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Dive into the research topics where Hye-Young McCreary is active.

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Featured researches published by Hye-Young McCreary.


Ibm Journal of Research and Development | 2007

Energyscale for IBM POWER6 microprocessor-based systems

Hye-Young McCreary; Martha A. Broyles; Michael Stephen Floyd; Andrew Geissler; Steven Paul Hartman; Freeman L. Rawson; Todd J. Rosedahl; Juan C. Rubio; Malcolm Scott Ware

With increasing processor speed and density, denser system packaging, and other technology advances, system power and heat have become important design considerations. The introduction of new technology including denser circuits, improved lithography, and higher clock speeds means that power consumption and heat generation, which are already significant problems with older systems, are significantly greater with IBM POWER6™ processor-based designs, including both standalone servers and those implemented as blades for the IBM BladeCenter® product line. In response, IBM has developed the EnergyScale™ architecture, a system-level power management implementation for POWER6 processor-based machines. The EnergyScale architecture uses the basic power control facilities of the POWER6 chip, together with additional board-level hardware, firmware, and systems software, to provide a complete power and thermal management solution. The EnergyScale architecture is performance aware, taking into account the characteristics of the executing workload to ensure that it meets the goals specified by the user while reducing power consumption. This paper introduces the EnergyScale architecture and describes its implementation in two representative platform designs: an eight-way, rack-mounted machine and a server blade. The primary focus of this paper is on the algorithms and the firmware structure used in the EnergyScale architecture, although it also provides the system design considerations needed to support performance-aware power management. In addition, it describes the extensions and modifications to power management that are necessary to span the range of POWER6 processor-based system designs.


Archive | 2008

Dynamic core pool management

Andreas Bieswanger; Andrew Geissler; Hye-Young McCreary; Freeman L. Rawson


Archive | 2008

Dynamic Frequency And Voltage Scaling For A Computer Processor

Andreas Bieswanger; Andrew Geissler; Hye-Young McCreary; Freeman L. Rawson; Malcolm Scott Ware


Archive | 2010

Power management for processing capacity upgrade on demand

Andreas Bieswanger; Andrew Geissler; Hye-Young McCreary; Freeman L. Rawson; Malcolm Scott Ware


Archive | 2007

System for Unified Management of Power, Performance, and Thermals in Computer Systems

Andreas Bieswanger; Michael Stephen Floyd; Soraya Ghiasi; Steven Paul Hartman; Thomas Walter Keller; Hye-Young McCreary; Karthick Rajamani; Freeman Leigh Rawson; Juan C. Rubio; Malcolm Scott Ware


Archive | 2007

I2C bus interface and protocol for thermal and power management support

Andrew Geissler; Michael C. Hollinger; Martha A. Broyles; Todd J. Rosedahl; Hye-Young McCreary; Andreas Bieswanger


Archive | 2008

Power cap lower bound exploration in a server environment

Andreas Bieswanger; Thomas M. Brey; Ajay Dholakia; Andrew Geissler; Hye-Young McCreary; Freeman L. Rawson; Malcolm Scott Ware


Archive | 2006

System and method of measurement for a distributed computer system

Andrew Geissler; Malcolm Scott Ware; Hye-Young McCreary; Andreas Bieswanger


Archive | 2013

Partition level power management using fully asynchronous cores with software that has limited asynchronous support

Andrew Geissler; Raymond J. Harrington; Hye-Young McCreary; Freeman L. Rawson; Malcolm Scott Ware


Archive | 2006

System and Method for Implementing Predictive Capacity on Demand for Systems With Active Power Management

Andreas Bieswanger; Andrew Geissler; Hye-Young McCreary; Naresh Nayar; Freeman L. Rawson

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