Gupta, V.K., Al-Hraishawi, H., Lagunas, E., Chatzinotas, S., Traffic-aware satellite switch-off technique for LEO constellations. IEEE Globel Commun. (Globecom) Workshops, 2022, 880–885, 10.1109/GCWkshps56602.2022.10008660.
Deng, R., Di, B., Zhang, H., Kuang, L., Song, L., Ultra-dense LEO satellite constellations: How many LEO satellites do we need?. IEEE Trans. Wirel. Commun. 20:8 (2021), 4843–4857, 10.1109/TWC.2021.3062658.
Al-Hraishawi, H., Chougrani, H., Kisseleff, S., Lagunas, E., Chatzinotas, S., A survey on non-geostationary satellite systems: The communication perspective. IEEE Commun. Surv. Tuts. 25:1 (2023), 101–132, 10.1109/COMST.2022.3197695.
Lin, X., Rommer, S., Euler, S., Yavuz, E.A., Karlsson, R.S., 5G from space: An overview of 3GPP non-terrestrial networks. IEEE Commun. Stand. Mag., 2021.
Heyn, T., Hofmann, A., Raghunandan, S., Raschkowski, L., Non-terrestrial networks in 6G. Shaping Future 6G Networks: Needs, Impacts, and Technologies, 2022, John Wiley & Sons, 101–116, 10.1002/9781119765554.ch8.
Fraire, J.A., Nies, G., Gerstacker, C., Hermanns, H., Bay, K., Bisgaard, M., Battery-aware contact plan design for LEO satellite constellations: The ulloriaq case study. IEEE Trans. Green Commun. Netw. 4:1 (2020), 236–245, 10.1109/TGCN.2019.2954166.
H. Al-Hraishawi, S. Chatzinotas, B. Ottersten, Broadband Non-Geostationary Satellite Communication Systems: Research Challenges and Key Opportunities, in: IEEE Int. Conf on Commun Workshops, ICC Workshops, Montreal, QC, Canada, 2021, pp. 1–6.
Borkar, V.S., Choudhary, S., Gupta, V.K., Kasbekar, G.S., Scheduling in wireless networks with spatial reuse of spectrum as restless bandits. Perform. Eval. 0166-5316, 149–150, 2021, 102208, 10.1016/j.peva.2021.102208.
Surampudi, R., Blosiu, J., Stella, P., Elliott, J., Castillo, J., Yi, T., Lyons, J., Piszczor, M., McNatt, J., Taylor, C., et al. Solar power technologies for future planetary science missions. Jet Propuls. Lab Calif. Inst. Technol., 2017.
Leverone, F., Pini, M., Cervone, A., Gill, E., Solar energy harvesting on-board small satellites. Renew. Energy 0960-1481, 159, 2020, 954–972, 10.1016/j.renene.2020.05.176.
ETSI TR 103 352 V1.1.1, F., Satellite Earth Stations and Systems (SES); Energy Efficiency of Satellite Broadband Network: Technical Report., 2016, ETSI, Sophia Antipolis Cedex-France.
Tsuchida, H., Kawamoto, Y., Kato, N., Kaneko, K., Tani, S., Uchida, S., Aruga, H., Efficient power control for satellite-Borne batteries using Q-learning in low-earth-orbit satellite constellations. IEEE Wirel. Commun. Lett. 9:6 (2020), 809–812, 10.1109/LWC.2020.2970711.
Hu, J., Li, G., Bian, D., Gou, L., Wang, C., Optimal power control for cognitive LEO constellation with terrestrial networks. IEEE Commun. Lett. 24:3 (2020), 622–625, 10.1109/LCOMM.2019.2961880.
Tsuchida, H., Kawamoto, Y., Kato, N., Kaneko, K., Tani, S., Hangai, M., Aruga, H., Improvement of battery lifetime based on communication resource control in low-earth-orbit satellite constellations. IEEE Trans. Emerg. Top. Comput. 10:3 (2022), 1388–1398, 10.1109/TETC.2021.3087489.
Liao, Q., Kaneko, M., Global energy efficiency optimization of a Ka-band multi-beam LEO satellite communication system. IEEE Access 9 (2021), 55232–55243, 10.1109/ACCESS.2021.3071475.
Gupta, V.K., Ha, V.N., Lagunas, E., Al-Hraishawi, H., Chen, L., Chatzinotas, S., Combining time-flexible GEO satellite payload with precoding: The cluster hopping approach. IEEE Trans. Veh. Technol., 2023, 1–15, 10.1109/TVT.2023.3292554.
Al-Hraishawi, H., Minardi, M., Chougrani, H., Kodheli, O., Montoya, J.F.M., Chatzinotas, S., Multi-layer space information networks: Access design and softwarization. IEEE Access 9 (2021), 158587–158598, 10.1109/ACCESS.2021.3131030.
Liu, S., Lin, J., Xu, L., Gao, X., Liu, L., Jiang, L., A dynamic beam shut off algorithm for LEO multibeam satellite constellation network. IEEE Wirel. Commun. Lett. 9:10 (2020), 1730–1733.
