DocumentCode
2098468
Title
EMI in orbiting sounding radar from ripple in solar arrays
Author
Schirone, Luigi ; Seu, Roberto
Author_Institution
Univ. degli Studi di Roma La Sapienza, Rome, Italy
Volume
1
fYear
2004
fDate
6-13 March 2004
Abstract
Electromagnetic compatibility (EMC) of DC/DC converters is discussed in the specific context of satellite missions for remote sensing, where low-frequency radar are used to characterise subsurface layering in planetary bodies like Mars, Venus, Europa. The operating frequency range of these instruments extends down to 100 kHz, and may include switching frequency of the power conversion units aboard spacecraft. So, relevant conducted electromagnetic interference (EMI) may be produced when electromagnetic fields associated to the current fluctuations in solar arrays, related to operation of the switching DC/DC converters, are coupled to radar antennas. In this work we discuss the low-frequency EMI phenomenon, in terms of the related reduction of dynamic range in spaceborne radar systems. We also discuss the effectiveness of some filtering approaches to be used in order to attenuate radio-frequency (RF) signals in the solar array power lines is also discussed in the specific context, taking into account the trade-offs involved with weight and volume constraints, typical of space applications.
Keywords
DC-DC power convertors; electromagnetic interference; filtering theory; radar signal processing; solar cell arrays; switching convertors; Europa; Mars; RF signal attenuation; Venus; current fluctuations; dynamic range reduction; electromagnetic compatibility; electromagnetic fields; filtering; low-frequency EMI; low-frequency radar; operating frequency range; orbiting sounding radar; planetary bodies; power conversion units; radar antennas; radio-frequency signals; remote sensing; satellite missions; solar array power lines; solar array ripples; spaceborne radar systems; spacecraft; subsurface layering; switching DC/DC converters; switching frequency; DC-DC power converters; Electromagnetic compatibility; Electromagnetic interference; Mars; Radar antennas; Radar remote sensing; Radio frequency; Remote sensing; Satellite broadcasting; Spaceborne radar;
fLanguage
English
Publisher
ieee
Conference_Titel
Aerospace Conference, 2004. Proceedings. 2004 IEEE
ISSN
1095-323X
Print_ISBN
0-7803-8155-6
Type
conf
DOI
10.1109/AERO.2004.1367597
Filename
1367597
Link To Document