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2018 | OriginalPaper | Buchkapitel

Smart Interaction Device for Advanced Human Robotic Interface (SID)

verfasst von : Rodger Pettitt, Glenn Taylor, Linda R. Elliott

Erschienen in: Human Interface and the Management of Information. Interaction, Visualization, and Analytics

Verlag: Springer International Publishing

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Abstract

Robotic assets used by dismount Soldiers have usually been controlled through continuous and effortful tele-operation; however, more autonomous capabilities have been developed that reduce the need for continuous control of movements. While greater autonomy can make robotic systems more useful, users still need to interact with them, and operator control units (OCUs) for deployed robots still primarily rely on manual controllers such as joysticks. This report describes an evaluation of a multi-modal interface that leverages speech and gesture through a wrist worn device to enable an operator to direct a robotic vehicle using ground guide-inspired or infantry-inspired commands through voice or gesture. A smart watch is the primary interaction device, allowing for spoken input (through the microphone) and gesture input using single-arm gestures.

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Literatur
1.
Zurück zum Zitat Elliott, L., Hill, S.: A vision for future soldier-robot teams. Paper presented at the 7th International Conference on Applied Human Factors and Ergonomics 2016, Orlando (2016) Elliott, L., Hill, S.: A vision for future soldier-robot teams. Paper presented at the 7th International Conference on Applied Human Factors and Ergonomics 2016, Orlando (2016)
2.
Zurück zum Zitat Pettitt, R., Elliott, L., Swiecicki, C.: Soldier-based concepts for squad level autonomous/intelligent robotic assets. In: Proceedings of the International HCI Human Computer Interface Conference, Vancouver, July 2017 Pettitt, R., Elliott, L., Swiecicki, C.: Soldier-based concepts for squad level autonomous/intelligent robotic assets. In: Proceedings of the International HCI Human Computer Interface Conference, Vancouver, July 2017
3.
Zurück zum Zitat Swiecicki, C., Elliott, L., Wooldridge, R.: Squad-level soldier-robot dynamics: exploring future concepts involving intelligent autonomous robots. Technical report No. 7215. Army Research Laboratory Human Research and Engineering Directorate, February 2015 Swiecicki, C., Elliott, L., Wooldridge, R.: Squad-level soldier-robot dynamics: exploring future concepts involving intelligent autonomous robots. Technical report No. 7215. Army Research Laboratory Human Research and Engineering Directorate, February 2015
4.
Zurück zum Zitat Elliott, L., Skinner, A., Vice, J., Walker, A.: Utilizing glove-based gestures and a tactile vest display for covert communications and robotic control. Aberdeen Proving Grounds (MD); Army Research Laboratory (US); Report No. ARL-TR-6971, June 2014 Elliott, L., Skinner, A., Vice, J., Walker, A.: Utilizing glove-based gestures and a tactile vest display for covert communications and robotic control. Aberdeen Proving Grounds (MD); Army Research Laboratory (US); Report No. ARL-TR-6971, June 2014
5.
Zurück zum Zitat Elliott, L., Hill, S., Barnes, M.: Gesture-based controls for robots: overview and implications for use by Soldiers. ARL Technical report 7715. Army Research Laboratory Human Research and Engineering Directorate (2016) Elliott, L., Hill, S., Barnes, M.: Gesture-based controls for robots: overview and implications for use by Soldiers. ARL Technical report 7715. Army Research Laboratory Human Research and Engineering Directorate (2016)
7.
Zurück zum Zitat Taylor, G., Quist, M., Lanting, M., Dunham, C., Muench, P.: Multi-modal interaction for robotic mules. Paper presented at the SPIE Defense and Security: Unmanned Systems Technology XIX, Anaheim, CA (2017) Taylor, G., Quist, M., Lanting, M., Dunham, C., Muench, P.: Multi-modal interaction for robotic mules. Paper presented at the SPIE Defense and Security: Unmanned Systems Technology XIX, Anaheim, CA (2017)
Metadaten
Titel
Smart Interaction Device for Advanced Human Robotic Interface (SID)
verfasst von
Rodger Pettitt
Glenn Taylor
Linda R. Elliott
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-92043-6_26

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