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Binary valves in analog control

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EN
Abstrakty
EN
Continuous control systems are built with standard transducer measured signal, the controller and actuator. The actuator is responsible for the direct setting of the size of the control object. The actuator is connected to the control valve and the actuator position change signal into the flow rate of the working medium. Since the operating element is required the linear characteristics in the standard signal range to work. The other hand, the control valve provides flow characteristics linear or equal percentage. This flow control principle is used in various control systems. The actuator of the control valve is always equipped with a positioner, which corrects errors in the position of the valve relative to the input signal. The presented design of the control valve is an analogue system. Using the technique of converting multiple digital signal causes, the system is susceptible to damage. Remove the intermediate elements can improve the quality control and safety system. Such benefits give a design of the operating element based on direct digital processing unit and control program. The examples of control present article.
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Twórcy
  • Gdynia Maritime University Faculty of Marine Engineering Morska Street 81-87, 81-225 Gdynia, Poland tel.: +48 58 5586435, fax: +48 58 5586399
Bibliografia
  • [1] Besançon-Voda, A., Iterative auto-calibration of digital controllers: Methodology and applications, Control Engineering Practice, vol. 6, no. 3, pp. 345-358, 1998.
  • [2] Erickson, K. T., Programmable Logic Controllers, An Emphasis on Design and Application, Second Edition, Dogwood Valley Press LLC, 2011.
  • [3] Ginter, V. J, Pieper, J. K., Robust gain scheduled control of a hydrokinetic turbine, IEEE Transactions on Control Systems Technology, Vol. 19, No. 4, pp. 805-817, 2011.
  • [4] Jin, Q. B., Liu, Q., IMC-PID design based on model matching approach and closed-loop shaping, ISA Transactions, Vol. 53, No. 2, pp. 462-473, 2014.
  • [5] Lisowski, E., Filo, G., Rajda, J., Pressure compensation using flow forces in a multi-section proportional directional control valve, Energy Conversion and Management, Vol. 103, pp. 1052-1064, 2015.
  • [6] Ogata, K., Modern Control Engineering, 4th edition, Prentice Hall, 2002.
  • [7] Ogata, K., Discrete-Time Control Systems, Prentice Hall Inc., Englewood Cliffs, NJ 1995.
  • [8] Precup, R.-E., Preitl, S., Radac, M.-B., Petriu, E. M., Dragos, C.-A., Tar, J. K., Experiment--based teaching in advanced control engineering, IEEE Transactions on Education, Vol. 54, Vo. 3, pp. 345-355, 2011.
  • [9] Shah, A. K., Patel, H. R., Implementation and analysis of different discrete PI controller algorithms on single board heater system. Journal of Electrical Engineering Vol. 15, No. 1, pp. 262-266, 2015.
  • [10] Tubbs, S. P., Programmable Logic Controller (Plc) Tutorial, Stephen Philip Tubbs 2005.
  • [11] Zeng Y., Wang, D., Zi, B., Zeng, Q., Dynamic characteristics of priority control system forhigh-speed on–off digital valve, Advances in Mechanical Engineering, 2015.
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PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
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Bibliografia
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