• Title/Summary/Keyword: Weighing system

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Development of a Automated Noncontact Weighing System for Pigs (돼지의 자동 비접촉 체중계측 시스템 개발)

  • 임영일
    • Journal of Animal Environmental Science
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    • v.6 no.1
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    • pp.23-30
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    • 2000
  • A automated noncontact weight system for pigs consisted of a CCD-type video camera and 10 photo sensors connected to a computer. In the experiment 20 pigs(Large Yorkshire $\times$ Landrace breed) weighing from 95kg to 115kg were used. Pig's original image data was transformed to a binary image an image excluding head and tail portion from the whole binary image and the area of pig was calculated. Then pig's volume was calculated by multiplying the area by the body hight measured with photo sensors. The correlation equation between the above volume(x) and pig's weight was y=0.0007 x -9.2152($R^2$=0.9965) Performance of a automated noncontact weighing system for pigs was tested with this equation. The results showed $\pm$0.65kg average error and 1.63kg maximum error. It was concluded that performance of a automated noncontact weighing system is excellent.

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An A/D Conversion System for Precision Weighing Signal Process (정밀 중량 계측 신호처리를 위한 A/D 변환 시스템)

  • Joo, Yong-Kyu;Jeon, Chan-Min;Park, Chan-Won
    • Proceedings of the KIEE Conference
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    • 2002.11c
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    • pp.301-304
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    • 2002
  • This paper has been studied an A/D conversion system for precision weighing signal process In weighing system. A/D conversion has some problem.; offset drift voltage with environment situation and nonzero value of initial output voltage. The Offset voltage in analog circuit produces a drift of an output voltage before A/D conversion stage. This paper suggested the method of reducing the offset voltage by switching analog chopping circuit and making the initial output close to zero to enhance the swing range by D/A converter. Also, we have designed active filter and digital filter with Auto Zero Tracking algorithm for better signal process of the weighing system.

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A study on the development of dynamic weighing measurement system (동하중 측정 신호처리의 개발에 관한 연구)

  • Park, Chan-Won;Shin, Hyoung-Jae;Lee, Young-Jun;Shin, Young-kyun;Ann, Kwang-Hee
    • Journal of Industrial Technology
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    • v.18
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    • pp.173-180
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    • 1998
  • A high speed and stable A/D conversion data process is required to weigh a mass on moving conveyer weighing platter. The paper presents a new method to obtain stable and fast automatic weighing A/D conversion data process. Dynamic weighting system which is constructed with dual load cell is realized by the stable A/D conversion data process algorithm using DSP. The proposed method is applied to the real design, and that experimental results showed good performances of the weighing stability.

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Economic analysis of the loading-unloading and automatic weighing systems in laver aquaculture industry (양식장 물김 이송 및 중량 자동측정 시스템 개발의 경제성 분석 연구)

  • Dae-Hyon KIM;Eun-Bi MIN;Tae-Jong KANG;Doo-Jin HWANG
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.59 no.2
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    • pp.181-187
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    • 2023
  • Laver aquaculture, which occupies a large proportion in the aquaculture industry in Korea, is still highly dependent on human labor. Therefore, it is necessary to study the development of an automatic system to improve the working environment and increase the efficiency of aquaculture production systems. The purpose of this study is to evaluate the economic feasibility of an improved system in a study for the loading-unloading and automatic weighing systems in laver aquaculture industry. Economic analysis of the developed unloading and automatic weighing system were implemented under various conditions to calculate more accurate benefits and costs. As a result of this study, the economic feasibility was found to be very high in the three models: net present value (NPV), benefit-cost ratio (B/C), internal rate of return (IRR). Moreover, the results of sensitivity analysis showed that the economical efficiency of the automatic loading, unloading, and weighing system in laver aquaculture was very high.

Improvement of Uncertainty for Gravimetric Flow Calibrator (10톤 용량의 중량식 교정장치에 대한 불확도 개선)

  • Lee, Dong-Keun;Park, Joo-Young;Lee, Haeng-Soo
    • Proceedings of the SAREK Conference
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    • 2008.06a
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    • pp.1042-1046
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    • 2008
  • Both the weighing bridge and the diverter system is a important component in achieving a high accuracy liquid flow rate standard using a static gravimetric method. The weighing bridge is a tank which weighing collected flow with a load cells. The diverter is a moving device used to direct flow alternately along its normal course(by pass) or towards the weighing tank. The time needed for collection into the weighing tank is measured using a timer. So it is important to the diversion period is sufficiently fast and triggering point of timer which is determined the filling time. On this studies show that the measurement deviation of load cell and uncertainty of diverter system for changing diversion speed and triggering point was estimated in accordance with Guide to The Expression of Uncertainty in Measurement(ISO).

