The Delay-/Disruption-Tolerant Networking (DTN) architecture is considered the key enabling technology for future space communications, as confirmed by the current standardization within CCSDS and the experiments carried out onboard the International Space Station. Despite the scientific community efforts to analyze DTN architecture performance, most of the studies have focused on individual protocols, or have considered simple test cases, thus missing a whole system view. To bridge these research gaps, this paper presents a comprehensive analysis of DTN performance in Mars-Earth communications, considering a realistic and complex end-to-end scenario, where multiple assets and multiple data flows are involved, as envisioned for future space missions. To this end, a virtualized testbed based on ION software was used for an extensive emulation campaign, focusing particularly on Bundle and Licklider protocol interaction with the CGR routing algorithm.

Alessi, N., Caini, C., Cola, T., Martin, S., Mayer, J.P. (2022). DTN performance analysis of multi‐asset Mars‐Earth communications. INTERNATIONAL JOURNAL OF SATELLITE COMMUNICATIONS AND NETWORKING, 40(1), 11-26 [10.1002/sat.1326].

DTN performance analysis of multi‐asset Mars‐Earth communications

Alessi, Nicola;Caini, Carlo
;
2022

Abstract

The Delay-/Disruption-Tolerant Networking (DTN) architecture is considered the key enabling technology for future space communications, as confirmed by the current standardization within CCSDS and the experiments carried out onboard the International Space Station. Despite the scientific community efforts to analyze DTN architecture performance, most of the studies have focused on individual protocols, or have considered simple test cases, thus missing a whole system view. To bridge these research gaps, this paper presents a comprehensive analysis of DTN performance in Mars-Earth communications, considering a realistic and complex end-to-end scenario, where multiple assets and multiple data flows are involved, as envisioned for future space missions. To this end, a virtualized testbed based on ION software was used for an extensive emulation campaign, focusing particularly on Bundle and Licklider protocol interaction with the CGR routing algorithm.
2022
Alessi, N., Caini, C., Cola, T., Martin, S., Mayer, J.P. (2022). DTN performance analysis of multi‐asset Mars‐Earth communications. INTERNATIONAL JOURNAL OF SATELLITE COMMUNICATIONS AND NETWORKING, 40(1), 11-26 [10.1002/sat.1326].
Alessi, Nicola; Caini, Carlo; Cola, Tomaso; Martin, Sebastian; Mayer, Jeremy Pierce
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/796367
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