IP Library › Granted Patent US 11,313,742
Granted Patent B2
US 11,313,742 · App. 16/932,280 · Granted Apr 26, 2022

System for analysis of the performance in use of a sliding board

Inventors: Nicolas Puget (Novalaise, FR); Romain Bailly (Coublevie, FR); Johan Vailli (Coublevie, FR); Aurélie Zucco (Montelier, FR); Jerome Boutet (Grenoble, FR); Jean-Philippe Gros (Grenoble, FR); Maxime Gallardo (Grenoble, FR); Gael Parent (Grenoble, FR)
Assignees: Skis Rossignol; Commissariat a l'Energie Atomique et aux Energies Alternatives
G01L1/16G01C19/00G01K13/00G01S19/52
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Quick Facts
Patent No.
US 11,313,742
App. No.
16/932,280
Granted
Apr 26, 2022
Kind
B2
Abstract

A system for analysis of the performance in use of a sliding board includes a database storing baseline performance; a sensor sensitive to the deformations of said sliding board; and a monitoring body. The monitoring body determines the performance in use based on measurements from the sensor; and compares the performance in use with the baseline performance. The sensor is secured to the sliding board and has at least one piezoelectric element secured to the sliding board and configured to generate electric energy during the deformations of the sliding board; and an electronic processing circuit, powered exclusively by the electric energy generated by the at least one piezoelectric element.

Claims (21)

1. A system for analysis of the performance in use of a sliding board comprising:

a database storing baseline performance;

a sensor sensitive to the deformations of said sliding board; and

a monitoring body configured to:

determine the performance in use of said sliding board based on measurements from said sensor; and

compare said performance in use with said baseline performance; characterized in that said sensor is secured to said sliding board and comprises:

at least one piezoelectric element secured to said sliding board and configured to generate electric energy during the deformations of said sliding board; and

an electronic processing circuit, powered exclusively by said electric energy generated by said at least one piezoelectric element, configured to estimate a duration of the phases of deformations of said sliding board and to estimate an image of the mechanical energy dissipated during the deformations of said sliding board;

said performance in use including a stressing time, corresponding to said duration of the phases of deformation of said sliding board, and an image of the mean stressing power corresponding to the relationship between the image and said duration of the deformation phases;

said baseline performance being determined by a sensor, analogous to said sensor secured to said sliding board, so as to obtain a baseline stressing time and a baseline stressing mean.

2. The analysis system according to claim 1 , wherein said performance in use includes a speed measured by a position sensor; this measured speed being compared to a baseline speed.

3. The analysis system according to claim 2 , wherein said monitoring body is configured to authorize access to a high-level route when said speed and said number of turns made are greater than said baseline speed and than said baseline number of turns made.

4. The analysis system according to claim 2 , wherein said monitoring body is configured to classify a user of a sliding board in relation to classifications of predefined levels based on said comparison carried out by said monitoring body.

5. The analysis system according to claim 1 , wherein said performance in use includes a number of turns made detected by a gyroscope; this number of turns made being compared to a baseline number of turns made.

6. The analysis system according to claim 1 , wherein said monitoring body is configured to determine corrected performance in use based on said performance in use and on a variable related to a flexural rigidity of said sliding board; the comparing is implemented from said corrected performance in use.

7. The analysis system according to claim 6 , wherein said variable related to a flexural rigidity of said sliding board is obtained from the model of said sliding board and from a database storing different models of sliding boards and corresponding flexural rigidity coefficients.

8. The analysis system according to claim 1 , wherein said monitoring body is configured to determine corrected performance in use based on said performance in use and on a variable related to the type of snow over which said sliding board is progressing; the comparing is implemented from said corrected performance in use.

9. The analysis system according to claim 8 , wherein said variable related to the type of snow over which said sliding board is progressing is obtained from a temperature sensor.

10. The analysis system according to claim 8 , wherein said variable related to the type of snow over which said sliding board is progressing is obtained from a position sensor and from a database storing weather information related to different positions.

11. The analysis system according to claim 1 , wherein said monitoring body is configured to authorize access to a high-level route when said stressing time is less than a baseline stressing time and when said mean stressing power is greater than a baseline mean stressing power.

12. The analysis system according to claim 1 , wherein said monitoring body is integrated into a mobile application of a smartphone.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2020
From: PUGET, NICOLAS; BAILLY, ROMAIN; VAILLI, JOHAN; ZUCCO, AURÉLIE; BOUTET, JEROME; GROS, JEAN-PHILIPPE; GALLARDO, MAXIME; PARENT, GAEL
To: SKIS ROSSIGNOL; COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
Reel/Frame 054081/0363 →
Priority Claims (1)
FR 1908134 · Jul 18, 2019 · national
Continuity (1)
Related Publication 20210018380A1 · Jan 21, 2021
Cited By (1)
US 12,216,486