Design and route optimisation for an airship with onboard solar energy harvesting

Author:

Pflaum Christoph1,Riffelmacher Tim1,Jocher Agnes2

Affiliation:

1. Department Computer Science, Friedrich-Alexander Universität Erlangen-Nürnberg, Erlangen, Germany

2. Department of Aerospace and Geodesy, TUM School of Engineering and Design, Technische Universität München, Munich, Germany

Publisher

Informa UK Limited

Subject

Fluid Flow and Transfer Processes,Process Chemistry and Technology,General Energy,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference35 articles.

1. Allekotte, M., H. Althaus, F. Bergk, K. Biemann, W. Knörr, and D. Sutter. 2021. Umweltfreundlich mobil!. Dessau: Umweltbundesamt.

2. Beernink K. S. Guha J. Yang A. Banerjee K. Lord G. DeMaggio F. Liu et al. 2007. “Lightweight Flexible Solar Cells on Stainless Steel Foil and Polymer for Space and Stratospheric Applications”. Proceedings of the 19th Space Photovoltaic Research and Technology Conference NASA Technical Reports Server (NTRS).

3. Bock, J. K., and B. Knauer. 2003. Leichter als Luft. Transport- und Trägersysteme: Ballone, Luftschiffe, Plattformen [English: Lighter than Air Transportation and Carrier Systems]. Hildburghausen: Frankenschwelle.

4. Buchmann, I. 2016. Batteries in a Portable World: A Handbook on Rechargeable Batteries for Non-Engineers. Richmond: Battery University.

5. Clipper H2. 2022. November. https://h2clipper.com.

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