3 citations · 7 across the 8 of their papers we have counts for
7 papers · 1 filter
Modelling of cyclist's power to overcome dissipative forces on a velodrome
Len Bos, Michael A. Slawinski, Raphaël Slawinski +1
We model the instantaneous power applied by a cyclist on a velodrome -- for individual pursuits and other individual time trials -- taking into account its straights, circular arcs…
On modelling bicycle power-meter measurements
Tomasz Danek, Michael A. Slawinski, Theodore Stanoev
We combine power-meter measurements with GPS measurements to study the model that accounts for the use of power by a cyclist. The model takes into account the change in elevation a…
On modelling bicycle power for velodromes: Part II Formulation for individual pursuits
Len Bos, Michael A. Slawinski, Raphaël A. Slawinski +1
We model the instantaneous power on a velodrome--as applied to individual pursuits and other individual time trials--taking into account its straights, circular arcs, and connectin…
On maximizing VAM for a given power: Slope, cadence, force and gear-ratio considerations
Len Bos, Michael A. Slawinski, Theodore Stanoev
The velocità ascensionale media (VAM) is measurement that quantifies a cyclist's climbing ability. It depends on both the ground speed of a bicycle-cyclist system and the slope of…
On modelling bicycle power-meter measurements: Part I. Estimating effects of air, rolling and drivetrain resistance
Tomasz Danek, Michael A. Slawinski, Theodore Stanoev
Power-meter measurements together with GPS measurements are used to study the model that accounts for the use of power by a cyclist. The focus is on estimating the coefficients of…
On modelling bicycle power for velodromes: Part I: Formulation for individual pursuits
Michael A. Slawinski, Raphaël A. Slawinski, Theodore Stanoev
For a moving bicycle, the power can be modelled as a response to the propulsion of the centre of mass of the bicycle-cyclist system. On a velodrome, an accurate modelling of power…