DocumentCode
3562500
Title
Length and speed detection using microwave motion sensor
Author
Van Cuong Nguyen ; Duy Khanh Dinh ; Van Anh Le ; Van Duc Nguyen
Author_Institution
Sch. of Electron. & Telecommun., Hanoi Univ. of Sci. & Technol., Hanoi, Vietnam
fYear
2014
Firstpage
371
Lastpage
376
Abstract
This paper introduces a new approach to design a vehicle detection module using a microwave motion sensor in order to obtain vehicle length and vehicle speed. The design of this module aims to apply for Intelligent Transport System (ITS) in which it plays a role as a unit of Traffic Detectors with Inductive Loops, Video, Infrared Sensors, etc. The module has advantages of using low power, costing low price and especially providing reliable results for measuring vehicles. The output signal of the microwave motion sensor is a low-level voltage whose frequency (Doppler) represents the speed at which a vehicle is moving towards or away from the sensor. We process this signal to get information about length and speed of the vehicle. We implemented the method in a microwave motion sensor named HB100 to measure the movement in radius of 8[m] in line-of-sight, vehicle speed range from 5[km/h] to 40[km/h]. We achieved the accuracy of more than 80% in 100 times observing a specific vehicle in a specific speed range.
Keywords
frequency measurement; intelligent transportation systems; length measurement; microwave detectors; motion measurement; velocity measurement; Doppler representation; HB100; ITS; distance 8 m; inductive loop; infrared sensor; intelligent transport system; low-level voltage whose frequency representation; microwave motion sensor; traffic detector; vehicle length detection module; vehicle speed detection module; velocity 5 km/h to 40 km/h; Detectors; Microcontrollers; Microwave circuits; Microwave communication; Propagation losses; Vehicles; Doppler Effect; HB100; Intelligent Transportation System; Microwave Motion Sensor; Traffic Detectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Technologies for Communications (ATC), 2014 International Conference on
Print_ISBN
978-1-4799-6955-5
Type
conf
DOI
10.1109/ATC.2014.7043414
Filename
7043414
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