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The Capacitated Vehicle Routing Problem with Evidential Demands: A Belief-Constrained Programming Approach.

, , , , и . BELIEF, том 9861 из Lecture Notes in Computer Science, стр. 212-221. Springer, (2016)

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Object association with belief functions, an application with vehicles., , и . Inf. Sci., 181 (24): 5485-5500 (2011)The Capacitated Vehicle Routing Problem with Evidential Demands: A Belief-Constrained Programming Approach., , , , и . BELIEF, том 9861 из Lecture Notes in Computer Science, стр. 212-221. Springer, (2016)Shift & 2D Rotation Invariant Sparse Coding for Multivariate Signals., , , , и . IEEE Trans. Signal Process., 60 (4): 1597-1611 (2012)An improvement of a diagnosis procedure for AC machines using two external flux sensors based on a fusion process with belief functions., , , , и . IECON, стр. 5096-5101. IEEE, (2012)A Recourse Approach for the Capacitated Vehicle Routing Problem with Evidential Demands., , , , и . ECSQARU, том 10369 из Lecture Notes in Computer Science, стр. 190-200. Springer, (2017)SPSC: An Efficient, General-Purpose Execution Policy for Stochastic Simulations., , , и . WSC, стр. 1-12. IEEE, (2021)Détection d'événements rares dans les simulations multi-agents (démonstration)., , , и . JFSMA, стр. 227-228. Cépaduès, (2018)Towards an Alarm for Opposition Conflict in a Conjunctive Combination of Belief Functions., , и . ECSQARU, том 6717 из Lecture Notes in Computer Science, стр. 314-325. Springer, (2011)Learning Contextual Discounting and Contextual Reinforcement from Labelled Data., , , и . ECSQARU, том 9161 из Lecture Notes in Computer Science, стр. 472-481. Springer, (2015)General Correction Mechanisms for Weakening or Reinforcing Belief Functions., , и . FUSION, стр. 1-7. IEEE, (2006)