Search results for "roboti"

showing 10 items of 687 documents

Interaction Capabilities of a Robotic Receptionist

2017

A system aimed at facilitating the interaction between a human user and an humanoid robot is presented. The system is suited to answer questions about laboratories activities, people involved, projects, research themes and collaborations among employees. The task is accomplished by the HermiT reasoner invoked by a speech recognition module. The system is capable of navigating a specific ontology making inference on it. The presented system is part of a broader social robot framework whose goal is to give the user a fulfilling social interaction experience, driven by the perception of the robot internal state and involving intuitive and computational creativity capabilities.

0106 biological sciences0209 industrial biotechnologySocial robotComputational creativityComputer sciencechatbot02 engineering and technologySemantic reasonerOntology (information science)01 natural sciencesHuman–robot interactionTask (project management)020901 industrial engineering & automationHuman–computer interactionsocial roboticsRobotHumanoid robot010606 plant biology & botany
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Optimization of 3-DOF Parallel Motion Devices for Low-Cost Vehicle Simulators

2017

Motion generation systems are becoming increasingly important in certain Virtual Reality (VR) applications, such as vehicle simulators. This paper deals with the analysis of the Inverse Kinematics (IK) and the reachable workspace of a three-degrees-of-freedom (3-DOF) parallel manipulator, proposing different transformations and optimizations in order to simplify its use with Motion Cueing Algorithms (MCA) for self-motion generation in VR simulators. The proposed analysis and improvements are performed on a 3-DOF heave-pitch-roll manipulator with rotational motors, commonly used for low-cost motion-based commercial simulators. The analysis has been empirically validated against a real 3-DOF …

020301 aerospace & aeronautics0209 industrial biotechnologyMotion simulationComputer scienceMechanical EngineeringParallel manipulatorComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONControl engineering02 engineering and technologyCinemàticaMotion controlIndustrial and Manufacturing Engineeringlaw.inventionMecànicaComputer Science::Robotics020901 industrial engineering & automation0203 mechanical engineeringlawParallel motionRobotsSimulationComputingMethodologies_COMPUTERGRAPHICS
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Feasibility Analysis For Constrained Model Predictive Control Based Motion Cueing Algorithm

2019

International audience; This paper deals with motion control for an 8-degree-of-freedom (DOF) high performance driving simulator. We formulate a constrained optimal control that defines the dynamical behavior of the system. Furthermore, the paper brings together various methodologies for addressing feasibility issues arising in implicit model predictive control-based motion cueing algorithms.The implementation of different techniques is described and discussed subsequently. Several simulations are carried out in the simulator platform. It is observed that the only technique that can provide ensured closed-loop stability by assuring feasibility over all prediction horizons is a braking law t…

0209 industrial biotechnology021103 operations researchComputer scienceDriving simulationControl (management)0211 other engineering and technologiesStability (learning theory)Driving simulator02 engineering and technologyModélisation et simulation [Informatique]Motion controlOptimal control[INFO.INFO-MO]Computer Science [cs]/Modeling and SimulationAutomatique / Robotique [Sciences de l'ingénieur]Motion (physics)[SPI.AUTO]Engineering Sciences [physics]/AutomaticModel predictive controlAcceleration020901 industrial engineering & automationMotion Cueing AlgorithmAlgorithmModel Predictive Control
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LMI-based 2D-3D Registration: from Uncalibrated Images to Euclidean Scene

2015

International audience; This paper investigates the problem of registering a scanned scene, represented by 3D Euclidean point coordinates , and two or more uncalibrated cameras. An unknown subset of the scanned points have their image projections detected and matched across images. The proposed approach assumes the cameras only known in some arbitrary projective frame and no calibration or autocalibration is required. The devised solution is based on a Linear Matrix Inequality (LMI) framework that allows simultaneously estimating the projective transformation relating the cameras to the scene and establishing 2D-3D correspondences without triangulating image points. The proposed LMI framewo…

0209 industrial biotechnology3d registrationPixelbusiness.industry[INFO.INFO-RB] Computer Science [cs]/Robotics [cs.RO][ INFO.INFO-RB ] Computer Science [cs]/Robotics [cs.RO]Linear matrix inequalityComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONImage registration[INFO.INFO-CV]Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]02 engineering and technology[ INFO.INFO-CV ] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]020901 industrial engineering & automation[INFO.INFO-CV] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]Robustness (computer science)Projective frameComputer Science::Computer Vision and Pattern RecognitionEuclidean geometry0202 electrical engineering electronic engineering information engineering[INFO.INFO-RB]Computer Science [cs]/Robotics [cs.RO]020201 artificial intelligence & image processingComputer visionArtificial intelligencebusinessMathematics
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Adaptive Backstepping Control of a 2-DOF Helicopter System with Uniform Quantized Inputs

2020

Author's accepted manuscript © 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. This paper proposes a new adaptive controller for a 2-Degree of Freedom (DOF) helicopter system in the presence of input quantization. The inputs are quantized by uniform quantizers. A nonlinear mathematical model is derived for the 2-DOF helicopter system based on Euler-Lagrange equat…

0209 industrial biotechnologyAdaptive controlComputer science02 engineering and technologyComputer Science::RoboticsNonlinear systemQuantization (physics)VDP::Teknologi: 500020901 industrial engineering & automationControl theoryRobustness (computer science)Backstepping0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processing
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Decoupled nonlinear adaptive control of position and stiffness for pneumatic soft robots

