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Dynamic modeling of wing-assisted inclined running with a morphing multi-modal robot

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arxiv 2311.09963 v1 pith:Q7GLFLNU submitted 2023-11-16 cs.RO cs.SYeess.SY

classification cs.ROcs.SYeess.SY
keywords robotmodelappendagescapabilitiescontrollerdynamiclocomotionmany
verification ladder T0 review T1 audit T2 compute T3 formal
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Robot designs can take many inspirations from nature, where there are many examples of highly resilient and fault-tolerant locomotion strategies to navigate complex terrains by using multi-functional appendages. For example, Chukar and Hoatzin birds can repurpose their wings for quadrupedal walking and wing-assisted incline running (WAIR) to climb steep surfaces. We took inspiration from nature and designed a morphing robot with multi-functional thruster-wheel appendages that allows the robot to change its mode of locomotion by transforming into a rover, quad-rotor, mobile inverted pendulum (MIP), and other modes. In this work, we derive a dynamic model and formulate a nonlinear model predictive controller to perform WAIR to showcase the unique capabilities of our robot. We implemented the model and controller in a numerical simulation and experiments to show their feasibility and the capabilities of our transforming multi-modal robot.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enabling steep slope walking on Husky using reduced order modeling and quadratic programming

    cs.RO 2024-11 conditional novelty 4.0 of 10

    A simulation demonstrates that a variable-length inverted pendulum model with thruster forces and a quadratic-programming controller can track a 40-degree slope reference motion, but hardware transfer is unproven.

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