Title :
Scalable front-end digital signal processing for a phased array radar demonstrator
Author :
Winterstein, Felix ; Sessler, Gunther ; Montagna, Maria ; Mendijur, Magdalena ; Dauron, Guillaume ; Besso, Piermario
Author_Institution :
Ground Station Syst. Div., Eur. Space Agency, Darmstadt, Germany
Abstract :
The European Space Agency (ESA) is in the process to develop a ground-based space surveillance radar for its involvement in the Space Situational Awareness (SSA) Preparatory Programme [1]. The radar is intended to systematically survey and track all objects above an altitude dependant size threshold in the low Earth orbit and, based on these data, maintain a catalogue with physical and orbital information. Phased array radar demonstrators are currently being developed by industry in cooperation with ESA. These radars are precursor systems and will assist in the definition of the final SSA radar architecture. In support of these developments a small-scale phased array radar demonstrator is being developed at the European Space Operations Centre (ESOC). The system is not intended to detect space debris objects but to implement the general functionality of its large-scale counterparts. This paper describes the mini-radar design and implementation. Furthermore, measurement results showing the performance of the system are presented. In order to cope with the high data processing throughput demand at the multi-channel receiver, an efficient field-programmable gate array (FPGA) implementation is adopted for the front-end pre-processing and digital beam-forming. As the computational burden for the forthcoming SSA phased array radar architecture including several hundreds or thousands of receiver elements is very high, an estimation of computational complexity for different signal processing building blocks is presented here.
Keywords :
Earth orbit; array signal processing; field programmable gate arrays; object detection; object tracking; phased array radar; radar signal processing; search radar; space debris; ESA; ESOC; European Space Agency; European Space Operations Centre; FPGA; SSA preparatory programme; altitude dependant size threshold; computational complexity estimation; data processing throughput; digital beamforming; field-programmable gate array; ground-based space surveillance radar; low Earth orbit; multichannel receiver; object tracking; orbital information; phased array radar demonstrator; precursor system; scalable front-end digital signal processing; space debris object detection; space situational awareness preparatory programme; Arrays; Bandwidth; Field programmable gate arrays; Radar; Receivers; Resource management; Signal processing; FPGA; digital beam-forming; phased array radar; space situational awareness;
Conference_Titel :
Radar Symposium (IRS), 2012 13th International
Conference_Location :
Warsaw
Print_ISBN :
978-1-4577-1838-0
DOI :
10.1109/IRS.2012.6233341