DocumentCode :
2149770
Title :
Clutter cancellation achievable with a digital waveform generator subjected to clock timing jitter
Author :
Spong, Robert N. ; Cooper, Robert M.
Author_Institution :
Naval Electron. & Surveillance Syst., Lockheed Martin Corp., Syracuse, NY, USA
fYear :
2000
fDate :
2000
Firstpage :
428
Lastpage :
434
Abstract :
As digital-to-analog converters get ever faster and more accurate, it becomes ever more feasible to replace analog waveform generation for a transmit exciter with digital circuitry. Simple equations have been obtained which relate clutter cancellation achievable with an LFM pulse compressor to clock timing jitter variance, LFM waveform bandwidth, digital IF frequency, and the sampling frequency. Equations derived in this paper show that the clutter cancellation ratio consists only of terms which contain the standard deviation of the jitter squared, στ2 and terms with jitter raised to the 4th power, στ4. All στ 2 terms are inversely proportional to the number of samples in the LFM waveform. The στ2 terms dominate when the combination of jitter, digital IF, and waveform bandwidths are low enough. All jitter στ4 terms are not reduced by the number of samples and do not benefit by an increase in sampling frequency. The στ4 terms dominate when the combination of jitter, digital IF,and waveform bandwidths are too large. Clutter cancellation performance as it depends upon timing jitter is evaluated numerically for a variety of parameter values and checked by simulation. The results show that good clutter cancellation performance can be achieved with a digital waveform generator provided that the timing jitter is low enough for the digital IF and waveform bandwidth used
Keywords :
digital-analogue conversion; interference suppression; pulse compression; radar clutter; radar signal processing; radar theory; radar transmitters; signal sampling; simulation; timing jitter; waveform generators; LFM pulse compressor; LFM waveform bandwidth; clock timing jitter; clutter cancellation; digital IF frequency; digital waveform generator; digital-to-analog converters; sampling frequency; simulation; standard deviation; transmit exciter; Bandwidth; Circuits; Clocks; Digital-analog conversion; Equations; Frequency; Pulse compression methods; Sampling methods; Signal generators; Timing jitter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference, 2000. The Record of the IEEE 2000 International
Conference_Location :
Alexandria, VA
Print_ISBN :
0-7803-5776-0
Type :
conf
DOI :
10.1109/RADAR.2000.851872
Filename :
851872
Link To Document :
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