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Design of intrinsically safe power supply

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Journal of Coal Science and Engineering (China)

Abstract

Aiming to make a high power direct current supply safely used in coal mine production, this paper made a deep research on characteristics of intrinsically safe power supply, using the mathematical model established according to coal mine intrinsic safety standards. It provides theory support for the application of high power intrinsically safe power supply. The released energy of output short circuit of switch power supply, and the close related factors that influence the biggest output short-circuit spark discharge energy are the theoretical basis of the power supply. It is shown how to make a high power intrinsically safe power supply using the calculated values in the mathematical model, and take values from intrinsically safe requirements parameters scope, then this theoretical calculation value can be developed as the ultimate basis for research of the power supply. It gets the identification method of intrinsically safe from mathematics model of intrinsically safe power supply characteristics study, which solves the problem of theory and application of designing different power intrinsically safe power supply, and designs a kind of high power intrinsically safe power supply through this method.

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References

  • Chui B C, Wang C, Cheng H, 2006. Intrinsically safe power theories. Power World, (12): 1–4.

    Google Scholar 

  • Clough Q B C, 1981. Safety spark circuit. Beijing: China Coal Industry Publishing House.

    Google Scholar 

  • Liang H Y, 2008. Intrinsically safe single-ended flyback converter analysis and design. Master’s Thesis, Xi’an University of Technology.

  • Liu S L, Liu J, 2008a. Intrinsically safe boost non-explosive nature of the converter internal security criterion. Journal of China Coal Society, 33(6): 707–712.

    Google Scholar 

  • Liu S L, Liu J, 2008b. Intrinsically safe switching converter. Beijing: Science Press.

    Google Scholar 

  • Liu S L, Liu J, Zhong J M, 2008. Intrinsically safe output buck-boost DC-DC Converter analysis and design. Chinese Journal of Electrical Engineering, (3): 60–65.

  • Ma H T, Sha Z Y, 2010. Switching power supply making and debugging. Beijing: China Electric Power Press.

    Google Scholar 

  • Meng Q H, Mou L H, He X Q, 2001. Intrinsically safe inductive circuit to determine the characteristic parameters of the dynamic volt-ampere. Journal of China University of Mining and Technology, 30(3): 265–267.

    Google Scholar 

  • Meng Q H, Mou L H, Wang C L, Ding Y J, 2004. Intrinsically safe circuits of power discriminant. Journal of China University of Mining and Technology, 33(3): 292–294.

    Google Scholar 

  • Sha Z Y, 2009. Switching, power supply design optimization. Beijing: China Electric Power Press.

    Google Scholar 

  • Wang X G, Xiao H R, 2005. The use of high-speed MOSFET switch closure. Mining Automation, (1): 28–30.

  • Xie X C, Wang C, 1998. Intrinsically safe power capacity increased discussion of the method. Explosive Environment Electrical Explosion-proof Technology, (2): 17–18.

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Correspondence to Rui-jin Li.

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Li, Rj., Jin, L. Design of intrinsically safe power supply. J Coal Sci Eng China 18, 443–448 (2012). https://doi.org/10.1007/s12404-012-0420-5

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  • DOI: https://doi.org/10.1007/s12404-012-0420-5

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