Scinovex
article

An ultrasonic sensor for distance measurement in automotive applications

IEEE Sensors Journal · 2001 · Vol. 1(2) · pp. 143–143
Alessio CarulloMarco Parvis

Abstract

This paper describes an ultrasonic sensor that is able to measure the distance from the ground of selected points of a motor vehicle. The sensor is based on the measurement of the time of flight of an ultrasonic pulse, which is reflected by the ground. A constrained optimization technique is employed to obtain reflected pulses that are easily detectable by means of a threshold comparator. Such a technique, which takes the frequency response of the ultrasonic transducers into account, allows a sub-wavelength detection to be obtained. Experimental tests, performed with a 40 kHz piezoelectric-transducer based sensor, showed a standard uncertainty of 1 mm at rest or at low speeds; the sensor still works at speeds of up to 30 m/s, although at higher uncertainty. The sensor is composed of only low cost components, thus being apt for first car equipment in many cases, and is able to self-adapt to different conditions in order to give the best results.

Flow Measurement and AnalysisSensor Technology and Measurement SystemsAdvanced Sensor Technologies ResearchUltrasonic sensorAutomotive industryDistance measurementAcousticsComputer scienceMaterials scienceElectronic engineeringEngineeringPhysicsAerospace engineering
Citations
380
FWCI
1.38
field-weighted impact
References
9
Percentile
82%
vs. same field & year
Citations per year
References
Digital time-of-flight measurement for ultrasonic sensors
IEEE Transactions on Instrumentation and Measurement · 1992 · 325 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

An ultrasonic sensor for distance measurement in automotive applications · Scinovex