Title :
Accuracy of an OTA system emulating a realistic 3D environment for GNSS and multi-satellite receiver testing
Author :
Schirmer, Christopher ; Kotterman, Wim A. T. ; Siegert, Gregor ; Rugamer, Alexander ; Del Galdo, Giovanni ; Heuberger, Albert ; Landmann, Markus H.
Author_Institution :
Int. Grad. Sch. on Mobile Commun. (MobicoM), Germany
Abstract :
In satellite-based systems, such as global navigation satellite systems (GNSS), the use of antenna arrays is becoming increasingly common, as it allows various applications, such as jammer/spoofer suppression or improving the positioning accuracy in multipath-environments. Testing such equipment under realistic and reproducible conditions is often not feasible, for example in the case of a not fully deployed system (e. g., Galileo satellites) or testing of classified transmission technologies (e. g., Galileo public regulated service (PRS) receivers). For tests under reproducible and realistic conditions, we propose 3D wave-field synthesis (WFS) in an over-the-air testbed. This allows a realistic emulation of the radio environment under laboratory conditions. In this paper, a feasibility study for such a testbed is presented. Possible antenna setups for a 3D WFS laboratory environment are proposed. For these setups, the 3D WFS accuracy is investigated for emulating different polarization types and multipath reflections with arbitrary source directions. The results show that with presently available hardware for channel emulation and 3D WFS, a virtual electromagnetic environment can be created for testing receivers with (beamforming) antenna arrays of typical size (120 mm-300mm diameter).
Keywords :
antenna arrays; array signal processing; electromagnetic wave polarisation; electromagnetic wave reflection; radio receivers; satellite antennas; satellite navigation; telecommunication equipment testing; 3D WFS laboratory environment; 3D wave-field synthesis; GNSS; Galileo public regulated service receivers; OTA system; PRS; antenna arrays; arbitrary source directions; beamforming; classified transmission technology; global navigation satellite systems; jammer-spoofer suppression; multipath reflections; multipath-environments; multisatellite receiver testing; over-the-air testbed; polarization types; radio environment; realistic 3D environment; satellite-based systems; size 120 mm to 300 mm; virtual electromagnetic environment; Antennas; Emulation; Global Positioning System; Satellites; Testing; Vectors; GNSS; MIMO; anechoic chamber; over-the-air testing; polarization; signal processing; testing; wave-field synthesis;
Conference_Titel :
Sensor Array and Multichannel Signal Processing Workshop (SAM), 2014 IEEE 8th
Conference_Location :
A Coruna
DOI :
10.1109/SAM.2014.6882353