Title :
Glacio RADAR system and results
Author :
Zirizzotti, A. ; Baskaradas, J.A. ; Bianchi, C. ; Sciacca, U. ; Tabacco, I.E. ; Zuccheretti, E.
Author_Institution :
Sezione Roma 2, Inst. Naz. di Geofisica e Vulcanologia
Abstract :
Since 1997 the Istituto Nazionale di Geofisica e Vulcanologia (INGV) in Italy has been involved in the development of the airborne RES system named Glacio RADAR, which is continuously upgraded. Radio Echo Sounding (RES) techniques are widely used in glaciological measurements. They are based on the use of radar systems, to obtain information concerning ice thickness of ice sheets and ice shelves, internal layering of glaciers, detection of inhomogeneities, exploration of subglacial lakes and identification of physical nature of subglacial interface. The Glacio RADAR is mounted on an aircraft and flies at an altitude around 300 m above the ice surface during the survey. The first prototype operates in bistatic mode with separate transmit and receive one wire folded dipole installed beneath the aircraft wings. It works at 60 MHz with an envelope pulse width variable between 0.3 mu and 1 mu. The receiving window is 64 mu which implies a maximum penetration depth (range) in the ice of about 5.3 km. The horizontal sampling rate is 10 traces/s at a mean aircraft speed of about 70 m/s. This would produce roughly 143 traces per kilometre (horizontal resolution of 1 trace every 7 m). The Navigation and geographical information is based on a on board GPS receiver giving longitude, latitude, altitude and time for the acquired radar trace. This radar was used in several Italian Antarctic Expeditions (1997, 1999, 2001 and 2003) and highlights of data results from these expeditions are presented here.
Keywords :
geophysical techniques; glaciology; ice; radar cross-sections; radar equipment; GPS receiver; Glacio RADAR system; airborne radio echo sounding system; geographical information; glaciers; glaciological measurement; horizontal sampling rate; ice sheets; ice shelves; ice surface; ice thickness; radar system; radar trace; Airborne radar; Aircraft navigation; Ice surface; Ice thickness; Lakes; Prototypes; Radar detection; Sampling methods; Space vector pulse width modulation; Wire; RES-system; VHF Radar;
Conference_Titel :
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location :
Rome
Print_ISBN :
978-1-4244-1538-0
Electronic_ISBN :
1097-5659
DOI :
10.1109/RADAR.2008.4720993