Tang, Z., Wu, C., Feng, Z., Zhao, B., Yu, W., Improving availability through energy-saving optimization in LEO satellite networks. Inf. and Commun. Technol. EurAsia Conf., 2014, Springer, 680–689.
Hussein, M., Abu-Issa, A., Tumar, I., Awad, A., Reducing power consumption in LEO satellite network. Int. J. Elect. Comput. Eng., 11(3), 2021, 2256.
H. Al-Hraishawi, J. ur Rehman, S. Chatzinotas, Quantum optimization algorithm for LEO satellite communications based on cell-free massive MIMO, in: IEEE Int. Conf on Commun. (ICC) Workshops, 2023, pp. 1–6.
V.M. Baeza, E. Lagunas, H. Al-Hraishawi, S. Chatzinotas, An Overview of Channel Models for NGSO Satellites, in: IEEE Veh. Technol. Conf. (VTC2022-Fall), London, United Kingdom, 2022, pp. 1–6, http://dx.doi.org/10.1109/VTC2022-Fall57202.2022.10012693.
3GPP TR 38.811V15.1.0, V.M., 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Study on New Radio (NR) to Support Non Terrestrial Networks (Release 15): Technical Report., 2019, 3rd Generation Partnership Project.
3GPP TR 38.821, V.M., 3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Solutions for NR to Support Non-Terrestrial Networks (NTN) (Release 16): Technical Report., 2019, 3rd Generation Partnership Project.
Guidotti, A., Vanelli-Coralli, A., Mengali, A., Cioni, S., Non-terrestrial networks: Link budget analysis. IEEE Int. Conf on Commun. (ICC), 2020, 1–7, 10.1109/ICC40277.2020.9149179.
Adhikary, A., Nam, J., Ahn, J.-Y., Caire, G., Joint spatial division and multiplexing—The large-scale array regime. IEEE Trans. Inform. Theory 59:10 (2013), 6441–6463, 10.1109/TIT.2013.2269476.
Wang, R., Kishk, M.A., Alouini, M.-S., Ultra-dense LEO satellite-based communication systems: A novel modeling technique. IEEE Commun. Mag. 60:4 (2022), 25–31, 10.1109/MCOM.001.2100800.
Al-Hourani, A., An analytic approach for modeling the coverage performance of dense satellite networks. IEEE Wirel. Commun. Lett. 10:4 (2021), 897–901, 10.1109/LWC.2021.3049179.
Tang, J., Bian, D., Li, G., Hu, J., Cheng, J., Resource allocation for LEO beam-hopping satellites in a spectrum sharing scenario. IEEE Access 9 (2021), 56468–56478, 10.1109/ACCESS.2021.3072059.
Ng, D.W.K., Wu, Y., Schober, R., Power efficient resource allocation for full-duplex radio distributed antenna networks. IEEE Trans. Wirel. Commun. 15:4 (2016), 2896–2911, 10.1109/TWC.2015.2512919.
Sun, Y., Ng, D.W.K., Ding, Z., Schober, R., Optimal joint power and subcarrier allocation for full-duplex multicarrier non-orthogonal multiple access systems. IEEE Trans. Commun. 65:3 (2017), 1077–1091, 10.1109/TCOMM.2017.2650992.
Grant, M., Boyd, S., CVX: Matlab software for disciplined convex programming, version 2.2. 2014 http://cvxr.com/cvx.
Lipp, T., Boyd, S.P., Variations and extension of the convex–concave procedure. Optim. Eng. 17 (2016), 263–287.
Leyva-Mayorga, I., Soret, B., R00F6per, M., W00FCbben, D., Matthiesen, B., Dekorsy, A., Popovski, P., LEO small-satellite constellations for 5G and beyond-5G communications. IEEE Access 8 (2020), 184955–184964, 10.1109/ACCESS.2020.3029620.
Galtier, J., Real-time resource allocation for LEO satellite constellations. Wirel. Netw. 15:6 (2009), 791–803.
Cakaj, S., The parameters comparison of the starlink LEO satellites constellation for different orbital shells. Front. Commun. Netw., 2, 2021, 643095.
H. Al-Hraishawi, E. Lagunas, S. Chatzinotas, Traffic Simulator for Multibeam Satellite Communication Systems, in: 10th Advanced Satellite Multimedia Syst. Conf. and the 16th Signal Process. for Space Commun. Workshop, ASMS/SPSC, 2020, pp. 1–8.
Tsuchida, H., Kawamoto, Y., Kato, N., Kaneko, K., Tani, S., Uchida, S., Aruga, H., Efficient power control for satellite-Borne batteries using Q-learning in low-earth-orbit satellite constellations. IEEE Wirel. Commun. Lett. 9:6 (2020), 809–812, 10.1109/LWC.2020.2970711.
Liu, F., Zheng, K., Xiang, W., Zhao, H., Design and performance analysis of an energy-efficient uplink carrier aggregation scheme. IEEE J. Sel. Areas Commun. 32:2 (2014), 197–207, 10.1109/JSAC.2014.141202.