The core part of any study of rolling stock behavior is the wheel-track interaction patch because the forces produced at the wheel-track interface govern the dynamic behavior of the whole railway vehicle. It is significant to know the nature of the contact force to design more effective vehicle dynamics control systems and condition monitoring systems. However, it is hard to find the status of this adhesion force due to its complexity, highly non-linear nature, and also affected with an unpredictable operation environment. The purpose of this paper is to develop a model-based estimation technique using the Extended Kalman Filter (EKF) with inertial sensors to estimate non-linear wheelset dynamics in variable adhesion conditions. The propose...
An ideal braking system not only ensures safety and ride comfort but also attracts significant cost-...
The railway industry in the UK is currently expanding the use of condition monitoring of railway veh...
Shrestha, S ORCiD: 0000-0001-6818-8271; Spiryagin, M ORCiD: 0000-0003-1197-898X; Wu, Q ORCiD: 0000-0...
The core part of any study of rolling stock behavior is the wheel-track interaction patch because th...
The dynamics of the railway vehicles is strongly influenced by the interaction between the wheel and...
The presented work illustrates an investigation on the observer synthesis for a highly nonlinear rai...
Condition changes at the rail surface due to the fallen tree leaves and/or other contaminations can ...
In the field of longitudinal train dynamics the brake process is not only a safety critical aspect b...
Increased patronage of railways in the UK in the past 20 years has put demands on rolling stock to o...
The wheel-rail contact strongly influences the dynamics of the railway vehicles. This interaction i...
The railway industry in the UK is currently expanding the use of condition monitoring of railway veh...
Monitoring the adhesion force between a railway wheel and a rail surface is very essential in mainta...
In the development of control strategies for traction control in railway systems or locomotive appli...
The running stability of a railway vehicle, which is highly relevant for operational safety, strongl...
Condition monitoring of railway vehicles has been highlighted by the railway industry as a key enabl...
An ideal braking system not only ensures safety and ride comfort but also attracts significant cost-...
The railway industry in the UK is currently expanding the use of condition monitoring of railway veh...
Shrestha, S ORCiD: 0000-0001-6818-8271; Spiryagin, M ORCiD: 0000-0003-1197-898X; Wu, Q ORCiD: 0000-0...
The core part of any study of rolling stock behavior is the wheel-track interaction patch because th...
The dynamics of the railway vehicles is strongly influenced by the interaction between the wheel and...
The presented work illustrates an investigation on the observer synthesis for a highly nonlinear rai...
Condition changes at the rail surface due to the fallen tree leaves and/or other contaminations can ...
In the field of longitudinal train dynamics the brake process is not only a safety critical aspect b...
Increased patronage of railways in the UK in the past 20 years has put demands on rolling stock to o...
The wheel-rail contact strongly influences the dynamics of the railway vehicles. This interaction i...
The railway industry in the UK is currently expanding the use of condition monitoring of railway veh...
Monitoring the adhesion force between a railway wheel and a rail surface is very essential in mainta...
In the development of control strategies for traction control in railway systems or locomotive appli...
The running stability of a railway vehicle, which is highly relevant for operational safety, strongl...
Condition monitoring of railway vehicles has been highlighted by the railway industry as a key enabl...
An ideal braking system not only ensures safety and ride comfort but also attracts significant cost-...
The railway industry in the UK is currently expanding the use of condition monitoring of railway veh...
Shrestha, S ORCiD: 0000-0001-6818-8271; Spiryagin, M ORCiD: 0000-0003-1197-898X; Wu, Q ORCiD: 0000-0...