. Identification of Linear Approximation for Scanning Mirror System of Aerial Camera[J]. Editorial Office of Optics and Precision Engineering, 2013,21(7): 1771-1779
. Identification of Linear Approximation for Scanning Mirror System of Aerial Camera[J]. Editorial Office of Optics and Precision Engineering, 2013,21(7): 1771-1779 DOI: 10.3788/OPE.20132107.1771.
Identification of Linear Approximation for Scanning Mirror System of Aerial Camera
To know the effect of friction on the frequency response of Scanning Mirror System(SMS) in an aerial camera and to provide a model for describing the real dynamic of the SMS more exactly
the random phase multi-sine exciting signal was used to detect the feature of frequency response of the SMS and to identify a linear approximate parameter model. Firstly
the experiment setup for SMS identification was introduced and the exiting signal was selected. Then
the odd-odd frequency random phase multi-sine signal was used to measure the dependence of output of system at the non-exited frequency and exited frequency on the input signal
and to evaluate the nonlinear effect of friction quantitatively. Finally
an estimation method based on the sample mean value of signal and sample noise (co-)variances was used to identify the linear approximate parameter model of SMS. The experimental results indicate that the friction nonlinearity in the SMS is mainly located at the odd frequency
10 dB above the noise. The frequency response of SMS varies under the different amplitudes of input signal
and the difference is obvious especially below 20 rad/s. Because of the effect of friction
the SMS should be described by a 3-order parameter model. Compared with sine-swept method
the parameter model based on multi-sine signal is better in describing the real dynamic feature of the SMS. Obtained results can provide the base for designing of controllers.
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孙辉,李志强.基于相位相关的匀速直线运动模糊图像位移参数估计 [J].中国光学,2012,5(2):174-180.SUN H,LI Z Q. Estimation of displacement parameters for uniform linear motion-blurred images based on phase-only correlation [J]. Chinese Optics, 2012, 5(2): 174-180. (in Chinese)[2]沈宏海,黄猛,李嘉全,等.国外先进航空光电载荷的进展与关键技术分析 [J].中国光学,2012,5(1):20-29.SHEN H H, HUANG M, LI J Q, et al..Recent progress in aerial electro-optic payloads and their key technologies [J]. Chinese Optics, 2012, 5(1): 20-29. (in Chinese) [3]MICHAEL S, DAVID R. System modeling and controller design in the presence of nonlinear distortions [J]. IEEE Transactions on Instrumentation and Measurement, 2007, 56(3): 1049-1057.[4]董岩,张涛,李文明,等.机载立体测绘相机滚转轴伺服系统的辨识与设计 [J].光学 精密工程,2011,19(7):1580-1586.DONG Y, ZHANG T, LI W M, et al..Identification and design of roll axis servo system in airborne solid mapping camera [J]. Opt. Precision Eng., 2011, 19(7): 1580-1586. (in Chinese)[5]PINTELON R, SCHOUKENS J. System Identification: a Frequency Domain Approach [M]. Piscataway, NJ: IEEE Press, 2001.[6]ROINILA T, VILKKO M, SUNTIO T. Frequency-response measurement of switched-mode power supplies in the presence of nonlinear distortions [J]. IEEE Trans. on Power Electronics, 2010, 25(8): 2179-2187.[7]RIJLAARSDAM D, LOON B V, NUIJ P, et al.. Nonlinearities in Industrial Motion Stages Detection and Classification [C]. American Control Conference Marriott Waterfront, Baltimore, MD, USA, 2010: 6644-6649.[8]FERNNDEZ-HERRERO A, FERNNDEZ C, CARRERAS C, et al.. Use of multisine excitations for frequency-response measurement of nonlinear DC-DC switching converters [C]. Applied Power Electronic Conference and Exposition, Twenty-seventh Annual, IEEE, 2012: 735-739.[9]AERTS J R M, DIRCKX J J J, PINTELON R. Measurement of non-linear distortions in the vibration of acoustic transducers and acoustically driven membranes [J]. Optics and Lasers in Engineering, 2009 , 47: 419-430.[10]BENJAMIN S, RAMON B, GERD V. Influence of the multisine excitation amplitude design for biomedical applications using impedance spectroscopy [C]. 33rd Annual International Conference of the IEEE EMBS, Boston, Massachusetts USA, 2011: 3975-3978.[11]DANIEL E R, HYUNJIN L, HANS D, et al.. Constrained multisine input signals for plant-friendly identification of chemical process systems [J]. Journal of Process Control, 2009, 19: 623-635.[12]TOM B, ELS T, JEAN-BAPTISTE J, et al.. Odd random phase multisine EIS for organic coating analysis [J]. Progress in Organic Coatings, 2010, 69: 215-218.[13]TOM B, ELS T, YVES V I, et al.. Odd random phase multisine EIS as a detection method for the onset of corrosion of coated steel [J]. Electrochemistry Communications, 2010, 12: 2-5.[14]TOM B, JOHN L, THIBAULT M, et al.. Odd random phase multisine electrochemical impedance spectroscopy to quantify a non-stationary behavior: Theory and validation by calculating an instantaneous impedance value [J]. Electrochimica Acta, 2010,76 : 375-382.[15]KRISTOF H, PATRICK G, STEVE V. On-line damage detection on a wing panel using transmission of multisine ultrasonic waves [J]. NDT&E International, 2008, 41: 312-317.[16]SCHOUKENS J, SWEVERS J, PINTELON R, et al.. Excitation design for FRF measurements in the presence of non-linear distortions [J]. Mechanical Systems and Signal Processing, 2004, 18: 727-738.