TR2023-053

Learning Object Manipulation With Under-Actuated Impulse Generator Arrays


    •  Kong, C., Yerazunis, W.S., Nikovski, D., "Learning Object Manipulation With Under-Actuated Impulse Generator Arrays", American Control Conference (ACC), DOI: 10.23919/​ACC55779.2023.10156322, May 2023, pp. 710-717.
      BibTeX TR2023-053 PDF
      • @inproceedings{Kong2023may,
      • author = {Kong, Chuizheng and Yerazunis, William S. and Nikovski, Daniel},
      • title = {Learning Object Manipulation With Under-Actuated Impulse Generator Arrays},
      • booktitle = {American Control Conference (ACC)},
      • year = 2023,
      • pages = {710--717},
      • month = may,
      • doi = {10.23919/ACC55779.2023.10156322},
      • url = {https://www.merl.com/publications/TR2023-053}
      • }
  • MERL Contacts:
  • Research Area:

    Robotics

Abstract:

For more than half a century, vibratory bowl feeders have been the standard in automated assembly for singulation, orientation, and manipulation of small parts. Unfortunately, these feeders are expensive, noisy, and highly specialized on a single part design bases. We consider an alternative device and learning control method for singulation, orientation, and manipulation by means of seven fixed-position variable-energy solenoid impulse actuators located beneath a semi-rigid part supporting surface. Using computer vision to provide part pose information, we tested various machine learning (ML) algorithms to generate a control policy that selects the optimal actuator and actuation energy. Our manipulation test object is a 6-sided craps-style die. Using the most suitable ML algorithm, we were able to flip the die to any desired face 30.4% of the time with a single impulse, and 51.3% with two chosen impulses, versus a random policy succeeding 5.1% of the time (that is, a randomly chosen impulse delivered by a randomly chosen solenoid).

 

  • Related Publication

  •  Yerazunis, W.S., Kong, C., Nikovski, D., "Learning Object Manipulation With Under-Actuated Impulse Generator Arrays", arXiv, March 2023.
    BibTeX arXiv
    • @article{Yerazunis2023mar,
    • author = {Yerazunis, William S. and Kong, Chuizheng and Nikovski, Daniel},
    • title = {Learning Object Manipulation With Under-Actuated Impulse Generator Arrays},
    • journal = {arXiv},
    • year = 2023,
    • month = mar,
    • url = {https://arxiv.org/abs/2303.03282}
    • }