Lithium-ion battery electrode-level online state estimation using high-fidelity nonlinear electrochemical models remains a key challenge. This is particularly due to weak observability inherited from the complex model structure, even for reduced-order electrochemical models. This manuscript presents a systematic and rigorous strategy to analyze the local observability of a single particle model (SPM) with both electrodes, which is commonly known to be locally unobservable from current-voltage measurements. Estimating the essential states, e.g. state of charge (SOC) and solid-phase lithium surface concentration, is crucial for battery charge and health monitoring since different degradation mechanisms affect each electrode individually. In t...
This brief investigates the observability of one of the most commonly used equivalent circuit models...
This paper considers the estimation of the state of charge and state of health for lithium-ion batte...
Lithium ion (Li-ion) is the current leading battery technology. Because of their complex behavior, L...
International audienceThis paper studies a state estimation scheme for a reduced electrochemical bat...
This paper studies a state estimation scheme for a reduced electrochemical battery model, using volt...
This thesis investigates novel algorithms for enabling the use of first-principle electrochemical mo...
This article proposes a novel model-based estimator for distributed electrochemical states of lithiu...
This paper proposes the real-time Kalman filter based observer for Lithium-ion concentration estimat...
Real-time electrochemical state information of lithium-ion batteries attributes to a high-fidelity e...
We present a method to estimate the state of charge (SOC) of lithium ion batteries using an extended...
This paper investigates the state estimation of a high-fidelity spatially resolved thermal-electroch...
In this article, a computationally efficient state estimation method for lithium-ion (Li-ion) batter...
In this paper, an improved equivalent circuit model (ECM) considering partial electrochemical proper...
State of charge (SOC) estimation is of great significance for the safe operation of lithium-ion batt...
Lithium-ion (Li-ion) batteries have emerged as one of the most prominent energy storage devices for ...
This brief investigates the observability of one of the most commonly used equivalent circuit models...
This paper considers the estimation of the state of charge and state of health for lithium-ion batte...
Lithium ion (Li-ion) is the current leading battery technology. Because of their complex behavior, L...
International audienceThis paper studies a state estimation scheme for a reduced electrochemical bat...
This paper studies a state estimation scheme for a reduced electrochemical battery model, using volt...
This thesis investigates novel algorithms for enabling the use of first-principle electrochemical mo...
This article proposes a novel model-based estimator for distributed electrochemical states of lithiu...
This paper proposes the real-time Kalman filter based observer for Lithium-ion concentration estimat...
Real-time electrochemical state information of lithium-ion batteries attributes to a high-fidelity e...
We present a method to estimate the state of charge (SOC) of lithium ion batteries using an extended...
This paper investigates the state estimation of a high-fidelity spatially resolved thermal-electroch...
In this article, a computationally efficient state estimation method for lithium-ion (Li-ion) batter...
In this paper, an improved equivalent circuit model (ECM) considering partial electrochemical proper...
State of charge (SOC) estimation is of great significance for the safe operation of lithium-ion batt...
Lithium-ion (Li-ion) batteries have emerged as one of the most prominent energy storage devices for ...
This brief investigates the observability of one of the most commonly used equivalent circuit models...
This paper considers the estimation of the state of charge and state of health for lithium-ion batte...
Lithium ion (Li-ion) is the current leading battery technology. Because of their complex behavior, L...