Embedded inertial sensor for tracking projectile impact on granular media

dc.contributor.author

Koestler, Stefan

dc.contributor.author

Zhao, Jinchen

dc.contributor.author

Lyv, Chen

dc.contributor.author

Voelkel, Simon

dc.contributor.author

Huang, Kai

dc.contributor.editor

Aguirre, MA

dc.contributor.editor

Luding, S

dc.contributor.editor

Pugnaloni, LA

dc.contributor.editor

Soto, R

dc.date.accessioned

2023-09-04T06:31:31Z

dc.date.available

2023-09-04T06:31:31Z

dc.date.issued

2021

dc.date.updated

2023-09-04T06:31:29Z

dc.description.abstract

Due to the opacity of most granular materials, it is often desirable to have three dimensional (3D) particle tracking techniques beyond optical imaging to explore granular dynamics. Using inertial measurement units (IMU) embedded in a projectile, we obtain the trajectory of projectile impacting on a granular medium under microgravity using tri-axial acceleration and angular velocity data. In addition to the standard algorithm for reconstruction, we emphasize solutions to various sources of error to determine projectile trajectory accurately.

dc.identifier.issn

2100-014X

dc.identifier.issn

2100-014X

dc.identifier.uri

https://hdl.handle.net/10161/28961

dc.publisher

EDP Sciences

dc.relation.ispartof

EPJ Web of Conferences

dc.relation.isversionof

10.1051/epjconf/202124915007

dc.title

Embedded inertial sensor for tracking projectile impact on granular media

dc.type

Conference

duke.contributor.orcid

Huang, Kai|0000-0003-0652-713X

pubs.begin-page

15007

pubs.end-page

15007

pubs.organisational-group

Duke

pubs.organisational-group

Duke Kunshan University

pubs.organisational-group

DKU Faculty

pubs.organisational-group

DKU Visiting Faculty

pubs.publication-status

Published

pubs.volume

249

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