Considering highest demands continually imposed on equipment indispensable for safe transportation, this paper focuses on on-board controllers for blended (electro-hydraulic) antilock braking systems of road electric vehicles. Recommendations are issued regarding an influence of air friction and road inclination on torque allocation between electric and hydraulic brakes and accurate accounting of the hybrid energy storage. Following the study of three types of controllers – PID, tabular, and fuzzy logic – the latter one was offered as the most efficient solution for equally fast and safe braking with maximal energy recovery on different roads, from dry to icy, without locking and skidding even in critical situations. Several parts of the sy...
Traditional friction braking torque and motor braking torque can be used in braking for electric veh...
As the energy and environment crisis increase severely, developing cleaner and more fuel efficient v...
This study presents Fuzzy-PID controller design for brake-by-wire of electric vehicle.BBW is a new b...
Considering highest demands continually imposed on equipment indispensable for safe transportation, ...
The paper focuses on the braking torque control of road electric vehicles. Recommendations are issue...
At least two different actuators work in cooperation in regenerative braking for electric and hybrid...
The paper focuses on the braking torque control of road electric vehicles. Recommendations are issue...
The adoption of electric vehicles promises numerous benefits for modern society. At the same time, t...
The paper concentrates on intelligent control of electric vehicles operated in different braking reg...
This paper proposes a new braking torque distribution strategy for electric vehicles equipped with a...
The characteristics of electro-hydraulic braking systems have a direct influence on the fuel consump...
This paper presents a regenerative anti−lock braking system control method with road detection capab...
Abstract: This paper mainly focuses on integrated control of the brake system of a hybrid electric v...
The presented thesis is a part of a funded project between Saab automotive and Chalmers University o...
A novel electric-hydraulic hybrid drivetrain incorporating a set of hydraulic systems is proposed fo...
Traditional friction braking torque and motor braking torque can be used in braking for electric veh...
As the energy and environment crisis increase severely, developing cleaner and more fuel efficient v...
This study presents Fuzzy-PID controller design for brake-by-wire of electric vehicle.BBW is a new b...
Considering highest demands continually imposed on equipment indispensable for safe transportation, ...
The paper focuses on the braking torque control of road electric vehicles. Recommendations are issue...
At least two different actuators work in cooperation in regenerative braking for electric and hybrid...
The paper focuses on the braking torque control of road electric vehicles. Recommendations are issue...
The adoption of electric vehicles promises numerous benefits for modern society. At the same time, t...
The paper concentrates on intelligent control of electric vehicles operated in different braking reg...
This paper proposes a new braking torque distribution strategy for electric vehicles equipped with a...
The characteristics of electro-hydraulic braking systems have a direct influence on the fuel consump...
This paper presents a regenerative anti−lock braking system control method with road detection capab...
Abstract: This paper mainly focuses on integrated control of the brake system of a hybrid electric v...
The presented thesis is a part of a funded project between Saab automotive and Chalmers University o...
A novel electric-hydraulic hybrid drivetrain incorporating a set of hydraulic systems is proposed fo...
Traditional friction braking torque and motor braking torque can be used in braking for electric veh...
As the energy and environment crisis increase severely, developing cleaner and more fuel efficient v...
This study presents Fuzzy-PID controller design for brake-by-wire of electric vehicle.BBW is a new b...