DocumentCode
643580
Title
Study on timing jitter in clutter mitigation of through-wall human indication
Author
Jun Hu ; Guofu Zhu ; Tian Jin ; Liang Wang ; Zhimin Zhou
Author_Institution
Coll. of Electron. Sci. & Eng., Nat. Univ. of Defense Technol., Changsha, China
fYear
2013
fDate
15-18 Sept. 2013
Firstpage
211
Lastpage
214
Abstract
Ultra-wide band (UWB) through wall radar (TWR) is considered as one of the preferred techniques for through-wall human indication due to its good penetration and high range resolution. UWB TWR benefits from its large bandwidth, but the large bandwidth inadvertently results in an issue not substantial in narrowband radars - high timing jitter effect. In typical impulse TWR, timing jitter is mainly caused by the non-ideal sampling clock at the receiver. The fact that impulse TWR employs pulses with very narrow width makes little jitter inaccuracy large enough to degrade the system performance. However, very few studies about the timing jitter in the UWB TWR applications can be found. In this paper, we focus on the impact of timing jitter on the clutter suppression in through-wall human indication. We first model and analyze the timing jitter in impulse TWR. Then, we introduce a simple jitter compensation method based on interpolation and cross correlation with a specified pulse to align the sampled pulses and combat the timing jitter. Finally, we adopt the exponential average background subtraction (EABS) method to suppress clutters. The proposed method is effective to remove the jitter distortion in clutter mitigation, and applicable for real-time applications. Through-wall experiments are presented to verify the proposed method.
Keywords
compensation; interference suppression; interpolation; jitter; radar clutter; radar resolution; ultra wideband radar; EABS method; UWB-TWR radar; clutter mitigation; clutter suppression; cross-correlation; exponential average background subtraction method; high range resolution; high timing jitter effect; impulse TWR; interpolation; jitter compensation method; jitter distortion; narrowband radars; nonideal sampling clock; receiver; ultrawide band through wall radar; Clutter; Conferences; Correlation; Educational Activities Board; Radar; Timing jitter; clutter mitigation; exponential average background subtraction (EABS); human target indication; through-wall radar (TWR); timing jitter; ultra-wide band (UWB);
fLanguage
English
Publisher
ieee
Conference_Titel
Ultra-Wideband (ICUWB), 2013 IEEE International Conference on
Conference_Location
Sydney, NSW
ISSN
2162-6588
Type
conf
DOI
10.1109/ICUWB.2013.6663850
Filename
6663850
Link To Document