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Optimizing the Operation of a Double-Motor Asynchronous Frequency-Controlled Electric Drive of the Main Belt Conveyor in Startup Mode. / Kulikov, Anatoliy Petrovich; Kaverin, Vladimir; Zyuzev, Anatoliy.
In: International Journal on Energy Conversion, Vol. 11, No. 5, 2023, p. 170-182.

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Vancouver

Kulikov AP, Kaverin V, Zyuzev A. Optimizing the Operation of a Double-Motor Asynchronous Frequency-Controlled Electric Drive of the Main Belt Conveyor in Startup Mode. International Journal on Energy Conversion. 2023;11(5):170-182. doi: 10.15866/irecon.v11i5.24158

Author

Kulikov, Anatoliy Petrovich ; Kaverin, Vladimir ; Zyuzev, Anatoliy. / Optimizing the Operation of a Double-Motor Asynchronous Frequency-Controlled Electric Drive of the Main Belt Conveyor in Startup Mode. In: International Journal on Energy Conversion. 2023 ; Vol. 11, No. 5. pp. 170-182.

BibTeX

@article{87afe5ce541c412c98b6b809d0add7e8,
title = "Optimizing the Operation of a Double-Motor Asynchronous Frequency-Controlled Electric Drive of the Main Belt Conveyor in Startup Mode",
abstract = "The use of a double-motor asynchronous electric drive on belt conveyors in the mining industry has a number of problems associated with load distribution between motors, premature wear of the mechanical parts of the conveyor, as well as increased energy consumption. This article describes a simulation model of a double-motor frequency-controlled asynchronous electric drive of the main belt conveyor in the MATLAB/Simulink environment. The oscillograms of the resulting simulation model are compared with the oscillograms of the real object: the modeling error does not exceed 5%. The obtained accuracy is sufficient for studying the dynamic processes of a double-motor frequency-controlled asynchronous electric drive occurring in the startup mode of the conveyor. It is proposed to use an adaptive proportional-integral controller with a Smith predictor in the feedback circuit as an automatic controller of the electromagnetic torque of the engine. It changes its parameters depending on the load on the conveyor. Studies of the dynamic processes occurring in the belt conveyor in startup mode under various loads have been carried out. The results show that for different degrees of the conveyor load it is advisable to use different settings of the automatic controller. Experiments have confirmed that the use of an adaptive torque controller can reduce the energy consumption of the conveyor electric drive in startup mode and increase the service life of the conveyor mechanical parts.",
author = "Kulikov, {Anatoliy Petrovich} and Vladimir Kaverin and Anatoliy Zyuzev",
year = "2023",
doi = "10.15866/irecon.v11i5.24158",
language = "English",
volume = "11",
pages = "170--182",
journal = "International Journal on Energy Conversion",
issn = "2281-5295",
publisher = "Praise Worthy Prize",
number = "5",

}

RIS

TY - JOUR

T1 - Optimizing the Operation of a Double-Motor Asynchronous Frequency-Controlled Electric Drive of the Main Belt Conveyor in Startup Mode

AU - Kulikov, Anatoliy Petrovich

AU - Kaverin, Vladimir

AU - Zyuzev, Anatoliy

PY - 2023

Y1 - 2023

N2 - The use of a double-motor asynchronous electric drive on belt conveyors in the mining industry has a number of problems associated with load distribution between motors, premature wear of the mechanical parts of the conveyor, as well as increased energy consumption. This article describes a simulation model of a double-motor frequency-controlled asynchronous electric drive of the main belt conveyor in the MATLAB/Simulink environment. The oscillograms of the resulting simulation model are compared with the oscillograms of the real object: the modeling error does not exceed 5%. The obtained accuracy is sufficient for studying the dynamic processes of a double-motor frequency-controlled asynchronous electric drive occurring in the startup mode of the conveyor. It is proposed to use an adaptive proportional-integral controller with a Smith predictor in the feedback circuit as an automatic controller of the electromagnetic torque of the engine. It changes its parameters depending on the load on the conveyor. Studies of the dynamic processes occurring in the belt conveyor in startup mode under various loads have been carried out. The results show that for different degrees of the conveyor load it is advisable to use different settings of the automatic controller. Experiments have confirmed that the use of an adaptive torque controller can reduce the energy consumption of the conveyor electric drive in startup mode and increase the service life of the conveyor mechanical parts.

AB - The use of a double-motor asynchronous electric drive on belt conveyors in the mining industry has a number of problems associated with load distribution between motors, premature wear of the mechanical parts of the conveyor, as well as increased energy consumption. This article describes a simulation model of a double-motor frequency-controlled asynchronous electric drive of the main belt conveyor in the MATLAB/Simulink environment. The oscillograms of the resulting simulation model are compared with the oscillograms of the real object: the modeling error does not exceed 5%. The obtained accuracy is sufficient for studying the dynamic processes of a double-motor frequency-controlled asynchronous electric drive occurring in the startup mode of the conveyor. It is proposed to use an adaptive proportional-integral controller with a Smith predictor in the feedback circuit as an automatic controller of the electromagnetic torque of the engine. It changes its parameters depending on the load on the conveyor. Studies of the dynamic processes occurring in the belt conveyor in startup mode under various loads have been carried out. The results show that for different degrees of the conveyor load it is advisable to use different settings of the automatic controller. Experiments have confirmed that the use of an adaptive torque controller can reduce the energy consumption of the conveyor electric drive in startup mode and increase the service life of the conveyor mechanical parts.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85184430457

U2 - 10.15866/irecon.v11i5.24158

DO - 10.15866/irecon.v11i5.24158

M3 - Article

VL - 11

SP - 170

EP - 182

JO - International Journal on Energy Conversion

JF - International Journal on Energy Conversion

SN - 2281-5295

IS - 5

ER -

ID: 52959214