Title :
A low-cost 24GHz Doppler radar sensor for traffic monitoring implemented in standard discrete-component technology
Author :
Alimenti, F. ; Placentino, F. ; Battistini, A. ; Tasselli, G. ; Bernardini, W. ; Mezzanotte, P. ; Rascio, D. ; Palazzari, V. ; Leone, S. ; Scarponi, A. ; Porzi, N. ; Comez, M. ; Roselli, L.
Author_Institution :
Univ. of Perugia, Perugia
Abstract :
This paper deals with both the implementation and the real-life characterization of a low-cost 24 GHz Doppler radar sensor, purposely designed for the traffic monitoring. To reduce industrial costs as much as possible a discrete-components technology has been adopted for the microwave front-end Plastic packaged devices and fiberglass reinforced substrate are used in such a way as to fit with standard PCB manufacturing processes and automated assembly procedures. The signal manipulation is based on a state-machine algorithm and has been implemented in a 8051 family micro-controller unit. The realized sensor has a typical output power of 6 dBm and mounts a planar antenna with a 3 dB beam-width of plusmn4.5 degrees. The real-life measured performances shows a detection range in excess of 300 meters.
Keywords :
Doppler radar; finite state machines; microcontrollers; planar antennas; plastic packaging; printed circuit manufacture; road traffic; sensors; 8051 family microcontroller unit; Doppler radar sensor; automated assembly procedures; fiberglass reinforced substrate; frequency 24 GHz; microwave front-end; planar antenna; plastic packaged devices; signal manipulation; standard PCB manufacturing processes; standard discrete-component technology; state-machine algorithm; traffic monitoring; Costs; Doppler radar; Manufacturing industries; Microwave devices; Microwave technology; Monitoring; Optical fiber devices; Plastic packaging; Plastics industry; Sensor phenomena and characterization; Doppler radar; microwave circuits; road traffic control; velocity measurement;
Conference_Titel :
Microwave Conference, 2007. European
Conference_Location :
Munich
Print_ISBN :
978-2-87487-001-9
DOI :
10.1109/EUMC.2007.4405476