Capacity loss modeling is required for accurate and reliable lifetime evaluation of lithium-ion batteries. The current capacity loss model parameters cannot be identified online. To address this problem, this paper has developed a capacity loss model based on the aging mechanisms of solid electrolyte interface layer growth and active material loss. Experimental results show that capacity loss due to solid electrolyte interface growth is independent of state of charge ranges during cycling, whereas capacity loss due to active material loss depends on the state of charge ranges. A comprehensive aging model is thus developed, combined with the recursive least squares method to identify the model parameters in realtime. In our case studies, the...
Ageing mechanisms of graphite/NMC Li-ion batteries have been studied using computational methods. Th...
The contribution introduces a new theory explaining the capacity increase that is often observed in ...
Deterioration analysis of aged lithium-ion cells is becoming increasingly important as demand for lo...
The aging mechanisms of Li-ion batteries are introduced in this chapter, and are experimentally inve...
In order to develop long-lifespan batteries, it is of utmost importance to identify the relevant agi...
We simulate a simple model of aging in a lithium-ion cell that accounts for growth of a passivation ...
This data is from a comprehensive cycle aging study on a lithium-ion battery with a test duration of...
We present an electrochemical model of a lithium iron phosphate/graphite (LFP/C6) cell that includes...
In applications such as electrical transportation, most of the battery life is spent under storage. ...
Significant research efforts are being made to understand, and ultimately mitigate, thedegradation o...
In this publication two strategies are introduced to assess irreversible capacity loss during shallo...
This work summarizes the findings resulting from applying an aging modeling approach to four differe...
Accurately predicting aging of lithium-ion batteries would help to prolong their lifespan, but remai...
Capacity loss of a commercial graphite/LiFePO4 cell during either open-circuit-potential storage or ...
Lithium-ion batteries are ubiquitous in modern society. The high power and energy density of lithiu...
Ageing mechanisms of graphite/NMC Li-ion batteries have been studied using computational methods. Th...
The contribution introduces a new theory explaining the capacity increase that is often observed in ...
Deterioration analysis of aged lithium-ion cells is becoming increasingly important as demand for lo...
The aging mechanisms of Li-ion batteries are introduced in this chapter, and are experimentally inve...
In order to develop long-lifespan batteries, it is of utmost importance to identify the relevant agi...
We simulate a simple model of aging in a lithium-ion cell that accounts for growth of a passivation ...
This data is from a comprehensive cycle aging study on a lithium-ion battery with a test duration of...
We present an electrochemical model of a lithium iron phosphate/graphite (LFP/C6) cell that includes...
In applications such as electrical transportation, most of the battery life is spent under storage. ...
Significant research efforts are being made to understand, and ultimately mitigate, thedegradation o...
In this publication two strategies are introduced to assess irreversible capacity loss during shallo...
This work summarizes the findings resulting from applying an aging modeling approach to four differe...
Accurately predicting aging of lithium-ion batteries would help to prolong their lifespan, but remai...
Capacity loss of a commercial graphite/LiFePO4 cell during either open-circuit-potential storage or ...
Lithium-ion batteries are ubiquitous in modern society. The high power and energy density of lithiu...
Ageing mechanisms of graphite/NMC Li-ion batteries have been studied using computational methods. Th...
The contribution introduces a new theory explaining the capacity increase that is often observed in ...
Deterioration analysis of aged lithium-ion cells is becoming increasingly important as demand for lo...