DocumentCode :
1756959
Title :
Noncontact Distance and Amplitude-Independent Vibration Measurement Based on an Extended DACM Algorithm
Author :
Jingyu Wang ; Xiang Wang ; Lei Chen ; Jiangtao Huangfu ; Changzhi Li ; Lixin Ran
Author_Institution :
Lab. of Appl. Res. on Electromagn., Zhejiang Univ., Hangzhou, China
Volume :
63
Issue :
1
fYear :
2014
fDate :
Jan. 2014
Firstpage :
145
Lastpage :
153
Abstract :
Utilizing microwave continuous-wave Doppler radars to wirelessly detect mechanical vibrations have been attracting more and more interests in recent years. In this paper, aiming to solve the null point and nonlinear issues in small-angle approximation-based Doppler radar sensors and eliminate the codomain restriction in the arctangent demodulation approach, we propose and investigate an extended differentiate and cross-multiply (DACM) algorithm. With an additional accumulator, the noise performance of the original DACM algorithm is improved. Moreover, the amplitude information of the vibration can be directly retrieved from accumulation without involving any distance-dependent issue. Experimental validations show that the proposed algorithm can fully recover the vibration patterns with the measured noncalibrated amplitude agreeing well with the known precalibrated data. Application examples of mechanical fault detection and human vital sign detection are demonstrated, showing a wide range of potential applications of this algorithm.
Keywords :
CW radar; Doppler radar; differentiation; fault diagnosis; microwave measurement; patient diagnosis; radar applications; vibration measurement; amplitude-independent vibration measurement; arctangent demodulation; extended DACM algorithm; extended differentiate and cross-multiply algorithm; human vital sign detection; mechanical fault detection; mechanical vibration detection; microwave continuous wave Doppler radar; noncontact distance-independent vibration measurement; nonlinear issue; null point issue; small angle approximation based Doppler radar sensors; Approximation algorithms; Approximation methods; Demodulation; Radar; Sensors; Vibration measurement; Vibrations; Arctangent demodulation; differentiate and cross multiply (DACM); noncontact vibration measurement; nonlinear phase modulation; radar sensor;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2013.2277530
Filename :
6583987
Link To Document :
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