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Communications

Satellite Constellation Concept for a Novel 3D Image Reconstruction of Urban Areas

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REFERENCES

  • M. Wurm, H. Taubenböck, M. Schardt, T. Esch, and S. Dech, “Object-based image information fusion using multisensor earth observation data over urban areas,” Int. J. Image Data Fusion, Vol. 2, no. 2, pp. 121–47, 2011. DOI: 10.1080/19479832.2010.543934.
  • S. Gunter, and D. Stefan, “High resolution earth observation satellites and services in the next decade – a European perspective,” Acta Astronaut., Vol. 57, no. 2–8, pp. 520–33, 2005. DOI: 10.1016/j.actaastro.2005.03.029.
  • S. Rainer, “Status and trends of small satellite missions for earth observation,” Acta Astronaut., Vol. 66, no. 1-2, pp. 1–12, 2010. DOI: 10.1016/j.actaastro.2009.06.008.
  • A. Toorian, K. Diaz, and S. Lee. “The cubesat approach to space access,” in Aerospace Conference, 2008 IEEE. IEEE, 2008, pp. 1–14.
  • T. J. Lang. “Optimal low earth orbit constellation for continuous global coverage,” AAS/AIAA Astrodynamics Specialist Conference, Victoria, BC, Canada, Aug, 16–19, 1993.
  • N. Lazreg, R. Bouchiha, and K. Besbes, “Registration and correction techniques in cubesatremote sensing images,” in IEEE, ICEMIS2017, DOI: 10.1109/ICEMIS.2017.8273059.
  • X. Wu Vladimirova, “Intelligent and distributed reconfigurable system-on-chip sensor networks for space applications – An introduction to ESPACENET,” in 9th Annual International MAPLD Conference, Washington, DC, 2006.
  • S. Busch, P. Bangert, S. Dombrovski, and K. Schilling, “UWE-3, iIn-orbit performance and lessons learned of a modular and flexible satellite bus for future pico-satellite formations,” Acta Astraunot., Vol. 117, pp. 73–89, 2015.
  • K. Schilling, “Netsat: a four pico/nano-satellite mission for demonstration of autonomous formation flying,” in 66th International Astronautical Congress, 2015.
  • J. G. Walker. “Continuous whole earth coverage by circular orbit satellite patterns,” Royal Aircraft Establishment, Technical report 77044, March 1977.
  • N. Lazreg, and O. Ben Bahri. “Analyse and design of CubeSat constellation for the Mediterranean south costal monitoring against illegal immigration,” Advances in space research 2017. https://doi.org/10.1016/j.asr.2017.11.019.
  • G. Andersen, and O. Asmolova. “FalconSAT-7: A membrane photon Sieve CubeSat Solar Telescop,” Space Telescopes and Instrumentations 2012: Optical, Infrared, and Multimeter Waves.
  • E. Agasid, and K. Ennico-Smith, “Collapsible space telescope (CST) for nanosatellite imaging and observation,” in 2013 AIAA/USU Conference on Small Satellites, Logan, UT, Aug 2013.
  • A. Greenaum, and M. Knapp. “Low-mass high-performance deployable optical baffle for CubeSats”.
  • L. Stiles, and J. Garrett, “Development of deployable aperture concepts For CubeSats,” in 51st AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics and Materials Conference, 2010.
  • A. James Champagne, and M. Scott Hansen, “CubeSat image resolution capabilities with deployable optics and current imaging technology,” in 28th Annual AIAA/USU Conference on Small Satellites, SSC 14 –VII-2, 2014.
  • B. Willbern, and N. Joshi. “High performance imaging using large camera arrays”.
  • W. Hailu, and Z. Junsuo, “Design of high-resolution space imaging system on sandroid CubeSat using camera array,” in 51st Annual Conference on Information Sciences and Systems (CISS), IEEE, 2017, pp. 1–6.
  • M. Balan, “Goliat space mission: earth observation and near earth environment monitoring using nanosatellites,” in AIAA/USU Conference on Small Satellites, Institute for Space Sciences Bucharest, Magurele, Romania, 2008.
  • Li Junquan, et al., “Design of attitude control systems for CubeSat-class nanosatellite,” J. Control Sci. Eng., Vol. 2013, p. 4, 2013.
  • O. Ben Bahri, and Kamel Besbes, “Didactic satellite based on android platform for space operation demonstration and development,” Adv. Space Res., Vol. 61, no. 6, pp. 1501–1511, 2018.
  • O. Ben Bahri, N. Lazreg, and K. Besbes, “Smartphone-based telemedicine supported by pico-satellite constellation,” IETE J. Res., Vol. 65, no. 5, pp. 726–35, 2019.
  • M. J. Bentum, “Twentesat – The first low frequency interferometer in space,” in 63rd International Astronautical Congress, Naples, Italy, 1–5 October 2012.
  • S. Haykin, and M. Moher. Introduction to analog & digital communications, 2nd ed. Wiley & Sons, New Hampshire, 2007.
  • K. Janschek, V. Tchernykh, and S. Dyblenko, “SMARTSCAN – smart pushbroom imaging system for shaky space platforms,” in 20th Annual AIAA/USU Conference on Small Satellites.
  • C. Pohl, and J. L. Van Genderen, “Multisensor image fusion in remote sensing: concept, methods, and applications,” Int. J. Remote. Sens., Vol. 19, no. 5, pp. 823–54, 1998.
  • J. Jeong, and T. Kim, “Analysis of dual-sensor stereo geometry and its positioning accuracy,” Photogramm. Eng. Remote Sens., Vol. 80, pp. 653–61, 2014.

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