Title :
QoS Guaranteed Scalable Video Transmission Over MIMO Systems with Time-Varying Channel Capacity
Author :
Song, Daewon ; Chen, Chang Wen
Author_Institution :
Florida Inst. of Technol., Melbourne
Abstract :
In this paper, we present a novel QoS guaranteed scalable video transmission scheme over multi-input multi-output (MIMO) wireless systems. The proposed scheme is able to not only guarantee the QoS (required BER for base and enhancement layer in compressed video) and but also maximize the system throughput over time-varying MIMO channel. We assume that the estimated channel state information (CSI) at the receiver is available at the transmitter through feedback. In this scenario, under a transmit power constraint, optimal power allocation can be designed to satisfy QoS-guaranteed maximum throughput by a combination of several adaptive operations. These operations include channel adaptive sub-channel selection, power allocation based on water-filling (WF), and data rate maximizing power reallocation. The proposed power reallocation scheme enables us to obtain surplus power after selecting proper adaptive mode and reallocate to other subchannels so as to maximize the data rate. We present in this paper some detailed analysis as well as simulation results to demonstrate that QoS guaranteed video transmission over MIMO wireless systems can indeed be achieved based on scalable video coding and a sequence of adaptive operations.
Keywords :
MIMO communication; channel capacity; mobile radio; quality of service; radio receivers; time-varying channels; video communication; BER; MIMO channel; MIMO systems; QoS; channel state information; data rate maximizing power reallocation; multi-input multi-output wireless systems; optimal power allocation; power allocation; scalable video coding; scalable video transmission; time-varying channel capacity; water-filling; Bit error rate; Channel capacity; Channel state information; MIMO; State estimation; Throughput; Time varying systems; Time-varying channels; Transmitters; Video compression; QoS; SVC; SVD-MIMO; adaptive modulation; channel selection; power reallocation;
Conference_Titel :
Multimedia and Expo, 2007 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
1-4244-1016-9
Electronic_ISBN :
1-4244-1017-7
DOI :
10.1109/ICME.2007.4284875