Jaroslav Hrdina
Brno University of Technology
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Publication
Featured researches published by Jaroslav Hrdina.
Proceedings of the 10th International Conference on DGA2007 | 2008
Jaroslav Hrdina; Jan Slovák
We discuss almost product projective geometry and the relations to a distinguished class of curves. Our approach is based on an observation that well known general techniques apply, and our goal is to illustrate the power of the general parabolic geometry theory on a quite explicit example. Therefore, some rudiments of the general theory are mentioned on the way, too.
soft computing | 2015
Jaroslav Hrdina; Petr Vašík
We consider different elements of a 5D conformal geometric algebra (CGA) as moving geometric objects whose final position is given by a specific kinematic chain. We show the form of the differential kinematics equations for different CGA elements, in particular point pairs, spheres and their centres.
Journal of Applied Mathematics | 2014
Jaroslav Hrdina; Petr Vašík
Multiaxis machines error modeling is set in the context of modern differential geometry and linear algebra. We apply special classes of matrices over dual numbers and propose a generalization of such concept by means of general Weil algebras. We show that the classification of the geometric errors follows directly from the algebraic properties of the matrices over dual numbers and thus the calculus over the dual numbers is the proper tool for the methodology of multiaxis machines error modeling.
Kybernetika | 2018
Jaroslav Hrdina; Radomil Matousek; Aleš Návrat; Petr Vašík
We construct a privileged system of coordinates with respect to the controlling distribution of a trident snake robot and, furthermore, we construct a nilpotent approximation with respect to the given filtration. Note that all constructions are local in the neighbourhood of a particular point. We compare the motions corresponding to the Lie bracket of the original controlling vector fields and their nilpotent approximation.
MM Science Journal | 2017
Jaroslav Hrdina; Petr Vašík; Michal Holub
and thus more convenient setting can be used. As algebraically the properties of , , xx yx zx ň ň ň coincide we can consider these as the coefficient of one element only and thus we can work in the dual numbers algebra, see [Hrdina 2014]. Note that this simplification brings minor complications, particularly the number of remaining terms increases, but, on the other hand, the question of the geometric interpretation of these higher order error terms is also interesting. For instance, one can distinguish the rotation error w.r.t. the x and y axis while translating along the axis x . Let us recall the definition of the dual numbers. It is a set { | , } a b a b D (3) endowed with the operations summation and multiplication
Journal of Physics: Conference Series | 2012
Jaroslav Hrdina
We discuss the properties of k-algebras and their modules. A useful observation in this direction suggests that one may choose Frobenius algebras to avoid problems with generic rank. In particular, we prove that the study of generic rank reduces to the study of Frobenius algebras.
arXiv: Differential Geometry | 2014
Jaroslav Hrdina
The paper mostly collects material on generic rank of A-modules with respect to differential geometric applications. Our research was motivated by geometry of A-structures. In particular, we discuss the case of A being an unitary associative algebra not necessarily with inversion. Some of the examples are studied in detail.
Journal of Applied Mathematics | 2013
Jaroslav Hrdina; Petr Vašík
The thermomechanical behavior of a material is expressed mathematically by means of one or more constitutive equations representing the response of the body to the history of its deformation and temperature. These settings induce a set of connections which can express local properties. We replace two of them by a second order connection and prove that the holonomity of this connection classifies our materials.
Annals of Global Analysis and Geometry | 2006
Jaroslav Hrdina; Jan Slovák
Advances in Applied Clifford Algebras | 2016
Jaroslav Hrdina; Aleš Návrat; Petr Vašík