METHOD FOR CONTROLLING A HOUSEHOLD APPLIANCE

The method improves the precision and reliability of remote control for household appliances by using a human-machine interface that detects and compares gestures within a predefined zone, effectively addressing the challenges of noise interference and complexity in existing systems.

FR3157604A1Inactive Publication Date: 2025-06-27GRP BRANDT
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Patent Information

Application Number
FR2023014759
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-12-21
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing contactless control systems for household appliances face challenges in distinguishing intended user gestures from noise or unintended movements, leading to complexity and potential misinterpretation of control instructions.

Method used

A method for controlling household appliances using a human-machine interface that detects gestures within a predefined detection zone, compares the detected gestures with a set of predetermined sequences, and delivers corresponding control instructions. The method incorporates both spatial and temporal components of the gesture for precise recognition.

Benefits of technology

This approach enhances the precision and reliability of remote control operations by limiting noise interference and simplifying the control process, allowing users to accurately command household appliances through defined gestures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a method (100) for controlling a household appliance (9) by means of a human-machine interface (90) adapted to control said household appliance (9) in response to a gesture performed by at least one hand of a user, said method comprising the following steps: detecting (101) a gesture performed by said at least one hand, said gesture being composed of at least one movement performed in at least a given time; if said detected gesture is performed in a predefined detection zone (8) located at a distance from said human-machine interface (90), comparing (102) said detected gesture with a set of predetermined sequences, each of said predetermined sequences comprising at least one predetermined movement to be performed in a predetermined period of time, each of said predetermined sequences corresponding respectively to a control instruction of said household appliance (9);andif said detected gesture corresponds to one of said predetermined sequences, delivery (103) of an instruction to control said household appliance corresponding respectively to said predetermined sequence.;
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Description

Title of the invention: METHOD FOR CONTROLLING A HOUSEHOLD APPLIANCE Field of invention

[0001] The present invention relates to the field of household appliances, and more particularly to domestic household appliances.

[0002] The invention relates more particularly to a method for controlling such a household appliance by means of a human-machine interface adapted to control said household appliance in response to a gesture made by at least one hand of a user. State of the prior art

[0003] Domestic household appliances, such as cooking plates, domestic cooking ovens, washing machines or even dishwashers, etc. generally have a main casing housing components allowing the household appliance to perform its function, and a human-machine interface which can be arranged in a plane parallel to the front face of the household appliance, that is to say in a plane parallel to the front face of the casing.

[0004] This human-machine interface can, in a known manner, be controlled with or without contact from a user. In other words, a user can control a human-machine interface by pressing buttons provided for this purpose such as buttons defined on a touch screen, or can perform a gesture remotely which will be detected by the human-machine interface.

[0005] For example, document CH700524 describes a domestic appliance comprising a contactless input unit configured to distinguish different trajectories of a user's hand and to generate different signals depending on the trajectories.

[0006] Thus, with such solutions, a user can control his domestic household appliance without having to touch this domestic household appliance.

[0007] However, a disadvantage of such solutions is that the contactless input unit may be required to detect trajectories of a user's hand that would correspond to noise coming, for example, from a person passing nearby and making a movement without actually wanting to control the domestic appliance, or a child making gestures in front of the contactless input unit.

[0008] Furthermore, it may prove complex to control such a domestic electrical appliance because comparing a trajectory carried out by a user's hand with a trajectory generating a signal may prove difficult if the trajectory carried out is not precise or if relatively close trajectories are programmed to generate different signals.

[0009] There is therefore a need to provide a solution for optimizing the control of such domestic household appliances, and in particular for simplifying the remote, or contactless, control of such domestic household appliances. Presentation of the invention

[0010] The invention aims to remedy at least in part the drawbacks mentioned above relating to the techniques of the prior art.

