Applied Mathematics to Mechanisms and Machines |
Autore | Rubio Alonso Higinio |
Pubbl/distr/stampa | Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 |
Descrizione fisica | 1 electronic resource (396 p.) |
Soggetto topico |
Technology: general issues
History of engineering & technology |
Soggetto non controllato |
path generation
dimensional synthesis hybrid optimization slider-crank mechanism hybrid compliant mechanisms path analysis numerical methods elliptic integrals kinematics Levenberg–Marquardt algorithm convergence neural networks local minima optimization three-legged parallel mechanism compliant mechanism flexure-based mechanism flexure compliant joint decoupled motion coupled motion stiffness compliance suspension algorithm predictive suspension land vehicle sprung mass autoencoder aeroengine denoising GRU rotordynamic adaptive rejection control sinusoidal disturbance flexible rotor hydrodynamic journal bearing six-bar mechanism dynamic balancing fully Cartesian coordinates multiobjective optimization differential evolution Pareto front serial robotic manipulators singularity identification geometric algebra rotor group distance to a singularity air flow medical sensor emergency air flow sensor low-cost air flow sensor nanostructures COVID-19 FEM analysis biomechanics effort mathematical models NMR reconstruction reverse engineering elbow joint zipper-coupled tubes Miura-ori pattern deployable mechanism origami inspired design smooth sheet attachment relative rotation jump safe basin fractal heteroclinic bifurcation delayed feedback helical spring vibration Frenet trihedral dispersion relation natural frequency approximate entropy non-linear systems phase space reconstruction fault classification random forest support vector machines lateral dynamics track parameters vehicle mathematical modeling safety vehicle index |
ISBN | 3-0365-5924-8 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910639986503321 |
Rubio Alonso Higinio | ||
Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Optimization of Motion Planning and Control for Automatic Machines, Robots and Multibody Systems |
Autore | Richiedei Dario |
Pubbl/distr/stampa | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020 |
Descrizione fisica | 1 electronic resource (266 p.) |
Soggetto topico | History of engineering & technology |
Soggetto non controllato |
humanoid robot
walk fast rotational slip ZMP gait planning quadruped robot whole robot control location trajectory dynamic gait fin stabilizer command-filtered backstepping sliding mode control prescribed performance disturbance observer OES inertial stability accuracy low-speed performance speed observation disturbance observation state-augmented Kalman filter composed control scheme fractional calculus FOPD controller underwater vehicle motion control modal analysis flexible multibody systems linearized models six-legged robot whole-body motion planning rugged terrain support swing gesture-based teleoperation robotic assembly force feedback compliant robot motion pickup manipulator adaptive genetic algorithm trajectory optimization improved artificial potential field method obstacle avoidance planning robust estimation dynamic model unknown but bounded noise extended set-membership filter dynamic balancing shaking force balancing acceleration control of the center of mass fully Cartesian coordinates natural coordinates parallel manipulators passive model biped walking Impact and contact friction force dissipative force energy efficiency robot motion design functional redundancy UR5 hybrid navigation system weighted-sum model a heuristic algorithm piecewise cubic Bézier curve mobile robot |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910557286703321 |
Richiedei Dario | ||
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|