Keywords: اجتناب از موانع; Monitoring trajectory; Unmanned surface vessel (USV); Minimal energy consumption; Obstacle avoidance; Improved grey wolf optimizer (IGWO);
مقالات ISI اجتناب از موانع (ترجمه نشده)
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: اجتناب از موانع; Gait; Obstacle avoidance; Parkinson's disease; PIGD; Tremor dominant;
Keywords: اجتناب از موانع; Gait adaptability; Obstacle avoidance; Stepping target; Fall risk; Cognition;
Keywords: اجتناب از موانع; Sensor network; LiDAR; Ultrasonic sensors; Smart wheelchairs; Obstacle avoidance; Falling prevention;
Keywords: اجتناب از موانع; Obstacle avoidance; Aperture crossing; Gait; Visual control of locomotion; Goal-directed locomotion;
Keywords: اجتناب از موانع; Walking; Prehension; Dual task; Obstacle avoidance;
Keywords: اجتناب از موانع; Resource Efficiency; Human Factors; Virtual Prototype; Automated Guided Vehicle; Obstacle Avoidance; Fuzzy Logic Controller; Unity3D;
Keywords: اجتناب از موانع; Controllability; Safety constraints; Invariance problems; Robotics; Quadrotors; Obstacle avoidance; Reference feasibility;
Keywords: اجتناب از موانع; Predictive guidance; Ship manoeuvring; Obstacle avoidance; Ship motion model;
Keywords: اجتناب از موانع; Powered descent guidance; Geometrically convex trajectories; Obstacle avoidance; Closed-loop analytical formulation;
Keywords: اجتناب از موانع; Deep learning; Reinforcement learning; Obstacle avoidance; Nonlinear dynamics; Underactuated unmanned marine vessel;
Keywords: اجتناب از موانع; Human locomotion; Motor behaviour; Obstacle avoidance; Perception-action integration; Time-to-contact;
Keywords: اجتناب از موانع; Motion planning; Autonomous vehicles; Obstacle avoidance; Model predictive control; Lexicographic optimization; Vehicle dynamics and control;
Keywords: اجتناب از موانع; Artificial potential function; Terminal sliding mode control; SDRE; Spacecraft rendezvous; Obstacle avoidance;
Keywords: اجتناب از موانع; Obstacle avoidance; Space robotics; Trajectory planning;
Keywords: اجتناب از موانع; Obstacle avoidance; Industrial mobile robots; Dynamic environments; Sensor network; Safe robot navigation; Industrial automation;
Keywords: اجتناب از موانع; Path planning; Path generation; Path selection; Obstacle avoidance; Autonomous driving;
Keywords: اجتناب از موانع; Genetic algorithm; Mobile robot navigation; Path planning; Obstacle avoidance; Matrix-Binary Code;
Keywords: اجتناب از موانع; Audition; Locomotion; Navigation; Obstacle avoidance; Vision;
Keywords: اجتناب از موانع; Motion planning; Survey; MoveIt!; Manipulation; Underwater; Autonomous; Obstacle avoidance;
Keywords: اجتناب از موانع; Path planning; Mobile robot; Potential field; Obstacle avoidance;
Keywords: اجتناب از موانع; Obstacle avoidance; Hexapod robot; Trajectory planning; Gait motion generation; Parallel mechanism;
Keywords: اجتناب از موانع; Space robotics; Trajectory optimization; Obstacle avoidance; International Space Station; Microgravity science; SPHERES;
Keywords: اجتناب از موانع; UAV; Computer vision; Navigation system; Pose estimation; Obstacle avoidance; Visual servoing; Vision-Based applications; 00-01; 99-00;
Keywords: اجتناب از موانع; Cerebellar ataxia; Neural control; Obstacle avoidance; Online gait corrections; Stepping accuracy;
Keywords: اجتناب از موانع; Dijkstra's algorithm; Geographic information systems; Laplacian smoothing algorithm; Obstacle avoidance; Subsea pipeline;
Keywords: اجتناب از موانع; Path planning; Optimal trajectory; Obstacle Avoidance; Mixed integer linear program; Unmanned aerial vehicle; Model predictive control; Collision avoidance; Receding horizon;
Keywords: اجتناب از موانع; Robot Soccer; fuzzy control; obstacle avoidance;
Keywords: اجتناب از موانع; Navigation-function; Collision probability; Obstacle avoidance;
Keywords: اجتناب از موانع; Optic flow; Insect flight; Obstacle avoidance; Speed control; Short-range navigation; Biorobotics; Biomimicry; Bionics;
Keywords: اجتناب از موانع; animal movement; bat; Chiroptera; echolocation; navigation; obstacle avoidance;
Keywords: اجتناب از موانع; Path planning; Hyper-redundant manipulator; Optimal control; Obstacle avoidance;
Keywords: اجتناب از موانع; Path planning; Data collection; Wireless sensor networks; Mobile robots; Mobility constraint; Obstacle avoidance;
Keywords: اجتناب از موانع; Autonomous ground vehicles; Local trajectory planning; Tracking control; Obstacle avoidance; Model-based predictive trajectory generation;
Keywords: اجتناب از موانع; Obstacle avoidance; Hamiltonian systems; Kinematic constraints;
Keywords: اجتناب از موانع; Mobile robot; Transformable wheel-legged robot; Motion analysis; Obstacle avoidance;
Keywords: اجتناب از موانع; Wireless sensor network; Mobile anchor node; Path planning; Clustering; Obstacle avoidance;
Keywords: اجتناب از موانع; UAV; Slung-load system; Coordination control; Obstacle avoidance; MPC;
Keywords: اجتناب از موانع; Dynamic environment; Navigation; Obstacle avoidance; Path planning; Robotics;
Keywords: اجتناب از موانع; Obstacle avoidance; Optimal trajectory; Clustering algorithm; Model predictive control; UAV; Path-planning;
Keywords: اجتناب از موانع; Obstacle avoidance; Potential field; Mixed integer programming; Autonomous vehicles;
Keywords: اجتناب از موانع; Mobile Robots; Teleoperation; Semi-Autonomy; Autonomy; Human-Robot Interaction; Obstacle Avoidance;
Keywords: اجتناب از موانع; Gait adaptability; Obstacle avoidance; Stepping accuracy; Ageing; Aged;
Keywords: اجتناب از موانع; Robot Soccer; behaviour trees; fuzzy inference; obstacle avoidance;
Keywords: اجتناب از موانع; Optimal motion planning and control; Spherical mobile robot; Dynamic programming; Nonholonomic robots; Obstacle avoidance; Image processing;
Keywords: اجتناب از موانع; Symmetric caging formation; Convex polygonal object transportation; Collision avoidance; Obstacle avoidance; Fuzzy sliding mode control;
Keywords: اجتناب از موانع; Autonomous vehicles; Path planning; Unstructured environments; Obstacle avoidance
Keywords: اجتناب از موانع; Adaptive inertia weight; Constriction factor; Home service robot; Manipulator; Obstacle avoidance; Particle swarm optimization;
Keywords: اجتناب از موانع; Mobile robots; Unmanned Ground Vehicles (UGVs); Model Predictive Control (MPC); Nonholonomic formations; Spline-path planning; Trajectory planning; Obstacle avoidance;
Keywords: اجتناب از موانع; Omnidirectional robot; Kinematic model; Navigation; Fuzzy-PI; Optimization; Obstacle avoidance;