Results 221 to 230 of about 114,227,051 (260)
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Weigh-in-Motion – and Much More!

Traffic Technology International, 2021
KiTraffic Plus from Kistler is the variable ecosystem for efficient traffic monitoring
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HISTORICAL DEVELOPMENT OF TECHNOLOGIES FOR WEIGHING TRANSPORT VEHICLES IN MOTION (WEIGH-IN-MOTION)

AUTOMOBILE ROADS AND ROAD CONSTRUCTION
Summary. The article analyzes the historical development of weigh-in-motion (WIM) technologies from the 1950s to the present day. It provides an overview of the main types of WIM systems (road, bridge, on-board, low- and high-speed) and modern sensors. Particular attention is paid to the implementation of WIMin Ukraine in 2019–2024, the impact of full ...
Vitaliy Raikovskyi   +2 more
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Weigh-in-Motion System Testing

Key Engineering Materials, 2012
The paper presents some results of research on the Weight-in-motion (WIM) system. The device is used for identification of loads on the road surface generated by traveling vehicles. The proposed approach utilizes the piezoelectric measurement techniques to monitor strain development in a deformable body and eventually these measurements are used for ...
Krzysztof Sekuła, Andrzej Świercz
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New Developments in Weigh in Motion

SAE Technical Paper Series, 1985
<div class="htmlview paragraph">This paper examines some recent developments in the field of weighing in motion (WIM). It is divided into two sections covering systems currently in use today and new or future developments. Systems examined under the first section include the following alternative highway speed WIM methodologies: <ol class ...
Peter Davies, Nick Ayland
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In-pavement wireless weigh-in-motion

Proceedings of the 12th international conference on Information processing in sensor networks, 2013
Truck weight data is used in many areas of transportation such as weight enforcement and pavement condition assessment. This paper describes a wireless sensor network (WSN) that estimates the weight of moving vehicles from pavement vibrations caused by vehicular motion.
Ravneet Bajwa   +4 more
openaire   +1 more source

Weigh-in-Motion Device Based on Capacitive Weighing Sensor

Applied Mechanics and Materials, 2012
A weigh-in-motion device is developed to solve defects in the current method. A vehicle carrying capacitive sensor is adopted as the load weighing component, and an embedded MCU is used as main control unit in this device. The device achieved real-time monitoring and displaying for static loads, transient loads and overloads of vehicle.
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Weighing Vehicles in Motion

1965
An agreement between the Kentucky Department of Highways and the University of Kentucky Research Foundation dated October 1, 1964 defined the minimum objectives of the subject research project as follows: A. Developing and furnishing plans for an in-stream transducer system for dynamic axle weighing with manufacturers' specifications for the ...
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Weighing Vehicles in Motion

1964
This report describes the construction, installation, testing and performance analysis of three types of dynamic electronic scales; the Taller-Cooper, a commercially developed four load cell scale, the Broke Bridge, an adaptation of a German prototype employing two load cells and the Bean Type Scale, an experimental prototype that uses a pair of ...
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Field evaluation of weigh-in-motion screening on truck weigh station operations

IEEE IV2003 Intelligent Vehicles Symposium. Proceedings (Cat. No.03TH8683), 2004
Weigh-in-Motion (WIM) systems can improve the capacity of weigh station operations by screening trucks while traveling at high speeds and only requiring trucks within a threshold of a maximum permissible weight to be weighed on more accurate static scales.
H. Rakha, B. Katz, A. Al-Kaisy
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Fibre-optic weigh-in-motion sensor

Sensors and Actuators A: Physical, 1994
This paper presents a fibre-optic sensor to measure weight in motion based on a multiple fibre-optic interferometer. The differential phase between the arms of the interferometer produced by the pressure is compensated by a feedback system, thus converting pressure into voltage.
M.C. Navarrete, E. Bernabeu
openaire   +1 more source

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