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    Physical-aware predictive dynamic thermal management of multi-core processors

    Salami, Bagher; Noori, Hamid; Madipour, Farhad; Baharani, Mohammadreza

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    Salami-Submitted version-20150923.pdf (2.008Mb)
    Date
    2016-03-30
    Citation:
    Salami, B., Noori, H., Mahdipour, F., & Baharani, M. (2016). Physical-aware predictive dynamic thermal management of multi-core processors. Journal of Parallel and Distributed Computing, 95, pp.42-56. doi:10.1016/j.jpdc.2016.03.008
    Permanent link to Research Bank record:
    https://hdl.handle.net/10652/3596
    Abstract
    The advances in silicon process technology have made it possible to have processors with larger number of cores. The increment of cores number has been hindered by increasing power consumption and heat dissipation due to high power expenditure in a small area die size. The high temperature can cause degradation in performance, reliability, transistor ageing, transition speed and increase in leakage current. In this paper, we present a method which considers different thermal behavior of cores and uses both physical sensors and performance counters simultaneously to improve thermal management of both SMT multi-core processors with a physical sensor per core and Non-SMT multi-core processors with only one physical sensor for the processor. The experimental results indicate that our technique can significantly decrease the average and peak temperature in most cases compared to Linux standard scheduler, and two well-known thermal management techniques: PDTM, and TAS.
    Keywords:
    dynamic thermal management, multi-core processors, task migration, dynamic voltage and frequency scaling (DVFS)
    ANZSRC Field of Research:
    090604 Microelectronics and Integrated Circuits
    Copyright Holder:
    Elservier

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    This digital work is protected by copyright. It may be consulted by you, provided you comply with the provisions of the Act and the following conditions of use. These documents or images may be used for research or private study purposes. Whether they can be used for any other purpose depends upon the Copyright Notice above. You will recognise the author's and publishers rights and give due acknowledgement where appropriate.
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    • Computing Journal Articles [51]

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