Title :
Cross-layer optimization with complete and incomplete knowledge for delay-sensitive applications
Author :
Fu, Fangwen ; Van der Schaar, Mihaela
Author_Institution :
Electr. Eng. Dept., UCLA, Los Angeles, CA, USA
Abstract :
In this paper, we first formulate the cross-layer design as a non-linear constrained optimization problem by assuming complete knowledge of the dynamically changing application characteristics and the underlying time-varying network conditions. By decomposing the cross-layer optimization problem, we determine the necessary message exchanges between layers for achieving the optimal cross-layer solution and explicitly show how the cross-layer strategies selected for one data unit (DU, e.g. packet) will impact its neighboring DUs as well as the DUs that depend on it. However, the attributes (e.g. distortion impact, delay deadline etc) of future DUs as well as the network conditions are often unknown in the considered real-time applications. The impact of current cross-layer actions on the future DUs can be characterized by a state-value function in the Markov decision process (MDP) framework. Based on the value iteration solution to the MDP, we develop a low-complexity cross-layer optimization algorithm using online learning for each DU transmission. This online optimization utilizes information only about the previous transmitted DUs and past experienced network conditions. This online algorithm can be implemented in real-time in order to cope with unknown source characteristics, network dynamics and resource constraints. Our numerical results demonstrate the efficiency of the proposed online algorithm.
Keywords :
Markov processes; computational complexity; decision theory; iterative methods; multimedia communication; nonlinear programming; radio networks; Markov decision process; delay-sensitive application; low-complexity cross-layer optimization algorithm; message exchange; nonlinear constrained optimization; online learning; time-varying network; value iteration; wireless multimedia transmission; Constraint optimization; Cross layer design; Delay; Design optimization; Nonlinear distortion; Open systems; PSNR; Quality of service; Streaming media; Wireless LAN; Cross-layer optimization; decomposition principles; online optimization; wireless multimedia transmission;
Conference_Titel :
Packet Video Workshop, 2009. PV 2009. 17th International
Conference_Location :
Seattle, WA
Print_ISBN :
978-1-4244-4651-3
Electronic_ISBN :
978-1-4244-4652-0
DOI :
10.1109/PACKET.2009.5152155