In this paper, a stochastic model predictive control (MPC) method based on reinforcement learning is proposed for energy management of plug-in hybrid electric vehicles (PHEVs). Firstly, the power transfer of each component in a power-split PHEV is described in detail. Then an effective and convergent reinforcement learning controller is trained by the Q-learning algorithm according to the driving power distribution under multiple driving cycles. By constructing a multi-step Markov velocity prediction model, the reinforcement learning controller is embedded into the stochastic MPC controller to determine the optimal battery power in predicted time domain. Numerical simulation results verify that the proposed method achieves superior fuel eco...
<div><p>To further improve the fuel economy of series hybrid electric tracked vehicles, a reinforcem...
This paper illustrates the use of stochastic model predictive control (SMPC) for power management in...
This paper proposes a demand response method to reduce the long-term charging cost of single plug-in...
In this paper, a stochastic model predictive control (MPC) method based on reinforcement learning is...
This paper proposes an energy management strategy for a power-split plug-in hybrid electric vehicle ...
For global optimal control strategy, it is not only necessary to know the driving cycle in advance b...
This paper develops an approach for driver-aware vehicle control based on stochastic model predictiv...
The multi-source electromechanical coupling renders energy management of plug-in hybrid electric veh...
Splitting power is a tricky problem for series plug-in hybrid electric vehicles (SPHEVs) for the mul...
From the perspective of energy management, the demand power of a hybrid electric vehicle driving und...
This paper presents a predictive energy management strategy for a parallel hybrid electric vehicle (...
The need for frequent charging is perceived as a common inconvenience related to all-electric vehicl...
The need for frequent charging is perceived as a common inconvenience related to all-electric vehicl...
This paper deals with the design of an on-board control strategy for Electric Vehicle recharging und...
To further improve the fuel economy of series hybrid electric tracked vehicles, a reinforcement lear...
<div><p>To further improve the fuel economy of series hybrid electric tracked vehicles, a reinforcem...
This paper illustrates the use of stochastic model predictive control (SMPC) for power management in...
This paper proposes a demand response method to reduce the long-term charging cost of single plug-in...
In this paper, a stochastic model predictive control (MPC) method based on reinforcement learning is...
This paper proposes an energy management strategy for a power-split plug-in hybrid electric vehicle ...
For global optimal control strategy, it is not only necessary to know the driving cycle in advance b...
This paper develops an approach for driver-aware vehicle control based on stochastic model predictiv...
The multi-source electromechanical coupling renders energy management of plug-in hybrid electric veh...
Splitting power is a tricky problem for series plug-in hybrid electric vehicles (SPHEVs) for the mul...
From the perspective of energy management, the demand power of a hybrid electric vehicle driving und...
This paper presents a predictive energy management strategy for a parallel hybrid electric vehicle (...
The need for frequent charging is perceived as a common inconvenience related to all-electric vehicl...
The need for frequent charging is perceived as a common inconvenience related to all-electric vehicl...
This paper deals with the design of an on-board control strategy for Electric Vehicle recharging und...
To further improve the fuel economy of series hybrid electric tracked vehicles, a reinforcement lear...
<div><p>To further improve the fuel economy of series hybrid electric tracked vehicles, a reinforcem...
This paper illustrates the use of stochastic model predictive control (SMPC) for power management in...
This paper proposes a demand response method to reduce the long-term charging cost of single plug-in...