paper-with-me

홈 › Papers

Unified Complementarity-Based Contact Modeling and Planning for Soft Robots

2026-02-24 · Milad Azizkhani, Yue Chen arxiv

Soft robots were introduced in large part to enable safe, adaptive interaction with the environment, and this interaction relies fundamentally on contact. However, modeling and planning contact-rich interactions for soft robots remain challenging: dense contact candidates along the body create redundant constraints and rank-deficient LCPs, while the disparity between high stiffness and low friction introduces severe ill-conditioning. Existing approaches rely on problem-specific approximations or penalty-based treatments. This letter presents a unified complementarity-based framework for soft-robot contact modeling and planning that brings contact modeling, manipulation, and planning into a unified, physically consistent formulation. We develop a robust Linear Complementarity Problem (LCP) model tailored to discretized soft robots and address these challenges with a three-stage conditioning pipeline: inertial rank selection to remove redundant contacts, Ruiz equilibration to correct scale disparity and ill-conditioning, and lightweight Tikhonov regularization on normal blocks. Building on the same formulation, we introduce a kinematically guided warm-start strategy that enables dynamic trajectory optimization through contact using Mathematical Programs with Complementarity Constraints (MPCC) and demonstrate its effectiveness on contact-rich ball manipulation tasks. In conclusion, CUSP provides a new foundation for unifying contact modeling, simulation, and planning in soft robotics.

📄 PDF Abstract BibTeX arXiv:2602.21316

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

A Unified Complementarity-based Approach for Rigid-Body Manipulation and Motion Prediction

2026-02-04 · Bingkun Huang, Xin Ma, Nilanjan Chakraborty, Riddhiman Laha arxiv

Robotic manipulation in unstructured environments requires planners to reason jointly about free-space motion and sustained, frictional contact with the environment. Existing (local) planning and simulation frameworks ty…

Simultaneous Contact Selection and Planning for Contact-Rich Manipulation with Cascaded Optimization

2026-05-27 · Zhe Zhang, Xingrong Diao, Haoxiang Liang, Han Yang 외 arxiv

We propose an optimization-based framework for robust contact-rich manipulation. Recent contact-implicit methods enable online hybrid planning across contact modes, allowing closed-loop manipulation for a given target st…

Parallel Simulation of Contact and Actuation for Soft Growing Robots

2025-09-18 · Yitian Gao, Lucas Chen, Priyanka Bhovad, Sicheng Wang 외 arxiv

Soft growing robots, commonly referred to as vine robots, have demonstrated remarkable ability to interact safely and robustly with unstructured and dynamic environments. It is therefore natural to exploit contact with t…

ComFree-Sim: A GPU-Parallelized Analytical Contact Physics Engine for Scalable Contact-Rich Robotics Simulation and Control

2026-03-12 · Chetan Borse, Zhixian Xie, Wei-Cheng Huang, Wanxin Jin arxiv

Physics simulation for contact-rich robotics is often bottlenecked by contact resolution: mainstream engines enforce non-penetration and Coulomb friction via complementarity constraints or constrained optimization, requi…

GPU-Accelerated Continuous-Time Successive Convexification for Contact-Implicit Legged Locomotion

2026-04-11 · Samuel C. Buckner, Purnanand Elango arxiv

Contact-implicit trajectory optimization (CITO) enables the automatic discovery of contact sequences, but most methods rely on fine time discretization to capture all contact events accurately, which increases problem si…