Title :
A stochastic calculus for network systems with renewable energy sources
Author :
Wu, Kui ; Jiang, Yuming ; Marinakis, Dimitri
Author_Institution :
Dept. of Comput. Sci., Univ. of Victoria, Victoria, BC, Canada
Abstract :
We consider the performance modeling and evaluation of network systems powered with renewable energy sources such as solar and wind energy. Such energy sources largely depend on environmental conditions, which are hard to predict accurately. As such, it may only make sense to require the network systems to support a soft quality of service (QoS) guarantee, i.e., to guarantee a service requirement with a certain high probability. In this paper, we build a solid mathematical foundation to help better understand the stochastic energy constraint and the inherent correlation between QoS and the uncertain energy supply. We utilize a calculus approach to model the cumulative amount of charged energy and the cumulative amount of consumed energy. We derive upper and lower bounds on the remaining energy level based on a stochastic energy charging rate and a stochastic energy discharging rate. By building the bridge between energy consumption and task execution (i.e., service), we study the QoS guarantee under the constraint of uncertain energy sources.
Keywords :
energy consumption; environmental factors; performance evaluation; power aware computing; quality of service; renewable energy sources; stochastic processes; certain high probability; energy consumption; environmental conditions; network system evaluation; network system performance modeling; renewable energy sources; service requirement; soft quality of service; solar energy; solid mathematical foundation; stochastic calculus; stochastic energy charging rate; stochastic energy constraint; task execution; uncertain energy supply; wind energy; Analytical models; Calculus; Energy consumption; Quality of service; Renewable energy resources; Safety; Stochastic processes; Energy Scheduling; Performance Evaluation; Renewable Energy; Stochastic Network Calculus;
Conference_Titel :
Computer Communications Workshops (INFOCOM WKSHPS), 2012 IEEE Conference on
Conference_Location :
Orlando, FL
Print_ISBN :
978-1-4673-1016-1
DOI :
10.1109/INFCOMW.2012.6193470