Phillip N. Azariadis
According to our database1, Phillip N. Azariadis
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Computing collision-free motions for a team of robots using formation and non-holonomic constraints.
Robotics and Autonomous Systems, 2016
Mission Design of Mobile Manipulators in Cluttered Environments for Service Applications.
Parametric-based Reconstruction Of 3D Mesh Models; Towards the Generation of a Parametric Human Foot Biomodel.
Proceedings of the Eurographics Workshop on Visual Computing for Biology and Medicine, 2015
Motion Planning and Scheduling with Stochastic Demands.
Proceedings of the Advances in Robot Design and Intelligent Control, 2015
Foot Plantar Pressure Estimation Using Artificial Neural Networks.
Proceedings of the Product Lifecycle Management in the Era of Internet of Things, 2015
Mission design for a group of autonomous guided vehicles.
Robotics and Autonomous Systems, 2011
A parametric feature-based approach to reconstructing traditional filigree jewelry.
Computer-Aided Design, 2011
Motion Design for Service Robots.
Proceedings of the Intelligent Robotics and Applications - 4th International Conference, 2011
3D articulated object retrieval using a graph-based representation.
The Visual Computer, 2010
Retrieval of 3D Articulated Objects Using a Graph-based Representation.
Proceedings of the Eurographics Workshop on 3D Object Retrieval, 2009
Two-dimensional motion-planning for nonholonomic robots using the bump-surfaces concept.
Product design using point-cloud surfaces: A recursive subdivision technique for point parameterization.
Computers in Industry, 2007
Obstacle representation by Bump-surfaces for optimal motion-planning.
Robotics and Autonomous Systems, 2005
Drawing curves onto a cloud of points for point-based modelling.
Computer-Aided Design, 2005
Efficient Parameterization of 3D Point-Sets Using Recursive Dynamic Base Surfaces.
Proceedings of the Advances in Informatics, 2005
Planar Development of Free-Form Surfaces: Quality Evaluation and Visual Inspection.
Parameterization of clouds of unorganized points using dynamic base surfaces.
Computer-Aided Design, 2004
An evolutionary algorithm for generating planar developments of arbitrarily curved surfaces.
Computers in Industry, 2002
Computer graphics representation and transformation of geometric entities using dual unit vectors and line transformations.
Computers & Graphics, 2001
Geodesic curvature preservation in surface flattening through constrained global optimization.
Computer-Aided Design, 2001
On using planar developments to perform texture mapping on arbitrarily curved surfaces.
Computers & Graphics, 2000
Surface Flattening Based on Constraint Global Optimization.
Proceedings of the 8-th International Conference in Central Europe on Computer Graphics, 2000
Design of plane developments of doubly curved surfaces.
Computer-Aided Design, 1997