Lithium-Ion Battery Storage for the Grid—A Review of Stationary Battery Storage System Design Tailored for Applications in Modern Power Grids

Накопители энергии на основе литий-ионных аккумуляторов для энергосистемы — обзор проектирования стационарных аккумуляторных систем хранения, адаптированных к применению в современных электрических сетях
Andreas Jossen, Holger C. Hesse, Michael Schimpe, Daniel Kucevic
2017-12-11

battery system designgrid support applicationslithium-ion battery storagestationary battery storage systemssystem sizing and dispatch
Battery energy storage systems have gained increasing interest for serving grid support in various application tasks. In particular, systems based on lithium-ion batteries have evolved rapidly with a wide range of cell technologies and system architectures available on the market. On the application side, different tasks for storage deployment demand distinct properties of the storage system. This review aims to serve as a guideline for best choice of battery technology, system design and operation for lithium-ion based storage systems to match a specific system application. Starting with an overview to lithium-ion battery technologies and their characteristics with respect to performance and aging, the storage system design is analyzed in detail based on an evaluation of real-world projects. Typical storage system applications are grouped and classified with respect to the challenges posed to the battery system. Publicly available modeling tools for technical and economic analysis are presented. A brief analysis of optimization approaches aims to point out challenges and potential solution techniques for system sizing, positioning and dispatch operation. For all areas reviewed herein, expected improvements and possible future developments are highlighted. In order to extract the full potential of stationary battery storage systems and to enable increased profitability of systems, future research should aim to a holistic system level approach combining not only performance tuning on a battery cell level and careful analysis of the application requirements, but also consider a proper selection of storage sub-components as well as an optimized system operation strategy.
1
Grid storage applications are classified by the specific challenges they impose on battery systems, supporting application-oriented technology and design choices.
2
Lithium-ion battery storage technologies and system architectures must be selected according to the distinct performance and operational requirements of each grid-support application.
3
Maximizing stationary battery storage potential and profitability requires holistic system-level optimization spanning cell performance, application requirements, component selection, and operating strategy.
4
Publicly available modeling tools and optimization approaches are surveyed for technical-economic analysis, system sizing, placement, and dispatch operation.
5
The review analyzes stationary storage system design using lithium-ion technology characteristics, aging behavior, and evidence from real-world projects.

stationary lithium-ion battery energy storage systems for modern power grids

the design, performance, aging, sizing, positioning, and dispatch operation of these systems tailored to grid-support applications

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2017-12-11
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Authors
Andreas Jossen
Holger C. Hesse
Michael Schimpe
Daniel Kucevic
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