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Dive into the research topics where John Siegler is active.

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Featured researches published by John Siegler.


high-performance computer architecture | 2016

SizeCap: Efficiently handling power surges in fuel cell powered data centers

Yang Li; Di Wang; Saugata Ghose; Jie Liu; Sriram Govindan; Sean James; Eric C. Peterson; John Siegler; Rachata Ausavarungnirun; Onur Mutlu

Fuel cells are a promising power source for future data centers, offering high energy efficiency, low greenhouse gas emissions, and high reliability. However, due to mechanical limitations related to fuel delivery, fuel cells are slow to adjust to sudden increases in data center power demands, which can result in temporary power shortfalls. To mitigate the impact of power shortfalls, prior work has proposed to either perform power capping by throttling the servers, or to leverage energy storage devices (ESDs) that can temporarily provide enough power to make up for the shortfall while the fuel cells ramp up power generation. Both approaches have disadvantages: power capping conservatively limits server performance and can lead to service level agreement (SLA) violations, while ESD-only solutions must significantly overprovision the energy storage device capacity to tolerate the shortfalls caused by the worst-case (i.e., largest) power surges, which greatly increases the total cost of ownership (TCO). We propose SizeCap, the first ESD sizing framework for fuel cell powered data centers, which coordinates ESD sizing with power capping to enable a cost-effective solution to power shortfalls in data centers. SizeCap sizes the ESD just large enough to cover the majority of power surges, but not the worst-case surges that occur infrequently, to greatly reduce TCO. It then uses the smaller capacity ESD in conjunction with power capping to cover the power shortfalls caused by the worst-case power surges. As part of our new flexible framework, we propose multiple power capping policies with different degrees of awareness of fuel cell and workload behavior, and evaluate their impact on workload performance and ESD size. Using traces from Microsofts production data center systems, we demonstrate that SizeCap significantly reduces the ESD size (by 85%ofor a workload with infrequent yet large power surges, and by 50% for a workload with frequent power surges) without violating any SLAs.


Archive | 2015

Configurable Volatile Memory Data Save Triggers

Bryan Kelly; Sriram Govindan; John Siegler; Badriddine Khessib; Mark A. Shaw; J. Michael Andrewartha


international conference on fuel cell science engineering and technology fuelcell collocated with asme international conference on energy sustainability | 2014

Servers powered by a 10kW in-rack Proton Exchange Membrane Fuel Cell system

Li Zhao; Jacob Brouwer; Sean James; John Siegler; Eric C. Peterson; Aman Kansal; Jie Liu


Archive | 2014

Fuel Cells for Data Centers: Power Generation Inches From the Server

Li Zhao; Jacob Brouwer; Jie Liu; Sean James; John Siegler; Aman Kansal; Eric C. Peterson


Archive | 2015

BACKUP POWER MANAGEMENT FOR COMPUTING SYSTEMS

Badriddine Khessib; Bryan Kelly; Mark Santaniello; Chris Ong; John Siegler; Sriram Govindan; Shaun L. Harris


International Journal of Hydrogen Energy | 2017

Dynamic performance of an in-rack proton exchange membrane fuel cell battery system to power servers

Li Zhao; Jacob Brouwer; Sean James; John Siegler; Eric C. Peterson; Aman Kansal; Jie Liu


Archive | 2017

POWER CORD WITH IN-LINE POWER CONTROL FUNCTIONALITY

John Siegler


Archive | 2015

Controlled concurrent utilization of multiple power supplies

John Siegler; Brian Janous; Sean James


Archive | 2014

GAS DISTRIBUTION SYSTEM WITHIN TEMPERATURE DIFFERENTIATED ENVIRONMENTS

Sean James; Christian L. Belady; Stephan W. Gilges; Sriram Sankar; John Siegler; Brian Clark Andersen; Eric C. Peterson; J Darrin Schroeder


Archive | 2017

TESTING STORAGE DEVICE POWER CIRCUITRY

Laura Marie Caulfield; Mark Santaniello; J. Michael Andrewartha; John Siegler

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Jacob Brouwer

University of California

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Li Zhao

University of California

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