[ FreeCourseWeb ] Wearable Robotics-Exoskeletons (Lower Limb)

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[ FreeCourseWeb ] Udemy - Wearable Robotics-Exoskeletons (Lower Limb) ~Get Your Course Here ! 3. Mechanics of Wearable Robot
  • 9. Kinematics Model of the limbs.mp4 (129.6 MB)
  • 1. Introduction.html (0.7 KB)
  • 2. Robot Mechanics Kinematics.mp4 (93.0 MB)
  • 2. Robot Mechanics Kinematics.vtt (5.4 KB)
  • 3. Robot Mechanics ( D-H).mp4 (126.1 MB)
  • 3. Robot Mechanics ( D-H).vtt (6.3 KB)
  • 4. Robot Mechanics Dynamics.mp4 (82.6 MB)
  • 4. Robot Mechanics Dynamics.vtt (4.4 KB)
  • 5. Manipulability.html (1.8 KB)
  • 6. Human Bio-mechanics.html (2.0 KB)
  • 7. Medical description of human movements..html (4.5 KB)
  • 8. Leg Kinematics.html (2.4 KB)
  • 9. Kinematics Model of the limbs.vtt (7.8 KB)
  • 10. Dynamic Modeling of the human limbs.mp4 (41.1 MB)
  • 10. Dynamic Modeling of the human limbs.vtt (2.7 KB)
  • 11. Redundancies in Human-exoskeleton systems.mp4 (69.3 MB)
  • 11. Redundancies in Human-exoskeleton systems.vtt (4.4 KB)
  • Support Us for Free.txt (0.3 KB)
  • 1. Introduction
    • 1. Introduction to Wearable Robots.mp4 (77.7 MB)
    • 1. Introduction to Wearable Robots.vtt (4.7 KB)
    • 2. Classification of Wearable Robots.mp4 (94.7 MB)
    • 2. Classification of Wearable Robots.vtt (6.5 KB)
    • 3. Bio-inspiration and Biomechatronics.mp4 (44.9 MB)
    • 3. Bio-inspiration and Biomechatronics.vtt (3.9 KB)
    • 4. Applications of Wearable Robots.html (2.6 KB)
    2. Bio-inspiration and Bio-mimetism in Wearable Robots
    • 1. Introduction.html (1.7 KB)
    • 2. General Principles in Biological Design.html (0.7 KB)
    • 3. Energy consumption.html (4.9 KB)
    • 4. Multi-functionality and adaptability.html (1.6 KB)
    • 5. Development of biologically inspired designs.html (1.3 KB)
    • 6. Neuromotor control structures and mechanisms as models.html (5.1 KB)
    • 7. Levels of Biological Inspiration in Engineering Design.html (1.0 KB)
    • 8. Applications (optional).html (8.7 KB)
    4. Human–robot Interaction
    • 1. INTRODUCTION TO HUMAN–ROBOT INTERACTION.mp4 (73.6 MB)
    • 1. INTRODUCTION TO HUMAN–ROBOT INTERACTION.vtt (6.3 KB)
    • 2. cHRI Electroencephalography (EEG).mp4 (35.8 MB)
    • 2. cHRI Electroencephalography (EEG).vtt (2.7 KB)
    • 3. cHRI Electromyographic (EMG) -Part 1.mp4 (56.4 MB)
    • 3. cHRI Electromyographic (EMG) -Part 1.vtt (4.8 KB)
    • 4. cHRI Electromyographic (EMG)-Part 2.mp4 (56.7 MB)
    • 4. cHRI Electromyographic (EMG)-Part 2.vtt (3.8 KB)
    • 5. cHRI THROUGH BIOMECHANICAL MONITORING.mp4 (53.9 MB)
    • 5. cHRI THROUGH BIOMECHANICAL MONITORING.vtt (6.0 KB)
    • 6. Bio-mechanical Monitoring -Lower limbs ( gait cycle ).mp4 (128.9 MB)
