Adaptive Autonomous Navigation of Multiple Optoelectronic Microrobots in Dynamic Environments

The optoelectronic microrobot is an advanced light-controlled micromanipulation technology which has particular promise for collecting and transporting sensitive microscopic objects such as biological cells. However, wider application of the technology is currently limited by a reliance on manual co...

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Veröffentlicht in:IEEE robotics and automation letters 2022-10, Vol.7 (4), p.11102-11109
Hauptverfasser: Mennillo, Laurent, Bendkowski, Christopher, Elsayed, Mohamed, Edwards, Harrison, Zhang, Shuailong, Pawar, Vijay, Wheeler, Aaron R., Stoyanov, Danail, Shaw, Michael
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Sprache:eng
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Zusammenfassung:The optoelectronic microrobot is an advanced light-controlled micromanipulation technology which has particular promise for collecting and transporting sensitive microscopic objects such as biological cells. However, wider application of the technology is currently limited by a reliance on manual control and a lack of methods for simultaneous manipulation of multiple microrobotic actuators. In this letter, we present a computational framework for autonomous navigation of multiple optoelectronic microrobots in dynamic environments. Combining closed-loop visual-servoing, SLAM, real-time visual detection of microrobots and obstacles, dynamic path-finding and adaptive motion behaviors, this approach allows microrobots to avoid static and moving obstacles, and perform a range of tasks in real-world dynamic environments. The capabilities of the system are demonstrated through micromanipulation experiments in simulation and in real conditions using a custom built optoelectronic tweezer system.
ISSN:2377-3766
2377-3766
DOI:10.1109/LRA.2022.3194308