Disclosure of Invention
In view of this, embodiments of the present invention provide a control method for an induction cooker and an air conditioner controller, so as to avoid the risks of electric shock and scalding caused by using the induction cooker.
In order to achieve the above purpose, the embodiments of the present invention provide the following technical solutions:
the first aspect of the embodiment of the invention discloses a control method for an induction cooker, which is suitable for an air conditioner controller arranged in a target air conditioner, wherein the target air conditioner and the induction cooker are in the same spatial region, and the method comprises the following steps:
when the induction cooker is monitored to be started, calling a circuit control module of the induction cooker to acquire circuit operation information of the induction cooker;
positioning a target user using the induction cooker, and calling an infrared module on the target air conditioner to scan the surface temperature of each human body part of the target user;
if the circuit operation information contains the leakage signal, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker;
and if the surface temperature of any human body part is greater than the temperature threshold value, outputting safety prompt information, or sending a power supply cutting instruction to a circuit control module of the induction cooker to cut off the power supply of the induction cooker.
Preferably, if the surface temperature of any of the human body parts is greater than the temperature threshold, outputting safety prompt information, or sending a power supply cut-off instruction to a circuit control module of the induction cooker to cut off the power supply of the induction cooker, including:
if the surface temperature of any human body part is greater than a first temperature threshold and less than or equal to a second temperature threshold, calling a display screen and/or a loudspeaker of the target air conditioner to output safety prompt information;
and if the surface temperature of any human body part is greater than the second temperature threshold value, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Preferably, the method further comprises:
and if the circuit operation information contains the electric leakage signal, calling a display screen and/or a loudspeaker of the target air conditioner to output electric leakage prompt information.
Preferably, the method further comprises:
and if the surface temperature of any part is greater than a second temperature threshold value, calling a display screen and/or a loudspeaker of the target air conditioner to output scald prompt information.
Preferably, the process of locating a target user using the induction cooker comprises:
and calling a specific detection device of the target air conditioner to scan the space area where the induction cooker is located so as to locate a target user using the induction cooker.
A second aspect of an embodiment of the present invention discloses an air conditioner controller, the air conditioner controller being provided in a target air conditioner, the target air conditioner being located in a same spatial area as an induction cooker, the air conditioner controller including:
the monitoring unit is used for calling a circuit control module of the induction cooker to acquire circuit operation information of the induction cooker when the induction cooker is monitored to be started;
the scanning unit is used for positioning a target user using the induction cooker and calling an infrared module on the target air conditioner to scan the surface temperature of each human body part of the target user;
the first processing unit is used for sending a power supply cutting instruction to a circuit control module of the induction cooker to cut off the power supply of the induction cooker if the circuit operation information contains a leakage signal;
and the second processing unit is used for outputting safety prompt information if the surface temperature of any human body part is greater than a temperature threshold value, or sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Preferably, the second processing unit is specifically configured to: if the surface temperature of any human body part is greater than a first temperature threshold and less than or equal to a second temperature threshold, calling a display screen and/or a loudspeaker of the target air conditioner to output safety prompt information; and if the surface temperature of any human body part is greater than the second temperature threshold value, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Preferably, the first processing unit is further configured to: and if the circuit operation information contains the electric leakage signal, calling a display screen and/or a loudspeaker of the target air conditioner to output electric leakage prompt information.
Preferably, the second processing unit is further configured to: and if the surface temperature of any part is greater than a second temperature threshold value, calling a display screen and/or a loudspeaker of the target air conditioner to output scald prompt information.
Preferably, the scanning unit for locating a target user using the induction cooker is specifically configured to: and calling a specific detection device of the target air conditioner to scan the space area where the induction cooker is located so as to locate a target user using the induction cooker.
Based on the electromagnetic oven control method and the air conditioner controller provided by the embodiment of the invention, the method comprises the following steps: when the induction cooker is monitored to be started, calling a circuit control module of the induction cooker to acquire circuit operation information of the induction cooker; positioning a target user using the induction cooker, and calling an infrared module on a target air conditioner to scan the surface temperature of each human body part of the target user; if the circuit operation information contains the leakage signal, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker; and if the surface temperature of any human body part is greater than the temperature threshold value, outputting safety prompt information, or sending a power supply cutting instruction to a circuit control module of the induction cooker to cut off the power supply of the induction cooker. In this scheme, through air conditioner controller monitoring electromagnetism stove whether electric leakage to and whether the user of monitoring electromagnetism stove scalds. When the induction cooker is in electric leakage or a user is scalded, the air conditioner controller can cut off the power supply of the induction cooker so as to avoid the risks of electric shock and scalding caused by using the induction cooker.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
In this application, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising a … …" does not exclude the presence of another identical element in a process, method, article, or apparatus that comprises the element.
