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  5. A coordinated dual-arm framework for delicate snap-fit assemblies
 
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A coordinated dual-arm framework for delicate snap-fit assemblies

Source
arXiv
Date Issued
2025-11
Author(s)
Kumar, Shreyas
Suresh, Barat
Das, Debojit
Desai, Yug
Jain, Siddhi
Kumar, Rajesh
Dr Harish Palanthandalam Madapusi  
Indian Institute of Technology, Gandhinagar
DOI
10.48550/arXiv.2511.18153
Abstract
Delicate snap-fit assemblies, such as inserting a lens into an eye-wear frame or during electronics assembly, demand timely engagement detection and rapid force attenuation to prevent overshoot-induced component damage or assembly failure. We address these challenges with two key contributions. First, we introduce SnapNet, a lightweight neural network that detects snap-fit engagement from joint-velocity transients in real-time, showing that reliable detection can be achieved using proprioceptive signals without external sensors. Second, we present a dynamical-systems-based dual-arm coordination framework that integrates SnapNet driven detection with an event-triggered impedance modulation, enabling accurate alignment and compliant insertion during delicate snap-fit assemblies. Experiments across diverse geometries on a heterogeneous bimanual platform demonstrate high detection accuracy (over 96% recall) and up to a 30% reduction in peak impact forces compared to standard impedance control.
URI
http://repository.iitgn.ac.in/handle/IITG2025/33591
Subjects
Bimanual manipulation
Dynamical systems
Snap-fit assembly
Variable impedance control
Event-triggered control
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