Szczegóły publikacji

Opis bibliograficzny

Analysis of selecting an active mechanical energy storage system for household power supply / Jarosław Markowski, Grzegorz Slaski, Daria Złotecka, Iliya Iliev, Krzysztof Jesionek, Magdalena DUDEK // W: CIEES 2024 [Dokument elektroniczny] : 5th International Conference on Communications, Information, Electronic and Energy Systems : November 20-22, 2024, Veliko Tarnovo, Bulgaria: conference proceedings. — Wersja do Windows. — Dane tekstowe. — [Danvers] : Institute of the Electrical and Electronics Engineers, cop. 2024. — Dod. ISBN: 979-8-3503-5285-6 (USB), 979-8-3503-5287-0 (print on demand). — e-ISBN: 979-8-3503-5286-3. — S. [1–4]. — Wymagania systemowe: Adobe Reader. — Bibliogr. s. [4], Abstr.

Autorzy (6)

  • Markowski Jarosław
  • Slaski Grzegorz
  • Złotecka Daria
  • Iliev Iliya
  • Jesionek Krzysztof
  • AGHDudek Magdalena

Słowa kluczowe

kinetic storagephotovoltaic installationbattery

Dane bibliometryczne

ID BaDAP157728
Data dodania do BaDAP2025-02-18
Tekst źródłowyURL
DOI10.1109/CIEES62939.2024.10811316
Rok publikacji2024
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
WydawcaInstitute of Electrical and Electronics Engineers (IEEE)

Abstract

Energy storage, regardless of its form, always involves some degree of loss. Therefore, it is most beneficial to generate only as much energy as is required to meet demand. Such a situation in energy systems is very rare and typically lasts for a very short period of time. These are usually transitional states. As a result, the use of energy storage systems is necessary. The issue of grid destabilization becomes particularly important with the use of renewable energy sourced from micro photovoltaic installations and small-scale wind turbines. The high variability in the amount of energy produced often necessitates the automatic disconnection of the installation from the power grid, which results in a reduction in the amount of energy generated. Therefore, energy storage systems are essential to improve the cooperation of micro-installations with the grid. Currently, there are many energy storage solutions available on the market for this purpose, but chemical storage systems such as lithium-ion batteries are most commonly used. These are relatively expensive solutions considering their operational lifespan. Mechanical storage systems offer greater durability; however, their performance characteristics are closely tied to their geometric dimensions. In this context, this article analyzes the operational requirements of an energy system within a household environment and evaluates the size of the necessary mechanical energy storage system.

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