This paper proposes a robust design approach based on the Design for Six Sigma (DFSS), to promote the robustness of our previous model-free-adaptive-control-based (MFAC-based) energy management strategy (EMS) for the plug-in hybrid electric vehicles (PHEVs) in real-time application. First, the multi-island genetic algorithm (MIGA) is employed for a deterministic design of the MFAC-based EMS, and the Monte Carlo simulation (MCS) is utilized to evaluate the sigma level of the strategy with the deterministic design results. Second, a DFSS framework is formulated to reinforce the robustness of the MFAC-based EMS, in which the velocity and the vehicle mass are considered external disturbances whilst the terminal state of charge (SOC) of the batt...
The multi-source electromechanical coupling renders energy management of plug-in hybrid electric veh...
This paper proposes a new set of design principles to classify and design rule-based control strateg...
This paper proposes a comparison study of energy management methods for a parallel plug-in hybrid el...
In the last decades the automotive sector has seen a technological revolution, due mainly to the mor...
Plug-In Hybrid Vehicles (PHEVs) represent the middle point between Hybrid Electric Vehicles (HEVs) a...
Plug-in hybrid electric vehicles are commonly designed to work in Charge Depleting/Charge Sustaining...
Adaptability to various driving conditions (TCs) is one of the essential indicators to assess the op...
The mechanical coupling of multiple powertrain components makes the energy management of 4-wheel-dri...
A high fuel efficiency management scheme for plug-in hybrid electric vehicles (PHEVs) has been devel...
An energy management strategy (EMS) considering both optimality and real-time performance has becom...
Electrification of vehicles is an indispensable step in improving fuel economy and reducing fossil f...
A high fuel efficiency management scheme for plug-in hybrid electric vehicles (PHEVs) has been devel...
Energy management strategies play an important role in performance optimization of plug-in hybrid el...
Abstract In this paper, a novel energy management strategy with the improved adaptability to various...
This paper proposes an adaptive real-time energy management strategy for a parallel plug-in hybrid e...
The multi-source electromechanical coupling renders energy management of plug-in hybrid electric veh...
This paper proposes a new set of design principles to classify and design rule-based control strateg...
This paper proposes a comparison study of energy management methods for a parallel plug-in hybrid el...
In the last decades the automotive sector has seen a technological revolution, due mainly to the mor...
Plug-In Hybrid Vehicles (PHEVs) represent the middle point between Hybrid Electric Vehicles (HEVs) a...
Plug-in hybrid electric vehicles are commonly designed to work in Charge Depleting/Charge Sustaining...
Adaptability to various driving conditions (TCs) is one of the essential indicators to assess the op...
The mechanical coupling of multiple powertrain components makes the energy management of 4-wheel-dri...
A high fuel efficiency management scheme for plug-in hybrid electric vehicles (PHEVs) has been devel...
An energy management strategy (EMS) considering both optimality and real-time performance has becom...
Electrification of vehicles is an indispensable step in improving fuel economy and reducing fossil f...
A high fuel efficiency management scheme for plug-in hybrid electric vehicles (PHEVs) has been devel...
Energy management strategies play an important role in performance optimization of plug-in hybrid el...
Abstract In this paper, a novel energy management strategy with the improved adaptability to various...
This paper proposes an adaptive real-time energy management strategy for a parallel plug-in hybrid e...
The multi-source electromechanical coupling renders energy management of plug-in hybrid electric veh...
This paper proposes a new set of design principles to classify and design rule-based control strateg...
This paper proposes a comparison study of energy management methods for a parallel plug-in hybrid el...