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The Study of Fuzzy Variable Frequency Control System for Constant Pressure

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Cyber Security Intelligence and Analytics (CSIA 2021)

Part of the book series: Advances in Intelligent Systems and Computing ((AISC,volume 1342))

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Abstract

The function of emulsion pump station is to provide emulsion for all kinds of jacks and hydraulic cylinders. It is an important coal mine equipment. In view of the complex structure and poor applicability of the control system of the traditional emulsion pump station, a fuzzy control method combining PLC and frequency converter is proposed. The inverter control system based on PLC is established. The variable frequency control technology is introduced into the control system of emulsion pump station, and the fuzzy controller is designed. The constant pressure control of emulsion pump station is realized by PLC frequency conversion speed control. The experimental results show that the fuzzy variable frequency constant voltage control system can overcome the shortcomings of conventional control. Compared with the traditional control method, it has the advantages of fast response, low energy consumption, strong safety and reliability, and obvious advantages. It is feasible and effective in practical application, and its control effect is better.

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Acknowledgments

The research leading to these results has received the financial support of 2020 Special Foundation Project of Fundamental Scientific Research Professional Expenses for Undergraduate Universities in Heilongjiang Province. The name of the project is “Study on optimization of variable frequency and constant pressure control system for mine emulsion pump station”.

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Correspondence to Cong Tian .

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Tian, C., Su, C., Zhao, W. (2021). The Study of Fuzzy Variable Frequency Control System for Constant Pressure. In: Xu, Z., Parizi, R.M., Loyola-González, O., Zhang, X. (eds) Cyber Security Intelligence and Analytics. CSIA 2021. Advances in Intelligent Systems and Computing, vol 1342. Springer, Cham. https://doi.org/10.1007/978-3-030-70042-3_44

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