DocumentCode
2400827
Title
Supporting reliable and secure transport services over DVB-RCS satellite systems using XCP
Author
Ma, Liangping ; Ryu, Bo ; Tang, David
Author_Institution
Argon ST Inc., San Diego, CA
fYear
2008
fDate
16-19 Nov. 2008
Firstpage
1
Lastpage
7
Abstract
The DVB-RCS standard provides a framework for Multi-Frequency TDMA (MF-TDMA) and dynamic resource (frequencies and time slots) allocation over satellite links. Nevertheless, MF-TDMA and dynamic resource allocation alone are not sufficient to achieve satisfactory throughput for TCP, the dominant transport protocol in IP-based networks such as the Global Information Grid (GIG) system, due to the inherent large delay-bandwidth product of the satellite links. Various mechanisms called TCP Performance Enhancement Proxies (PEP) are proposed to improve the performance of TCP over large delay-bandwidth product networks. However, typical TCP PEPs do not support GIGpsilas layer-3 security standard HAIPE (High Assurance Internet Protocol Encryption). In this paper, we identify eXplicit Control Protocol (XCP) as a desired performance enhancement mechanism, and propose a novel system architecture that integrates DVB-RCS, XCP and HAIPE. We implement XCP in the network simulator QualNet and evaluate its performance against that of TCP. Our simulation results show that XCP achieves higher throughput and fairer bandwidth allocation among competing traffic flows in DVB-RCS systems than TCP.
Keywords
IP networks; computer network performance evaluation; transport protocols; DVB-RCS satellite systems; TCP; TDMA; XCP; eXplicit Control Protocol; network simulator QualNet; performance enhancement proxies; secure transport services; Cryptography; Digital video broadcasting; Information security; Internet; Radio spectrum management; Resource management; Satellites; Throughput; Time division multiple access; Transport protocols;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 2008. MILCOM 2008. IEEE
Conference_Location
San Diego, CA
Print_ISBN
978-1-4244-2676-8
Electronic_ISBN
978-1-4244-2677-5
Type
conf
DOI
10.1109/MILCOM.2008.4753505
Filename
4753505
Link To Document