with larger queue length can achieve high throughput performance. However, these queue-length-based schemes could potentially suffer from large (even infinite) packet delays due to the well-known last packet problem, whereby packets belonging to some flows may be excessively delayed due to lack of subsequent packet arrivals. Delay-based schemes have the potential to resolve this last packet problem by scheduling the link based on the delay the packet has encountered. However, characterizing throughput optimality of these delay-based schemes has largely been an open problem in multihop wireless networks (except in limited cases where the traffic is single-hop.) In this paper, we investigate delay-based scheduling schemes for multihop traffic scenarios with fixed routes. We develop a scheduling scheme based on a new delay metric and show that the proposed scheme achieves optimal throughput performance. Furthermore, we conduct simulations to support our analytical results and show that the delay-based scheduler successfully removes excessive packet delays, while it achieves the same throughput region as the queue-length-based scheme.
Keywords
queueing theory; radio networks; resource allocation; scheduling; delay metric; delay-based back-pressure scheduling scheme; multihop wireless networks; optimal throughput performance; packet arrivals; packet problem; queue-length-based schemes; resource allocation mechanism; Delay; Mathematical model; Schedules; Spread spectrum communication; Throughput; Vectors; Wireless networks; Back-pressure; Lyapunov approach; delay-based; fluid limit; scheduling; throughput-optimal;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2012.2227790
Filename
6375780
Link To Document