Abstract In the railway industry, re-adhesion control plays an important role in attenuating the slip occurrence due to the low adhesion condition in the wheel–rail interaction. Braking and traction forces depend on the normal force and adhesion coefficient at the wheel–rail contact area. Due to the restrictions on controlling normal force, the only way to increase the tractive or braking effect is to maximize the adhesion coefficient. Through efficient utilization of adhesion, it is also possible to avoid wheel–rail wear and minimize the energy consumption. The adhesion between wheel and rail is a highly nonlinear function of many parameters like environmental conditions, railway vehicle speed and slip velocity. To estimate these unknown p...
Train braking technology needs to be advanced corresponding to the vehicle advancement to fully util...
AbstractSlip/slide phenomena between wheels and tracks often happen in metro traction, which result ...
The realization of maximum adhesive forces for a railway vehicle is a very difficult process, becaus...
Adhesion coefficient and the resultant normal force occurred at the wheel-rail contact determine bra...
In this paper, an adhesion control strategy based on the wheel-rail adhesion state observation is pr...
During the railway train braking process, the effective braking takes place in the adhesion region a...
In the railway industry, slip control has always been essential due to the low friction between the ...
A method for detecting wheel slip/slide and re-adhesion control of AC traction motors in railway app...
Shrestha, S ORCiD: 0000-0001-6818-8271; Spiryagin, M ORCiD: 0000-0003-1197-898X; Wu, Q ORCiD: 0000-0...
Abstract – This study proposes a re-adhesion algorithm that has stable traction effort for rolling s...
This paper presents the movement dynamic of the train and the relationship between the speed of whee...
In this work a new technique for anti-slip control in railway vehicles is proposed. This technique ...
Modern locomotives are more powerful andreaches higher speeds. With these parameters increasing itis...
An optimal utilization of adhesion force based on extremum seeking with sliding mode (SMES) and asym...
Traction control is a very important matter in railway vehicle dynamics. Its optimization allows imp...
Train braking technology needs to be advanced corresponding to the vehicle advancement to fully util...
AbstractSlip/slide phenomena between wheels and tracks often happen in metro traction, which result ...
The realization of maximum adhesive forces for a railway vehicle is a very difficult process, becaus...
Adhesion coefficient and the resultant normal force occurred at the wheel-rail contact determine bra...
In this paper, an adhesion control strategy based on the wheel-rail adhesion state observation is pr...
During the railway train braking process, the effective braking takes place in the adhesion region a...
In the railway industry, slip control has always been essential due to the low friction between the ...
A method for detecting wheel slip/slide and re-adhesion control of AC traction motors in railway app...
Shrestha, S ORCiD: 0000-0001-6818-8271; Spiryagin, M ORCiD: 0000-0003-1197-898X; Wu, Q ORCiD: 0000-0...
Abstract – This study proposes a re-adhesion algorithm that has stable traction effort for rolling s...
This paper presents the movement dynamic of the train and the relationship between the speed of whee...
In this work a new technique for anti-slip control in railway vehicles is proposed. This technique ...
Modern locomotives are more powerful andreaches higher speeds. With these parameters increasing itis...
An optimal utilization of adhesion force based on extremum seeking with sliding mode (SMES) and asym...
Traction control is a very important matter in railway vehicle dynamics. Its optimization allows imp...
Train braking technology needs to be advanced corresponding to the vehicle advancement to fully util...
AbstractSlip/slide phenomena between wheels and tracks often happen in metro traction, which result ...
The realization of maximum adhesive forces for a railway vehicle is a very difficult process, becaus...