Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- Netherlands
- Singapore
- Norway
- United Kingdom
- Poland
- France
- Germany
- Spain
- Sweden
- Switzerland
- Portugal
- Hong Kong
- Italy
- China
- Denmark
- Belgium
- Canada
- Japan
- United Arab Emirates
- Austria
- Morocco
- New Zealand
- Australia
- Brazil
- Croatia
- Czech
- India
- Lithuania
- Luxembourg
- Macau
- South Africa
- Taiwan
- 23 more »
- « less
-
Program
-
Field
-
prides itself in its excellent research capabilities in areas including advanced manufacturing, aerospace, biomedical, energy, industrial engineering, maritime engineering, robotics, etc. The school is
-
Future robots must perceive, predict, communicate, and decide reliably in complex, human–robot shared environments. The Mobile Robotics (https://www.aalto.fi/en/department-of-electrical-engineering
-
Ivy Tech Sellersburg is looking for an individual to join their team as a full-time faculty member of the Industrial Technology/Advanced Automation & Robotics programs and to serve as the Department
-
robotic manipulation. This role will support our mission to advance AI-driven robotic systems for real-world applications, including human-robot interaction, robotic perception, and intelligent control
-
robotic manipulation. This role will support our mission to advance AI-driven robotic systems for real-world applications, including human-robot interaction, robotic perception, and intelligent control
-
to the physical robot. Because the FR3 requires real-time control, the architecture will separate the local real-time robot controller from the higher-level HANDZONe communication. A second objective is to make
-
maintaining the software ecosystem foundations that allow robotic platforms to be designed, simulated, built, controlled, validated and used effectively. The candidate will work across platform software, system
-
will be those relevant to the criteria set out in section 6 of the call for applications, as long as they are related to: 3.1. Robotic manipulation and robot programming and control. 3.2. Techniques
-
, or distributed swarm algorithms would be advantageous. Experience Experience integrating sensing, localisation, navigation, communication, control, and decision-making components within a robotics or autonomous
-
the teaching and research profile of the unit. 2) knowledge and skills in: automation, robotics and control systems; electrical machines, power electronic drive systems, and methods of electric drive control