Abstract
When related to a single and good contrast object or a laser spot, position sensing, or sensitive, detectors (PSDs) have a series of advantages over the classical camera sensors, including a good positioning accuracy for a fast response time and very simple signal conditioning circuits. To test the performance of this kind of sensor for microrobotics, we have made a comparative analysis between a precise but slow video camera and a custom-made fast PSD system applied to the tracking of a diffuse-reflectivity object transported by a pneumatic microconveyor called Smart-Surface. Until now, the fast system dynamics prevented the full control of the smart surface by visual servoing, unless using a very expensive high frame rate camera. We have built and tested a custom and low cost PSD-based embedded circuit, optically connected with a camera to a single objective by means of a beam splitter. A stroboscopic light source enhanced the resolution. The obtained results showed a good linearity and a fast (over 500 frames per second) response time which will enable future closed-loop control by using PSD. © 2012 by the authors; licensee MDPI, Basel, Switzerland.
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Ivan, I. A., Ardeleanu, M., & Laurent, G. J. (2012). High dynamics and precision optical measurement using a position sensitive detector (PSD) in reflection-mode: Application to 2D object tracking over a smart surface. Sensors (Switzerland), 12(12), 16771–16784. https://doi.org/10.3390/s121216771
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