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Design, Modeling, and Control of Soft Syringes Enabling Two Pumping Modes for Pneumatic Robot Applications

  • Jianshu Zhou
  • , Junda Huang
  • , Xin Ma*
  • , Andy Lee
  • , Kazuhiro Kosuge
  • , Yun-Hui Liu*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Pneumatic actuation is important in robotic applications, such as manipulating objects in interaction scenarios using pneumatic grippers and suction cups. However, traditional pneumatic actuation approaches, including industrial pneumatic systems and syringe pumps, suffer from limitations such as bulky systems, noisy operation, and inflexible pressure modulation, which limit their practicality for daily use. To address these challenges, we proposed a novel soft syringe (SS) and its corresponding SS pump. Moreover, we developed a two-mode pumping mechanism (direct and continuous pumping) for both positive and negative pressure outputs, enabling flexible pressure modulation. A detailed description of the SS's design, modeling, control, and performance is provided. Additionally, a keyframe model is introduced to simplify the modeling of pressure dynamic response. The SS showcases the benefits of low friction, high operational frequency (6.5 Hz), low noise (55.6 dB), and sufficient pressure range (-0.08 MPa to 0.15 MPa). Experimental results demonstrate the promise of the proposed approach for diverse pneumatic end-effector actuation and control with excellent modulation and scalability in human-centered scenarios. © 2024 IEEE.
Original languageEnglish
Pages (from-to)889-901
Number of pages13
JournalIEEE/ASME Transactions on Mechatronics
Volume29
Issue number2
Online published9 Jan 2024
DOIs
Publication statusPublished - Apr 2024
Externally publishedYes

Funding

This work was supported in part by the Shenzhen Portion of Shenzhen-Hong Kong Science and Technology Innovation Cooperation Zone under Grant HZOB KCZYB 20200089, in part by CUHK T Sone Robotics Institute, in part by the InnoHK of the Government of the Hong Kong Special Administrative Region via the Hong Kong Centre for Logistics Robotics, the Research Grants Council of Hong Kong under Grant 14207320, Grant 14207423, and Grant 14204423, and in part by CUHK Direct Grant 4055170 and 4055171.

Research Keywords

  • Continuous pumping
  • direct pumping
  • soft actuation
  • soft pump
  • soft robot application
  • syringe pump

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