Electric Vehicles (EVs) develop high torque at low speeds, resulting in a high rate of acceleration. However, the rapid rise in torque of an electric motor creates undesired torsional oscillations, with vehicle jerk arising as a result of wheel slip or flexibility in the half-shaft. These torsional oscillations in the halfshaft lead to longitudinal oscillations in the wheels, thus reducing comfort and drivability. In this research, we have designed an anti-jerk longitudinal dynamics controller that damps out driveline oscillations and improves the drivability of EVs with central-drivetrain architecture. The anti-jerk longitudinal dynamics controller has been implemented for both traction and cruise control applications. We have used a m...
AbstractThe paper addresses a dynamics modeling method dedicated to control design for constrained m...
One of the major phenomena compromising the comfort of the passenger vehicles is jerk. Jerk occurs a...
Given its highly coupled multi-power sources with diverse dynamic response characteristics, the mode...
Vehicle drivability includes all the driver’s complex perceptions related with the longitudinal vehi...
Anti-jerk controllers actively suppress the torsional oscillations of automotive drivetrains, caused...
Anti-jerk controllers, commonly implemented in production vehicles, reduce the longitudinal accelera...
In this paper we propose a constrained optimal control architecture to stabilize a vehicle near the ...
With the promotion and popularisation of electric vehicles, their driving performance has become an ...
In this paper, we propose a real-time nonlinear model predictive control (NMPC) strategy for stabili...
Anti-jerk controllers compensate for the torsional oscillations of automotive drivetrains, caused b...
In this paper we propose a constrained optimal control architecture for combined velocity, yaw and s...
© 2017 by the authors. As there is no clutch or hydraulic torque converter in electric vehicles to b...
This study applies nonlinear model predictive control (NMPC) to the torque-vectoring (TV) and front-...
[Abstract] Electric vehicles (EVs) are gaining attention because they are environmentally friendly. ...
Current advances in the application of control systems to vehicle dynamics has made it practicable ...
AbstractThe paper addresses a dynamics modeling method dedicated to control design for constrained m...
One of the major phenomena compromising the comfort of the passenger vehicles is jerk. Jerk occurs a...
Given its highly coupled multi-power sources with diverse dynamic response characteristics, the mode...
Vehicle drivability includes all the driver’s complex perceptions related with the longitudinal vehi...
Anti-jerk controllers actively suppress the torsional oscillations of automotive drivetrains, caused...
Anti-jerk controllers, commonly implemented in production vehicles, reduce the longitudinal accelera...
In this paper we propose a constrained optimal control architecture to stabilize a vehicle near the ...
With the promotion and popularisation of electric vehicles, their driving performance has become an ...
In this paper, we propose a real-time nonlinear model predictive control (NMPC) strategy for stabili...
Anti-jerk controllers compensate for the torsional oscillations of automotive drivetrains, caused b...
In this paper we propose a constrained optimal control architecture for combined velocity, yaw and s...
© 2017 by the authors. As there is no clutch or hydraulic torque converter in electric vehicles to b...
This study applies nonlinear model predictive control (NMPC) to the torque-vectoring (TV) and front-...
[Abstract] Electric vehicles (EVs) are gaining attention because they are environmentally friendly. ...
Current advances in the application of control systems to vehicle dynamics has made it practicable ...
AbstractThe paper addresses a dynamics modeling method dedicated to control design for constrained m...
One of the major phenomena compromising the comfort of the passenger vehicles is jerk. Jerk occurs a...
Given its highly coupled multi-power sources with diverse dynamic response characteristics, the mode...