As known in the background art, users may have a risk of electric shock and scald when using the induction cooker, especially for users with younger ages such as pupils. In order to avoid the risks of electric shock and scalding caused by using the induction cooker, a method capable of monitoring the operation state of the induction cooker and controlling the induction cooker is urgently needed.
Therefore, the embodiment of the invention provides an induction cooker control method and an air conditioner controller, which are used for monitoring whether electric leakage occurs in the induction cooker or not and monitoring whether a user of the induction cooker is scalded or not. When the induction cooker is in electric leakage or a user is scalded, the air conditioner controller can cut off the power supply of the induction cooker so as to avoid the risks of electric shock and scalding caused by using the induction cooker.
Referring to fig. 1, a control method for an induction cooker according to an embodiment of the present invention is shown, where the control method is applied to an air conditioner controller disposed in a target air conditioner, and the target air conditioner is located in a same space region (e.g., a kitchen region) as the induction cooker, and the control method for the induction cooker includes the following steps:
step S101: when the induction cooker is monitored to be started, a circuit control module of the induction cooker is called to obtain circuit operation information of the induction cooker.
It should be noted that, data exchange (or communication) is performed between the air conditioner controller of the target air conditioner and the induction cooker through the wireless communication module.
In the process of the concrete implementation step S101, when the induction cooker is turned on, the circuit control module of the induction cooker sends the start-up information to the air conditioner controller through the wireless communication module; and the air conditioner controller determines that the induction cooker is started after receiving the starting information.
After monitoring that the induction cooker is started, the air conditioner controller acquires circuit operation information of the induction cooker by calling a circuit control module of the induction cooker; specifically, a circuit control module of the induction cooker acquires circuit operation information of the induction cooker, and the circuit control module sends the acquired circuit operation information to an air conditioner controller through a wireless communication module; the air conditioner controller can monitor the circuit operation state of the induction cooker according to the circuit operation information.
Step S102: and positioning a target user using the induction cooker, and calling an infrared module on a target air conditioner to scan the surface temperature of each human body part of the target user.
In the process of implementing step S102 specifically, after the air conditioner controller monitors that the induction cooker is turned on, the air conditioner controller invokes a specific detection device of a target air conditioner to scan a spatial region where the induction cooker is located, so as to locate a target user using the induction cooker.
In some embodiments, the particular detection device may be a millimeter wave radar or camera, among other devices that can be used to locate the user. For example: after the air conditioner controller monitors that the induction cooker is started, the air conditioner controller calls a millimeter wave radar of a target air conditioner to scan a kitchen area so as to locate a target user using the induction cooker.
After the air conditioner controller is positioned to the target user, the air conditioner controller calls the infrared module on the target air conditioner to scan the surface temperature of each human body part of the target user, namely, the surface temperature of the whole body of the target user is scanned through the infrared module on the target air conditioner.
Step S103: and if the circuit operation information contains the leakage signal, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
In some embodiments, the circuit operation information includes a signal for characterizing an operation state of the induction cooker, and when a leakage condition occurs in the induction cooker, the circuit operation information includes a corresponding leakage signal.
In the process of specifically implementing the step S104, if the circuit operation information includes an electric leakage signal, that is, if an electric leakage condition occurs in the induction cooker, the air conditioner controller sends a power supply cut-off instruction to a circuit control module of the induction cooker to cut off power supply of the induction cooker; specifically, the air conditioner controller sends a power supply cut-off instruction to a circuit control module of the induction cooker through the wireless communication module, and the circuit control module responds to the power supply cut-off instruction to cut off power supply of the induction cooker, so that electric shock risks are avoided.
In some embodiments, if the circuit operation information includes a leakage signal, the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output a leakage prompt message to prompt a user to repair the induction cooker. For example: if the circuit operation information contains an electric leakage signal, the air conditioner controller calls a display screen of the target air conditioner to display electric leakage prompting information of 'the electric leakage condition of the induction cooker' and calls a loudspeaker of the target air conditioner to play the electric leakage prompting information of 'the electric leakage condition of the induction cooker'.
