In this chapter, a hybrid power system that consists of multiple proton exchange membrane fuel cell (PEMFC) systems, batteries, and supercapacitors (SCs) is developed for a hybrid tramway. Three energy management strategies that included a fuzzy logic control (FLC), an equivalent consumption minimization strategy (ECMS), and a state machine strategy based on droop control (SMS-DC) are utilized to coordinate multiple power sources, avoid the transients and rapid changes of power demand, and achieve high efficiency without degrading the mechanism performance for an energy management system of hybrid tramway. A hybrid system model of tramway is established with commercially available devices, and then the different energy management strategies...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
The fuel consumption and the fuel management strategy (PMS) of the hybrid electric vehicle are close...
Currently, the implementation of hybrid proton-exchange membrane fuel cell (PEMFC)-battery-supercapa...
Hybrid platforms powered by fuel cell and supercapacitor represent a powertrain with active state-de...
This study proposes an energy management strategy (EMS) for a dual-mode hybrid locomotive equipped w...
This paper introduces the utilization of selected renewable energy technologies such as solar cell, ...
International audienceThis paper presents a new Fuel Cell Fuel Consumption Minimization Strategy (FC...
International audienceThis paper presents a new Fuel Cell Fuel Consumption Minimization Strategy (FC...
This paper presents a fuzzy logic controller (FLC) based energy management strategy (EMS), combined ...
This paper is mainly focused on Hybrid Energy Management System (HEMS) consisting of Battery (BT) an...
This paper is mainly focused on Hybrid Energy Management System (HEMS) consisting of Battery (BT) an...
The increasing adoption of electric vehicles (EVs) presents a promising solution for achieving susta...
Hybrid platforms powered by fuel cell and supercapacitor represent a powertrain with active state-de...
The increasing adoption of electric vehicles (EVs) presents a promising solution for achieving susta...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
The fuel consumption and the fuel management strategy (PMS) of the hybrid electric vehicle are close...
Currently, the implementation of hybrid proton-exchange membrane fuel cell (PEMFC)-battery-supercapa...
Hybrid platforms powered by fuel cell and supercapacitor represent a powertrain with active state-de...
This study proposes an energy management strategy (EMS) for a dual-mode hybrid locomotive equipped w...
This paper introduces the utilization of selected renewable energy technologies such as solar cell, ...
International audienceThis paper presents a new Fuel Cell Fuel Consumption Minimization Strategy (FC...
International audienceThis paper presents a new Fuel Cell Fuel Consumption Minimization Strategy (FC...
This paper presents a fuzzy logic controller (FLC) based energy management strategy (EMS), combined ...
This paper is mainly focused on Hybrid Energy Management System (HEMS) consisting of Battery (BT) an...
This paper is mainly focused on Hybrid Energy Management System (HEMS) consisting of Battery (BT) an...
The increasing adoption of electric vehicles (EVs) presents a promising solution for achieving susta...
Hybrid platforms powered by fuel cell and supercapacitor represent a powertrain with active state-de...
The increasing adoption of electric vehicles (EVs) presents a promising solution for achieving susta...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
This paper addresses the design of a systemic management to improve the energetic efficiency of an o...
The fuel consumption and the fuel management strategy (PMS) of the hybrid electric vehicle are close...