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A Paired Barrel Capable of Automatic Storage and Emptying of Water for a Weighing Raingauge (자동 저수와 배수가 가능한 중량 우량계 용 쌍수조)

  • Lim, Gyu-Ho;Lim, Eun Ok
    • Atmosphere
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    • v.27 no.2
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    • pp.251-258
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    • 2017
  • The standard weighing raingauges have a capacity limit in measuring the amounts of precipitation. Exceptions are those using a siphon to drain the collected water during observations. To reduce the drain time of the siphon type or to overcome the hassles associated with the manual emptying of the bucket for measuring, the most of weighing gauges use a large bucket for storing of rainwater to be measured. To avoid the above-mentioned adverse requirements, we propose a paired barrel for a weighing raingauge. The paired barrel may improve the accuracy of the weighing raingauges by getting rid of their capacity limit and make the gauges smaller in size and lighter in weight than the conventional ones. We showed its proper function and the feasibility of realization by testing a prototype paired barrel.

Development of WIM System Using Digital Loadcell (디지털 로드셀을 이용한 WIM 시스템의 개발)

  • Park, Chan-Won;Jeon, Chan-Min;Park, Heung-Joon
    • Journal of Industrial Technology
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    • v.23 no.A
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    • pp.55-61
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    • 2003
  • In this study, a signal processing and related techniques for development of a weight measuring system using a digital loadcell which is able to satisfy the important properties of WIM (weighing-in-motion) system have been investigated. A fast and high accurate signal processing of the digital load cell sensor for weighing-in-motion system is presented. A/D conversion system is constructed to realize a stable A/D conversion and signal processing algorithm using DSP and microprocessor. A new technique for vibration and measuring speed of the system is also investigated. The proposed method was applied to the actual design and the experimental results showed good performance of the weighing speed and stability.

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Experience with an On-board Weighing System Solution for Heavy Vehicles

  • Radoicic, Goran;Jovanovic, Miomir;Arsic, Miodrag
    • ETRI Journal
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    • v.38 no.4
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    • pp.787-797
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    • 2016
  • Mining, construction, and other special vehicles for heavy use are designed to work under high-performance and off-road working conditions. The driving and executive mechanisms of the support structures and superstructures of these vehicles frequently operate under high loads. Such high loads place the equipment under constant risk of an accident and can jeopardize the dynamic stability of the machinery. An experimental investigation was conducted on a refuse collection vehicle. The aim of this research was to determine the working conditions of a real vehicle: the kinematics of the waste container, that is, a hydraulic rotate drum for waste collection; the dynamics of the load manipulator (superstructure); the vibrations of the vehicle mass; and the strain (stress) of the elements responsible for the supporting structure. For an examination of the force (weight) on the rear axle of a heavy vehicle, caused by its own weight and additional load, a universal measurement system is proposed. As a result of this investigation, we propose an alternative system for continuous vehicle weighing during waste collection while in motion, that is, an on-board weighing system, and provide suggestions for measuring equipment designs.

Development of Auto-Empting Type Weighing Precipitation Gauge and Performance Test on Rainfall Measurement (자동배수형 무게식 강수량계 개발 및 강우량 측정 성능검사)

  • Kim, Sang-Jo;Son, Top
    • Atmosphere
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    • v.22 no.2
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    • pp.279-285
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    • 2012
  • The weighing precipitation gauge with auto-empting capability was developed in the R&D project organized by the Research Agency for Climate Science (RACS) and supported by the Korea Meteorological Administration (KMA). This project was initiated in line with the KMA's plan executed since 2010 to introduce the weighing precipitation gauges partly into of their Automatic Weather Station (AWS) network in order to upgrade the quality of precipitation data. The innovative feature of this research is that the auto-empting in weighing precipitation gauge is realized by abrupt rotation of receiving container. The prototype was tested in compliance with the relevant standards of KMA. The results of performance test on rainfall measurement in laboratory verified that the accuracies for 20 mm and 100 mm reference rainfall amount were 0.1 mm and 0.4 mm, respectively in both conditions of auto-empting and no-empting. During the rotation of container for auto-empting, the data was extrapolated smoothly by applying the same precipitation intensity of the previous 10 sec. Consequently, it was found that the auto-empting precipitation gauge developed in this research is quite enough to be used for the operational purpose of accurate measurement with 0.1 mm resolution, regardless of the precipitation intensity.

A Study of Weighing System to Apply into Hydraulic Excavator with CNN (CNN기반 굴삭기용 부하 측정 시스템 구현을 위한 연구)

  • Hwang Hun Jeong;Young Il Shin;Jin Ho Lee;Ki Yong Cho
    • Journal of Drive and Control
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    • v.20 no.4
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    • pp.133-139
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    • 2023
  • A weighing system calculates the bucket's excavation amount of an excavator. Usually, the excavation amount is computed by the excavator's motion equations with sensing data. But these motion equations have computing errors that are induced by assumptions to the linear systems and identification of the equation's parameters. To reduce computing errors, some commercial weighing system incorporates particular motion into the excavation process. This study introduces a linear regression model on an artificial neural network that has fewer predicted errors and doesn't need a particular pose during an excavation. Time serial data were gathered from a 30tons excavator's loading test. Then these data were preprocessed to be adjusted by MPL (Multi Layer Perceptron) or CNN (Convolutional Neural Network) based linear regression models. Each model was trained by changing hyperparameter such as layer or node numbers, drop-out rate, and kernel size. Finally ID-CNN-based linear regression model was selected.