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Tytuł artykułu

A new method of mass measurement for checkweighers

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A checkweigher is an automatic machine to measure the weight of in-motion products. It is usually located around the end of the production process and ensures the weight of a product within specified limits. Any products are taken out of line if their weights are out of the specified limits. It is usually equipped with an optical device. It is used to make a trigger to set the time duration to allow a product to move completely on the weigh belt for sampling the weight. In this paper, a new method of mass measurement for checkweighers is proposed which uses just signal processing without the optical device. The effectiveness of the method is shown through experiments. Also a possibility of faster estimation of weight is shown.
Rocznik
Strony
151--162
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
autor
autor
autor
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autor
Bibliografia
  • [1] http://www.yamato-scale.co.jp/en/product/detail.php?igpl_no=6&iprd_no=34
  • [2] T. Ono: “Applications of Estimation Theory to Dynamic Weighing Problem”. Preprints of IMEKO VII
  • [3] T. Ono, H. Shimaoka: “Dynamic Mass-measurement under Weightless Conditions”. Trans. of the Society of Instrument and Control Engineers, vol. 21, no. 11, 1985, pp. 1184-1190. (in Japanese)
  • [4] K. Fukuda, K. Kameoka, T. Ono, K. Yoshida: “Evaluation of a New Mass-estimation Method for Axle Weights of In-motion Vehicles Using Vehicle Models”. Proc. of the 17th International Conference on Force, Mass, Torque and Pressure Measurements, IMEKO TC, 2001, pp. 219-229.
  • [5] K. Fukuda, H. Tottori, K, Kameoka, T. Ono: “Axle Weighing of In-motion Vehicles”. Trans. of the Society of Instrument and Control Engineers, vol. 38, no. 8, 2002, pp. 653-659. (in Japanese)
  • [6] K. Fukuda, K. Yoshida, T. Ono, K. Kameoka, T. Hirata: “An Advanced Algorithm for Estimating Axle Weights of In-motion Vehicles”. CD-Proc. of the 19th International Conference on Force, Mass & Torque, IMEKO TC3, 2005.
  • [7] K. Fukuda, K Yoshida, T. Kinugasa, K. Kanazawa, T. Ono: “A Dynamic Model for the Weighbridge of an Axle Weighing System for In-motion Vehicles with High Velocity”. CD-Proc. of APMF, 2007.
  • [8] W. G. LEE, J. W. Chung and K. P. Kim: “Development of Speed and Accuracy for Mass Measurements in Check Weighers and Conveyor Belt Scales”. Proc. of the Second International Symposium on Measurement of Force and Mass between Janan and China, 1994, pp. 23-28.
  • [9] K. Kameoka, et al.: “Signal processing for checkweigher”. Proc. of APMF’ 96, 1996, pp. 122-128.
  • [10] K. Kameoka, H. Sekiguchi: “The Effect of Vibrational Disturbance from a Foundation of a Checkweigher on Weight-checking Accuracy”. Trans. of the Japan Society for Precision Engineering, vol. 45, no. 2, 1979, pp. 174-179. (in Japanese)
  • [11] K. Kameoka, M. Nakatani, G. Komatsu, K. Naito: “Method of the Compensation for Base Vibrations in Mass Measurement - Theory and Its Verification”. Trans. of the Society of Instrument and Control Engineers, vol. 35, no. 5, 1999, pp. 616-622. (in Japanese)
  • [12] Y. Sasamoto, T. Umemoto, M. Adachi, Y. Kagawa: “Frequency Analysis Method using an Adaptive Algorithm with Application to Dynamic Mass Measurement”. CD-Proc. of APMF, 2007.
  • [13] T. Mizui, T. Umemoto, M. Kamon, Y. Kagawa: “Improvement of Accuracy for Continuous Mass Measurement in Cheakweighers with an Adaptive Notch Filter - The Possibility of the Measurement in Steady Time”. Proc. of APMF, 2009, pp. 185-191.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0065-0002
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