[1]
H Rohling , et al. Experiences with an experimental car controlled by a 77GHz radar sensor [A]. Proc. of 1998 Inter. Radar Sympo-sium [C] , Munich , 1998 : 345 - 354.
Google Scholar
[2]
C David Wang , et al. Processing methods enhance collision-warn-ing systems [J ]. Microwaves & RF , 1997 , 36(3) : 72 - 82.
Google Scholar
[3]
HE Leting, SUN Lisheng, ZHAI Yujian. The development of a radar system for automotive anti -collision [J]. Industrial Instrumentation & Automation, 2003, (3) : 14 - 16.
Google Scholar
[4]
AN Fuqiang . The Research on mechanism of vehicle rear-end collision avoidance system. Journal of Nanjing Forestry University, 2000, 24(4).
Google Scholar
[5]
CHEN Yong, HUAGN Xiyue, YANG Shanggang. Research and development of automotive collision avoidance system . Computer Simulation, 2006, 12 (12) : 239 – 243.
Google Scholar
[6]
HE Li, ZENG Xianwen, XU Xia. Ultrasonic distance measurement instrument based on PIC monolithic machine[J]. Piezoelectrics&Acoustooptics, 2004, 26(2)155-157.
Google Scholar
[7]
LI Tongling, LI Qingjun. Ultrasonic distance measurement[J]. Coal Technology, 2012, 31(7): 55-56.
Google Scholar
[8]
ISO/IEC. IEEE 1588-2002 A Precision Clock Synchronization Protocol for Networked Measurement and Control Systems[S]. (2002).
DOI: 10.1109/ieeestd.2009.4839002
Google Scholar
[9]
XIE Haofei, WANG Ping, ZHANG Jian, WANG Hao . Implementing method of precise time synchronization for measurement and control [J]. Computer Engineering, 2008, 34(10): 247-249.
Google Scholar
[10]
CHENG Shu, HU Bingxin, LIU Jingxia, WANG Na. A brief analysis of IEEE 1588 precision time synchronization protocol[J]. Microcomputer Information, 2012, 28(2): 126-128.
Google Scholar
[11]
LIU Jiancheng, FANG Peng, HE Zongying, Implementation of IEEE1588 clock synchronization over PTN[J]. International Electronic Elements, 2012, 20(9): 99-101.
Google Scholar