Better accuracy. Robots themselves are 100% accurate. Auditing robotic automation can also be applied to work performed by other staff to ensure accuracy, consistency and compliance to regulations. The Robots themselves also provide a complete audit train of all of their activities and provide reporting capability for audit and process analysis purposes. This improved accuracy also eliminates the need for quality checking and rework, further reducing costs and improving service levels.
Easier to work with. Robotic automation is much easier to work with than humans. Robots don’t require coaching or ongoing training. Once one Robot is trained to do the work, all other robots immediately learn the same things. Robots don’t require the same supervision as humans and can work 24 hours a day, 7 days a week, without a break.
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There was an interesting talk given by Regina Dugan of DARPA on December 14, 2011 for the engineering students and social studies students at MIT titled; ”Just Make It” which of course is a ”take-off” literally on the Nike Brand theme; Just Do It! – in this talk she mentions an aircraft manufacturing company which works without assembly lines and has been able to increase time to build from start to finish by a factor of 2. Each aircraft stays put, the folks working on it move. Okay so, that makes sense, and Rolls Royce and other high-end auto manufacturers use similar techniques, as to many of the hand-crafted high-end specialty cars.
Traders found out that these robots offer a lot of convenience since they do not have to be hooked with their personal computers. The robot will do their betting letting the traders to become richer. Installing the software is so easy and its operation so simple.
Machine vision systems for weld inspection comprise a sensor mounted on a robotic arm. A laser in the sensor projects a line of light across the surface of a component joint, a technique known as laser triangulation. At the same time, a high-speed camera, also housed in the sensor, captures an image of the line as an elevation profile. Through the relative motion of the component and the sensor, the system builds a 3D image of the welded seam surface.