Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics
This volume gathers the latest fundamental research contributions, innovations, and applications in the field of design and analysis of complex robotic mechanical systems, machines, and mechanisms, as presented by leading international researchers at the 2nd USCToMM Symposium on Mechanical Systems and Robotics (USCToMM MSR), held in Rapid City, South Dakota, USA on May 19-21, 2022. It covers highly diverse topics, including soft, wearable and origami robotic systems; applications to walking, flying, climbing, underground, swimming and space systems; human rehabilitation and performance augmentation; design and analysis of mechanisms and machines; human-robot collaborative systems; service robotics; mechanical systems and robotics education; and the commercialization of mechanical systems and robotics. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting and impactful research results that will inspire novel research directions and foster multidisciplinary research collaborations among researchers from around the globe.

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Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics
This volume gathers the latest fundamental research contributions, innovations, and applications in the field of design and analysis of complex robotic mechanical systems, machines, and mechanisms, as presented by leading international researchers at the 2nd USCToMM Symposium on Mechanical Systems and Robotics (USCToMM MSR), held in Rapid City, South Dakota, USA on May 19-21, 2022. It covers highly diverse topics, including soft, wearable and origami robotic systems; applications to walking, flying, climbing, underground, swimming and space systems; human rehabilitation and performance augmentation; design and analysis of mechanisms and machines; human-robot collaborative systems; service robotics; mechanical systems and robotics education; and the commercialization of mechanical systems and robotics. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting and impactful research results that will inspire novel research directions and foster multidisciplinary research collaborations among researchers from around the globe.

279.99 In Stock
Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics

Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics

Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics

Proceedings of the 2022 USCToMM Symposium on Mechanical Systems and Robotics

Paperback(1st ed. 2022)

$279.99 
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Overview

This volume gathers the latest fundamental research contributions, innovations, and applications in the field of design and analysis of complex robotic mechanical systems, machines, and mechanisms, as presented by leading international researchers at the 2nd USCToMM Symposium on Mechanical Systems and Robotics (USCToMM MSR), held in Rapid City, South Dakota, USA on May 19-21, 2022. It covers highly diverse topics, including soft, wearable and origami robotic systems; applications to walking, flying, climbing, underground, swimming and space systems; human rehabilitation and performance augmentation; design and analysis of mechanisms and machines; human-robot collaborative systems; service robotics; mechanical systems and robotics education; and the commercialization of mechanical systems and robotics. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting and impactful research results that will inspire novel research directions and foster multidisciplinary research collaborations among researchers from around the globe.


Product Details

ISBN-13: 9783030998288
Publisher: Springer International Publishing
Publication date: 04/01/2022
Series: Mechanisms and Machine Science , #118
Edition description: 1st ed. 2022
Pages: 292
Product dimensions: 6.10(w) x 9.25(h) x (d)

Table of Contents

Chapter 1: Design Synthesis and Implementation of a Dynamic Loading Mechanism for Morphing Winglets.- Chapter 2: Towards Modeling Finger Joint Coordination for Natural Motion.- Chapter 3: A K-Means Clustering Approach to Segmentation of Maps for Task Allocation in Multi-Robot Systems Exploration of Unknown Environments.
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