Beacons for supporting lunar landing navigation

Author:

Theil StephanORCID,Bora Leonardo

Funder

German Aerospace Center (DLR)

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Aerospace Engineering

Reference27 articles.

1. Andert, F., Ammann, N., Maass, B.: Lidar-aided camera feature tracking and visual slam for spacecraft low-orbit navigation and planetary landing. In: CEAS EuroGNC 2015. http://elib.dlr.de/96323/ (2015)

2. Batista, P., Silvestre, C., Oliveira, P.: Single beacon navigation: observability analysis and filter design. Am Control Conf ACC 2010, 6191–6196 (2010). doi: 10.1109/ACC.2010.5531613

3. Beggins, A.J., Canney, L.M., Dolezal, A.B., States., U.: Conceptual development of a ground-based radio-beacon navigation system for use on the surface of the moon [microform]. Prepared by Andrew J. Beggins, Lora M. Canney, Anna Belle Dolezal. Mechanical Engineering Design Project, University of Texas at Austin, Austin (1988)

4. Bora, L.: Ground beacons to enhance lunar landing autonomous navigation architectures. Master’s thesis, Politecnico di Milano, Milano. http://elib.dlr.de/100498/ (2015)

5. Chelmins, D.T., Welch, B.W., Sands, O.S., Nguyen, B.V.: A kalman approach to lunar surface navigation using radiometric and inertial measurements. Tech. Rep. 20090027870, National Aeronautics and Space Administration, NASA Glenn Research Center, Cleveland, OH, United States. http://ntrs.nasa.gov/search.jsp?R=20090027870 (2009)

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