DocumentCode :
2072940
Title :
Hybrid synthesizers in space: Galileo´s CMCU
Author :
Carrillo, Francisco Javier Moreno ; Sanchez, Angel Alvaro ; Alonso, Luis Basanta
Author_Institution :
Alcatel Espacio, Madrid, Spain
fYear :
2005
fDate :
9-11 June 2005
Firstpage :
361
Lastpage :
368
Abstract :
Galileo satellite navigation system employs as master navigation signal a 10.23 MHz tone generated from several 10MHz atomic clock references. The Clock Monitoring and Control Unit (CMCU) synthesizes dais navigation signal from one of the four embarked atomic clocks. The CMCU has to comply with very stringent requirements in order not to degrade the frequency stability of the atomic clocks and deliver an extreme spectral purity acting as a filter. As the atomic clocks are oscillating in free mode, the CMCU synthesizer has to be able to correct the frequency deviations in steps of 0.0001 parts per billion. In order to comply with these requirements, the CMCU implements a hybrid synthesizer built by a Phase Locked Loop (PLL) whose auxiliary frequency is generated by direct digital synthesis (DDS) with a granularity compliant with the requirements. This paper describes CMCU emphasizing the hybrid synthesizer concept and showing the results obtained in the engineering qualification model (EQM) and in the first two flight models.
Keywords :
atomic clocks; direct digital synthesis; phase locked loops; satellite navigation; 10.23 MHz; CMCU; DDS; Galileo satellite navigation system; PLL; atomic clock references; clock monitoring and control unit; direct digital synthesis; hybrid synthesizers; master navigation signal; phase locked loop; Atomic clocks; Control system synthesis; Degradation; Frequency synthesizers; Monitoring; Phase locked loops; Satellite navigation systems; Signal generators; Signal synthesis; Stability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Recent Advances in Space Technologies, 2005. RAST 2005. Proceedings of 2nd International Conference on
Print_ISBN :
0-7803-8977-8
Type :
conf
DOI :
10.1109/RAST.2005.1512593
Filename :
1512593
Link To Document :
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