This inventor holds 3 USPTO granted patents and 1 EPO patent. Top assignee: Robert Bosch. Active years: 2022-2026.
Location History:
- Korntal-Muenchingen, DE (2022)
- Nufringen, DE (2024)
Company Filing History:
Years Active: 2022-2026
Title: Innovations by Patrick Kesper in Robotic Control
Introduction
Patrick Kesper is an accomplished inventor based in Korntal-Münchingen, Germany. He has made significant contributions to the field of robotics, particularly in the area of robotic control systems. With a total of 3 patents to his name, Kesper's work focuses on enhancing the capabilities of robotic devices.
Latest Patents
Kesper's latest patents include a "Method for controlling a robotic device" and a "Method and system for robot manipulation planning." The first patent describes a method for controlling a robotic device by generating a composite robot trajectory model. This model is created for a sequence plan that includes various movement skills and primitive actions. The robot is controlled by interrupting its trajectory to execute necessary actions before resuming its movement. The second patent outlines a method for planning manipulation tasks for robots. It involves learning manipulation skills and determining a sequence of these skills to achieve complex tasks effectively.
Career Highlights
Patrick Kesper is currently employed at Robert Bosch, a leading global engineering and technology company. His role involves developing innovative solutions that enhance robotic functionalities. Kesper's expertise in robotic control has positioned him as a key player in advancing automation technologies.
Collaborations
Kesper collaborates with talented individuals such as Andras Gabor Kupcsik and Leonel Rozo. These partnerships foster a creative environment that drives innovation in robotic systems.
Conclusion
Patrick Kesper's contributions to robotic control through his patents and work at Robert Bosch highlight his commitment to advancing technology in this field. His innovative methods are paving the way for more sophisticated robotic applications.