[0011] To do this, the invention relates to a method for controlling a household appliance by means of a human-machine interface adapted to control said household appliance in response to a gesture made by at least one hand of a user,

[0012] said method comprising the following steps: - detection of a gesture performed by said at least one hand, said gesture being composed of at least one movement performed in at least a given time; - if said detected gesture is performed in a predefined detection zone located at a distance from said human-machine interface, comparison of said detected gesture with a set of predetermined sequences, each of said predetermined sequences comprising at least one predetermined movement to be performed within a predetermined period of time, each of said predetermined sequences corresponding respectively to a control instruction for said household appliance; and - if said detected gesture corresponds to one of said predetermined sequences, delivery of an instruction to control said household appliance corresponding respectively to said predetermined sequence.

[0013] Thus, the solution proposes a new approach and invention making it possible to resolve at least in part some of the drawbacks of the prior art.

[0014] In particular, because the gesture performed by the at least one hand of the user has a spatial component, namely the at least one movement performed, and a temporal component, namely the at least one time given to perform the at least one movement, the detection of a gesture and the comparison of this gesture with a set of predetermined sequences proves to be more precise, as does the delivery of the correct control instruction desired by the user.

[0015] Furthermore, such an implementation makes it possible to limit the detection of gestures coming from a user's hand which would correspond to noise coming for example from a person passing nearby or from a child.

[0016] According to a particular aspect of at least one embodiment of the invention, said predefined detection zone has a pyramidal shape extending between a vertex carried by said human-machine interface and a base located at a normal distance to said vertex of between 30 and 70 cm, preferably 50 cm, said base extending over a length of between 20 cm and 40 cm, preferably 30 cm, said base extending over a width of between 20 cm and 40 cm, preferably 30 cm, said base being centered on a normal to the human-machine interface.

[0017] According to a particular aspect of at least one embodiment of the invention, if said detected gesture comprises: - a first part of detected gesture in which the movement consists of an approach towards said human-machine interface from a normal distance to said human-machine interface greater than 200mm to a normal distance to said human-machine interface of between 8mm and 200mm, then - a second part of detected gesture in which the movement consists of a separation of said human-machine interface up to a normal distance to said maximum human-machine interface less than 200mm in a time between 50ms and 750ms, then - a third part of detected gesture in which said movement consists of an approach towards said human-machine interface up to a normal distance to said minimum human-machine interface greater than 8mm in a time between 50ms and 750ms, then - a fourth part of detected gesture in which the movement consists of a separation of said human-machine interface from a distance normal to said human-machine interface from a distance of between 8mm and 200mm to a distance normal to said human-machine interface greater than 200mm,

[0018] then said control instruction corresponds to a selection and / or validation gesture.

[0019] According to a particular aspect of at least one embodiment of the invention, if said detected gesture comprises: - a first part of detected gesture in which the movement consists of an approach towards said human-machine interface from a normal distance to said human-machine interface greater than 350mm up to a normal distance to said human-machine interface less than 350mm, and this in a time less than 500ms, then - a second part of the gesture in which the movement consists of a continuous approach towards said human-machine interface up to a normal distance to said human-machine interface less than or equal to 150mm, and this in a time less than 400ms,

[0020] then said control instruction corresponds to an emergency function of said household appliance.

[0021] It should be noted that, preferably, the counting of said time for the first part of the detected gesture begins when said hand of said user enters said predefined detection zone, because if the hand of said user is not in the predefined detection zone, the gesture is not detected and is therefore not taken into account.

[0022] Therefore, according to a particular aspect of at least one embodiment of the invention, if the detected gesture comprises: - a first part of detected gesture in which the movement consists of an approach towards said human-machine interface from a normal distance to said human-machine interface greater than 350mm to a normal distance to said human-machine interface less than 350mm, and this in a time less than 500ms, the countdown of said time starting when said hand of said user enters said predefined detection zone, then - a second part of the gesture in which the movement consists of a continuous approach towards said human-machine interface up to a normal distance to said human-machine interface less than or equal to 150mm, and this in a time less than 400ms,

[0023] then said control instruction corresponds to an emergency function of said household appliance.

[0024] It should be noted that the movement may also include a separation of the hand from the human-machine interface between the first part of the gesture and the second part of the gesture.

