DocumentCode
1934427
Title
Management of buffer space for the concurrent multipath transfer over dissimilar paths
Author
Halepoto, Imtiaz A. ; Lau, Francis C. M. ; Zhixiong Niu
Author_Institution
Dept. of Comput. Sci., Univ. of Hong Kong, Hong Kong, China
fYear
2015
fDate
3-5 Feb. 2015
Firstpage
61
Lastpage
66
Abstract
An efficient multipath transport is an emerging issue because it provides greater aggregated throughput than the usage of one active path. An extension of the stream control transmission protocol that serves the multipath transport is the concurrent multipath transfer (CMT-SCTP). Using the CMT-SCTP over dissimilar paths is a challenge. Two paths are dissimilar if they possess different characteristics such as bandwidth or delay. Moreover, CMT-SCTP maintains a common buffer at the sender and receiver. No matter how the paths differ in quality, the fast paths are unable in improving aggregated throughput because of the out-of-sequence data at the receiver. This out-of-sequence data may also cause buffer blocking. The current state-of-the-art technique suggests that, the buffer should be split through various paths, in accordance with the number of paths. The technique assigns an equal amount of buffer space to the slow and fast paths. This also limits the performance of fast paths because of the small parts of the buffer. We propose a buffer splitting technique (CMT-RTTA) that maintains the outstanding data over the paths based on RTT (round trip time). A destination with a shorter RTT will be allowed to occupy more buffer space than those with a longer RTT. Additionally, we adopted a priority where the sender transmits data to the destinations with shorter RTTs first, followed by the destinations with longer RTTs. To evaluate the performance of CMT-RTTA we have established a real Internet lab setup. The experiments show that CMT-RTTA improved the throughput of CMT-SCTP on average by 14% when the maximum bandwidth dissimilarity is applied.
Keywords
Internet; computer network management; transport protocols; CMT-RTTA; CMT-SCTP; Internet lab setup; aggregated throughput; bandwidth dissimilarity; buffer blocking; buffer space management; buffer splitting technique; concurrent multipath transfer; dissimilar path; multipath transport; out-of-sequence data; round trip time; stream control transmission protocol; Bandwidth; Delays; Internet; Protocols; Radio frequency; Receivers; Throughput; CMT-SCTP; RTT; Stream control transmission protocol; dissimilar paths; out-of-sequence data;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Information, Networking, and Wireless Communications (DINWC), 2015 Third International Conference on
Conference_Location
Moscow
Print_ISBN
978-1-4799-6375-1
Type
conf
DOI
10.1109/DINWC.2015.7054218
Filename
7054218
Link To Document