Literature DB >> 29182091

Toward Modular Soft Robotics: Proprioceptive Curvature Sensing and Sliding-Mode Control of Soft Bidirectional Bending Modules.

Ming Luo1, Erik H Skorina1, Weijia Tao1, Fuchen Chen1, Selim Ozel1, Yinan Sun1, Cagdas D Onal1.   

Abstract

Real-world environments are complex, unstructured, and often fragile. Soft robotics offers a solution for robots to safely interact with the environment and human coworkers, but suffers from a host of challenges in sensing and control of continuously deformable bodies. To overcome these challenges, this article considers a modular soft robotic architecture that offers proprioceptive sensing of pressure-operated bending actuation modules. We present integrated custom magnetic curvature sensors embedded in the neutral axis of bidirectional bending actuators. We describe our recent advances in the design and fabrication of these modules to improve the reliability of proprioceptive curvature feedback over our prior work. In particular, we study the effect of dimensional parameters on improving the linearity of curvature measurements. In addition, we present a sliding-mode controller formulation that drives the binary solenoid valve states directly, giving the control system the ability to hold the actuator steady without continuous pressurization and depressurization. In comparison to other methods, this control approach does not rely on pulse width modulation and hence offers superior dynamic performance (i.e., faster response rates). Our experimental results indicate that the proposed soft robotic modules offer a large range of bending angles with monotonic and more linear embedded curvature measurements, and that the direct sliding-mode control system exhibits improved bandwidth and a notable reduction in binary valve actuation operations compared to our earlier iterative sliding-mode controller.

Entities:  

Keywords:  curvature control; integrated; module; proprioceptive; sliding mode; soft bidirectional bending actuator; standardized design and fabrication

Year:  2017        PMID: 29182091     DOI: 10.1089/soro.2016.0041

Source DB:  PubMed          Journal:  Soft Robot        ISSN: 2169-5172            Impact factor:   8.071


  9 in total

1.  Fabrication and Dynamic Modeling of Bidirectional Bending Soft Actuator Integrated with Optical Waveguide Curvature Sensor.

Authors:  Wenbin Chen; Caihua Xiong; Chenlong Liu; Peimin Li; Yonghua Chen
Journal:  Soft Robot       Date:  2019-03-23       Impact factor: 8.071

Review 2.  A review on recent advances in soft surgical robots for endoscopic applications.

Authors:  M Wildan Gifari; Hamid Naghibi; Stefano Stramigioli; Momen Abayazid
Journal:  Int J Med Robot       Date:  2019-06-09       Impact factor: 2.547

3.  Mechanoreception for Soft Robots via Intuitive Body Cues.

Authors:  Liangliang Wang; Zheng Wang
Journal:  Soft Robot       Date:  2019-11-05       Impact factor: 8.071

4.  Parallel Helix Actuators for Soft Robotic Applications.

Authors:  James H Chandler; Manish Chauhan; Nicolo Garbin; Keith L Obstein; Pietro Valdastri
Journal:  Front Robot AI       Date:  2020-09-30

5.  Self-Sensing Pneumatic Compressing Actuator.

Authors:  Nan Lin; Hui Zheng; Yuxuan Li; Ruolin Wang; Xiaoping Chen; Xinming Zhang
Journal:  Front Neurorobot       Date:  2020-12-11       Impact factor: 2.650

6.  Motion Planning and Iterative Learning Control of a Modular Soft Robotic Snake.

Authors:  Ming Luo; Zhenyu Wan; Yinan Sun; Erik H Skorina; Weijia Tao; Fuchen Chen; Lakshay Gopalka; Hao Yang; Cagdas D Onal
Journal:  Front Robot AI       Date:  2020-12-03

7.  A Vision-Based Sensing Approach for a Spherical Soft Robotic Arm.

Authors:  Matthias Hofer; Carmelo Sferrazza; Raffaello D'Andrea
Journal:  Front Robot AI       Date:  2021-02-26

8.  A Soft Robotic Wearable Wrist Device for Kinesthetic Haptic Feedback.

Authors:  Erik H Skorina; Ming Luo; Cagdas D Onal
Journal:  Front Robot AI       Date:  2018-07-24

9.  Model-Based Nonlinear Feedback Controllers for Pressure Control of Soft Pneumatic Actuators Using On/Off Valves.

Authors:  Matheus S Xavier; Andrew J Fleming; Yuen K Yong
Journal:  Front Robot AI       Date:  2022-03-16
  9 in total

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