User-specific performance monitor, method, and computer software product
First Claim
1. A method of monitoring a user'"'"'s performance during physical exercise, the method comprising:
- determining, in a user-specific performance monitor device, a propagation variable characterizing the user'"'"'s propagation on a propagation route;
determining, in the user-specific performance monitor device, a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field;
calculating, in the user-specific performance monitor device, an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field;
calculating, in the user-specific performance monitor device, a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base; and
calculating, in the user-specific performance monitor device, an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable and the propagation factor, wherein the user'"'"'s exertion parameter is calculated by using, when the inclination of the propagation base is negative, a first functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable and, when the inclination of the propagation base is positive, a second functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable, wherein the second functional dependence produces, with at least one value pair of the propagation variable and the gravitational motion variable, an exertion parameter which is different from the exertion parameter produced by the first functional dependence with said value pair.
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Abstract
A method for determining an exertion parameter during physical exercise, user-specific performance monitor implementing the method, and computer software product. The method includes determining a propagation variable characterizing the user'"'"'s propagation; determining a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field; calculating an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable; calculating a propagation factor proportional to propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base, the propagation factor having a different calculated value based on whether the inclination factor is positive or negative for the same base value of the inclination factor; and calculating an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route in accordance with the propagation variable, the gravitational motion variable, and the propagation factor.
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Citations
13 Claims
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1. A method of monitoring a user'"'"'s performance during physical exercise, the method comprising:
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determining, in a user-specific performance monitor device, a propagation variable characterizing the user'"'"'s propagation on a propagation route; determining, in the user-specific performance monitor device, a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field; calculating, in the user-specific performance monitor device, an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; calculating, in the user-specific performance monitor device, a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base; and calculating, in the user-specific performance monitor device, an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable and the propagation factor, wherein the user'"'"'s exertion parameter is calculated by using, when the inclination of the propagation base is negative, a first functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable and, when the inclination of the propagation base is positive, a second functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable, wherein the second functional dependence produces, with at least one value pair of the propagation variable and the gravitational motion variable, an exertion parameter which is different from the exertion parameter produced by the first functional dependence with said value pair. - View Dependent Claims (2, 3, 4)
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5. A method of monitoring a user'"'"'s performance during physical exercise, the method comprising:
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determining, in a user-specific performance monitor device, a propagation variable characterizing the user'"'"'s propagation on a propagation route; determining, in the user-specific performance monitor device, a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field; calculating, in the user-specific performance monitor device, an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; calculating, in the user-specific performance monitor device, a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base; and calculating, in the user-specific performance monitor device, an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable and the propagation factor, wherein the user'"'"'s exertion parameter is calculated by using, when the inclination factor is negative, a first functional dependence of the propagation factor on the propagation variable and the gravitational motion variable and, when the inclination factor is positive, a second functional dependence of the propagation factor on the propagation variable and the gravitational motion variable, wherein the second functional dependence produces, with at least one value pair of the propagation variable and the gravitational motion variable, a propagation factor which is different from the propagation factor produced by the first functional dependence with said value pair.
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6. A user-specific performance monitor, comprising:
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a propagation determination unit configured to determine a propagation variable characterizing the user'"'"'s propagation on a propagation route; an elevation determination unit configured to determine a gravitational motion variable characterizing the user'"'"'s propagation in the direction of the gravitational field; an inclination determination unit configured to calculate an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; a propagation efficiency estimator configured to calculate a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base; and an exertion counter configured to calculate an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable and the propagation factor, wherein the exertion counter is configured to calculate the user'"'"'s exertion parameter by using, when the inclination of the propagation base is negative, a first functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable and, when the inclination of the propagation base is positive, a second functional dependence of the exertion parameter on the propagation variable and the gravitational motion variable, the second functional dependence producing, with at least one value pair of the propagation variable and the gravitational motion variable, an exertion parameter which is different from the exertion parameter produced by the first functional dependence with said value pair. - View Dependent Claims (7, 8, 9)
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10. A user-specific performance monitor, comprising:
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a propagation determination unit configured to determine a propagation variable characterizing the user'"'"'s propagation on a propagation route; an elevation determination unit configured to determine a gravitational motion variable characterizing the user'"'"'s propagation in the direction of the gravitational field; an inclination determination unit configured to calculate an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; a propagation efficiency estimator configured to calculate a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base; and an exertion counter configured to calculate an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable and the propagation factor, wherein the the exertion counter is configured to calculate the propagation factor by using, when the inclination factor is negative, a first functional dependence of the propagation factor and, when the inclination factor is positive, a second functional dependence of the propagation factor, the second functional dependence producing, with at least one value pair of the propagation variable and the gravitational motion variable, a propagation factor which is different from the propagation factor produced by the first functional dependence with said value pair.
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11. A non-transitory computer-readable storage medium comprising operational instructions that, when executed by a processing device, cause the processing device to:
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determine a propagation variable characterizing the user'"'"'s propagation on a propagation route; determine a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field; calculate an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; calculate a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base, the propagation factor having a different calculated value based on whether the inclination factor is positive or negative for the same base value of the inclination factor; and calculate an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitational motion variable, the propagation factor and a terrain factor that indicates unevenness or softness of the prorogation base.
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12. A method of monitoring a user'"'"'s performance during physical exercise, the method comprising:
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determining, in a user-specific performance monitor device, a propagation variable characterizing the user'"'"'s propagation on a propagation route; determining, in the user-specific performance monitor device, a gravitational motion variable characterizing the user'"'"'s motion in the direction of the gravitational field; calculating, in the user-specific performance monitor device, an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; calculating, in the user-specific performance monitor device, a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base, the propagation factor having a different calculated value based on whether the inclination factor is positive or negative for the same base value of the inclination factor; and calculating, in the user-specific performance monitor device, an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable, the propagation factor, and a terrain factor that indicates unevenness or softness of the prorogation base.
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13. A user-specific performance monitor, comprising:
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a propagation determination unit configured to determine a propagation variable characterizing the user'"'"'s propagation on a propagation route; an elevation determination unit configured to determine a gravitational motion variable characterizing the user'"'"'s propagation in the direction of the gravitational field; an inclination determination unit configured to calculate an inclination factor proportional to the inclination of a propagation base in accordance with the propagation variable and the gravitational motion variable, the inclination of the propagation base being positive or negative in accordance with the user'"'"'s motion with respect to the gravitational field; a propagation efficiency estimator configured to calculate a propagation factor proportional to a propagation efficiency of the user as a function of the inclination factor, the propagation efficiency characterizing the user'"'"'s ability to move with respect to the inclination of the propagation base, the propagation factor having a different calculated value based on whether the inclination factor is positive or negative for the same base value of the inclination factor; and an exertion counter configured to calculate an exertion parameter that characterizes the user'"'"'s energy consumption along the propagation route based on the propagation variable, the gravitation motion variable, the propagation factor and a terrain factor that indicates unevenness or softness of the prorogation base.
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Specification