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Gait recognition by using Spectrum Analysis on state space reconstruction.

, , , и . CCIA, том 232 из Frontiers in Artificial Intelligence and Applications, стр. 228-236. IOS Press, (2011)

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Gait Identification by Using Spectrum Analysis on State Space Reconstruction., , , и . IWANN (2), том 6692 из Lecture Notes in Computer Science, стр. 597-604. Springer, (2011)Intersection and Signed-Intersection Kernels for Intervals., , и . CCIA, том 184 из Frontiers in Artificial Intelligence and Applications, стр. 262-270. IOS Press, (2008)Active Learning of Actions Based on Support Vector Machines., , и . CCIA, том 248 из Frontiers in Artificial Intelligence and Applications, стр. 37-46. IOS Press, (2012)Gait identification by means of box approximation geometry of reconstructed attractors in latent space., , , , , и . Neurocomputing, (2013)A Supervised Discretization Method for Quantitative and Qualitative Ordered Variables., , и . Computación y Sistemas, (2006)Using a Simulated Annealing to Enhance Learning in Adjustment Processes., , , и . CCIA, том 202 из Frontiers in Artificial Intelligence and Applications, стр. 119-127. IOS Press, (2009)A consensus degree for hesitant fuzzy linguistic decision making., , , и . FUZZ-IEEE, стр. 1-5. IEEE, (2017)Funciones Núcleo en un Espacio de Órdenes de Magnitud Absolutos., , , , , и . Computación y Sistemas, (2003)A Computational creativity system to support chocolate designers decisions., , , и . CCIA, том 269 из Frontiers in Artificial Intelligence and Applications, стр. 87-94. IOS Press, (2014)Kernel Machines for Non-vectorial Data., , , и . IWANN, том 4507 из Lecture Notes in Computer Science, стр. 252-259. Springer, (2007)