2020

This article addresses the problem of simultaneous and robust closed-loop control of joint stiffness and position, for a class of antagonistically actuated pneumatic soft robots with rigid links and compliant joints. By introducing a first-order dynamic equation for the stiffness variable and using the additional control degree of freedom, embedded in the null space of the pneumatic actuator matrix, an innovative control approach is introduced comprising an adaptive compensator and a dynamic decoupler. The proposed solution builds upon existing adaptive control theory and provides a technique for closing the loop on joint stiffness in pneumatic variable stiffness actuators. Under a very mi…

0209 industrial biotechnologyAdaptive controlComputer science02 engineering and technologynull-spaceSoft robotadaptive controlComputer Science::Robotics020901 industrial engineering & automationArtificial IntelligenceControl theoryPosition (vector)0202 electrical engineering electronic engineering information engineeringmedicineElectrical and Electronic Engineeringvariable stiffness actuatorsPneumatic actuatorApplied MathematicsMechanical EngineeringStiffnessNonlinear adaptive controlphysical human–robot interactionantagonistic driveModeling and SimulationJoint stiffnesspneumatic actuatorRobot020201 artificial intelligence & image processingmedicine.symptomSoftware
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Adaptive Backstepping Control of a 2-DOF Helicopter

2019

This paper proposes an adaptive nonlinear controller for a 2-Degree of Freedom (DOF) helicopter. The proposed controller is designed using backstepping control technique and is used to track the pitch and yaw position references independently. A MIMO nonlinear mathematical model is derived for the 2DOF helicopter based on Euler-Lagrange equations, where the system parameters and the control coefficients are uncertain. Unlike some existing control schemes for the helicopter control, the developed controller does not require the knowledge on the system uncertain parameters. Updating laws are used to estimate the unknown parameters. It is shown that not only the global stability is guaranteed …

0209 industrial biotechnologyAdaptive controlComputer science020208 electrical & electronic engineeringMIMO02 engineering and technologyComputer Science::RoboticsNonlinear system020901 industrial engineering & automationComputer Science::Systems and ControlControl theoryRobustness (computer science)BacksteppingSystem parametersVDP::Teknologi: 500::Maskinfag: 5700202 electrical engineering electronic engineering information engineeringPosition control
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Comparison of Model-Based Simultaneous Position and Stiffness Control Techniques for Pneumatic Soft Robots

2020

Soft robots have been extensively studied for their ability to provide both good performance and safe human-robot interaction. In this paper, we present and compare the performance of two model-based control techniques with the common aim to independently and simultaneously control position and stiffness of a pneumatic soft robot’s joint. The dynamic system of a robot arm with flexible joints actuated by a pneumatic antagonistic pair of actuators, so-called McKibben artificial muscles, will be regarded, while its dynamic parameters will be considered imprecise. Simulation results are provided to verify the performance of the algorithms.

0209 industrial biotechnologyAdaptive controlPneumatic actuatorComputer scienceAdaptive controlModel based controlStiffnessAntagonistic drive02 engineering and technologySoft robotsVariable stiffness actuator020901 industrial engineering & automationSettore ING-INF/04 - AutomaticaPosition (vector)Control theoryPneumatic actuator0202 electrical engineering electronic engineering information engineeringmedicineRobot020201 artificial intelligence & image processingArtificial musclemedicine.symptomActuatorRobotic arm
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Making Industrial Robots Smarter with Adaptive Reasoning and Autonomous Thinking for Real-Time Tasks in Dynamic Environments: A Case Study

2018

In order to extend the abilities of current robots in industrial applications towards more autonomous and flexible manufacturing, this work presents an integrated system comprising real-time sensing, path-planning and control of industrial robots to provide them with adaptive reasoning, autonomous thinking and environment interaction under dynamic and challenging conditions. The developed system consists of an intelligent motion planner for a 6 degrees-of-freedom robotic manipulator, which performs pick-and-place tasks according to an optimized path computed in real-time while avoiding a moving obstacle in the workspace. This moving obstacle is tracked by a sensing strategy based on ma-chin…

0209 industrial biotechnologyAdaptive reasoningMachine visionbusiness.industryComputer scienceTReal-time computingRobotics02 engineering and technologyWorkspaceMachine visionRobot control020901 industrial engineering & automationDynamic environmentObstacle0202 electrical engineering electronic engineering information engineeringAdaptive reasoningRobot020201 artificial intelligence & image processingArtificial intelligenceMotion planningbusinessPath planningRobot control
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UJI RobInLab's approach to the Amazon Robotics Challenge 2017

2017

This paper describes the approach taken by the team from the Robotic Intelligence Laboratory at Jaume I University to the Amazon Robotics Challenge 2017. The goal of the challenge is to automate pick and place operations in unstructured environments, specifically the shelves in an Amazon warehouse. RobInLab's approach is based on a Baxter Research robot and a customized storage system. The system's modular architecture, based on ROS, allows communication between two computers, two Arduinos and the Baxter. It integrates 9 hardware components along with 10 different algorithms to accomplish the pick and stow tasks. We describe the main components and pipelines of the system, along with some e…

0209 industrial biotechnologyAmazon rainforestbusiness.industryComputer science010401 analytical chemistryCognitive neuroscience of visual object recognitionRobotics02 engineering and technologyModular architecture01 natural sciences0104 chemical sciences020901 industrial engineering & automationGrippersComputer data storageSMT placement equipmentRobotArtificial intelligenceSoftware engineeringbusiness2017 IEEE International Conference on Multisensor Fusion and Integration for Intelligent Systems (MFI)
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