Title :
High-precision infrared pulse laser ranging for active vehicle anti-collision application
Author :
Chen, Yandong ; Meng, Zhiqiang ; Liu, Jinglin ; Jiang, Heping
Author_Institution :
Coll. of Electr. & Inf. Eng., Hunan Univ., Changsha, China
Abstract :
In this work, a high-precision infrared pulse laser ranging system based on FPGA and microcontroller Atmel16 is proposed for active vehicle anti-collision application, and the key technologies of this system including optical device, laser receiver component, and time-of-flight stretching component are studied deeply based on the principle of the pulse laser time-of-flight measurement. The light energy transmission is analyzed in detail to choose the proper transmitted and receiver laser diode. Specially, the method of the time stretching based on the charge and discharge of the high-precision capacitor using the constant current sources is adopted to realize the measurement of time-of flight. The practical running of system prototype and test results show that the precision is +0.1m, the repetition rate is 1 kHz, and the distance measurement range is up to 60 m from 1.5 m. So, this system can accurately detect the distance between the cars, and can efficiently avoid traffic accident, therefore, this system has greatly practical and economic value.
Keywords :
capacitors; collision avoidance; constant current sources; field programmable gate arrays; laser ranging; light transmission; microcontrollers; pulse measurement; road accidents; road safety; road traffic; road vehicles; semiconductor lasers; Atmel16 microcontroller; FPGA; active vehicle anticollision application; constant current source; distance measurement range; high-precision capacitor; high-precision infrared pulse laser ranging; laser diode; laser receiver component; light energy transmission; optical device; pulse laser time-of-flight measurement; time-of-flight stretching component; traffic accident; Capacitors; Distance measurement; Field programmable gate arrays; Measurement by laser beam; Receivers; Semiconductor lasers; Vehicles; pulse laser; ranging; time-off-light stretching; vehicle anti-collision;
Conference_Titel :
Electric Information and Control Engineering (ICEICE), 2011 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-8036-4
DOI :
10.1109/ICEICE.2011.5777775