[0025] According to a particular aspect of at least one embodiment of the invention, if said detected gesture comprises a first portion of detected gesture in which said at least one hand of a user is immobile for a duration substantially equal to 500ms and is located at a normal distance to said human-machine interface of between 150mm and 350mm, said control instruction corresponds to the triggering of the adjustment of a parameter. Furthermore, following the delivery of said control instruction corresponding to the adjustment of a parameter, if said detected gesture comprises a second part of detected gesture consisting of a move closer to said human-machine interface up to a normal distance to said human-machine interface of between 150mm and 350mm or a move away from said human-machine interface up to a normal distance to said human-machine interface of between 150mm and 350mm, said control instruction corresponds to a choice of adjustment level of said parameter. Furthermore, following the delivery of said control instruction corresponding to a choice of adjustment level of said parameter, if said detected gesture comprises a third part of detected gesture in which said at least one hand of a user moves closer to or away from said human-machine interface by a normal distance to said human-machine interface which is less than or equal to 5mm in a time substantially equal to 500ms, said control instruction corresponds to an end of adjustment of the parameter.

[0026] According to a variant, following the delivery of said control instruction corresponding to a choice of adjustment level of said parameter, if said hand of said user has moved towards said human-machine interface or has moved away from said human-machine interface by a distance normal to said human-machine interface greater than or equal to 15 mm during said second part of detected gesture, and if said detected gesture comprises a third part of detected gesture in which said at least one hand of a user moves towards or away from said human-machine interface by a distance normal to said human-machine interface which is less than or equal to 5 mm in a time substantially equal to 500 ms, said control instruction corresponds to an end of adjustment of the parameter.

[0027] According to a particular aspect of at least one embodiment of the invention, triggering the adjustment of a parameter may comprise a step of emitting an audible and / or luminous signal.

[0028] According to a particular aspect of at least one embodiment of the invention, the parameter belongs to the group comprising: - heating power; - a cooking method; - a selection of a cooking zone; - a cooking time; - a washing program; - a drying program; - a maintenance program; and - a system information parameter setting.

[0029] The invention also relates to a human-machine interface intended to implement a method for controlling a household appliance according to one of the aforementioned embodiments, adapted to control said household appliance in response to a gesture performed by at least one hand of a user, said human-machine interface comprising:

[0030] - an acquisition module equipped with a time-of-flight sensor, a microprocessor and a storage memory configured to store a set of predetermined sequences, and

[0031] - a control module configured to deliver said control instruction said household appliance.

[0032] According to different embodiments, the time of flight (or ToF in English for Time of Flight) sensor can for example comprise a time of flight camera, a Radar system, i.e. by wave detection, or a Lidar system, i.e. by laser detection.

[0033] According to a particular aspect of at least one embodiment of the invention, the human-machine interface comprises a display and / or input device for a user.

[0034] The invention relates to a household appliance comprising a human-machine interface according to one of the aforementioned embodiments.

[0035] According to a particular aspect of at least one embodiment of the invention, said household appliance belonging to the group comprising: - a cooking table; - an oven; - a washing machine; - a dishwasher; - a hood. Presentation of figures

[0036] The invention, as well as the various advantages that it presents, will be more easily understood in the light of the following description of an illustrative and non-limiting embodiment thereof, and of the appended drawings among which:

[0037] [Fig.l] is a schematic view of a human-machine interface according to one embodiment of the invention;

[0038] [Fig.2] is a schematic view of a detection zone according to one embodiment of the invention;

[0039] [Fig.3] is a schematic view of a control method according to one embodiment of the invention;

[0040] [Fig.4] is a schematic representation of a gesture to be detected to deliver a control instruction corresponding to a selection and / or an activation and / or an adjustment request according to an embodiment of the invention;

[0041] [Fig.5] is a schematic representation of a gesture to be detected to deliver a control instruction corresponding to an emergency function of said household appliance according to an embodiment of the invention, and

[0042] [Fig.6] is a schematic representation of a gesture to be detected to deliver a control instruction corresponding to an adjustment of a parameter of said household appliance according to an embodiment of the invention.

