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Book
Tactile Sensors for Robotic Applications
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Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

The book covers different aspects: - Innovative technologies for tactile sensors development - Tactile data interpretation for control purposes - Alternative sensing technologies - Multi-sensor systems for grasping and manipulation - Sensing solutions for impaired people

Keywords

History of engineering & technology --- distributed force/tactile sensing --- dexterous manipulation --- sensor calibration --- contact modelling --- force and tactile sensing --- grasping and manipulation --- grasp planning --- object features recognition --- robot hand-arm system --- robot tactile systems --- sensor fusion --- slipping detection and avoidance --- stiffness measurement --- soft tactile sensing system --- localization and object detecting --- three-axis accelerometer --- in-hand manipulation --- pose estimation --- machine learning --- fuzzy control --- underactuated robotic hands --- ferromagnetic powder --- soft material --- tactile sensor --- magnetic field orientation --- force sensing --- force sensor --- tactile sensing --- linear regression --- hysteresis compensation --- contact location in tactile sensor --- soft tactile sensors --- deformable continuous force transfer medium --- array of discrete tactile sensors --- soft robotics --- robotic hand and gripper --- haptic telepresence --- braille device --- braille application --- visually impaired people --- tactile perception --- robotic palpation --- underactuated grippers --- deep learning --- sensorised fingers --- tactile sensors --- parametric model --- robotic fingers --- prosthetic fingers --- hand prostheses --- anthropomorphic robotic hands --- vibrissa --- bio-inspired sensor --- contour scanning --- multi-point contact --- actuator --- deafblind communication --- tactile display --- n/a


Book
Tactile Sensors for Robotic Applications
Author:
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Bookmark

Abstract

The book covers different aspects: - Innovative technologies for tactile sensors development - Tactile data interpretation for control purposes - Alternative sensing technologies - Multi-sensor systems for grasping and manipulation - Sensing solutions for impaired people


Book
Tactile Sensors for Robotic Applications
Author:
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

Loading...
Export citation

Choose an application

Bookmark

Abstract

The book covers different aspects: - Innovative technologies for tactile sensors development - Tactile data interpretation for control purposes - Alternative sensing technologies - Multi-sensor systems for grasping and manipulation - Sensing solutions for impaired people

Keywords

History of engineering & technology --- distributed force/tactile sensing --- dexterous manipulation --- sensor calibration --- contact modelling --- force and tactile sensing --- grasping and manipulation --- grasp planning --- object features recognition --- robot hand-arm system --- robot tactile systems --- sensor fusion --- slipping detection and avoidance --- stiffness measurement --- soft tactile sensing system --- localization and object detecting --- three-axis accelerometer --- in-hand manipulation --- pose estimation --- machine learning --- fuzzy control --- underactuated robotic hands --- ferromagnetic powder --- soft material --- tactile sensor --- magnetic field orientation --- force sensing --- force sensor --- tactile sensing --- linear regression --- hysteresis compensation --- contact location in tactile sensor --- soft tactile sensors --- deformable continuous force transfer medium --- array of discrete tactile sensors --- soft robotics --- robotic hand and gripper --- haptic telepresence --- braille device --- braille application --- visually impaired people --- tactile perception --- robotic palpation --- underactuated grippers --- deep learning --- sensorised fingers --- tactile sensors --- parametric model --- robotic fingers --- prosthetic fingers --- hand prostheses --- anthropomorphic robotic hands --- vibrissa --- bio-inspired sensor --- contour scanning --- multi-point contact --- actuator --- deafblind communication --- tactile display --- distributed force/tactile sensing --- dexterous manipulation --- sensor calibration --- contact modelling --- force and tactile sensing --- grasping and manipulation --- grasp planning --- object features recognition --- robot hand-arm system --- robot tactile systems --- sensor fusion --- slipping detection and avoidance --- stiffness measurement --- soft tactile sensing system --- localization and object detecting --- three-axis accelerometer --- in-hand manipulation --- pose estimation --- machine learning --- fuzzy control --- underactuated robotic hands --- ferromagnetic powder --- soft material --- tactile sensor --- magnetic field orientation --- force sensing --- force sensor --- tactile sensing --- linear regression --- hysteresis compensation --- contact location in tactile sensor --- soft tactile sensors --- deformable continuous force transfer medium --- array of discrete tactile sensors --- soft robotics --- robotic hand and gripper --- haptic telepresence --- braille device --- braille application --- visually impaired people --- tactile perception --- robotic palpation --- underactuated grippers --- deep learning --- sensorised fingers --- tactile sensors --- parametric model --- robotic fingers --- prosthetic fingers --- hand prostheses --- anthropomorphic robotic hands --- vibrissa --- bio-inspired sensor --- contour scanning --- multi-point contact --- actuator --- deafblind communication --- tactile display


Book
Computational Methods for Fracture
Author:
ISBN: 3039216872 3039216864 Year: 2019 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

This book offers a collection of 17 scientific papers about the computational modeling of fracture. Some of the manuscripts propose new computational methods and/or how to improve existing cutting edge methods for fracture. These contributions can be classified into two categories: 1. Methods which treat the crack as strong discontinuity such as peridynamics, scaled boundary elements or specific versions of the smoothed finite element methods applied to fracture and 2. Continuous approaches to fracture based on, for instance, phase field models or continuum damage mechanics. On the other hand, the book also offers a wide range of applications where state-of-the-art techniques are employed to solve challenging engineering problems such as fractures in rock, glass, concrete. Also, larger systems such as fracture in subway stations due to fire, arch dams, or concrete decks are studied.

Keywords

Brittle Fracture --- n/a --- microstructure --- fatigue crack growth --- fracture process zone (FPZ) --- crack shape change --- fracture network modeling --- Mohr-Coulomb --- fracture --- SBFEM --- topological insulator --- fatigue --- progressive collapse analysis --- Phase-field model --- loss of key components --- concrete creep --- compressive stress --- rail squats --- cracks --- force transfer --- rolling contact --- damage-plasticity model --- implicit gradient-enhancement --- extended scaled boundary finite element method (X-SBFEM) --- three-parameter model --- LEFM --- overall stability --- EPB shield machine --- metallic glass matrix composite --- phase field --- reinforced concrete core tube --- bulk damage --- ductility --- thermomechanical analysis --- incompatible approximation --- moderate fire --- finite element simulations --- shear failure --- FSDT --- gradient-enhanced model --- prestressing stress --- self-healing --- peridynamics --- damage-healing mechanics --- stress intensity factors --- damage --- dam stress zones --- shear band --- rock fracture --- random fracture --- surface crack --- plate --- steel reinforced concrete frame --- super healing --- brittle material --- geometric phase --- FE analysis --- grouting --- rock --- elastoplastic behavior --- parameters calibration --- screened-Poisson model --- anisotropic --- numerical simulation --- Discontinuous Galerkin --- brittle fracture --- XFEM/GFEM --- topological photonic crystal --- photonic orbital angular momentum --- conditioned sandy pebble --- yielding region --- finite element analysis --- fluid–structure interaction --- cracking risk --- Mindlin --- ABAQUS UEL --- particle element model --- HSDT --- cell-based smoothed-finite element method (CS-FEM) --- the Xulong arch dam --- fluid-structure interaction

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