DocumentCode
739943
Title
CMT-QA: Quality-Aware Adaptive Concurrent Multipath Data Transfer in Heterogeneous Wireless Networks
Author
Changqiao Xu ; Tianjiao Liu ; Jianfeng Guan ; Hongke Zhang ; Muntean, Gabriel-Miro
Author_Institution
State Key Lab. of Networking & Switching Technol., Beijing Univ. of Posts & Telecommun., Beijing, China
Volume
12
Issue
11
fYear
2013
Firstpage
2193
Lastpage
2205
Abstract
Mobile devices equipped with multiple network interfaces can increase their throughput by making use of parallel transmissions over multiple paths and bandwidth aggregation, enabled by the stream control transport protocol (SCTP). However, the different bandwidth and delay of the multiple paths will determine data to be received out of order and in the absence of related mechanisms to correct this, serious application-level performance degradations will occur. This paper proposes a novel quality-aware adaptive concurrent multipath transfer solution (CMT-QA) that utilizes SCTP for FTP-like data transmission and real-time video delivery in wireless heterogeneous networks. CMT-QA monitors and analyses regularly each path´s data handling capability and makes data delivery adaptation decisions to select the qualified paths for concurrent data transfer. CMT-QA includes a series of mechanisms to distribute data chunks over multiple paths intelligently and control the data traffic rate of each path independently. CMT-QA´s goal is to mitigate the out-of-order data reception by reducing the reordering delay and unnecessary fast retransmissions. CMT-QA can effectively differentiate between different types of packet loss to avoid unreasonable congestion window adjustments for retransmissions. Simulations show how CMT-QA outperforms existing solutions in terms of performance and quality of service.
Keywords
data communication; data handling; mobile handsets; network interfaces; quality of service; radio networks; transport protocols; video streaming; CMT-QA; FTP like data transmission; SCTP; application level performance degradation; bandwidth aggregation; concurrent data transfer; data chunk distribution; data delivery adaptation decision making; data handling; heterogeneous wireless network; intelligent data traffic control; mobile device; network interface; out-of-order data reception; packet loss; parallel transmission; quality aware adaptive concurrent multipath data transfer; quality of service; reordering delay reduction; stream control transport protocol; video delivery; Bandwidth; Delay; Estimation; Receivers; Wireless networks; Quality awareness; SCTP; concurrent multipath transfer; heterogeneous wireless network; video delivery;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2012.189
Filename
6291719
Link To Document