IP Library Granted Patent US 10,722,059
Granted Patent B2
US 10,722,059 · App. 16/279,727 · Granted Jul 28, 2020

System for monitoring the liquid intake of a user and method of operating the system

Inventors: Bernd Hoffmann (Munich, DE); Susann Heinicke (Munich, DE)
Assignee: BELENUS Verwaltungsgesellschaft mBH
A47G23/16A47G19/00A47G19/2227A47G23/00A61B5/02438A61B5/4266A61B5/4833A61B5/4875A61B5/74A61B5/021
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Quick Facts
Patent No.
US 10,722,059
App. No.
16/279,727
Granted
Jul 28, 2020
Kind
B2
Abstract

A system for monitoring liquid intake of a user includes a monitor configured to determine an amount of liquid removed from a container, an interface configured to receive a vital parameter of the user of the system from a vital parameter sensor, and a prompter configured to prompt the user to drink as a function of the amount of liquid removed and of the vital parameter.

Claims (68)

1. System for monitoring liquid intake of a user, comprising:

a container,

a vital parameter sensor,

a monitor configured to determine an amount of liquid removed from the container;

an interface configured to receive, from the vital parameter sensor, a vital parameter of the user of the system; and

a prompter configured to prompt the user to drink as a function of the amount of liquid removed and of the vital parameter,

wherein the monitor, the interface and the prompter are arranged within a socket configured to receive the container,

wherein the container is formed of a transparent material, wherein the prompter is configured to couple light into the container for prompting, and wherein the container comprises scattering centers configured to scatter the light coupled in, and

wherein the container comprises a projection formed in the container bottom, and wherein the prompter is configured to couple the light into the container at the projection.

2. System as claimed in claim 1 , wherein the light is coupled into the projection perpendicularly to a viewing direction of a user looking into the container.

3. System as claimed in claim 1 , wherein the monitor comprises a sensor configured to determine a current filling level of the container, the monitor being configured to determine the amount of liquid removed from the container by means of a time sequence of current filling levels of the container which have been determined.

4. System as claimed in claim 1 , wherein the monitor is configured to determine the amount of liquid removed from the container by means of capacitive measurement, by means of optical measurement, by means of ultrasound, by means of radar, by means of a change in weight, by means of a run-time measurement, and/or by means of a conductivity measurement.

5. System as claimed in claim 1 , wherein the prompter is configured to prompt the container, the vital parameter sensor or a mobile device to prompt the user to drink in a visual, auditive or tactile manner.

6. System as claimed in claim 1 , wherein the prompter is arranged inside a mobile device.

7. System as claimed in claim 1 , wherein the socket comprises a fastening mechanism configured to firmly connect the container to the socket in a mechanical or magnetic manner in an operating state.

8. System as claimed in claim 1 , wherein the socket comprises a detection unit configured to identify the container in an operating state and to distinguish it from further containers each exhibiting a specific filling level, the distinction by the detection unit enabling determining of a container-specific amount of liquid removed and associating the container with the respective user.

9. System as claimed in claim 1 , wherein the socket is configured to sense and set a temperature of the liquid comprised by the container.

10. System as claimed in claim 1 , wherein the socket comprises a casing configured to protect the socket from external influences or to form an anti-slip bearing surface.

11. System as claimed in claim 1 , the system comprising an energy supply unit configured to supply the system with energy in a self-sufficient manner by means of solar, by means of energy recovery, by means of a generator and/or by means of a momentum generator.

12. System as claimed in claim 1 , wherein the socket comprises an inclination sensor configured to sense an inclination angle of the container.

13. System as claimed in claim 12 , wherein the prompter is configured to output a warning signal when an angle of inclination, which represents that the system is being placed upside down, is exceeded.

14. System as claimed in claim 1 , wherein the container comprises a hand sensor configured to sense physical contact with the container.

15. System as claimed in claim 1 , comprising a drinking aid, the drinking aid being configured to determine an amount of liquid flowing through which has been removed from the container by means of the drinking aid, and to provide the amount of liquid removed from the container by means of the drinking aid to the monitor.

16. System as claimed in claim 1 , wherein the container comprises a liquid detector configured to detect whether or not there is liquid comprised by the container, which liquid detector may be brought into contact, at least in some portions, with a liquid to be detected within the container.

17. System as claimed in claim 16 , wherein the liquid detector comprises at least two electric contacts spaced apart from each other and configured such that an electric circuit between said two contacts may be closed by means of the liquid to be detected within the container.

18. System as claimed in claim 16 , wherein the liquid detector is integrated into a container bottom of the container.

19. System for monitoring liquid intake of a user, comprising:

a container exhibiting a projection or a curvature on a bearing surface, said projection or curvature being formed as a part of the container bottom, so that stability of the container is reduced when the container is placed down onto the bearing surface;

a socket configured to receive the container so that the container can be placed down in a stable manner in connection with the socket;

a monitor configured to determine an amount of liquid removed from the container; and

a prompter configured to prompt the user to drink as a function of the amount of liquid removed,

wherein the monitor and the prompter are arranged within the socket.

