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Publications

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Bartholomäus, Julian; Barschke, Merlin F. and Lehmann, Marc (2018). Development of a single-channel wildfire detection algorithm for the TUBIN mission [18]. Proceedings of the 69th International Astronautical Congress


Barschke, Merlin F.; Gordon, Karsten; von Keiser, Philip; Lehmann, Marc; Starke, Mario and Werner, Philipp (2018). Initial orbit results from the TUBiX20 platform [19]. Proceedings of the 69th International Astronautical Congress


Starke, Mario; Barschke, Merlin F.; von Keiser, Philip (2018). A Modular hardware diagnosis framework for small spacecraft [20]. Proceedings of the 69th International Astronautical Congress


Gerlich, Rainer; Gerlich, Ralf; Montenegro, Sergio; Dilger, Erik; Flederer, Frank; Gordon, Karsten and Barschke, Merlin F. (2018). Verification of the C++-operating system RODOS in context of a small-satellite [21]. in Proceedings of the 2nd Workshop on Computer Architectures in Space


Frese, Walter and Yoon, Zizung and Briess, Klaus (2018). communication network in LEO: in-orbit verification of intersatellite link by nanosatellite cluster S-Net [22]. Proceedings of the International Astronautical Congress (IAC)


Lim, Yeerang and Yoon, Zizung and Frese, Walter (2019). in-orbit differential drag control experiment on nanosatellite cluster: analysis and flight results [23]. 12th IAA Symposium on small satellites for Earth observation


Frese, Walter and Yoon, Zizung and Briess, Klaus (2019). S-Net first year in orbit: verification of a nanosatellite network in s band [24]. 12th IAA Symposium on small satellites for Earth observation


Yoon, Zizung and Frese, Walter and Briess, Klaus (2019). novel nanosatellite cluster deployment strategy by precise orbit insertion – design, verification and flight results [25]. 12th IAA Symposium on small satellites for Earth observation


Sebastian Grau and Daniel Noack and Abdurrahman Öz and Rolf Thomasius and Klaus-Dieter Lang and Klaus Brieß (2013). Multifunktionale Integration von Komponenten für Pikosatelliten - Ein Schritt auf dem Weg zu Mikrosystemen im Satellitenbereich [26]. 62. Deutscher Luft- und Raumfahrtkongress. DGLR.


Sebastian Grau and Daniel Noack and Klaus Brieß (2015). An angular momentum ring storage device prototype for CubeSats based on a liquid metal actuator [27]. Proceedings of the 66th International Astronautical Congress (IAC)


Sebastian Grau and Daniel Noack and Klaus Brieß (2015). Rapid prototyping of a combined channel/pump structure for liquid metal actuators used as angular momentum storage device for picosatellites [28]. Proceedings of the 66th International Astronautical Congress (IAC)


Sebastian Grau and Roland Henning and Daniel Noack and Klaus Brieß (2015). Labormuster eines fluiddynamischen Aktuators für Satelliten der CubeSat-Klasse [29]. 64. Deutscher Luft- und Raumfahrtkongress. DGLR.


Sebastian Grau and Isabell Suchantke and Klaus Brieß (2017). A comprehensive study on magnetic actuator design for CubeSat missions [30]. Proceedings of the 68th International Astronautical Congress (IAC)


Sebastian Grau and Christian Tschoban and Klaus-Dieter Lang and Klaus Brieß (2017). Highly Integrated Communications, Power Management, and Attitude Determination and Control Side Panel for CubeSats [31]. Proceedings of the 68th International Astronautical Congress (IAC)


Sebastian Grau and Leonard Kobow and Ferdinand Fürstenau (2017). Investigation of Redundancy Strategies in Fluid-Dynamic Attitude Control [32]. Published in proceedings of the 68th International Astronautical Congress (IAC)


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