From post

Reachability Computation for uncertain Planar Affine Systems using linear Abstractions.

, , и . ADHS, том 39 из IFAC Proceedings Volumes, стр. 118-123. Elsevier, (2006)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Principal Component Analysis for Fault Detection and Isolation in a DC-DC Buck Converter., , , , и . SSD, стр. 135-141. IEEE, (2021)Reachability Computation for uncertain Planar Affine Systems using linear Abstractions., , и . ADHS, том 39 из IFAC Proceedings Volumes, стр. 118-123. Elsevier, (2006)Hybrid and Multi-controller Architecture for Autonomous System - Application to the Navigation of a Mobile Robot., , , и . ICINCO (2), стр. 491-497. SciTePress, (2014)Interval-based Solutions for Reliable and Safe Navigation of Intelligent Autonomous Vehicles., , , и . RoMoCo, стр. 124-130. IEEE, (2019)Abstraction based reachability computation for affine systems with bounded input., , и . CDC, стр. 2609-2613. IEEE, (2006)Interval-based/Data-driven Risk Management for Intelligent Vehicles: Application to an Adaptive Cruise Control System., , , и . IV, стр. 239-244. IEEE, (2019)VPCA-based fault diagnosis of spacecraft reaction wheels., , , и . ICAT, стр. 1-6. IEEE Computer Society, (2015)Reliable Modeling for Safe Navigation of Intelligent Vehicles: Analysis of First and Second Order Set-membership TTC., , , и . ICINCO, стр. 545-552. ScitePress, (2020)Nonlinear fault tolerant systems with multiple actuator failures using progressive accommodation., , , и . ICCAD, стр. 396-401. IEEE, (2017)Automotive decentralized diagnosis based on CAN real-time analysis., , , и . J. Syst. Archit., (2019)