TY - GEN
T1 - Video broadcasting to heterogeneous mobile devices
AU - Hsu, Cheng Hsin
AU - Hefeeda, Mohamed
PY - 2009
Y1 - 2009
N2 - We study the problemof broadcasting multiple scalable video streams to heterogeneous mobile devices, which have limited energy budgets. We show that scalable video streams should be broadcast in a different manner than nonscalable streams; otherwise energy of mobile devices could be wasted. We propose an efficient broadcast scheme for mobile TV networks that explicitly supports heterogeneous mobile devices, and we show its correctness as well as performance in terms of energy saving. We implement the proposed scheme in a real mobile TV testbed to evaluate its performance. Our results indicate that, with the proposed broadcast scheme, significant energy savings can be achieved by different heterogeneous devices. For example, using the proposed broadcast scheme allows mobile devices to achieve energy saving between 62% to 92%, while using the current broadcast scheme only allows them to achieve energy saving 62% despite how many layers they can (or opt to) receive and decode.
AB - We study the problemof broadcasting multiple scalable video streams to heterogeneous mobile devices, which have limited energy budgets. We show that scalable video streams should be broadcast in a different manner than nonscalable streams; otherwise energy of mobile devices could be wasted. We propose an efficient broadcast scheme for mobile TV networks that explicitly supports heterogeneous mobile devices, and we show its correctness as well as performance in terms of energy saving. We implement the proposed scheme in a real mobile TV testbed to evaluate its performance. Our results indicate that, with the proposed broadcast scheme, significant energy savings can be achieved by different heterogeneous devices. For example, using the proposed broadcast scheme allows mobile devices to achieve energy saving between 62% to 92%, while using the current broadcast scheme only allows them to achieve energy saving 62% despite how many layers they can (or opt to) receive and decode.
KW - Energy saving
KW - Time slicing
KW - TV broadcast networks
UR - https://www.scopus.com/pages/publications/67650317936
U2 - 10.1007/978-3-642-01399-7_47
DO - 10.1007/978-3-642-01399-7_47
M3 - Conference contribution
AN - SCOPUS:67650317936
SN - 9783642013980
T3 - Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
SP - 600
EP - 613
BT - NETWORKING 2009 - 8th International IFIP-TC 6 Networking Conference, Proceedings
T2 - 8th International IFIP-TC 6 Networking Conference, NETWORKING 2009
Y2 - 11 May 2009 through 15 May 2009
ER -