Design issues for dynamic voltage scaling
ISLPED '00 Proceedings of the 2000 international symposium on Low power electronics and design
Dynamic voltage scheduling technique for low-power multimedia applications using buffers
ISLPED '01 Proceedings of the 2001 international symposium on Low power electronics and design
Real-time dynamic voltage scaling for low-power embedded operating systems
SOSP '01 Proceedings of the eighteenth ACM symposium on Operating systems principles
Dynamic Frame Dropping for Bandwidth Control in MPEG Streaming System
Multimedia Tools and Applications
Energy reduction techniques for multimedia applications with tolerance to deadline misses
Proceedings of the 40th annual Design Automation Conference
Dynamic and Aggressive Scheduling Techniques for Power-Aware Real-Time Systems
RTSS '01 Proceedings of the 22nd IEEE Real-Time Systems Symposium
Dynamic voltage scaling for real-time multi-task scheduling using buffers
Proceedings of the 2004 ACM SIGPLAN/SIGBED conference on Languages, compilers, and tools for embedded systems
Quality-driven design by bitwidth optimization for video applications
ASP-DAC '03 Proceedings of the 2003 Asia and South Pacific Design Automation Conference
Fine-grained energy profiling for power-aware application design
ACM SIGMETRICS Performance Evaluation Review
Virtual machine power metering and provisioning
Proceedings of the 1st ACM symposium on Cloud computing
From the origins of performance evaluation to new green ICT performance engineering
PERFORM'10 Proceedings of the 2010 IFIP WG 6.3/7.3 international conference on Performance Evaluation of Computer and Communication Systems: milestones and future challenges
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Editors' note: The trade-off between energy consumption and media quality is a fundamental design issue in mobile multimedia.This energy optimization technique based on frame skipping and buffering exploits the characteristics of video applications, particularly their tolerance to variation in latency and video quality to increase slack time and its use in dynamic voltage scaling.ýRadu Marculescu, Carnegie Mellon University; and Petru Eles, Linköping University