Global Certificate in Space Robotics: Future of Navigation
-- ViewingNowThe Global Certificate in Space Robotics: Future of Navigation is a comprehensive course designed to equip learners with essential skills for navigating and managing space robots. This course emphasizes the growing importance of space robotics, which is crucial for various applications such as orbital debris removal, satellite servicing, and lunar/planetary exploration.
5,862+
Students enrolled
GBP £ 140
GBP £ 202
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
⢠Space Robotics Fundamentals: Introduction to space robotics, history, and current state of the industry. Understanding of robotic systems and components, robot kinematics, and control strategies.
⢠Orbital Mechanics and Navigation: Overview of orbital mechanics, including Kepler's laws, orbital elements, and perturbations. Navigation in space, including star trackers, inertial measurement units, and GPS systems.
⢠Space Robotics Design and Analysis: Design considerations for space robots, including materials, structures, and mechanisms. Analysis of space robot dynamics, control, and performance.
⢠Robotic Sensing and Perception in Space: Sensing and perception technologies for space robots, including cameras, lidar, radar, and other sensors. Image processing, pattern recognition, and machine learning techniques.
⢠Space Robotics Mission Planning and Operations: Mission planning and operations for space robots, including trajectory planning, task allocation, and autonomous decision making. Human-robot interaction and collaboration in space.
⢠Space Robotics Teleoperation and Control: Teleoperation and control strategies for space robots, including telerobotics, virtual reality, and haptic feedback. Real-time control systems and communication protocols.
⢠Space Robotics Autonomy and AI: Autonomy and AI for space robots, including decision making, planning, and learning algorithms. Adaptation to uncertain and changing environments.
⢠Space Robotics Safety and Reliability: Safety and reliability considerations for space robots, including fault tolerance, redundancy, and risk management. Standards and regulations for space robotics.
⢠Space Robotics Applications and Future Trends: Applications of space robotics in scientific research, exploration, and commercial activities. Future trends and challenges in space robotics.
Note: The above list of units is not exhaustive and may vary
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