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Open-circuit-voltage characterization system design for studies of phase-transition mechanism and deterioration in Mn-type Li-ion batteries

机译:用于研究锰型锂离子电池相变机理和劣化的开路电压表征系统设计

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The study of battery behaviors has become a necessity in order to design efficient battery management systems for large-scale energy storage applications. This paper developed an open-circuit-voltage (OCV) characterization system implemented with sequential-control algorithms to study the OCV characteristics in Mn-type Li-ion batteries and their electrode properties regarding the phase-transition mechanisms. Differential voltage (DV) and incremental capacity (IC) techniques are applied for analyzing the phase-transition behaviors. Based on the changes of DV and IC characteristics for the OCV, the phase-transitions are discussed and evaluated to understand electrochemical changes and deterioration mechanisms in the batteries during cycling operations.
机译:为了设计用于大规模能量存储应用的有效电池管理系统,对电池行为的研究已经成为必需。本文开发了一种采用顺序控制算法实现的开路电压(OCV)表征系统,以研究Mn型锂离子电池的OCV特性及其电极的相变机理。差分电压(DV)和增量容量(IC)技术用于分析相变行为。基于OCV的DV和IC特性的变化,讨论并评估了相变,以了解循环操作过程中电池的电化学变化和劣化机理。

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