Intern
Embedded Systems and Sensors for Earth Observation (ESSEO)

Amenosis L. Arreguin

Research Asistent, Ph.D. Student

Embedded Systems & Sensors for Earth Observation
Campus Hubland Nord
Emil-Fischer-Straße 70
97074 Würzburg
Germany

Email: amenosis.lopez@uni-wuerzburg.de

Publications:

A. J. R. Lopez-Arreguin and S. Montenegro, “Signals of opportunity for space navigation: An application-oriented review,” Results in Engineering, vol. 21, Art. no. 101778, 2024.

A. J. R. Lopez-Arreguin, B. Gundlach, and E. Stoll, “Do lunar rover wheels sink equally on Earth and Moon?,” Results in Physics, vol. 15, Art. no. 102617, 2019.

A. Lopez-Arreguin, A. Rissons, Y. Estepa-Avellaneda, S. Lizy-Destrez, F. Destic, A. Fernandez, and O. Gilard, “Theoretical study of the space radiation effects in an EDFA for an small satellite mission,” in Proc. 2016 Int. Symp. Reliability of Optoelectronics for Systems (ISROS 2016), 2016, p. 0.

A. J. R. Lopez-Arreguin, E. Stoll, and J. Letschnik, “Modeling degraded performance metrics of optical amplifiers under radiation,” Results in Physics, vol. 12, pp. 1805–1808, 2019.

E. A. Martín-Tovar, L. G. Daza, A. J. R. López-Arreguín, A. Iribarren, and R. Castro-Rodriguez, “Effect of substrate rotation speed on structure and properties of Al-doped ZnO thin films prepared by rf-sputtering,” Transactions of Nonferrous Metals Society of China, vol. 27, no. 9, pp. 2055–2062, 2017.

A. J. R. Lopez-Arreguín and E. Stoll, “Comparison of lightweight rover wheels by terramechanics with the use of 1 DOF sensing,” International Journal of Robotics and Automation, vol. 35, no. 6, 2020.

A. J. R. Lopez-Arreguin and S. Montenegro, “Improving limitations of rover missions in the Moon and planets by unifying vehicle–terrain interaction models,” Advances in Astronautics Science and Technology, vol. 3, no. 1, pp. 17–28, 2020.

A. J. R. Lopez-Arreguin and S. Montenegro, “Improving engineering models of terramechanics for planetary exploration,” Results in Engineering, vol. 3, Art. no. 100027, 2019.

A. J. R. Lopez-Arreguin and S. Montenegro, “Machine learning in planetary rovers: A survey of learning versus classical estimation methods in terramechanics for in situ exploration,” Journal of Terramechanics, vol. 97, pp. 1–17, 2021.

A. J. R. Lopez-Arreguin and S. Montenegro, “Towards bio-inspired robots for underground and surface exploration in planetary environments: An overview and novel developments inspired in sand-swimmers,” Heliyon, vol. 6, no. 6, 2020.

A. J. R. Lopez-Arreguin and E. Stoll, “Addressing the effects of background plasma and wake formation on nanosatellites with electric propulsion using a 3D Particle In Cell code,” Results in Physics, vol. 14, Art. no. 102442, 2019.

A. J. R. Lopez-Arreguin, S. Linke, E. Stoll, et al., “3D4 Space-Advanced Systems, Components, and Novel Methods for Planetary Exploration with Wheeled Mobile Robots,” J. Space Explor., vol. 6, no. 3, p. 139, 2017.

A. Lopez-Arreguin, S. Montenegro, and E. Dilger, “Towards in-situ characterization of regolith strength by inverse terramechanics and machine learning: A survey and applications to planetary rovers,” Planetary and Space Science, vol. 204, Art. no. 105271, 2021.

A. J. R. Lopez-Arreguin, J. E. Warias, M. Schmidt, and S. Montenegro, “Towards X-ray imaging of planetary surfaces with small satellites: A feasibility review,” Acta Astronautica, 2026.