Determining optimal cadence for an individual road cyclist from field data

Eur J Sport Sci. 2016 Nov;16(8):903-11. doi: 10.1080/17461391.2016.1146336. Epub 2016 Feb 22.

Abstract

The cadence that maximises power output developed at the crank by an individual cyclist is conventionally determined using a laboratory test. The purpose of this study was two-fold: (i) to show that such a cadence, which we call the optimal cadence, can be determined using power output, heart-rate, and cadence measured in the field and (ii) to describe methodology to do so. For an individual cyclist's sessions, power output is related to cadence and the elicited heart-rate using a non-linear regression model. Optimal cadences are found for two riders (83 and 70 revolutions per minute, respectively); these cadences are similar to the riders' preferred cadences (82-92 rpm and 65-75 rpm). Power output reduces by approximately 6% for cadences 20 rpm above or below optimum. Our methodology can be used by a rider to determine an optimal cadence without laboratory testing intervention: the rider will need to collect power output, heart-rate, and cadence measurements from training and racing sessions over an extended period (>6 months); ride at a range of cadences within those sessions; and calculate his/her optimal cadence using the methodology described or a software tool that implements it.

Keywords: Cycling; TRIMP; heart-rate; power; training load.

MeSH terms

  • Adult
  • Bicycling / physiology*
  • Heart Rate / physiology*
  • Humans
  • Middle Aged
  • Models, Biological
  • Young Adult

Grants and funding

This work has been supported in part by EPSRC [EP/F006136/1], [EP/F005792/1]. All data supporting this paper are available here: https://dx.doi.org/10.17866/rd.salford.3080560.v1