Title :
Analytical QoE Models for Bit-Rate Switching in Dynamic Adaptive Streaming Systems
Author :
Yuedong Xu ; Yipeng Zhou ; Dah-Ming Chiu
Author_Institution :
Sch. of Inf. Sci. & Technol., Fudan Univ., Shanghai, China
Abstract :
Video streaming service in wireless networks is increasingly using dynamic selection of video bit-rates to provide a high quality of user experience (QoE). The bit-rate switching mechanism, performed at client side, plays a key role in determining QoE metrics. In this paper, we present the first analytical framework to compute starvation probability of playout buffer, continuous playback time and mean video quality, given the bit-rate switching logics. Wireless channel is modeled as a continuous time Markov process, and playout buffer is modeled as a fluid queue with Markov modulated fluid arrival. We construct a set of ordinary differential equations (ODEs) to characterize the dynamics of starvation probability and expected continuous playback time with regard to buffer length, and simple models to analyze mean bit-rate for different bit-rate switching algorithms. Our framework is very general in that by adding appropriate parameters, it can be utilized to predict the QoE metrics of dynamic adaptive streaming with a variety of features: i) buffer-aware bit-rate switching ii) (im)patience of the user, and iii) receiver-side flow control.
Keywords :
Markov processes; differential equations; quality of experience; radio networks; video streaming; wireless channels; Markov modulated fluid arrival; ODE; analytical QoE models; bit rate switching mechanism; bitrate switching logics; buffer length; continuous playback time; continuous time Markov process; dynamic adaptive streaming systems; mean bit-rate analysis; mean video quality; ordinary differential equations; playout buffer; quality of user experience; starvation probability; video streaming service; wireless channel; wireless networks; Bandwidth; Computational modeling; Mathematical model; Quality of service; Streaming media; Bit-rate switching; ordinary differential equations; quality of experience; starvation;
Journal_Title :
Mobile Computing, IEEE Transactions on
DOI :
10.1109/TMC.2014.2307323