Title :
Efficient scheduling for multicasting multimedia data with adaptive random liner network coding in relay-aided network
Author :
Bin Li ; Dengke Ban ; Ruonan Zhang
Author_Institution :
Sch. of Electron. & Inf., Northwestern Polytech. Univ., Xi´an, China
Abstract :
Random liner network coding (RLNC) is an efficient coding scheme to improve the performance of the wireless multicast networks. However, traditional RLNC comes with a sacrifice in service delay because if the users are not able to collect a full size of the encoding packets, the useful information can not be recovered under the wireless fading channel. This effect is more severe for transmitting the hard deadline constrained prioritized (HDCP) data due to the limited delivery time and data interdependencies. On the other hand, relay scheme provides a useful way to overcome the fading problem in wireless network. Accordingly, we propose a BS-relay competitive scheduling algorithm (BRCS) which introduced adaptive RLNC in the rely-aided wireless network to deliver the HDCP data, to overcome the problem above. BRCS fully considered the property of the multimedia data and design a scheduling scheme, in which BS and relay compete with other to choose the best encoding packet for transmission so as to maximize the network throughput for the given hard deadline. Moreover, to show the performance of BRCS, we compared with other scheduling schemes and the simulation results are provided to corroborate the effectiveness of the proposed technique.
Keywords :
fading channels; linear codes; multicast communication; multimedia communication; network coding; relay networks (telecommunication); BRCS; BS-relay competitive scheduling algorithm; HDCP data; RLNC; adaptive random liner network coding; data interdependencies; encoding packet; fading problem; hard deadline constrained prioritized data; limited delivery time; multicasting multimedia data; network throughput maximization; performance improvement; relay scheme; relay-aided network; service delay; wireless fading channel; wireless multicast networks; Encoding; Fading; Relays; Scheduling; Throughput; Wireless networks; HDCP data; Multimedia; adaptive scheduling; multicast; random network coding; relay-aided;
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2015 IEEE
Conference_Location :
New Orleans, LA
DOI :
10.1109/WCNC.2015.7127704