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Semi-empirical cyclic aging model for stationary storages based on graphite  anode aging mechanisms - ScienceDirect
Semi-empirical cyclic aging model for stationary storages based on graphite anode aging mechanisms - ScienceDirect

Lithium ion battery degradation: what you need to know - Physical Chemistry  Chemical Physics (RSC Publishing) DOI:10.1039/D1CP00359C
Lithium ion battery degradation: what you need to know - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/D1CP00359C

Energies | Free Full-Text | Critical Comparison of Li-Ion Aging Models for  Second Life Battery Applications
Energies | Free Full-Text | Critical Comparison of Li-Ion Aging Models for Second Life Battery Applications

An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium  Ion Batteries
An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium Ion Batteries

Applied Sciences | Free Full-Text | Comparison of Lead-Acid and Li-Ion  Batteries Lifetime Prediction Models in Stand-Alone Photovoltaic Systems
Applied Sciences | Free Full-Text | Comparison of Lead-Acid and Li-Ion Batteries Lifetime Prediction Models in Stand-Alone Photovoltaic Systems

An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium  Ion Batteries
An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium Ion Batteries

A framework for charging strategy optimization using a physics-based battery  model | SpringerLink
A framework for charging strategy optimization using a physics-based battery model | SpringerLink

Model Based Optimal Control, Estimation, and Validation of Lithium-Ion  Batteries by Hector Eduardo Perez A dissertation submitte
Model Based Optimal Control, Estimation, and Validation of Lithium-Ion Batteries by Hector Eduardo Perez A dissertation submitte

Dr.-Ing. Eric Prada on LinkedIn: EIS : Electrochemical Impedance  Spectroscopy
Dr.-Ing. Eric Prada on LinkedIn: EIS : Electrochemical Impedance Spectroscopy

An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium  Ion Batteries
An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium Ion Batteries

Electronics | Free Full-Text | Electrothermal Aging Model of Li-Ion  Batteries for Vehicle-to-Grid Services Evaluation
Electronics | Free Full-Text | Electrothermal Aging Model of Li-Ion Batteries for Vehicle-to-Grid Services Evaluation

Enhanced optimization algorithm for the structural design of an  airв•'cooled battery pack considering battery lifespan and
Enhanced optimization algorithm for the structural design of an airв•'cooled battery pack considering battery lifespan and

Charging Strategies to Minimize Greenhouse Gas Emissions of Electrified  Delivery Vehicles | Environmental Science & Technology
Charging Strategies to Minimize Greenhouse Gas Emissions of Electrified Delivery Vehicles | Environmental Science & Technology

A simplified electrochemical model for modelling Li-ion batteries  comprising blend and bidispersed electrodes for high power applications -  ScienceDirect
A simplified electrochemical model for modelling Li-ion batteries comprising blend and bidispersed electrodes for high power applications - ScienceDirect

An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium  Ion Batteries
An Empirical Rate Constant Based Model to Study Capacity Fading in Lithium Ion Batteries

Charging Strategies to Minimize Greenhouse Gas Emissions of Electrified  Delivery Vehicles | Environmental Science & Technology
Charging Strategies to Minimize Greenhouse Gas Emissions of Electrified Delivery Vehicles | Environmental Science & Technology

Batteries | Free Full-Text | Modelling Lithium-Ion Battery Ageing in  Electric Vehicle Applications—Calendar and Cycling Ageing Combination  Effects
Batteries | Free Full-Text | Modelling Lithium-Ion Battery Ageing in Electric Vehicle Applications—Calendar and Cycling Ageing Combination Effects

PDF) Review of “grey box” lifetime modeling for lithium-ion battery:  Combining physics and data-driven methods
PDF) Review of “grey box” lifetime modeling for lithium-ion battery: Combining physics and data-driven methods

Electronics | Free Full-Text | A Multiphysics System-to-Cell Framework to  Assess the Impact of Operating Conditions of Standalone PV Systems on  Lithium-Ion Battery Lifetime
Electronics | Free Full-Text | A Multiphysics System-to-Cell Framework to Assess the Impact of Operating Conditions of Standalone PV Systems on Lithium-Ion Battery Lifetime

A novel lifetime prediction method for lithium-ion batteries in the case of  stand-alone renewable energy systems - ScienceDirect
A novel lifetime prediction method for lithium-ion batteries in the case of stand-alone renewable energy systems - ScienceDirect

Lithium plating detection methods based on aging behaviours. a)... |  Download Scientific Diagram
Lithium plating detection methods based on aging behaviours. a)... | Download Scientific Diagram

PDF) A Comprehensive Study on Influence of Battery Thermal Behavior on  Degradation and Consistency
PDF) A Comprehensive Study on Influence of Battery Thermal Behavior on Degradation and Consistency

A Robust and Sleek Electrochemical Battery Model Implementation: A MATLAB®  Framework
A Robust and Sleek Electrochemical Battery Model Implementation: A MATLAB® Framework

PDF) Modeling of Ageing of Lithium- Ion Battery at Low Tempera- tures | Bo  Dong - Academia.edu
PDF) Modeling of Ageing of Lithium- Ion Battery at Low Tempera- tures | Bo Dong - Academia.edu