Microwave tracking, usually performed by on ground processing of the signals coming from a spacecraft, represents a crucial aspect in every deep-space mission. Various noise sources, including receiver noise, affect these signals, limiting the accuracy of the radiometric measurements obtained from the radio link. There are several methods used for spacecraft tracking, including the Delta-Differential One-Way Ranging (ΔDOR) technique. In the past years, European Space Agency (ESA) missions relied on a narrowband ΔDOR system for navigation in the cruise phase. To limit the adverse effect of nonlinearities in the receiving chain, an innovative wideband approach to ΔDOR measurements has recently been proposed. This work presents the hardware implementation of a new version of the ESA X/Ka Deep Space Transponder based on the new tracking technique named Wideband ΔDOR (W-ΔDOR). The architecture of the new transponder guarantees backward compatibility with narrowband ΔDOR.

Hardware prototyping and validation of a W-ΔDOR digital signal processor / Cardarilli, G. C.; Di Nunzio, L.; Fazzolari, R.; Giardino, D.; Matta, M.; Re, M.; Iess, L.; Cialfi, F.; De Angelis, G.; Gelfusa, D.; Pulcinelli, A. P.; Simone, L.. - In: APPLIED SCIENCES. - ISSN 2076-3417. - 9:14(2019). [10.3390/app9142909]

Hardware prototyping and validation of a W-ΔDOR digital signal processor

Di Nunzio L.
;
Iess L.
Membro del Collaboration Group
;
2019

Abstract

Microwave tracking, usually performed by on ground processing of the signals coming from a spacecraft, represents a crucial aspect in every deep-space mission. Various noise sources, including receiver noise, affect these signals, limiting the accuracy of the radiometric measurements obtained from the radio link. There are several methods used for spacecraft tracking, including the Delta-Differential One-Way Ranging (ΔDOR) technique. In the past years, European Space Agency (ESA) missions relied on a narrowband ΔDOR system for navigation in the cruise phase. To limit the adverse effect of nonlinearities in the receiving chain, an innovative wideband approach to ΔDOR measurements has recently been proposed. This work presents the hardware implementation of a new version of the ESA X/Ka Deep Space Transponder based on the new tracking technique named Wideband ΔDOR (W-ΔDOR). The architecture of the new transponder guarantees backward compatibility with narrowband ΔDOR.
2019
spacecraft tracking; ΔDOR; space navigation
01 Pubblicazione su rivista::01a Articolo in rivista
Hardware prototyping and validation of a W-ΔDOR digital signal processor / Cardarilli, G. C.; Di Nunzio, L.; Fazzolari, R.; Giardino, D.; Matta, M.; Re, M.; Iess, L.; Cialfi, F.; De Angelis, G.; Gelfusa, D.; Pulcinelli, A. P.; Simone, L.. - In: APPLIED SCIENCES. - ISSN 2076-3417. - 9:14(2019). [10.3390/app9142909]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1317496
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