SYSTEM FOR ANALYZING A PEDALLING TECHNIQUE OF A CYCLIST AND ASSOCIATED METHODS
A device for analyzing and quantifying the pedaling technique of a user, based on a pair of soles, each sole comprising a compact and miniaturized electronic box, which comprises an electronic board containing an inertial platform consisting in particular of an accelerometer and a gyroscope, used to collect and process biomechanical data, the two boxes being adapted to communicate with each other and with an external terminal in order to provide the user with general information on his/her pedaling activity.
1 . A system for analyzing and quantifying pedaling of a user, comprising two electronic boxes, adapted to be integrated into a pair of soles, a first said electronic box being adapted to be integrated into a first sole of said pair of soles and a second said electronic box being adapted to be integrated into a second sole of said pair of soles, each said electronic box comprising:
an inertial platform configured to generate a set of data on a pedaling technique of a user of the pair of soles,
a data processing module configured to, on the one hand, process the set of data generated according to predefined algorithms and transform the set of data into at least one biomechanical parameter and, on the other hand, determine an evolution of the at least one biomechanical parameter relating to the user's pedaling technique over time,
a data storage module configured to store information generated by the processing module, said information comprising said at least one biomechanical parameter, and
a power source;
wherein at least one of said two electronic boxes further comprises a first communication means adapted to transmit the information generated by the data processing module thereof to an external terminal and/or to the other of said two electronic boxes.
2 . The system according to claim 1 , wherein each said electronic box further includes a second communication means configured so that the first electronic box is adapted to communicate with the second electronic box, and so that at least one of the data processing modules is configured to transform data sets generated from the two electronic boxes into at least one biomechanical parameter relating to the pedaling technique.
3 . The system according to claim 1 , wherein the data processing modules communicate with each other and are adapted, on the one hand, to calculate an asymmetry between the biomechanical parameters of the right leg with respect to the biomechanical parameters of the user's left leg and, on the other hand, to calculate a variability of the biomechanical parameters associated with one leg of said user or both legs of said user.
4 . The system according to claim 1 , wherein at least one said data processing module is adapted to establish a pedaling technique profile of the user from biomechanical parameters selected from among foot angle, efficiency of push and pull phases of pedaling, foot position, cadence, rotational speed, and power.
5 . The system according to claim 1 , wherein the transformation by the data processing module comprises segmentation of the data into a plurality of pedaling phases.
6 . The system according to claim 1 , wherein each said electronic box further includes other sensors selected from among a magnetometer, a barometer, an altimeter, force and pressure sensors.
7 . The system according to claim 4 , wherein calculation of pedaling power is carried out following the combination of inertial and pressure/force data.
8 . The system according to claim 1 , wherein each of the two electronic boxes is adapted to be integrated into a pedal of a bicycle, or into a cleat of the pedal of a bicycle.
9 . A method for quantifying a pedaling technique of a user implementing a quantification system including a pair of soles and an external terminal, each of the pair of soles including an electronic box, each said electronic box comprising an inertial platform, a data processing module, a data storage module, a first communication means, and a power source, said method including the following steps:
Generating, by the inertial platforms, a set of data on the pedaling technique of the user of the pair of soles,
Transforming, by the data processing modules, the generated data set into at least one biomechanical parameter, and comparing different values of the at least one biomechanical parameter,
Storing, by the data storage modules, different values of said at least one biomechanical parameter, and
Transmitting, by the first communication means of at least one of the soles, the at least one said biomechanical parameter and/or a value representative of an evolution of the user's pedaling to the external terminal.