DocumentCode
2596786
Title
Measuring one-way delay of VoIP packets without clock synchronization
Author
Ngamwongwattana, Boonchai ; Thompson, Richard
Author_Institution
Network Technol. Lab., Nat. Electron. & Comput. Technol. Center, Pathumthani, Thailand
fYear
2009
fDate
5-7 May 2009
Firstpage
532
Lastpage
535
Abstract
One-way network delay is a critical parameter in VoIP as it allows the application to assess the perceived quality. However, it is well known that it is very difficult to measure one-way delay of the VoIP packets traversing the network. This is because the Internet architecture is based on the end-to-end principle in which the endpoints are connected to the network independently, typically without clock synchronization. Here we propose a novel VoIP measurement methodology called Sync & Sense of Periodic Stream (SSPS) that can contribute significantly to overcome such a challenge. SSPS is the algorithm running on the receiver that monitors the timing of the arriving RTP packets. Using the information provided in the standard RTP packet, SSPS can build the transmission timing of the sender that is virtually synchronized with the reception timing. This allows SSPS to measure queuing delay which is the key component of the one-way network delay. Whereas the other delay components such as transmission and propagation delays are fixed and can be estimated, queuing delay is very critical because it is highly variable and unpredictable. Being able to measure the queuing delay enables SSPS to estimate the one-way network delay at a very high level of accuracy. Our experimental result shows that SSPS performs very well in the real-world environment.
Keywords
Internet telephony; delays; monitoring; queueing theory; Internet architecture; SSPS method; VoIP measurement methodology; monitoring method; one-way delay measurement; queuing delay; sync-sense of periodic stream; transmission timing; Clocks; Delay estimation; Global Positioning System; Instrumentation and measurement; Laboratories; Multiaccess communication; Payloads; Propagation delay; Synchronization; Timing; Voice over IP (VoIP); component; delay measurement; network delay; one-way delay;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation and Measurement Technology Conference, 2009. I2MTC '09. IEEE
Conference_Location
Singapore
ISSN
1091-5281
Print_ISBN
978-1-4244-3352-0
Type
conf
DOI
10.1109/IMTC.2009.5168507
Filename
5168507
Link To Document