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NASU -- Novel Actuating Screw Unit: Origami-inspired Screw-based Propulsion on Mobile Ground Robots

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arxiv 2310.00184 v3 pith:KAGLRALU submitted 2023-09-29 cs.RO

classification cs.RO
keywords angledesignattacklocomotionunitmedianasupropulsion
verification ladder T0 review T1 audit T2 compute T3 formal
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Screw-based locomotion is a robust method of locomotion across a wide range of media including water, sand, and gravel. A challenge with screws is their significant number of impactful design parameters that affect locomotion performance. One crucial parameter is the angle of attack (also called the lead angle), which has been shown to significantly impact the performance of screw propellers in terms of traveling velocity, force produced, degree of slip, and sinkage. As a result, the optimal design choice may vary significantly depending on application and mission objectives. In this work, we present the Novel Actuating Screw Unit (NASU). It is the first screw-based propulsion design that enables dynamic reconfiguration of the angle of attack for optimized locomotion across multiple media and use cases. The design is inspired by the kresling unit, a mechanism from origami robotics, and the angle of attack is adjusted with a linear actuator, while the entire unit is spun on its axis to generate propulsion. NASU is integrated into a mobile test bed and experiments are conducted in various media including gravel, grass, and sand. Our experiment results indicate a trade-off between locomotive efficiency and velocity exists in regards to angle of attack, and the proposed design is a promising direction for reconfigurable screws by allowing control to optimize for efficiency or velocity.

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Cited by 2 Pith papers

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

  1. An Integrated Platform for LEED Certification Automation Using Computer Vision and LLM-RAG

    cs.SE 2025-06 conditional novelty 5.0 of 10

    An integrated platform for LEED certification automation is described, claiming 82% automation coverage and 60-70% documentation time reduction based on one pilot building.

  2. ARCSnake V2: Mechanical Adaptations For An Amphibious Multi-Domain Screw-Propelled Snake-Like Robot

    cs.RO 2025-11 conditional novelty 4.0 of 10

    ARCSnake V2 is a waterproof, screw-propelled snake robot that uses inflatable bladders to control diving and surfacing underwater.

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