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REVIEW AND JUSTIFICATION OF THE ENERGY STORAGE DEVICES SELECTION FOR ELECTRIC POWER FACILITIES OPERATION
Author(s) -
Dmytro Zakharchenko,
Serhii Stepenko
Publication year - 2020
Publication title -
tehnìčnì nauki ta tehnologìï
Language(s) - English
Resource type - Journals
eISSN - 2519-4569
pISSN - 2411-5363
DOI - 10.25140/2411-5363-2020-4(22)-198-209
Subject(s) - electricity , energy storage , service (business) , computer science , reliability engineering , unit (ring theory) , electric power , electricity market , work (physics) , stand alone power system , environmental economics , risk analysis (engineering) , power (physics) , engineering , electrical engineering , renewable energy , distributed generation , business , mechanical engineering , physics , mathematics education , mathematics , quantum mechanics , marketing , economics
Urgency of the research.The study of electricity storage for the operation of power facilities, characteristics and their consideration when choosing the type of storage for the facility will optimize the system as a whole.Target setting.Scientific and technical development and the environmental situation make more stringent requirements for the power system.Actual scientific researches and issues analysis.The classification and main characteristics of existing energy storage devices, their main advantages and disadvantages are considered.Uninvestigated parts of general matters defining. ThereThe main problem with the use of new types of electricity storage is the lack of their widespread use in the market of electricity facilities.The research objective.The aim of the work is to develop a methodology for determining the optimal type and model of universal electricity storage and analysis of its advantages and disadvantages.The statement of basic materials. The analysis of existing types of electric energy storage devices and their characteristics is carried out. Methods are proposed that are based on a comparison of unit cost, volume capacity, environmental impact and service life. The main differences of each type of electricity storage, their advantages and disadvantages are analyzed.Conclusions.The proposed method is based on a comparison of unit cost, volume capacity, environmental impact and service life. The main differences of each type of electricity storage, their advantages and disadvantages are analyzed. Using the proposed technique, the optimal choice of electricity storage for power facilities is made.

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