In some embodiments, if the circuit operation information includes an electrical leakage signal, the air conditioner controller calls the wireless communication module of the target air conditioner to send an electrical leakage prompt message to a specific object, where the specific object may be a mobile terminal to which the target air conditioner is bound in advance.
It should be noted that, if the circuit operation information includes the leakage signal, the aforementioned processing steps of cutting off the power supply of the induction cooker, outputting the leakage prompt information, sending the leakage prompt information, and the like may be executed at the same time, or the power supply of the induction cooker may be cut off first, and then the leakage prompt information may be output and sent, and the execution sequence of the aforementioned processing steps is not specifically limited herein.
Step S104: and if the surface temperature of any human body part is greater than the temperature threshold value, outputting safety prompt information, or sending a power supply cutting instruction to a circuit control module of the induction cooker to cut off the power supply of the induction cooker.
In the process of implementing step S104, after acquiring the surface temperature of each human body part of the target user, the air conditioner controller compares the surface temperature of each human body part of the target user with the temperature threshold. When the surface temperature of any human body part of the target user is greater than the temperature threshold value, the air-conditioning controller outputs safety prompt information, or the air-conditioning controller sends a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
In some embodiments, if the surface temperature of any human body part of the target user (equivalent to the surface temperature of a local human body) is greater than the first temperature threshold and less than or equal to the second temperature threshold, indicating that the target user is at risk of being scalded, the air conditioner controller invokes a display screen and/or a speaker of the target air conditioner to output safety prompt information. For example: when the surface temperature of any human body part of the target user is higher than 40 ℃ and lower than or equal to 50 ℃, the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output safety prompt information of 'scalding risk and please pay attention to safety'.
In other embodiments, if the surface temperature of any human body part of the target user is greater than the second temperature threshold value, which indicates that the target user is scalded, the air conditioner controller sends a power supply cut-off instruction to the circuit control module of the induction cooker to cut off the power supply of the induction cooker. For example: when the surface temperature of any human body part of the target user is higher than 50 ℃, the air-conditioning controller sends a power supply cut-off instruction to the circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
In some embodiments, if the surface temperature of any part of the target user is greater than the second temperature threshold, the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output scald prompting information to prompt that the target user is scalded. For example: when the surface temperature of any human body part of the target user is higher than 50 ℃, the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output scald prompt information of 'you are scalded and please see a doctor in time'.
If the surface temperature of any part of the target user is greater than the second temperature threshold, the foregoing processing steps may be executed simultaneously with the aforementioned processing steps such as cutting off the power supply to the induction cooker and outputting the scald prompting message, or the power supply to the induction cooker may be cut off first and then the scald prompting message may be output, and the execution order of the foregoing processing steps is not specifically limited herein.
In the embodiment of the invention, the air conditioner controller is used for monitoring whether the induction cooker leaks electricity or not and monitoring whether a user of the induction cooker is scalded or not. When the induction cooker is in electric leakage or a user is scalded, the air conditioner controller can cut off the power supply of the induction cooker so as to avoid the risks of electric shock and scalding caused by using the induction cooker.
As can be seen from the content in fig. 1 in the embodiment of the present invention, the air conditioner controller can monitor whether the induction cooker is electrically leaked, and can also monitor whether a user of the induction cooker is scalded; the following is a description of how to monitor whether the electromagnetic oven leaks electricity and to monitor whether a user of the electromagnetic oven is burned by using the flowcharts shown in fig. 2 and 3, respectively.
Referring to fig. 2, a flowchart for monitoring whether an induction cooker leaks electricity according to an embodiment of the present invention is shown, including the following steps:
step S201: the air conditioner controller obtains the circuit operation information of the induction cooker sent by the circuit control module of the induction cooker.
In the process of implementing the step S201 specifically, after the induction cooker is turned on, the circuit control module of the induction cooker performs leakage detection to obtain circuit operation information of the induction cooker; and the circuit control module of the induction cooker sends the circuit operation information to the air conditioner controller.
Step S202: and if the air conditioner controller determines that the circuit operation information contains the leakage signal, the air conditioner controller sends a power supply cut-off instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Step S203: and the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output the electric leakage prompt information.
