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Workload dependent mitigation approa...
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Lin, Ji-Yung.
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Workload dependent mitigation approaches for performance variability = ensuring timing guarantees of integrated circuits /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Workload dependent mitigation approaches for performance variability/ by Ji-Yung Lin ... [et al.].
其他題名:
ensuring timing guarantees of integrated circuits /
其他作者:
Lin, Ji-Yung.
出版者:
Cham :Springer Nature Switzerland : : 2025.,
面頁冊數:
xiv, 179 p. :ill. (chiefly color), digital ;24 cm.
內容註:
Chapter 1. Introduction -- Chapter 2. Variability in Integrated Circuits -- Chapter 3. Mitigation Approaches for Performance Variability: State-of-the-Art -- Chapter 4. Mitigating Performance Variability Using System and Adaptive Scenarios -- Chapter 5. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Theory -- Chapter 6. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Experiments -- Chapter 7. Cross-Layer Reliability and VariabilityMitigation Framework: Theory -- Chapter 8. Cross-Layer Reliability and VariabilityMitigation Framework: Experiments -- Chapter 9. Conclusion and Future Work.
Contained By:
Springer Nature eBook
標題:
Electronic digital computers - Workload -
電子資源:
https://doi.org/10.1007/978-3-031-85624-2
ISBN:
9783031856242
Workload dependent mitigation approaches for performance variability = ensuring timing guarantees of integrated circuits /
Workload dependent mitigation approaches for performance variability
ensuring timing guarantees of integrated circuits /[electronic resource] :by Ji-Yung Lin ... [et al.]. - Cham :Springer Nature Switzerland :2025. - xiv, 179 p. :ill. (chiefly color), digital ;24 cm.
Chapter 1. Introduction -- Chapter 2. Variability in Integrated Circuits -- Chapter 3. Mitigation Approaches for Performance Variability: State-of-the-Art -- Chapter 4. Mitigating Performance Variability Using System and Adaptive Scenarios -- Chapter 5. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Theory -- Chapter 6. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Experiments -- Chapter 7. Cross-Layer Reliability and VariabilityMitigation Framework: Theory -- Chapter 8. Cross-Layer Reliability and VariabilityMitigation Framework: Experiments -- Chapter 9. Conclusion and Future Work.
This book provides a holistic view of workload-dependent mitigation techniques for performance variability. The authors describe the use of design-time profiling information to reduce the uncertainties in future execution time calculation at run time, thereby offering the best option for minimizing system costs while reducing missed deadlines. Readers are introduced to an approach that combines dynamic voltage and frequency scaling (DVFS) with heterogeneous datapaths (HDP), enabling users to tackle performance variability of multiple timescales down to the sub-millisecond level. Provides a holistic view of workload-dependent mitigation techniques for performance variability; Introduces heterogeneous datapaths, improving time granularity of mitigation from the milliseconds to microseconds ; Combines dynamic voltage and frequency scaling with heterogeneous datapaths, enhancing variability mitigation.
ISBN: 9783031856242
Standard No.: 10.1007/978-3-031-85624-2doiSubjects--Topical Terms:
3783944
Electronic digital computers
--Workload
LC Class. No.: TK7874
Dewey Class. No.: 621.3815
Workload dependent mitigation approaches for performance variability = ensuring timing guarantees of integrated circuits /
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Chapter 1. Introduction -- Chapter 2. Variability in Integrated Circuits -- Chapter 3. Mitigation Approaches for Performance Variability: State-of-the-Art -- Chapter 4. Mitigating Performance Variability Using System and Adaptive Scenarios -- Chapter 5. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Theory -- Chapter 6. Workload-Dependent Multi-Timescale Mitigation Approach for Performance Variability: Experiments -- Chapter 7. Cross-Layer Reliability and VariabilityMitigation Framework: Theory -- Chapter 8. Cross-Layer Reliability and VariabilityMitigation Framework: Experiments -- Chapter 9. Conclusion and Future Work.
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This book provides a holistic view of workload-dependent mitigation techniques for performance variability. The authors describe the use of design-time profiling information to reduce the uncertainties in future execution time calculation at run time, thereby offering the best option for minimizing system costs while reducing missed deadlines. Readers are introduced to an approach that combines dynamic voltage and frequency scaling (DVFS) with heterogeneous datapaths (HDP), enabling users to tackle performance variability of multiple timescales down to the sub-millisecond level. Provides a holistic view of workload-dependent mitigation techniques for performance variability; Introduces heterogeneous datapaths, improving time granularity of mitigation from the milliseconds to microseconds ; Combines dynamic voltage and frequency scaling with heterogeneous datapaths, enhancing variability mitigation.
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