Title :
Digital dispersive delay line replacement for legacy radars
Author :
Earl, D.C. ; Moulin, D. ; Landran, R.L. ; Leney, H.G. ; Rifkin, R.
Author_Institution :
MITRE Corp., Bedford, MA, USA
Abstract :
Some legacy phased array radars use analog dispersive delay lines to expand and compress their FM chirp waveforms. These acoustic-based devices are often no longer available. This paper describes the design of a functionally equivalent digital replacement for one of these analog delay lines. Various design options were considered including IF versus baseband processing, time domain versus frequency domain filtering, and COTS boards versus custom ASICs. The system design issues of dynamic range, chirp impulse response design, delay line processing latency, and the effect of mismatch between the transmitter and receiver were addressed. The main challenge of the board level design was to meet the digital signal processing computational demands within the inherently short analog delay line latency. This ultimately required developing a custom VLSI signal processing chip. The 1.3 million transistor ASIC chip performs a 1024 tap finite-impulse response (FIR) filter running at an estimated 2 Msps. The configurable architecture of the ASIC allows the number of FIR filter taps to be traded for sampling rate and could be useful in other radar or communication systems
Keywords :
FIR filters; VLSI; application specific integrated circuits; delay lines; digital filters; digital signal processing chips; phased array radar; radar signal processing; COTS boards; FIR filter taps; FM chirp waveforms; IF processing; acoustic-based devices; analog dispersive delay lines; baseband processing; board level design; chirp impulse response design; communication systems; configurable architecture; custom ASIC; custom VLSI signal processing chip; delay line processing latency; digital dispersive delay line replacement; digital signal processing; dynamic range; frequency domain filtering; legacy phased array radar; radar systems; receiver; sampling rate; system design; time domain filtering; transmitter; Application specific integrated circuits; Baseband; Chirp; Delay lines; Dispersion; Filtering; Finite impulse response filter; Frequency domain analysis; Phased arrays; Radar;
Conference_Titel :
Radar Conference, 1999. The Record of the 1999 IEEE
Conference_Location :
Waltham, MA
Print_ISBN :
0-7803-4977-6
DOI :
10.1109/NRC.1999.767197