Advanced Certificate in Robotics Content: Actionable Knowledge
-- ViewingNowThe Advanced Certificate in Robotics: Actionable Knowledge course is a comprehensive program designed to equip learners with essential skills for robotics engineering careers. This course covers advanced topics in robotics, including kinematics, dynamics, control, and sensor integration.
4,376+
Students enrolled
GBP £ 149
GBP £ 215
Save 44% with our special offer
ě´ ęłźě ě ëí´
100% ě¨ëźě¸
ě´ëěë íěľ
ęłľě ę°ëĽí ě¸ěŚě
LinkedIn íëĄíě ěśę°
ěëŁęšě§ 2ę°ě
죟 2-3ěę°
ě¸ě ë ěě
ë기 ę¸°ę° ěě
ęłźě ě¸ëśěŹí
⢠Advanced Robot Kinematics & Dynamics: This unit covers the advanced kinematic and dynamic modeling of robots, including robot manipulators, mobile robots, and humanoid robots. Students will learn how to analyze and design complex robotic systems using theoretical and computational methods. ⢠Robot Control Systems & Programming: This unit delves into the control systems and programming of robots, covering topics such as control architectures, sensor integration, and real-time control. Students will learn how to program robots using industry-standard software and tools. ⢠Machine Learning for Robotics: This unit explores the application of machine learning techniques in robotics, including supervised, unsupervised, and reinforcement learning algorithms. Students will learn how to apply these techniques to solve real-world robotic problems. ⢠Computer Vision & Image Processing for Robotics: This unit covers the fundamentals of computer vision and image processing for robotics, including object recognition, tracking, and 3D reconstruction. Students will learn how to apply these techniques to enable robots to interact with their environment. ⢠Robot Sensing & Perception: This unit examines the various sensing and perception technologies used in robotics, including cameras, lidars, ultrasonic sensors, and tactile sensors. Students will learn how to integrate and interpret data from these sensors to enable robots to make informed decisions. ⢠Robot Motion Planning & Navigation: This unit covers the techniques used for robot motion planning and navigation, including path planning, trajectory generation, and obstacle avoidance. Students will learn how to apply these techniques to enable robots to navigate complex environments. ⢠Robot Design & Prototyping: This unit focuses on the design and prototyping of robots, including mechanical design, electrical design, and software development. Students will learn how to create functional robotic prototypes using industry-standard tools and techniques. ⢠Robotics in Manufacturing & Automation: This unit explores the application of robotics in manufacturing and automation, including automotive, aerospace, and electronics manufacturing. Students will learn how to design and implement robotic systems for various manufacturing processes. ⢠Robotics in Healthcare &
ę˛˝ë Ľ 경ëĄ
ě í ěęą´
- 죟ě ě ëí 기본 ě´í´
- ěě´ ě¸ě´ ëĽěë
- ěť´í¨í° ë° ě¸í°ëˇ ě ꡟ
- 기본 ěť´í¨í° 기ě
- ęłźě ěëŁě ëí íě
ěŹě ęłľě ěę˛Šě´ íěíě§ ěěľëë¤. ě ꡟěąě ěí´ ě¤ęłë ęłźě .
ęłźě ěí
ě´ ęłźě ě ę˛˝ë Ľ ę°ë°ě ěí ě¤ěŠě ě¸ ě§ěęłź 기ě ě ě ęłľíŠëë¤. ꡸ę˛ě:
- ě¸ě ë°ě 기ę´ě ěí´ ě¸ěŚëě§ ěě
- ęśíě´ ěë 기ę´ě ěí´ ęˇě ëě§ ěě
- ęłľě ě겊ě ëł´ěě
ęłźě ě ěąęłľě ěźëĄ ěëŁí늴 ěëŁ ě¸ěŚě뼟 ë°ę˛ ëŠëë¤.
ě ěŹëë¤ě´ ę˛˝ë Ľě ěí´ ě°ëŚŹëĽź ě ííëę°
댏롰 ëĄëŠ ě¤...
ě죟 돝ë ě§ëʏ
ě˝ě¤ ěę°ëŁ
- 죟 3-4ěę°
- 쥰기 ě¸ěŚě ë°°ěĄ
- ę°ë°Ší ëąëĄ - ě¸ě ë ě§ ěě
- 죟 2-3ěę°
- ě 기 ě¸ěŚě ë°°ěĄ
- ę°ë°Ší ëąëĄ - ě¸ě ë ě§ ěě
- ě 체 ě˝ě¤ ě ꡟ
- ëě§í¸ ě¸ěŚě
- ě˝ě¤ ěëŁ
ęłźě ě ëł´ ë°ę¸°
íěŹëĄ ě§ëś
ě´ ęłźě ě ëšěŠě ě§ëśí기 ěí´ íěŹëĽź ěí ě˛ęľŹě뼟 ěě˛íě¸ě.
ě˛ęľŹěëĄ ę˛°ě ę˛˝ë Ľ ě¸ěŚě íë