20. System as claimed in claim 19 , comprising an interface configured to receive a vital parameter of the user from a vital parameter sensor, wherein the prompter is configured to prompt the user to drink as a function of the amount of liquid removed and of the vital parameter.

21. System as claimed in claim 19 , the container being formed of a transparent material, the prompter being configured to couple light into the container for prompting, and the container comprising scattering centers configured to scatter the light coupled in; or

wherein the prompter is configured to apply, for prompting, an electric voltage or an electric current to the container and to excite prompters introduced into the container or applied onto the container.

22. System as claimed in claim 21 , wherein the container comprises a projection, and wherein the evaluation unit is configured to couple the light at the projection into the container.

23. System for monitoring liquid intake of a user, comprising:

a container for receiving liquid;

a level meter for measuring the filling level of the liquid comprised by the container, wherein the level meter is an optical level meter comprising at least one emitter for emitting electromagnetic radiation and at least one receiver for receiving the emitted electromagnetic radiation;

a monitor configured to determine an amount of liquid removed from the container; and

a prompter configured to prompt the user to drink as a function of the amount of liquid removed,

wherein the emitter is arranged at the container such that the emitted electromagnetic radiation impinges upon the liquid surface, adjoining the surroundings, of the liquid comprised by the container,

wherein the receiver is arranged at the container such that a portion, reflected at the liquid surface, of the electromagnetic radiation emitted by the emitter is receivable by the receiver; and

wherein at least one of the emitter and the receiver is arranged at a container bottom of the container.

24. System as claimed in claim 23 , wherein the emitter comprises at least one laser.

25. System as claimed in claim 23 , wherein the level meter is coupled to a controller configured to determine the filling level of the liquid comprised by the container while taking into account a run-time measurement of the electromagnetic radiation between the emitter and the receiver.

26. System as claimed in claim 25 , wherein the controller is coupled to an inclination sensor measuring an inclination of the container, and wherein the controller is further configured to determine the filling level of the liquid comprised by the container while taking into account the inclination measured.

27. System as claimed in claim 23 , wherein the level meter is coupled to a controller configured to determine the filling level of the liquid comprised by the container while taking into account a geometric distance R between a location of sending out the emitted electromagnetic radiation and a location of receiving the electromagnetic radiation.

28. Method of operating a system for monitoring liquid intake of a user, the method comprising:

determining an amount of liquid removed from a container by means of a monitor, said container being formed of a transparent material;

receiving a vital parameter of a user of the system from a vital parameter sensor by means of an interface;

prompting the user to drink, as a function of the amount of liquid removed and of the vital parameter, by means of a prompter, and

coupling light into the container for prompting, the container comprising a projection formed in the container bottom, wherein the light is coupled into the container at the projection, and the container comprising scattering centers configured to scatter the light coupled in.

29. Method of operating a system for monitoring liquid intake of a user, said method comprising:

connecting a container comprising a projection or a curvature on a bearing surface, said projection or curvature being formed as a part of the container bottom, so that stability of the container is reduced when the container is placed down onto the bearing surface, to a socket configured to receive the container, so that the container can be placed down in a stable manner in connection with the socket;

determining an amount of liquid removed from the container by means of a monitor; and

prompting the user, as a function of the amount of liquid removed, by means of a prompter, wherein the monitor and the prompter are arranged within the socket.

30. A non-transitory digital storage medium having a computer program stored thereon to perform the method of operating a system for monitoring liquid intake of a user, said method comprising:

determining an amount of liquid removed from a container by means of a monitor, said container being formed of a transparent material;

receiving a vital parameter of a user of the system from a vital parameter sensor by means of an interface;

prompting the user to drink, as a function of the amount of liquid removed and of the vital parameter, by means of a prompter, and

coupling light into the container for prompting, the container comprising a projection formed in the container bottom, wherein the light is coupled into the container at the projection, and the container comprising scattering centers configured to scatter the light coupled in,

when said computer program is run by a computer.

31. A non-transitory digital storage medium having a computer program stored thereon to perform the method of operating a system for monitoring liquid intake of a user, said method comprising:

connecting a container comprising a projection or a curvature on a bearing surface, said projection or curvature being formed as a part of the container bottom, so that stability of the container is reduced when the container is placed down onto the bearing surface, to a socket configured to receive the container, so that the container can be placed down in a stable manner in connection with the socket;

determining an amount of liquid removed from the container by means of a monitor; and

prompting the user, as a function of the amount of liquid removed, by means of a prompter, wherein the monitor and the prompter are arranged within the socket,

when said computer program is run by a computer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2019
From: HOFFMANN, BERND; HEINICKE, SUSANN
To: BELENUS VERWALTUNGSGESELLSCHAFT MBH
Reel/Frame 050265/0919 →
Priority Claims (1)
DE 10 2016 215 615 · Aug 19, 2016 · national
Continuity (2)
Continuation PCTEP2017070794 · Aug 16, 2017
Related Publication 20190174939A1 · Jun 13, 2019