Scientific and economic journal

«Problems of economics and management of oil and gas complex»

ISSN 1999-6942

Problems of economics and management of oil and gas complex
Conceptual foundations of complex integrated optimization of volatility of energy load schedules in the Russian energy system

UDC: 338.984+622.691
DOI: -

Authors:

DZYUBA ANATOLY P.1

1 South Ural State University (National Research University), Chelyabinsk, Russia

Keywords: integrated management of demanded volumes, volatility of electricity consumption, volatility of natural gas consumption, energy efficiency improvement, conceptual model, system of principles of integrated management, electric power industry, gas industry

Annotation:

The article is devoted to the development of a conceptual model of integrated optimization of the volatility of energy load schedules in the Russian energy system. Based on the study of the composition of factors limiting the development of integrated optimization of volatility of energy load schedules in the power system in Russia, the revealed economic and technological structure of the Russian energy system in relation to the specifics of integrated optimization of volatility of energy load schedules, the identified relationships between the electric power and gas industries of Russia, the author of the article has developed a system of requirements to the model of integrated optimization of the volatility of the volumes of the request for natural gas and electric energy consumption in Russia. Based on the revealed features and the system of requirements, a conceptual model of integrated volatility optimization of energy load schedules in the Russian power system has been developed, the distinctive features of which are an integrated approach to optimizing volatility by demand volumes, accounting for the differentiation of the parameters of the request volumes for gas and electric energy in the context of regions and energy districts of Russia, accounting for the factors of the internal and external environment affecting the processes of energy consumption, dynamics and flexibility of implemented tools and methods for integrated optimization of energy load graphs volatility. The article presents the developed system of principles of integrated volatility optimization of energy load schedules for natural gas and electric energy, and allows, within the framework of the developed conceptual model, to take into account all the requirements and limitations to the integrated volatility optimization model by demanded volumes, to perform the most effective development of mechanisms and a set of methods for integrated volatility optimization of energy load schedules in the scale of the Russian energy system.

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