[1]
Mao, Hong-Yu, Yang Hong-Sheng, Yang Guang, Hu Zhuo-Lin. Application of least square support vector machine for automatic test equipment metrological parameter stability assessment. Journal of Jilin University (Engineering and Technology Edition), v 41, n 2, pp.393-397, March (2011).
Google Scholar
[2]
Xia Mingfei, Wang Hongfeng, Xia Mingqi. Automatic test system for some kind general electronic equipment. Proceedings - IEEE 2011 10th International Conference on Electronic Measurement and Instruments, ICEMI 2011, v 2, pp.73-75, (2011).
DOI: 10.1109/icemi.2011.6037768
Google Scholar
[3]
Sun Baojiang, Wang Zuoxun. Automatic Testing System for airborne communication equipments. 2011 International Conference on Electric Information and Control Engineering, pp.3040-3043, (2011).
DOI: 10.1109/iceice.2011.5778036
Google Scholar
[4]
Cao Naisen, Sun Yawei. Design of general automatic test system for airborne radio equipment based on hybrid bus architecture. 2011 IEEE International Conference on Computer Science and Automation Engineering, v 2, pp.145-148, (2011).
DOI: 10.1109/csae.2011.5952442
Google Scholar
[5]
Zhang Jian, Lu Shi, Zhang Lei, Yan Fei. Design and realization of automatic measuring system for special torpedo test equipment based on virtual instrument technology. Journal of System Simulation, v 17, n 9, pp.2301-2304, September (2005).
Google Scholar
[6]
SHI Yanbin, DUAN Zhemin. Radio Instrumentation Based on Virtual Instrument. Journal of Astronautic Metrology and Measurement, 2005, 06, p.49~52.
Google Scholar
[7]
Barela Scott. Software review for automatic test equipment. 2005 Proceedings - IEEE Systems Readiness Technology Conference: Technology - Powering the Next Generation of Test. v 2005, pp.30-35, (2005).
DOI: 10.1109/autest.2005.1609096
Google Scholar
[8]
Zijing Zhong, Zhongbao Xing, Yanbin Shi. Research on the airborne communication and navigation apparatus ATE system based on the virtual instrument. Proceedings - 2008 Pacific-Asia Workshop on Computational Intelligence and Industrial Application. v2, pp.757-760, (2008).
DOI: 10.1109/paciia.2008.188
Google Scholar
[9]
Yanli Shi, Zhongji Tan, Yanbin Shi. Software design and realization of altimeter synthetically detector. Communications in Computer and Information Science, v 236, pp.517-521, (2011).
DOI: 10.1007/978-3-642-24097-3_77
Google Scholar
[10]
Neag, Ion A. Supporting hardware independence in the next generation of automatic test equipment. 2005 Proceedings - IEEE Systems Readiness Technology Conference: Technology - Powering the Next Generation of Test, v 2005, pp.248-254, (2005).
DOI: 10.1109/autest.2005.1609138
Google Scholar
[11]
Liao Jie, Zhang Qi, Wu Jian-Jun, Liu Yu. Design of general automatic test system for engineering equipment. Journal of PLA University of Science and Technology (Natural Science Edition), v 8, n 3, pp.288-291, June (2007).
Google Scholar