[0043] Detailed description of an embodiment of the invention

[0044] Identical elements shown in the above-mentioned figures are identified by identical numerical references.

[0045] The invention relates to a method 100 for controlling a household appliance 9.

[0046] This household appliance, or domestic household appliance, may in particular belong to the group comprising: a hob; an oven; a washing machine; a saddle dishwasher; a hood.

[0047] The method 100 for controlling a household appliance is therefore carried out by means of a human-machine interface 90 adapted to control this household appliance 9 in response to a gesture made by at least one hand of a user.

[0048] This control of the household appliance is done without contact between the user and the human-machine interface 90.

[0049] In other words, this control of the household appliance is done remotely, that is to say with a non-zero distance between the hand of a user and the human-machine interface 90.

[0050] It should be noted that according to alternative embodiments, the household appliance can however retain part of the controls that can be activated by contact between the user and control means provided on the human-machine interface.

[0051] Such a human-machine interface 90 may comprise, as illustrated in [Fig.l], an acquisition module 900, a control module 901, and a storage module 902.

[0052] The acquisition module can in particular be used to implement the step 101 of detecting a gesture performed by the at least one hand and the step 102 of comparing the detected gesture with a set of predetermined sequences. It comprises, in the illustrated embodiment, a time-of-flight sensor 9000 and a microprocessor 9001.

[0053] The time of flight (or ToF in English for Time of Flight) sensor can for example comprise a time of flight camera, a Radar system, i.e. by wave detection, or a Lidar system, i.e. by laser detection.

[0054] The control module 901 is here configured to deliver the control instruction for the household appliance.

[0055] As for the storage module 902, it is here configured to store the different predetermined sequences which will be compared with the gesture detected by the acquisition module.

[0056] As illustrated in [Fig.l], the human-machine interface 90 further comprises a display and / or input device 92 for a user, so as to be able to communicate with the user.

[0057] This human-machine interface 90 is adapted to control the household appliance by means of a method 100 for controlling a household appliance 9 in response to a gesture made by at least one hand of a user.

[0058] This method, as illustrated in [Fig.3], comprises the following steps: - detection 101 of a gesture performed by at least one hand, the gesture being composed of at least one movement performed in at least a given time; - if the detected gesture is performed in a predefined detection zone 8 located at a distance from the human-machine interface 90, comparison 102 of the detected gesture with a set of predetermined sequences, each of the predetermined sequences comprising at least one predetermined movement to be performed in a predetermined period of time, each of the predetermined sequences corresponding respectively to a control instruction of the household appliance 9; and - if the detected gesture corresponds to one of the predetermined sequences, delivery 103 of a control instruction corresponding respectively to the predetermined sequence.

[0059] As specified in the detection step, the gesture performed by the at least one hand is composed of at least one movement performed in at least a given time.

[0060] In other words, the gesture performed by the at least one hand has a spatial component which can be two-dimensional or three-dimensional, namely the movement, and a spatial component, namely the given time.

[0061] The two components of the gesture performed by the at least one hand are important in the progress of the method because the predetermined sequences comprise at least one predetermined movement to be performed within a predetermined period of time.

[0062] Thus, for at least some of the parts of the detected gesture, the movement performed by the hand will be compared to the predetermined movement to be performed in predetermined sequences and the time given to perform this movement will be compared to the predetermined time period to perform this predetermined movement.

[0063] In the embodiment presented, and as visible in [Fig.2], the predefined detection zone 8 here has a pyramidal shape extending between a vertex 80 carried by the human-machine interface 90 and a base 81 located at a normal distance to the vertex 80 of between 30 and 70 cm, preferably 50 cm, the base 81 extending over a length of between 20 cm and 40 cm, preferably 30 cm, the base 81 extending over a width of between 20 cm and 40 cm, preferably 30 cm, the base 81 being centered on the normal N to the human-machine interface 90.

[0064] In other embodiments, a predefined detection zone could be provided having another shape, such as a cylindrical shape, a rectangular shape.

[0065] A multiple detection zone could also be provided, with a human-machine interface presenting several time-of-flight sensors.

