DocumentCode :
271838
Title :
Power-aware multi-objective evolvable hardware system on an FPGA
Author :
López, B. ; Valverde, J. ; de la Torre, E. ; Riesgo, T.
Author_Institution :
Center of Ind. Electron., Univ. Politec. de Madrid, Madrid, Spain
fYear :
2014
fDate :
14-17 July 2014
Firstpage :
61
Lastpage :
68
Abstract :
Dynamic and Partial Reconfiguration (DPR) allows a system to be able to modify certain parts of itself during run-time. This feature gives rise to the capability of evolution: changing parts of the configuration according to the online evaluation of performance or other parameters. The evolution is achieved through a bio-inspired model in which the features of the system are identified as genes. The objective of the evolution may not be a single one; in this work, power consumption is taken into consideration, together with the quality of filtering, as the measure of performance, of a noisy image. Pareto optimality is applied to the evolutionary process, in order to find a representative set of optimal solutions as for performance and power consumption. The main contributions of this paper are: implementing an evolvable system on a low-power Spartan-6 FPGA included in a Wireless Sensor Network node and, by enabling the availability of a real measure of power consumption at run-time, achieving the capability of multi-objective evolution, that yields different optimal configurations, among which the selected one will depend on the relative “weights” of performance and power consumption.
Keywords :
Pareto optimisation; field programmable gate arrays; image denoising; wireless sensor networks; DPR; Pareto optimality; dynamic and partial reconfiguration; filtering quality; low-power Spartan-6 FPGA; noisy image; power-aware multiobjective evolvable hardware system; wireless sensor network; Arrays; Field programmable gate arrays; Filtering; Hardware; Power demand; Power measurement; Random access memory; FPGAs; Wireless Sensor Networks; dynamic and partial reconfiguration; evolvable hardware; multi-objective evolution; power-aware;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Adaptive Hardware and Systems (AHS), 2014 NASA/ESA Conference on
Conference_Location :
Leicester
Type :
conf
DOI :
10.1109/AHS.2014.6880159
Filename :
6880159
Link To Document :
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