Magnetic Actuation Based Motion Control for Microrobots: An Overview
Управление движением микророботов на основе магнитного привода: обзор
2015-09-15
SCID: 54.1/f38wbx7v
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closed-loop path followingmagnetic actuationmagnetic actuation systemsmicrorobotsmotion control
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Abstract (AI)
Untethered, controllable, mobile microrobots have been proposed for numerous applications, ranging from micro-manipulation, in vitro tasks (e.g., operation of microscale biological substances) to in vivo applications (e.g., targeted drug delivery; brachytherapy; hyperthermia, etc.), due to their small-scale dimensions and accessibility to tiny and complex environments. Researchers have used different magnetic actuation systems allowing custom-designed workspace and multiple degrees of freedom (DoF) to actuate microrobots with various motion control methods from open-loop pre-programmed control to closed-loop path-following control. This article provides an overview of the magnetic actuation systems and the magnetic actuation-based control methods for microrobots. An overall benchmark on the magnetic actuation system and control method is also discussed according to the applications of microrobots.
Key Findings
1
It benchmarks actuation systems and control methods according to their suitability for different microrobot applications.
2
Magnetic actuation systems can be customized to provide different workspaces and multiple degrees of freedom for microrobot motion.
3
Magnetically actuated untethered microrobots enable access to tiny, complex environments for micro-manipulation, in vitro operations, and in vivo therapies.
4
Microrobot control spans open-loop pre-programmed strategies to closed-loop path-following methods.
5
The article reviews magnetic actuation systems and corresponding motion-control approaches for microrobots.
Research Object
Magnetically actuated untethered mobile microrobots
Research Subject
Magnetic actuation systems and motion-control methods for microrobots, including workspace, degrees of freedom, and open- to closed-loop control performance across applications
Publication Details
Publication Date
2015-09-15
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