[0066] An embodiment could also be provided in which the control method could provide a preliminary initialization step.

[0067] An embodiment could also be provided in which the control method could provide a user authentication step so as to limit unwanted uses, such as by a child.

[0068] We now present, in relation to [Fig.4], an embodiment of a gesture to be detected to deliver a control instruction corresponding to a selection and / or an activation and / or an adjustment request according to an embodiment of the invention.

[0069] As schematically illustrated in this [Fig.4], the control instruction corresponds to a selection and / or an activation and / or an adjustment request if the detected gesture comprises four parts presented as follows: - a first part PI of detected gesture in which the movement consists of an approach towards the human-machine interface 90 from a normal distance to the human-machine interface 90 greater than 200mm to a normal distance to the human-machine interface 90 between 8mm and 200mm, then - a second part P2 of detected gesture in which the movement consists of a separation of the human-machine interface 90 up to a normal distance to the human-machine interface 90 maximum less than 200mm in a time between 50ms and 750ms, then - a third part P3 of detected gesture in which the movement consists of an approach towards the human-machine interface 90 up to a normal distance to the human-machine interface 90 minimum greater than 8mm in a time between 50ms and 750ms, then - a fourth part P4 of detected gesture in which the movement consists of a separation of the human-machine interface 90 from a distance normal to the human-machine interface 90 from a distance between 8mm and 200mm to a distance normal to the human-machine interface 90 greater than 200mm.

[0070] In other words, the control instruction corresponds to a selection and / or an activation and / or an adjustment request if the gesture comprises moving closer to a predetermined distance from the human-machine interface, then moving away from the human-machine interface by a predetermined distance within a predetermined period of time, then moving closer to the human-machine interface by a predetermined distance within a predetermined period of time, to end with moving away to a predetermined distance from the human-machine interface.

[0071] The selection and / or activation and / or adjustment request may for example be the selection of a cooking zone for a hob, the selection of a washing program for a washing machine, the activation of the cooking zone or the washing machine. This may also be an adjustment request in order to choose a setting which will be adjusted.

[0072] We now present, in relation to [Fig.5], an embodiment of a gesture to be detected to deliver a control instruction corresponding to an emergency function according to an embodiment of the invention.

[0073] As schematically illustrated in this [Fig.5], the control instruction corresponds to an emergency function if the detected gesture comprises two parts presented as follows: - a first part PI' of detected gesture in which the movement consists of an approach towards the human-machine interface 90 from a normal distance to the human-machine interface 90 greater than 350mm to a normal distance to the human-machine interface 90 less than 350mm, and this in a time less than 500ms, then - a second part P2' of gesture in which the movement consists of a continuous approach towards the human-machine interface 90 up to a normal distance to the human-machine interface 90 less than or equal to 150mm, and this in a time less than 400ms.

[0074] In other words, the control instruction corresponds to an emergency function if the gesture includes moving closer to a predetermined distance. of the human-machine interface within a predetermined period of time, then a continuous approach of the human-machine interface by a predetermined distance within another predetermined period of time.

[0075] The predetermined time period for approaching to a predetermined distance from the human-machine interface is taken into account from the moment the user's hand enters the predefined detection zone.

[0076] The emergency function may for example be an emergency stop of the household appliance.

[0077] It should be noted that the movement may also include a separation of the hand from the human-machine interface between the first part of the gesture and the second part of the gesture.

[0078] We now present, in relation to [Fig.6], an embodiment of a gesture to be detected to deliver a control instruction corresponding to a parameter setting according to an embodiment of the invention.

[0079] As illustrated schematically in this [Fig.6], the adjustment of a parameter takes place in several phases, namely a phase of triggering the adjustment of a parameter giving rise to the delivery of a control instruction corresponding to the triggering of the adjustment of a parameter, a phase of adjusting the level of the parameter giving rise to the delivery of a control instruction corresponding to the choice of adjustment level of the parameter, and a phase of end of adjustment of the parameter corresponding to the delivery of a control instruction corresponding to an end of adjustment of the parameter.

