Institute of Information Theory and Automation

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Projects

Department: AS Duration: 2013 - 2016 Grantor: GACR
Decision making (DM) is a targeted choice of actions based on given knowledge and preferences. Normatively, Bayesian DM, maximising expected utility, should be used under uncertainty but this happens less than desirable. Often, imperfection of the DM participant can be blamed as it limits the deliberation effort spent.
Department: AS Duration: 2013 - 2016 Grantor: GACR
Department: ZOI Duration: 2013 - 2015 Grantor: GACR
In the past decade, we have seen a remarkable growth in ability to capture and distribute digital videos. But, taking into consideration the availability of too many powerful and user-friendly video editors, the question is how to verify the authenticity of these digital videos. The problem becomes crucial, when it comes to videos used in courts as evidences or journalism.
Department: ZOI Duration: 2013 - 2016 Grantor: GACR
We addresses one of the key problems of image processing, which is restoration of a latent image from its degraded observations. As the main source of degradation we consider convolution with a unknown blur. The restoration task is a blind deconvolution problem, which is intrinsically ill-posed.
Department: MTR Duration: 2013 - 2016 Grantor: GACR
Formal systems of (non-)classical logics are essential in many areas of computer science. Their appreciation is due to their deductive nature, universality and portability, and the power they gain from their rigorous mathematical background. Such a diverse landscape of logical systems has greatly benefited from a unified approach offered by Abstract Algebraic Logic.
Department: MTR Duration: 2013 - 2015 Grantor: GACR
The aim of this project is to develop reliable, theoretically supported, simulation tools for damage processes in quasi-brittle materials at small strains driven by mechanical and transport phenomena.
Department: ZOI Duration: 2013 - 2015 Grantor:
Automatic processing of microscopic images allows (compared to manual processing by human operator) a better and more efficient acquisition of a large amount of information stored in the captured images. When working with time-lapse images, we need to segment cells from the background, to determine their exact boundaries and monitor their movements.
Department: ZOI Duration: 2013 - 2015 Grantor:
Digital image acquisition is often accompanied with its degradation by blur (out-of-focus, motion etc.) and noise. In many cases, the degradation process can be modeled by convolution g=u*h+n where g denotes the acquired image, u the original image, h the convolution mask (blur), and n random noise. The goal of deconvolution is to recover the original image based on the observed image.
Department: MTR Duration: 2013 - 2014 Grantor: MSMT
The goal of the project is to continue the longstanding cooperation between Prague and Vienna on the application of game theory in fuzzy logic.
Department: Duration: 2013 - 2016 Grantor: GACR
Project deals with novel advanced methods for global analysis and control design for decomposed strongly nonlinear state space dynamical models with complex interactions of their components. Focus will be made on multivalued uncertain dynamical systems, especially the multivalued systems class that might be called as the "systems of systems".
Department: AS Duration: 2013 - 2015 Grantor: MSMT
The project is aimed to bring a novel type of monitors of the overall control system condition based on hierarchical assessment of its components. The idea combines mathematical models of system's inner relations and priors on components reliability by using a consistent probabilistic approach.
Department: ZOI Duration: 2013 - 2015 Grantor: AV_IP
Department: ZS Duration: 2012 - 2015 Grantor: FG
The overall objective is to develop advanced packaging for power supply components and new generation memory systems having application on Electric and ICE propelled vehicles. One of the main challenges of the introduction of the electronic systems in the automotive, in particular for electrified vehicles, is the reliability and the availability of the power supply systems, which must assure the
Department: ZOI Duration: 2012 - 2016 Grantor: MPO
Main purpose of the project is to facilitate czech geodetic enterprises to utilize progressive measuring and monitoring technology based on terrestrial radar interferometry (InSAR) to determine deformations of important and hazardous buildings, natural sites and localities such as dams, highway bridges, breast-walls, cooling towers, rocks, slide slopes, erosive sites and so on.

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