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Academic literature on the topic 'Décodeurs (Électronique)'
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Journal articles on the topic "Décodeurs (Électronique)"
FRATH, PIERRE. "Pour commencer, il faut arrêter de décoder: plaidoyer pour une linguistique sans métaphysique." Journal of French Language Studies 18, no. 2 (July 2008): 147–73. http://dx.doi.org/10.1017/s0959269508003244.
Full textDissertations / Theses on the topic "Décodeurs (Électronique)"
Hussein, Ahmed Refaey Ahmed. "Universal Decoder for Low Density Parity Check, Turbo and Convolutional Codes." Thesis, Université Laval, 2011. http://www.theses.ulaval.ca/2011/28154/28154.pdf.
Full textOuadid, Abdelkarim. "Prototype micro-électronique d'un décodeur itératif pour des codes doublement orthogonaux." Mémoire, École de technologie supérieure, 2004. http://espace.etsmtl.ca/715/1/OUADID_Abdelkarim.pdf.
Full textHe, Zhiyong. "High-speed VLSI design for turbo and LDPC codes used in broadband wireless networks." Thesis, Université Laval, 2007. http://www.theses.ulaval.ca/2007/24420/24420.pdf.
Full textTernet, François. "Caloduc miniature pour le refroidissement passif des composants électroniques d'un décodeur Orange." Thesis, Normandie, 2018. http://www.theses.fr/2018NORMC221.
Full textThis report presents the study of a passive two-phase cooling of a television decoder using heat pipe. It is composed into two main parts: a first part concerns the numerical studies and the second an experimentalstudy. Numerical study is conducted in order to determine the geometric and physico-chemicalcharacteristics of heat pipes in order to optimally cool the TV decoder. Two numerical analyses arecarried out: a first one, which is analytical model that is based on the global study of the heat pipe inorder to determine the maximum heat flux that can be dissipated. Different working fluid could bestudied and various architectural design of heat pipe are tested. Different fluids are tested in order todetermine the best configuration of the micro-channel respecting heat pipes working limitations. Asecond model is carried out to characterize the local physical parameters such as: pressure in the liquidand vapour phases, temperature, thermal resistances, capillary radius, etc. This second simulation iscarried out by a Runge-Kutta method to solve differential equations. In the experimental part, an experimentalset up is has been installed in the laboratory to study heat pipes performances under variousexperimental conditions. A filling system has been developed for heat pipes in order to test variousworking fluids and different charges. Finally, the best configuration of the heat pipe is tested to coolOrange decoder. Different tests are conducted previously in order to make characterization of the conventionalcooling system and heat pipe cooling mod
Bouchoux, Sophie. "Apport de la reconfiguration dynamique au traitement d'images embarqué : étude de cas : implantation du décodeur entropique de JPEG 2000." Dijon, 2005. http://www.theses.fr/2005DIJOS027.
Full textThe appearance on the market of partially and quickly reprogrammable FPGAs, led to the development of new techniques, like dynamic reconfiguration. In order to study improvement of dynamic reconfiguration in comparison with static configuration, an electronic board was developed : the ARDOISE board. This thesis relates to the implementation of JPEG 2000 algorithm, and particularly of the entropic decoder, on this architecture and to the study of the performances obtained. To carry out a comparison of the results between the two methods, some evaluation criteria relating to costs, performances and efficiencies were defined. Implementations carried out are : implementation in partial dynamic reconfiguration of the arithmetic decoder on ARDOISE, implementation in static configuration of the entropic decoder on a Xilinx FPGA and implementation in dynamic reconfiguration of the entropic decoder on ARDOISE