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http://dx.doi.org/10.20910/JASE.2018.12.3.86

Development of A CanSat System Applying High Agility Camera and Remote Control Camera  

Kim, Su-Hyeon (Department of Aerospace Engineering, Chosun University)
Park, Jae-Hyeon (Department of Aerospace Engineering, Chosun University)
Kim, Hye-In (Department of Aerospace Engineering, Chosun University)
Bea, Gi-Sung (Department of Aerospace Engineering, Chosun University)
Chae, Bong-Geon (Dream Space World)
Oh, Hyun-Ung (Department of Aerospace Engineering, Chosun University)
Publication Information
Journal of Aerospace System Engineering / v.12, no.3, 2018 , pp. 86-96 More about this Journal
Abstract
The High Agility and Remote Control Camera System Can-Satellite ($HA+RC^2S$ CanSat) proposed in this study is a satellite designed by the authors of this work and submitted as an entry in the 2017 CanSat competition in Goheung gun, Jeonnam, Korea. The primary mission of this work is to develop a high agility camera system (HACS) that can obtain high quality images in the air. This objective is achieved by using a tuned mass damper (TMD) to attenuate the residual vibration that occurs immediately after rotating the camera. The secondary objective is to obtain a self-image of CanSat in the air using a remote control self-camera system (RCSS) that is wirelessly controlled using a joystick from a ground station. This paper describes the development process of the $HA+RC^2S$ CanSat, including mission definition, system design, manufacturing, function and performance tests carried out on the ground, and final launch test.
Keywords
CanSat; High Agility Camera System; Remote Control Self-camera System; Tuned Mass Damper;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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