IEEE 1924.1-2022
$48.75
IEEE Recommended Practice for Developing Energy-Efficient Power-Proportional Digital Architectures (Published)
Published By | Publication Date | Number of Pages |
IEEE | 2022 | 65 |
New IEEE Standard – Active. A set of guidelines is presented in this recommended practice for the development of energy-efficient and power-proportional digital architectures so that energy is only consumed when computations are under way and energy is reduced in the non-operating state. The purpose of this practice is to provide guidelines for the designers and developers of digital architectures for creating power-proportionality at different levels of the system.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | IEEE Std 1924.1ā¢-2022 Front cover |
2 | Title page |
4 | Important Notices and Disclaimers Concerning IEEE Standards Documents |
8 | Participants |
9 | Introduction |
10 | Contents |
11 | 1.āOverview 1.1āScope |
12 | 1.2āPurpose 1.3āWord usage 2.āNormative references 3.āDefinitions, acronyms, and abbreviations 3.1āDefinitions |
13 | 3.2āAcronyms and abbreviations |
14 | 4.āFramework for power-proportional energy efficiency recommendations |
15 | 5.āFundamentals of power and energy efficiency 5.1āGeneral 5.2āStatic power |
16 | 5.3āDynamic power 5.4āServer processor power |
17 | 5.5āPower and energy efficiency |
18 | 5.6āRecommended practice: Power-proportional design versus low-power design 6.āProcess and gate-level techniques 6.1āGeneral |
19 | 6.2āStatic power and leakage |
22 | 7.āCircuit-level techniques 7.1āGeneral 7.2āAdaptive power management techniques |
25 | 8.āComponent-level techniques 8.1āGeneral 8.2āProcessors and SoCs |
32 | 8.3āNetworks |
36 | 9.āPlatform-level techniques 9.1āGeneral |
37 | 9.2āPlatforms with high power demand |
39 | 9.3āPlatforms with low power demand |
48 | 10.āSystem architecture-level techniques 10.1āTechniques at the multiprocessor architecture level |
49 | 10.2āTask migration techniques in clusters of servers 10.3āLoad redistribution techniques in Mobile Cloud Computing |
50 | 11.āSupply-side technique 11.1āBackground |
51 | 11.2āThe problem 11.3āThe solution |
52 | 11.4āRecommended practice |
55 | Annex A (informative) Overview of C-states and S-states A.1āGeneral A.2āMeasurement of the data-dynamic Zero-Power Idle (ZPI) power supply prototype |
57 | A.3āPrevalent techniques for MAC in 9.3.1 on duty cycling |
60 | Annex B (informative) Bibliography |
65 | Back cover |