paper-with-me

홈 › Papers

A novel parameter estimation method for pneumatic soft hand control applying logarithmic decrement for pseudo rigid body modeling

2025-09-01 · Haiyun Zhang, Kelvin HoLam Heung, Gabrielle J. Naquila, Ashwin Hingwe, Ashish D. Deshpande arxiv

The rapid advancement in physical human-robot interaction (HRI) has accelerated the development of soft robot designs and controllers. Controlling soft robots, especially soft hand grasping, is challenging due to their continuous deformation, motivating the use of reduced model-based controllers for real-time dynamic performance. Most existing models, however, suffer from computational inefficiency and complex parameter identification, limiting their real-time applicability. To address this, we propose a paradigm coupling Pseudo-Rigid Body Modeling with the Logarithmic Decrement Method for parameter estimation (PRBM plus LDM). Using a soft robotic hand test bed, we validate PRBM plus LDM for predicting position and force output from pressure input and benchmark its performance. We then implement PRBM plus LDM as the basis for closed-loop position and force controllers. Compared to a simple PID controller, the PRBM plus LDM position controller achieves lower error (average maximum error across all fingers: 4.37 degrees versus 20.38 degrees). For force control, PRBM plus LDM outperforms constant pressure grasping in pinching tasks on delicate objects: potato chip 86 versus 82.5, screwdriver 74.42 versus 70, brass coin 64.75 versus 35. These results demonstrate PRBM plus LDM as a computationally efficient and accurate modeling technique for soft actuators, enabling stable and flexible grasping with precise force regulation.

📄 PDF Abstract BibTeX arXiv:2509.01113

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Modeling and Control of a Pneumatic Morphing Soft Quadrotor based on the SOFA Framework for Dynamic Soft Robotic Simulation

2026-05-20 · F. Labra Caso, V. Sumathy, P. Ferrentino, B. Vanderborght 외 arxiv

This article presents a novel SOFA based finite element method for the soft body modeling and the corresponding dynamic simulation and control of a pneumatic morphing soft quadrotor. The proposed modeling preserves the p…

Task-space model-based control of pneumatic soft actuators

2026-08-27 · Nithin S. Kumar, Joshua Gaston, D. Caleb Rucker, Eric J. Barth arxiv

Soft actuators enable dexterous and compliant interaction, but closed-loop task-space control remains challenging due to strong nonlinearities, distributed deformation, and uncertainty in their dynamics. This paper prese…

Computational Efficiency

Control Pneumatic Soft Bending Actuator with Online Learning Pneumatic Physical Reservoir Computing

2025-03-20 · Junyi Shen, Tetsuro Miyazaki, Kenji Kawashima

The intrinsic nonlinearities of soft robots present significant control but simultaneously provide them with rich computational potential. Reservoir computing (RC) has shown effectiveness in online learning systems for c…

A Task-Agnostic Control Strategy for Dynamic Assistance with Pneumatically Actuated Soft Exosuits

2026-08-18 · Anoush Sepehri, Zachary Huang, Raymond de Callafon, Michael T. Tolley 외 arxiv

Pneumatic artificial muscles have provided new opportunities to develop upper-extremity soft exosuits for reha- bilitation, augmentation, and assisted daily living. However, the complex dynamics and limited bandwidth of …

Soft Robotic Exogloves for Dexterous Mobility -- Towards Personalized Rehabilitation

2026-07-08 · Paul Dela Cruz, Mostafa Mo. Massoud, Jacqueline Libby arxiv

Soft robotic exogloves can provide hand rehabilitation and assistance. Fitting these gloves often relies on standardized measurements not tailored to the individual, limiting their effectiveness, especially for fine arti…