DocumentCode :
1047400
Title :
Processor Speed Control With Thermal Constraints
Author :
Mutapcic, Almir ; Boyd, Stephen ; Murali, Srinivasan ; Atienza, David ; De Micheli, Giovanni ; Gupta, Rajesh
Author_Institution :
Dept. of Electr. Eng., Stanford Univ., Stanford, CA, USA
Volume :
56
Issue :
9
fYear :
2009
Firstpage :
1994
Lastpage :
2008
Abstract :
We consider the problem of adjusting speeds of multiple computer processors, sharing the same thermal environment, such as a chip or multichip package. We assume that the speed of each processor (and associated variables such as power supply voltage) can be controlled, and we model the dissipated power of a processor as a positive and strictly increasing convex function of the speed. We show that the problem of processor speed control subject to thermal constraints for the environment is a convex optimization problem. We present an efficient infeasible-start primal-dual interior-point method for solving the problem. We also present a distributed method, using dual decomposition. Both of these approaches can be interpreted as nonlinear static control laws, which adjust the processor speeds based on the measured temperatures in the system. We give numerical examples to illustrate performance of the algorithms.
Keywords :
microprocessor chips; nonlinear control systems; thermal analysis; velocity control; convex optimization problem; distributed method; infeasible-start primal-dual interiorpoint method; multichip package; multiple computer processor; nonlinear static control laws; power dissipation; processor speed control; thermal constraint; Convex optimization; distributed control; primal-dual interior-point methods; temperature-aware processor control;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2008.2011589
Filename :
4729592
Link To Document :
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