[0080] The control instruction corresponds to a triggering of the adjustment of a parameter if the detected gesture comprises a first part PI” of detected gesture in which the at least one hand of a user is immobile for a duration substantially equal to 500ms and is located at a normal distance to the human-machine interface 90 of between 150mm and 350mm.

[0081] According to one embodiment, the triggering of the adjustment of a parameter, and therefore the delivery of the control instruction corresponding to a triggering of the adjustment of a parameter, may comprise a step of emitting an audible and / or luminous signal by signal emitting means 91.

[0082] Following the delivery of the control instruction corresponding to the adjustment of a parameter, if the detected gesture comprises a second part P2'' of detected gesture consisting of a move closer to the human-machine interface 90 up to a normal distance to the human-machine interface 90 of between 150mm and 350mm or a move away from the human-machine interface 90 up to a normal distance to the human-machine interface 90 of between 150mm and 350mm, a control instruction corresponding to a choice of adjustment level of the parameter is delivered.

[0083] Following the delivery of the control instruction corresponding to a choice of parameter adjustment level, if the detected gesture comprises a third part P3” of detected gesture in which the at least one hand of a user moves closer to or away from the human-machine interface 90 by a distance normal to the human-machine interface 90 which is less than or equal to 5 mm in a time substantially equal to 500 ms, the control instruction corresponds to an end of parameter adjustment.

[0084] Depending on the type of household appliance, there may be multiple parameters to be set. In particular, the parameter may belong to the group comprising:

[0085] a heating power;

[0086] a cooking mode;

[0087] a selection of a cooking zone;

[0088] a cooking time;

[0089] a washing program;

[0090] a drying program;

[0091] a maintenance program; and

[0092] a system information parameter setting.

[0093] According to a variant of an embodiment of a gesture to be detected in order to deliver a control instruction corresponding to a parameter adjustment, following the delivery of the control instruction corresponding to a choice of parameter adjustment level, if the user's hand has moved towards the human-machine interface or has moved away from the human-machine interface by a distance normal to the human-machine interface greater than or equal to 15 mm during the second part of the detected gesture, and if the detected gesture comprises a third part of the detected gesture in which the at least one hand of a user moves towards or away from the human-machine interface by a distance normal to the human-machine interface which is less than or equal to 5 mm in a time substantially equal to 500 ms, the control instruction corresponds to an end of parameter adjustment.

[0094] The gestures performed by at least one hand of a user detailed above and giving rise to the delivery of instructions for controlling the household appliance are only examples of performing gestures performed by at least one hand of a user and resulting in the delivery of an instruction for controlling the household appliance corresponding to the predetermined sequence.

[0095] For example, one could provide predetermined sequences comprising predetermined curvilinear movements to be carried out at a constant altitude relative to the human-machine interface.

[0096] For example, one could provide predetermined sequences comprising predetermined movements to be performed with both hands.

Claims

Claims

1. Method (100) for controlling a household appliance (9) by means of a human-machine interface (90) adapted to control said household appliance (9) in response to a gesture performed by at least one hand of a user, said method comprising the following steps: - detection (101) of a gesture performed by said at least one hand, said gesture being composed of at least one movement performed in at least a given time; - if said detected gesture is performed in a predefined detection zone (8) located at a distance from said human-machine interface (90), comparison (102) of said detected gesture with a set of predetermined sequences, each of said predetermined sequences comprising at least one predetermined movement to be performed in a predetermined period of time, each of said predetermined sequences corresponding respectively to a control instruction of said household appliance (9);and - if said detected gesture corresponds to one of said predetermined sequences, delivery (103) of an instruction to control said household appliance corresponding respectively to said predetermined sequence.;

2. Control method according to claim 1, characterized in that said predefined detection zone (8) has a pyramidal shape extending between a vertex (80) carried by said human-machine interface (90) and a base (81) located at a normal distance to said vertex (80) of between 30 and 70 cm, preferably 50 cm, said base (81) extending over a length of between 20 cm and 40 cm, preferably 30 cm, said base (81) extending over a width of between 20 cm and 40 cm, preferably 30 cm, said base (81) being centered on a normal (N) to said human-machine interface (90).

