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Rinat Landman
Rinat Landman
Researcher, laborataory of process control and automation, Aalto university
Verified email at aalto.fi
Title
Cited by
Cited by
Year
Fault propagation analysis of oscillations in control loops using data-driven causality and plant connectivity
R Landman, J Kortela, Q Sun, SL Jämsä-Jounela
Computers & Chemical Engineering 71, 446-456, 2014
522014
Hybrid approach to casual analysis on a complex industrial system based on transfer entropy in conjunction with process connectivity information
R Landman, SL Jämsä-Jounela
Control Engineering Practice 53, 14-23, 2016
492016
Fault propagation analysis by implementing nearest neighbors method using process connectivity
R Landman, SL Jämsä-Jounela
IEEE Transactions on Control Systems Technology 27 (5), 2058-2067, 2018
142018
Hybrid causal analysis combining a nonparametric multiplicative regression causality estimator with process connectivity information
R Landman, SL Jämsä-Jounela
Control Engineering Practice 93, 104140, 2019
122019
Data-based causality analysis by exploiting process connectivity information
R Landman
Aalto University, 2019
72019
Fault propagation analysis by combining data-driven causal analysis and plant connectivity
R Landman, J Kortela, SL Jämsä-Jounela
Proceedings of the 2014 IEEE Emerging Technology and Factory Automation …, 2014
72014
Data-Driven Causal Analysis and its application on a Large-scale Board Machine
R Landman, SL Jämsä-Jounela
4*
A new approach for implementing transfer entropy using process topology
R Landman, SL Jämsä-Jounela
2016 3rd Conference on Control and Fault-Tolerant Systems (SysTol), 189-195, 2016
32016
A methodology for fault propagation analysis based on nearest neighbors method combined with the information on process connectivity
R Landman, SL Jämsä-Jounela
Automaatiopäivät, 1-6, 2017
2017
Fault Propagation Analysis by Implementing Nearest Neighbors Method Using Process Connectivity..................
R Landman, SL Jämsä-Jounela, JW Wang, YQ Liu, CY Sun, MHM Ramli, ...
Fault propagation analysis of oscillations in control loops by combining process causality and topology
R Landman, J Kortela, SL Jämsä-Jounela
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Articles 1–11