    • 6. Bio-mechanical Monitoring -Lower limbs ( gait cycle ).vtt (8.5 KB)
    • 7. Bio-mechanical Monitoring -Lower limbs ( non-cyclical tasks ).mp4 (47.9 MB)
    • 7. Bio-mechanical Monitoring -Lower limbs ( non-cyclical tasks ).vtt (5.2 KB)
    • 8. pHRI Physiological factors.html (2.0 KB)
    • 9. pHRI Aspects of wearable robot design.mp4 (49.1 MB)
    • 9. pHRI Aspects of wearable robot design.vtt (4.6 KB)
    • 10. pHRI KINEMATIC COMPATIBILITY BETWEEN HUMAN LIMBS AND WEARABLE ROBOTS.mp4 (126.7 MB)
    • 10. pHRI KINEMATIC COMPATIBILITY BETWEEN HUMAN LIMBS AND WEARABLE ROBOTS.vtt (9.2 KB)
    • 11. pHRI KINEMATIC COMPATIBILITY ( Part 2).mp4 (73.1 MB)
    • 11. pHRI KINEMATIC COMPATIBILITY ( Part 2).vtt (6.5 KB)
    • 12. pHRI APPLICATION OF LOAD TO HUMANS.html (4.2 KB)
    • 13. pHRI Support Design.html (2.1 KB)
    • 14. pHRI CONTROL OF HUMAN–ROBOT INTERACTION (Part 1).mp4 (83.4 MB)
    • 14. pHRI CONTROL OF HUMAN–ROBOT INTERACTION (Part 1).vtt (8.1 KB)
    • 15. pHRI CONTROL OF HRI (Part 2).mp4 (61.9 MB)
    • 15. pHRI CONTROL OF HRI (Part 2).vtt (6.8 KB)
    • 16. pHRI Stability.html (2.3 KB)
    5. Wearable robot technologies
    • 1. INTRODUCTION TO WEARABLE ROBOT TECHNOLOGIES.html (2.0 KB)
    • 2. SENSOR TECHNOLOGIES ( part 1).mp4 (83.1 MB)
    • 2. SENSOR TECHNOLOGIES ( part 1).vtt (10.3 KB)
    • 3. SENSOR TECHNOLOGIES ( part 2).mp4 (74.2 MB)
    • 3. SENSOR TECHNOLOGIES ( part 2).vtt (5.4 KB)
    • 4. ACTUATOR TECHNOLOGIES ( Part 1 ).mp4 (108.5 MB)
    • 4. ACTUATOR TECHNOLOGIES ( Part 1 ).vtt (9.3 KB)
    • 5. ACTUATOR TECHNOLOGIES ( Part 2 ).mp4 (99.6 MB)
    • 5. ACTUATOR TECHNOLOGIES ( Part 2 ).vtt (9.6 KB)
    • 6. PORTABLE ENERGY STORAGE TECHNOLOGIES.html (1.1 KB)
    • ~Get All Courses Here !.url (0.2 KB)

Description

[ FreeCourseWeb.com ] Wearable Robotics-Exoskeletons (Lower Limb)

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MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + .VTT | Duration: 4.5 hours | Size: 1.92 GB
The first Course of Wearable Robots
What you'll learn

Definition and Types of Wearable Robotics
Human-Robot Interaction
Biomechatronic Systems in WR
Bio-inspiration and Biomimetism in WR
Mechanics of Wearable robot
Cognitive Human-Robot Interaction(cHRI)
Physical Human-Robot Interaction(pHRI)
Wearable Robot Technologies
Human bio-mechanics

Requirements

Mathematics
Engineering Mechanics
Dynamics
Robotics Basics
Control theory
Biology
Sensors

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[ FreeCourseWeb ] Wearable Robotics-Exoskeletons (Lower Limb)


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[ FreeCourseWeb ] Wearable Robotics-Exoskeletons (Lower Limb)


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