3. Control method according to one of the preceding claims, characterized in that, if said detected gesture comprises: - a first part (PI) of detected gesture in which the movement consists of an approach towards said

4. human-machine interface (90) from a normal distance to said human-machine interface (90) greater than 200mm to a normal distance to said human-machine interface (90) between 8mm and 200mm, then - a second part (P2) of detected gesture in which the movement consists of a separation of said human-machine interface (90) up to a normal distance to said human-machine interface (90) maximum less than 200mm in a time between 50ms and 750ms, then - a third part (P3) of detected gesture in which said movement consists of an approach towards said human-machine interface (90) up to a normal distance to said human-machine interface (90) minimum greater than 8mm in a time between 50ms and 750ms, then - a fourth part (P4) of detected gesture in which the movement consists of a separation of said human-machine interface (90) from a distance normal to said human-machine interface (90) from a distance between 8mm and 200mm to a distance normal to said human-machine interface (90) greater than 200mm, then said control instruction corresponds to a selection and / or an activation and / or an adjustment request. Control method according to one of the preceding claims, characterized in that, if said detected gesture comprises: - a first part (PT) of detected gesture in which the movement consists of an approach towards said human-machine interface (90) from a normal distance to said human-machine interface (90) greater than 350mm to a normal distance to said human-machine interface (90) less than 350mm, and this in a time less than 500ms, then - a second part (P2') of gesture in which the movement consists of a continuous approach towards said human-machine interface (90) up to a distance normal to said human-machine interface (90) less than or equal to 150mm, and this in a time less than 400ms, then said control instruction corresponds to an emergency function of said household appliance.

5. Control method according to one of the preceding claims, characterized in that, if said detected gesture comprises a first part (PI”) of detected gesture in which said at least one hand of a user is immobile for a duration substantially equal to 500ms and is located at a normal distance to said human-machine interface (90) of between 150mm and 350mm, said control instruction corresponds to the triggering of the adjustment of a parameter, and in that, following the delivery of said control instruction corresponding to the adjustment of a parameter, if said detected gesture comprises a second part (P2”) of detected gesture consisting of an approach towards said human-machine interface (90) up to a normal distance to said human-machine interface (90) of between 150mm and 350mm or a separation from said human-machine interface (90) up to a normal distance to said human-machine interface (90) of between 150mm and 350mm,said control instruction corresponds to a choice of adjustment level of said parameter, and in that, following the delivery of said control instruction corresponding to a choice of adjustment level of said parameter, if said detected gesture comprises a third part (P3”) of detected gesture in which said at least one hand of a user moves closer to or away from said human-machine interface (90) by a distance normal to said human-machine interface (90) which is less than or equal to 5mm in a time substantially equal to 500ms, said control instruction corresponds to an end of adjustment of the parameter.,

6. Control method according to the preceding claim, characterized in that the triggering of the adjustment of a parameter may comprise a step of emitting an audible and / or luminous signal by signal emitting means (91).

7. Control method according to one of claims 5 or 6, characterized in that the parameter belongs to the group comprising: - a heating power; - a cooking mode; - a selection of a cooking zone; - a cooking time; - a washing program; - a drying program; - a maintenance program; and - a system information parameter setting.

8. Human-machine interface (90) intended to implement a method (100) for controlling a household appliance according to one of claims 1 to 7, adapted to control said household appliance (9) in response to a gesture made by at least one hand of a user, said human-machine interface (90) comprising: - an acquisition module (900) provided with a time-of-flight camera (9000) and a microprocessor (9001); - a control module (901) configured to deliver said control instruction for said household appliance, and - a storage module (902) for predetermined sequences.

9. Human-machine interface according to the preceding claim, characterized in that it comprises a display and / or input device (92) for a user.

10. Household appliance comprising a human-machine interface (90) according to one of claims 8 or 9.

11. Household appliance according to claim 10, said household appliance belonging to the group comprising: - a hob; - an oven; - a washing machine; - a dishwasher; - a hood.

Citation Information

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