[1]
Huang Jianping, Zhu Junping, Peng Liming. Multi-path Signal Monitor System of Agricultural Device Based on ARM7[J]. Journal of Agricultural Mechanization Research, 2009, (6): 183-185.
Google Scholar
[2]
Zhao Dongmei. Application of LabVIEW in The Detection of Agricultural Machinery [J]. Agricultural Mechanization Research, 2006, (9): 164-165.
Google Scholar
[3]
Su Huali, Lu Baijian. Analysis And Judging Methods of The Common Faults of Agricultural Machinery[J]. Agricultural Mechanization Use And Repair, 2002, (5): 20.
Google Scholar
[4]
Zhao Xiang, Du Puxuan, Li Ku. Attitude Detection System Based on MEMS Accelerometer And Gyro [J]. Railway Computer Application, 2012, 21(3): 15-18.
Google Scholar
[5]
Liu Gang. Real-time Detection of Movement Attitude Based on Strain Sensor[J]. Sensor Technology, 2004, 24(9): 73-75.
Google Scholar
[6]
Deng Jianfeng, Han Junfeng, Pan Shenghui. Design of Attitude Detection System of Vehicle Based on IMEMS Sensor[J]. Sensor And Micro System, 2012, 31(4): 116-119.
Google Scholar
[7]
Hu Changhua, Dong Bo, Zheng Jianfei. The Non-full Gesture Inertial Platform Shot Before Calibration Error Coefficients of Gyro Drift Test Loop Angle And Variable Structure Control [J]. Journal of Astronautics, 2009, 30(5): 1919-(1924).
Google Scholar
[8]
Tan K S, Wong S V, Radin U R, et al. An experimental study of deformation behaviour of motorcycle front wheel-tyre assembly under frontal impact loading. International Journal of Impact Engineering. 2006, 32(10): 1554-1572.
DOI: 10.1016/j.ijimpeng.2005.04.007
Google Scholar
[9]
Dixon B, Kalinin V, Beckley J, et al. A second generation in-car tire pressure monitoring system based on wireless passive SAW sensors. Proceedings of The 2006 IEEE International Frequency Control Symposium and Exposition, Vols 1-2. 2006: 374-380.
DOI: 10.1109/freq.2006.275414
Google Scholar