Title : 
Power Management in Real Time Embedded Systems through Online and Adaptive Interplay of DPM and DVFS Policies
         
        
            Author : 
Bhatti, Khurram ; Belleudy, Cecile ; Auguin, Michel
         
        
            Author_Institution : 
LEAT Res. Lab., Univ. of Nice-Sophia Antipolis, Valbonne, France
         
        
        
        
        
        
            Abstract : 
This paper considers the problem of power/energy minimization for periodic real-time tasks that are scheduled over multiprocessor platforms that have dynamic power management (DPM) and dynamic voltage & frequency scaling (DVFS) capabilities. Early research reports that while both DPM and DVFS policies perform well individually for a specific set of conditions, they often outperform each other under different workload and/or architecture configuration. Thus, no single policy fits perfectly all operating conditions. Instead of designing new policies for specific operating conditions, this paper proposes a generic power management scheme, called the Hybrid Power Management (HyPowMan) scheme. This scheme takes a set of well-known existing (DPM and DVFS) policies, each of which performs well for a given set of conditions, and adapts at runtime to the best-performing policy for any given workload. We performed experiments with state-of the-art DPM and DVFS techniques and results show that HyPowMan scheme adapts well to the changing workload and always achieves overall energy savings comparable to the best-performing policy at any point in time.
         
        
            Keywords : 
embedded systems; power aware computing; processor scheduling; HyPowMan scheme; adaptive interplay; architecture configuration; dynamic frequency scaling; dynamic power management; dynamic voltage scaling; energy minimization; hybrid power management scheme; multiprocessor platform; online interplay; periodic real-time task scheduling; power minimization; real time embedded system; Dynamic Voltage & Frequency Scaling; Energy-efficient Scheduling; Machine Learning; Real Time Systems;
         
        
        
        
            Conference_Titel : 
Embedded and Ubiquitous Computing (EUC), 2010 IEEE/IFIP 8th International Conference on
         
        
            Conference_Location : 
Hong Kong
         
        
            Print_ISBN : 
978-1-4244-9719-5
         
        
            Electronic_ISBN : 
978-0-7695-4322-2
         
        
        
            DOI : 
10.1109/EUC.2010.35