DocumentCode :
3604247
Title :
Short-Range Leakage Cancelation in FMCW Radar Transceivers Using an Artificial On-Chip Target
Author :
Melzer, Alexander ; Onic, Alexander ; Starzer, Florian ; Huemer, Mario
Author_Institution :
Inst. of Signal Process., Johannes Kepler Univ. Linz, Linz, Austria
Volume :
9
Issue :
8
fYear :
2015
Firstpage :
1650
Lastpage :
1660
Abstract :
A major drawback of frequency modulated continuous-wave (FMCW) radar systems is the permanent leakage from the transmit into the receive path. Besides leakage within the radar device itself, signal reflections from a fixed object in front of the antennas additionally introduce so-called short-range (SR) leakage. It causes a strong degradation of detection sensitivity due to the unpreventable phase noise of the transmit oscillator. In this work, we introduce an artificial on-chip target (OCT) to mitigate the SR leakage. The OCT consists of a delay line whose time delay is significantly smaller than the round-trip delay time of the SR leakage. This is motivated by the fact that in integrated circuits for automotive radar applications operating at 77 GHz delay lines in the range of only a few picoseconds can be realized with a reasonable amount of circuitry. Despite this constraint, we show that the proposed method achieves almost perfect cancelation of the SR leakage. The concept is based on the cross-correlation properties of the residual phase noise in the intermediate frequency (IF) domain. Further, the effectiveness of the proposed method is verified in an FMCW radar system simulation. It almost perfectly shows that a gain in sensitivity of approximately 6 dB is achieved, compensating for the performance degradation caused by the SR leakage. The novel leakage cancelation concept is carried out mainly in the digital domain enabling high flexibility and adaptivity.
Keywords :
CW radar; FM radar; delay lines; millimetre wave radar; phase noise; radar antennas; radar detection; road vehicle radar; transceivers; FMCW radar system; FMCW radar transceiver; IF domain; SR leakage mitigation; artificial on-chip target; automotive radar application; cross-correlation property; delay line; frequency 77 GHz; frequency modulated continuous wave radar system; intermediate frequency domain; residual phase noise; round-trip delay time; short-range leakage cancelation; Delay lines; Digital signal processing; MMICs; Phase noise; Radar antennas; System-on-chip; Digital signal processing; frequency modulated continuous-wave (FMCW) radar; leakage cancelation; phase noise; reflected power canceler;
fLanguage :
English
Journal_Title :
Selected Topics in Signal Processing, IEEE Journal of
Publisher :
ieee
ISSN :
1932-4553
Type :
jour
DOI :
10.1109/JSTSP.2015.2465298
Filename :
7180336
Link To Document :
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