AbstractIn industrial human-robot collaboration (HRC) the question, how can such systems be designed safely is paramount. In general, it is difficult to assess those systems with all their capabilities prior to commissioning. In this paper we propose specialized simulation tools as one potential solution to this issue. We use real-world geometrical data to investigate different algorithms and safety strategies. One strategy is the use of a genetic algorithm for collision avoidance to deal with amounts of data in short computing times. This is a solution to find a safe distance with adaptive speed in HRC assembly applications
Application of human-robot-collaboration techniques in automotive industries has many advantages on ...
With the rise of Industry 4.0 technological trends, there is a growing tendency in manufacturing aut...
We present a tool-supported approach to the synthesis, verification, and testing of the control soft...
AbstractIn industrial human-robot collaboration (HRC) the question, how can such systems be designed...
There is a strong interest in the scope of human-industrial robot collaboration (HIRC) in manufactur...
High payload industrial robots, unlike collaborative robots are not designed to work together with h...
3D-simulation of human-robot work places and processes allows the prediction of failures during manu...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
Application of human-robot-collaboration techniques in automotive industries has many advantages on ...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
A significant barrier regarding a successful im- plementation of fenceless robot cells into manufac...
Human-robot collaboration (HRC) is a complex procedure in manufacturing due to the problems posed by...
AbstractThe simulation possibilities of Human – Industrial Robot Collaboration (HIRC) are limited in...
Application of human-robot-collaboration techniques in automotive industries has many advantages on ...
With the rise of Industry 4.0 technological trends, there is a growing tendency in manufacturing aut...
We present a tool-supported approach to the synthesis, verification, and testing of the control soft...
AbstractIn industrial human-robot collaboration (HRC) the question, how can such systems be designed...
There is a strong interest in the scope of human-industrial robot collaboration (HIRC) in manufactur...
High payload industrial robots, unlike collaborative robots are not designed to work together with h...
3D-simulation of human-robot work places and processes allows the prediction of failures during manu...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
Application of human-robot-collaboration techniques in automotive industries has many advantages on ...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
This paper deals with safe human-robot collaboration in the context of speed and separation monitori...
A significant barrier regarding a successful im- plementation of fenceless robot cells into manufac...
Human-robot collaboration (HRC) is a complex procedure in manufacturing due to the problems posed by...
AbstractThe simulation possibilities of Human – Industrial Robot Collaboration (HIRC) are limited in...
Application of human-robot-collaboration techniques in automotive industries has many advantages on ...
With the rise of Industry 4.0 technological trends, there is a growing tendency in manufacturing aut...
We present a tool-supported approach to the synthesis, verification, and testing of the control soft...