Through the steps S201 to S203, the air conditioning controller may monitor whether the induction cooker is in an electric leakage state, and when the induction cooker is in an electric leakage state, the air conditioning controller may cut off the power supply of the induction cooker, so as to avoid the risk of electric shock caused by using the induction cooker.
Referring to fig. 3, a flowchart illustrating the monitoring of whether a user of an induction cooker is scalded according to an embodiment of the present invention is shown, including the following steps:
step S301: the air conditioner controller positions a target user using the induction cooker and calls an infrared module on the target air conditioner to scan the surface temperature of each human body part of the target user.
Step S302: and if the surface temperature of any human body part is more than 40 ℃ and less than or equal to 50 ℃, the air conditioner controller calls a display screen and/or a loudspeaker of the target air conditioner to output safety prompt information.
Step S303: if the surface temperature of any human body part is more than 50 ℃, the air conditioner controller sends a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Through the steps S301 to S303, the air conditioning controller can monitor whether a user of the induction cooker is scalded, and when the user of the induction cooker is scalded, the air conditioning controller can cut off the power supply of the induction cooker, so as to avoid the risk of scalding caused by using the induction cooker.
Corresponding to the method for controlling an induction cooker provided by the embodiment of the present invention, referring to fig. 4, an embodiment of the present invention further provides a structural block diagram of an air conditioner controller, where the air conditioner controller is disposed in a target air conditioner, and the target air conditioner and the induction cooker are located in the same spatial area, and the air conditioner controller includes: a monitoring unit 401, a scanning unit 402, a first processing unit 403, and a second processing unit 404;
the monitoring unit 401 is configured to call a circuit control module of the induction cooker to obtain circuit operation information of the induction cooker when it is monitored that the induction cooker is turned on.
And the scanning unit 402 is used for positioning a target user using the induction cooker and calling an infrared module on the target air conditioner to scan the surface temperature of each human body part of the target user.
In a specific implementation, the scanning unit 402 for locating a target user using an induction cooker is specifically configured to: and calling a specific detection device of the target air conditioner to scan the space area where the induction cooker is positioned so as to locate the target user using the induction cooker.
The first processing unit 403 is configured to send a power supply cut-off instruction to a circuit control module of the induction cooker to cut off power supply to the induction cooker if the circuit operation information includes a leakage signal.
Preferably, the first processing unit 403 is further configured to: and if the circuit operation information contains the leakage signal, calling a display screen and/or a loudspeaker of the target air conditioner to output leakage prompt information.
The second processing unit 404 is configured to output safety prompt information if the surface temperature of any human body part is greater than the temperature threshold, or send a power supply cut-off instruction to the circuit control module of the induction cooker to cut off power supply to the induction cooker.
In a specific implementation, the second processing unit 404 is specifically configured to: if the surface temperature of any human body part is greater than the first temperature threshold and less than or equal to the second temperature threshold, calling a display screen and/or a loudspeaker of the target air conditioner to output safety prompt information; and if the surface temperature of any human body part is greater than the second temperature threshold value, sending a power supply cutting instruction to a circuit control module of the induction cooker so as to cut off the power supply of the induction cooker.
Preferably, the second processing unit 404 is further configured to: and if the surface temperature of any part is greater than the second temperature threshold value, calling a display screen and/or a loudspeaker of the target air conditioner to output scald prompt information.
In summary, embodiments of the present invention provide an induction cooker control method and an air conditioner controller, which monitor whether an electric leakage occurs in the induction cooker and whether a user of the induction cooker is burned through the air conditioner controller. When the induction cooker is in electric leakage or a user is scalded, the air conditioner controller can cut off the power supply of the induction cooker so as to avoid the risks of electric shock and scalding caused by using the induction cooker.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the system or system embodiments are substantially similar to the method embodiments and therefore are described in a relatively simple manner, and reference may be made to some of the descriptions of the method embodiments for related points. The above-described system and system embodiments are only illustrative, wherein the units described as separate parts may or may not be physically separate, and the parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the present embodiment. One of ordinary skill in the art can understand and implement it without inventive effort.
Those of skill would further appreciate that the various illustrative elements and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware, computer software, or combinations of both, and that the various illustrative components and steps have been described above generally in terms of their functionality in order to clearly illustrate this interchangeability of hardware and software. Whether such functionality is implemented as hardware or software depends upon the particular application and design constraints imposed on the implementation. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present invention.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.