State of charge (SoC) estimation is a fundamental challenge in designing battery management systems. An adaptive SoC estimator, named as the AdaptSoC, is developed in this paper. It is able to estimate the SoC when the model parameters are unknown, through joint SoC and parameter estimation. Design of the AdaptSoC builds up on (1) a reduced complexity battery model that is developed from the well known single particle model (SPM) and, (2) joint local observability/identifiability analysis of the SoC and the unknown model parameters. Shown to be strongly observable, the SoC is estimated jointly with the parameters by the AdaptSoC using the iterated extended Kalman filter (IEKF). Simulation and experimental results exhibit the effectiveness o...
We propose a method to estimate the state of charge (SoC) and the equivalent circuit param-eters for...
Abstract—Estimation of the State of Charge (SOC) is a fundamental need for the battery, which is the...
We present a method to estimate the state of charge (SOC) of lithium ion batteries using an extended...
Monitoring the state-of-charge (SoC) for batteries is challenging, especially when a battery has tim...
Abstract This study presents a data‐driven approach in conjunction with an adaptive extended Kalman ...
A state of charge (SOC) estimation method is proposed. An Adaptive Extended Kalman Particle filter (...
This article presents a set of algorithms for the estimation of state of charge, specifically deploy...
State of charge (SOC) estimation is essential to battery management systems in electric vehicles (EV...
In this brief, an adaptive state of charge (SOC) estimation strategy is proposed for lithium-ion bat...
This paper focuses on state of charge (SOC) estimation for the battery packs of electric vehicles (E...
In this paper, we introduce an adaptive state of charge (SOC) estimator for batteries. The adaptive ...
The main goal of a battery management system (BMS) is to estimate parameters descriptive of the batt...
Accurate state of charge (SOC) estimation is essential for the whole-life-cycle safety guarantee and...
Abstract Lithium‐ion batteries (LIBs) are widely used in electric vehicles because of their high ene...
Accurate estimation of the state of charge in battery systems is of essential importance for battery...
We propose a method to estimate the state of charge (SoC) and the equivalent circuit param-eters for...
Abstract—Estimation of the State of Charge (SOC) is a fundamental need for the battery, which is the...
We present a method to estimate the state of charge (SOC) of lithium ion batteries using an extended...
Monitoring the state-of-charge (SoC) for batteries is challenging, especially when a battery has tim...
Abstract This study presents a data‐driven approach in conjunction with an adaptive extended Kalman ...
A state of charge (SOC) estimation method is proposed. An Adaptive Extended Kalman Particle filter (...
This article presents a set of algorithms for the estimation of state of charge, specifically deploy...
State of charge (SOC) estimation is essential to battery management systems in electric vehicles (EV...
In this brief, an adaptive state of charge (SOC) estimation strategy is proposed for lithium-ion bat...
This paper focuses on state of charge (SOC) estimation for the battery packs of electric vehicles (E...
In this paper, we introduce an adaptive state of charge (SOC) estimator for batteries. The adaptive ...
The main goal of a battery management system (BMS) is to estimate parameters descriptive of the batt...
Accurate state of charge (SOC) estimation is essential for the whole-life-cycle safety guarantee and...
Abstract Lithium‐ion batteries (LIBs) are widely used in electric vehicles because of their high ene...
Accurate estimation of the state of charge in battery systems is of essential importance for battery...
We propose a method to estimate the state of charge (SoC) and the equivalent circuit param-eters for...
Abstract—Estimation of the State of Charge (SOC) is a fundamental need for the battery, which is the...
We present a method to estimate the state of charge (SOC) of lithium ion batteries using an extended...