Realization of a Temperature Based Automatic Controlled Domestic Electric Boiling System
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Realization of a Temperature Based Automatic Controlled Domestic Electric Boiling System

Authors: Shengqi Yu, Jinwei Zhao

Abstract:

This paper presents a kind of analog circuit based temperature control system, which is mainly composed by threshold control signal circuit, synchronization signal circuit and trigger pulse circuit. Firstly, the temperature feedback signal function is realized by temperature sensor TS503F3950E. Secondly, the main control circuit forms the cycle controlled pulse signal to control the thyristor switching model. Finally two reverse paralleled thyristors regulate the output power by their switching state. In the consequence, this is a modernized and energy-saving domestic electric heating system.

Keywords: Time base circuit, automatic control, zero-crossing trigger, temperature control.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1340114

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References:


[1] Xu Xianhai. ł(D). Nanjing: Southeast University, 2006.
[2] Yang, Q., Li, G. and Kang, X., 2008, July. Application of fuzzy PID control in the heating system. In 2008 Chinese Control and Decision Conference (pp. 2686-2690). IEEE.
[3] Wang Wei. DSPPID(D). Dalian Dalian Jiaotong University, 2009.
[4] Radakovic, Z. R., Milosevic, V. M. and Radakovic, S. B., 2002. Application of temperature fuzzy controller in an indirect resistance furnace. Applied Energy, 73(2), pp. 167-182.
[5] Wang Yalei. ŁDCS(D). Xi’an: Xi’an University of Science and Technology.
[6] Davis, J. W., Brinton, R. K. and Wiseman, R. W., 1974 Index IEEE Transactions on Industry Applications.
[7] Xu Kui. łŁŁ(D). Central South University, 2014.
[8] Bernard, J. I., 1939. The application of electric heating to domestic hot-water supply system. Electrical Engineers, Journal of the Institution of, 85(511), p. 1.
[9] Zhao shiming, Gao feng. ŁŁ(J). Water & Waste Water Engineering, 2009(02).
[10] Abdelwahed S., Abdolkhani A., Abdullah M. A., Abe S., Abe S., Abe T., Abedinpour S., Aboul-Zahab, E. M. and Aboushady, A. A., 2014. 2013 Combined Author Index IEEE Industry Applications Society Publications. IEEE Transactions on Industry Applications, 50(1), p. 643.
[11] Forsyth S. L., 1957. Electric heating in the home. Electrical Engineering, 76(2), pp. 118-123.
[12] Schiller P., 1951. Operational research in electricity distribution and utilization. A review of progress. Proceedings of the IEE-Part I: General, 98(112), pp.229-238.
[13] Grierson R. and Jackson F., 1948. The authors’ reply to the discussions on Engineering principles applied to the design of domestic water-heating installations of the solid-fuel/electric type. Electrical Engineers-Part II: Power Engineering, Journal of the Institution of, 95(44), pp. 201-204.