Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption

The article considers a cybernetic model for the price-dependent demand response (DR) consumed by an underground mining enterprise (UGME), in particular, the main fan unit (MFU). A scheme of the model for managing the energy consumption of a MFU in the DR mode and the implementation of the cyberneti...

Full description

Bibliographic Details
Main Authors: Aleksandr V. Nikolaev, Stefan Vöth, Aleksei V. Kychkin
Format: Article
Language:English
Published: Saint-Petersburg Mining University 2023-07-01
Series:Записки Горного института
Subjects:
Online Access:https://pmi.spmi.ru/pmi/article/view/14928?setLocale=en_US
_version_ 1797404420650041344
author Aleksandr V. Nikolaev
Stefan Vöth
Aleksei V. Kychkin
author_facet Aleksandr V. Nikolaev
Stefan Vöth
Aleksei V. Kychkin
author_sort Aleksandr V. Nikolaev
collection DOAJ
description The article considers a cybernetic model for the price-dependent demand response (DR) consumed by an underground mining enterprise (UGME), in particular, the main fan unit (MFU). A scheme of the model for managing the energy consumption of a MFU in the DR mode and the implementation of the cybernetic approach to the DR based on the IoT platform are proposed. The main functional requirements and the algorithm of the platform operation are described, the interaction of the platform with the UGME digital model simulator, on which the processes associated with the implementation of the technological process of ventilation and electricity demand response will be simulated in advance, is shown. The results of modeling the reduction in the load on the MFU of a mining enterprise for the day ahead are given. The presented solution makes it possible to determine in advance the necessary power consumption for the operation of the main power supply unit, manage its operation in an energy-saving mode and take into account the predicted changes in the planned one (e.g., when men hoisting along an air shaft) and unscheduled (e.g., when changing outdoor air parameters) modes. The results of the study can be used to reduce the cost of UGME without compromising the safety of technological processes, both through the implementation of energy-saving technical, technological or other measures, and with the participation of enterprises in the DR market. The proposed model ensures a guaranteed receipt of financial compensation for the UGME due to a reasonable change in the power consumption profile of the MFU during the hours of high demand for electricity, set by the system operator of the Unified Energy System.
first_indexed 2024-03-09T02:54:42Z
format Article
id doaj.art-087c552418014053925cd4eb99727851
institution Directory Open Access Journal
issn 2411-3336
2541-9404
language English
last_indexed 2024-03-09T02:54:42Z
publishDate 2023-07-01
publisher Saint-Petersburg Mining University
record_format Article
series Записки Горного института
spelling doaj.art-087c552418014053925cd4eb997278512023-12-05T07:31:11ZengSaint-Petersburg Mining UniversityЗаписки Горного института2411-33362541-94042023-07-0126140341410.31897/PMI.2022.3314928Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumptionAleksandr V. Nikolaev0https://orcid.org/0000-0002-4601-5780Stefan Vöth1https://orcid.org/0000-0002-0705-973XAleksei V. Kychkin2https://orcid.org/0000-0003-0626-5803Perm National Research Polytechnic UniversityGeorge Agricola Graduate School of Technical SciencesNational Research University Higher School of Economics, Branch in PermThe article considers a cybernetic model for the price-dependent demand response (DR) consumed by an underground mining enterprise (UGME), in particular, the main fan unit (MFU). A scheme of the model for managing the energy consumption of a MFU in the DR mode and the implementation of the cybernetic approach to the DR based on the IoT platform are proposed. The main functional requirements and the algorithm of the platform operation are described, the interaction of the platform with the UGME digital model simulator, on which the processes associated with the implementation of the technological process of ventilation and electricity demand response will be simulated in advance, is shown. The results of modeling the reduction in the load on the MFU of a mining enterprise for the day ahead are given. The presented solution makes it possible to determine in advance the necessary power consumption for the operation of the main power supply unit, manage its operation in an energy-saving mode and take into account the predicted changes in the planned one (e.g., when men hoisting along an air shaft) and unscheduled (e.g., when changing outdoor air parameters) modes. The results of the study can be used to reduce the cost of UGME without compromising the safety of technological processes, both through the implementation of energy-saving technical, technological or other measures, and with the participation of enterprises in the DR market. The proposed model ensures a guaranteed receipt of financial compensation for the UGME due to a reasonable change in the power consumption profile of the MFU during the hours of high demand for electricity, set by the system operator of the Unified Energy System.https://pmi.spmi.ru/pmi/article/view/14928?setLocale=en_USdemand responsecybernetic approachsystem architectureinternet of things platformunderground mining enterpriseshort-term load forecastingdigital twin
spellingShingle Aleksandr V. Nikolaev
Stefan Vöth
Aleksei V. Kychkin
Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
Записки Горного института
demand response
cybernetic approach
system architecture
internet of things platform
underground mining enterprise
short-term load forecasting
digital twin
title Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
title_full Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
title_fullStr Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
title_full_unstemmed Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
title_short Application of the cybernetic approach to price-dependent demand response for underground mining enterprise electricity consumption
title_sort application of the cybernetic approach to price dependent demand response for underground mining enterprise electricity consumption
topic demand response
cybernetic approach
system architecture
internet of things platform
underground mining enterprise
short-term load forecasting
digital twin
url https://pmi.spmi.ru/pmi/article/view/14928?setLocale=en_US
work_keys_str_mv AT aleksandrvnikolaev applicationofthecyberneticapproachtopricedependentdemandresponseforundergroundminingenterpriseelectricityconsumption
AT stefanvoth applicationofthecyberneticapproachtopricedependentdemandresponseforundergroundminingenterpriseelectricityconsumption
AT alekseivkychkin applicationofthecyberneticapproachtopricedependentdemandresponseforundergroundminingenterpriseelectricityconsumption