METHOD FOR CALCULATING A POSITION OF AN ATHLETE ON A SPORTS FIELD
20190381354 ยท 2019-12-19
Assignee
Inventors
Cpc classification
G01S5/0264
PHYSICS
A63B2024/0025
HUMAN NECESSITIES
International classification
Abstract
A method for calculating the position of an athlete, referred to as target, on a sports field, including estimating an approximate position of the target using a radio-based positioning system, the system including tracking sensors attached to several athletes on the sports field and antennas installed around the sports field, defining a search space around the approximate position, detecting an athlete in the search space using an optical-based positioning system, the system including cameras installed above and/or around the sports field and image recognition device, determining an accurate position of the detected athlete, attributing the accurate position to the target.
Claims
1. A method for calculating the position of an athlete, referred to as target, on a sports field, comprising: estimating an approximate position of the target using a radio-based positioning system, said system comprising tracking sensors attached to several athletes on the sports field and antennas installed around the sports field, defining a search space around said approximate position, detecting an athlete in said search space using an optical-based positioning system, said system comprising cameras installed above and/or around the sports field and image recognition means, determining an accurate position of said detected athlete, attributing (the accurate position to the target.
2. The method according to claim 1, wherein the radio-based positioning system is based on time of arrival measurements.
3. The method according to claim 1, wherein the radio-based positioning system is based on time difference of arrival.
4. The method according to claim 1, wherein the radio-based positioning system is based on angle of arrival measurements.
5. The method according to claim 1, comprising a step of generating additional information on the target using at least one inertial measurement unit attached to the target and/or using the optical-based positioning system.
6. The method according to claim 5, comprising a step of predicting a next position of the target or a future event by means of said additional information.
7. The method according to claim 5, comprising a step of validating the accurate position of the target by means of said additional information.
8. The method according to claim 5, wherein said additional information comprises the acceleration of the detected athlete.
9. The method according to claim 5, wherein additional information comprises the orientation of the detected athlete.
10. The method according to claim 5, wherein additional information comprises the pose of the detected athlete.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0012] Other features and advantages of the present invention will appear more clearly upon reading the following detailed description, made with reference to the annexed drawings, given by way of non-limiting example:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0021] The method according to the invention for calculating the position of a moving athletecalled targeton a sports field requires using a radio-based positioning system RdPS and an optical-based positioning system OpPS.
[0022] As illustrated in
[0023] In an embodiment, the athletes carry inertial measurement units. This way, additional measurements such as acceleration, inclinations and angular rates can be recorded using the installed set of antennas At1, At2 . . . AtM.
[0024] As illustrated in
[0025] The method MTH according to the invention comprises the following steps, illustrated in
[0026] In a step Est_ApPos, with reference to
[0027] In a step Def_ScSpa, with reference to
[0028] In a step Dtc_Ath, with reference to
[0029] In a step Dtm_AcPos, as illustrated in
[0030] In a step Atr_AcPos, the accurate position AcPos is attributed to the target Tgt.
[0031] Modern machine learning based recognition algorithms are able to carry out object detection and localization in real time. The main shortcoming of these algorithms is that they are not able to unambiguously identify the respective athlete. In contrast, the position data gathered from radio-based positioning allows for an explicit allocation of the position data of an attached sensor to the target (signals received from multiple sensors can be discriminated by the radio-based positioning system RdPS and the assignment of a sensor to an athlete is defined by the user). Thanks to the method of the invention, accurate positions gathered from optical-based positioning can be assigned to their matching position gathered from radio-based positioning. Thus, an unambiguous allocation of the accurate position measurements to the correct athletes is possible.
[0032] In addition, the method MTH may comprises the following steps.
[0033] In a step Gen_AdInf, with reference to
[0034] Such an additional information may be the acceleration of the target, their pose, their orientation, the orientation of their racket or stick, etc.
[0035] In a step Val_AcPos, the additional information AdInf gathered from the optical-based positioning system OpPS and/or from the inertial measurement unit(s) is used to complement and validate the information from the radio-based positioning system. Information about additional objects, such as rackets or sticks, and a detailed analysis of the target may result in a higher position accuracy that are not available only with a radio-based positioning method.
[0036] In a step Pr_NxPos, respectively Pr_FtEvt, the additional information AdInf gathered from the optical-based positioning system OpPS and/or from the inertial measurement unit(s) is used to predict a next position NxPos of the target Tgt, respectively a future event FtEvt (for instance, the target is going to use their racket or stick).
[0037] Of course, the present invention is not limited to the illustrated example but may be subject to various variants and alterations, which will be apparent to those skilled in the art.