Description

Book Synopsis
Shrinking feature size and diminishing supply voltage are making circuits sensitive to supply voltage fluctuations within the microprocessor, caused by normal workload activity changes. If left unattended, voltage fluctuations can lead to timing violations or even transistor lifetime issues that degrade processor robustness. Mechanisms that learn to tolerate, avoid, and eliminate voltage fluctuations based on program and microarchitectural events can help steer the processor clear of danger, thus enabling tighter voltage margins that improve performance or lower power consumption. We describe the problem of voltage variation and the factors that influence this variation during processor design and operation. We also describe a variety of runtime hardware and software mitigation techniques that either tolerate, avoid, and/or eliminate voltage violations. We hope processor architects will find the information useful since tolerance, avoidance, and elimination are generalizable constructs that can serve as a basis for addressing other reliability challenges as well. Table of Contents: Introduction / Modeling Voltage Variation / Understanding the Characteristics of Voltage Variation / Traditional Solutions and Emerging Solution Forecast / Allowing and Tolerating Voltage Emergencies / Predicting and Avoiding Voltage Emergencies / Eliminiating Recurring Voltage Emergencies / Future Directions on Resiliency

Table of Contents
Introduction.- Modeling Voltage Variation.- Understanding the Characteristics of Voltage Variation.- Traditional Solutions and Emerging Solution Forecast.- Allowing and Tolerating Voltage Emergencies.- Predicting and Avoiding Voltage Emergencies.- Eliminiating Recurring Voltage Emergencies.- Future Directions on Resiliency.

Resilient Architecture Design for Voltage Variation

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A Paperback by Vijay Janapa Reddi, Meeta Sharma Gupta

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    View other formats and editions of Resilient Architecture Design for Voltage Variation by Vijay Janapa Reddi

    Publisher: Springer International Publishing AG
    Publication Date: 30/05/2013
    ISBN13: 9783031006111, 978-3031006111
    ISBN10: 3031006119

    Description

    Book Synopsis
    Shrinking feature size and diminishing supply voltage are making circuits sensitive to supply voltage fluctuations within the microprocessor, caused by normal workload activity changes. If left unattended, voltage fluctuations can lead to timing violations or even transistor lifetime issues that degrade processor robustness. Mechanisms that learn to tolerate, avoid, and eliminate voltage fluctuations based on program and microarchitectural events can help steer the processor clear of danger, thus enabling tighter voltage margins that improve performance or lower power consumption. We describe the problem of voltage variation and the factors that influence this variation during processor design and operation. We also describe a variety of runtime hardware and software mitigation techniques that either tolerate, avoid, and/or eliminate voltage violations. We hope processor architects will find the information useful since tolerance, avoidance, and elimination are generalizable constructs that can serve as a basis for addressing other reliability challenges as well. Table of Contents: Introduction / Modeling Voltage Variation / Understanding the Characteristics of Voltage Variation / Traditional Solutions and Emerging Solution Forecast / Allowing and Tolerating Voltage Emergencies / Predicting and Avoiding Voltage Emergencies / Eliminiating Recurring Voltage Emergencies / Future Directions on Resiliency

    Table of Contents
    Introduction.- Modeling Voltage Variation.- Understanding the Characteristics of Voltage Variation.- Traditional Solutions and Emerging Solution Forecast.- Allowing and Tolerating Voltage Emergencies.- Predicting and Avoiding Voltage Emergencies.- Eliminiating Recurring Voltage Emergencies.- Future Directions on Resiliency.

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