CN106444451B - Food taking and placing prompting method and device in intelligent electric cooker - Google Patents

Food taking and placing prompting method and device in intelligent electric cooker Download PDF

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Publication number
CN106444451B
CN106444451B CN201610893992.4A CN201610893992A CN106444451B CN 106444451 B CN106444451 B CN 106444451B CN 201610893992 A CN201610893992 A CN 201610893992A CN 106444451 B CN106444451 B CN 106444451B
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food
intelligent electric
safe time
taken out
electric cooker
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CN106444451A (en
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成悦
谢焱
褚跃跃
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Beijing Xiaomi Mobile Software Co Ltd
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Beijing Xiaomi Mobile Software Co Ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/004Cooking-vessels with integral electrical heating means

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Cookers (AREA)

Abstract

The disclosure relates to a method and a device for prompting food taking and placing in an intelligent electric cooker, wherein the method comprises the following steps: after the food in the intelligent electric rice cooker is cooked, whether the food is taken out within the safe time is detected, and when the food in the intelligent electric rice cooker is not taken out within the safe time, a prompt message is sent to the terminal and used for prompting a user to take out the food. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.

Description

Food taking and placing prompting method and device in intelligent electric cooker
Technical Field
The present disclosure relates to intelligent household electrical appliance technology, and more particularly, to a method and apparatus for prompting food pick-and-place in an intelligent electric rice cooker.
Background
The intelligent electric cooker is a new generation electric cooker different from the traditional mechanical cooker, and is controlled by a computer chip program to monitor the temperature in real time so as to flexibly adjust the firepower and automatically finish the cooking process. Has three characteristics of good eating after cooking, timing appointment and multiple functions, is fashionable and convenient, and is a modern fashion kitchen appliance product which is popular in modern life! The intelligent electric cooker has a timing function, and a user sets timing time after putting food into the intelligent electric cooker in the process of using the intelligent electric cooker. After the timing time is up, the intelligent electric cooker is automatically turned off, a user often forgets to take out food, and if the food is not taken out for a long time, the food is deteriorated.
Disclosure of Invention
In order to overcome the problems in the related art, the present disclosure provides a method and an apparatus for prompting food pick-and-place in an intelligent electric rice cooker.
According to a first aspect of the embodiments of the present disclosure, there is provided a method for prompting food taking and placing in an intelligent electric cooker, including:
after the food in the intelligent electric cooker is cooked, detecting whether the food is taken out within a safe time;
and when the food in the intelligent electric cooker is not taken out within the safe time, sending a prompt message to a terminal, wherein the prompt message is used for prompting a user to take out the food.
Optionally, the detecting whether the food is taken out within a safe time includes:
acquiring a cooking mode of the intelligent electric cooker;
determining a kind of the food according to the cooking mode;
determining the safe time according to the type of the food;
and detecting whether the food is taken out within the safe time through a gravity sensor.
Optionally, the detecting whether the food is taken out within a safe time includes:
detecting environmental data around the intelligent electric cooker;
determining the safe time according to the environment data;
and detecting whether the food is taken out within the safe time through a gravity sensor.
Optionally, the detecting whether the food is taken out within a safe time includes:
acquiring a cooking mode of the intelligent electric cooker;
determining a kind of the food according to the cooking mode;
detecting environmental data around the intelligent electric cooker;
determining the safe time according to the type of the food and the environmental data;
and detecting whether the food is taken out within the safe time through a gravity sensor.
Optionally, the sending the prompt message to the terminal includes:
when the user is connected with the intelligent electric cooker through a plurality of terminals, selecting a terminal with the nearest operation time from the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals;
and sending the prompt message to the target terminal.
Optionally, the prompt message further includes a prompt mode, where the prompt mode includes any one or more of a text prompt, a voice prompt, and a vibration prompt.
According to a second aspect of the embodiments of the present disclosure, there is provided a food taking and placing prompting device in an intelligent electric cooker, including:
the detection module is configured to detect whether food is taken out within a safe time after the food in the intelligent electric cooker is cooked;
the sending module is configured to send a prompt message to a terminal when the detection module detects that the food in the intelligent electric cooker is not taken out within the safe time, wherein the prompt message is used for prompting a user to take out the food.
Optionally, the detection module includes:
a first obtaining sub-module configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule configured to determine a kind of the food according to the cooking mode;
a second determination submodule configured to determine the safe time according to a kind of the food;
a first detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
Optionally, the detection module includes:
a second detection sub-module configured to detect environmental data around the intelligent rice cooker;
a third determination submodule configured to determine the safe time from the environment data;
a third detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
Optionally, the detection module includes:
a first obtaining sub-module configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule configured to determine a kind of the food according to the cooking mode;
a second detection sub-module configured to detect environmental data around the intelligent rice cooker;
a fourth determination submodule configured to determine the safe time according to the kind of the food and the environment data;
a fifth detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
Optionally, the sending module includes:
a selection submodule configured to select a terminal having the closest operation time from the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals when the user is connected to the intelligent electric rice cooker through the plurality of terminals;
a sending submodule configured to send the prompt message to the target terminal.
Optionally, the prompt message further includes a prompt mode, where the prompt mode includes any one or more of a text prompt, a voice prompt, and a vibration prompt.
According to a third aspect of the embodiments of the present disclosure, there is provided a food taking and placing prompting device in an intelligent electric cooker, including:
a memory;
a memory configured to store processor-executable instructions;
wherein the processor is configured to:
after the food in the intelligent electric cooker is cooked, detecting whether the food is taken out within a safe time;
and when the food in the intelligent electric cooker is not taken out within the safe time, sending a prompt message to a terminal, wherein the prompt message is used for prompting a user to take out the food.
The technical scheme provided by the embodiment of the disclosure can have the following beneficial effects: after the food in the intelligent electric rice cooker is cooked, whether the food is taken out within the safe time is detected, and when the food in the intelligent electric rice cooker is not taken out within the safe time, a prompt message is sent to the terminal and used for prompting a user to take out the food. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the invention and together with the description, serve to explain the principles of the invention.
Fig. 1 is a flowchart illustrating a method for prompting food pick-and-place in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 2 is a flowchart illustrating a method for prompting food pick-and-place in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 3 is a flowchart illustrating a method for prompting food pick-and-place in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 4 is a flowchart illustrating a method for prompting food pick-and-place in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 5 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 6 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 7 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 8 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 9 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment.
Fig. 10 is a block diagram of an intelligent rice cooker with a food pick-and-place prompting device according to an exemplary embodiment.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present invention. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the invention, as detailed in the appended claims.
Fig. 1 is a flowchart illustrating a method for prompting food pick-and-place in an intelligent rice cooker according to an exemplary embodiment, where the method for prompting food pick-and-place in the intelligent rice cooker is performed by the intelligent rice cooker, and as shown in fig. 1, the method for prompting food pick-and-place in the intelligent rice cooker includes the following steps.
In step S101, after the food in the intelligent electric cooker is cooked, it is detected whether the food is taken out within a safe time.
The intelligent electric cooker is provided with a gravity sensor which can detect whether food exists in the intelligent electric cooker and whether the food is taken out. In a first implementation, the safe time is preset by the user, and the preset time is used for detecting different kinds of food in the electric rice cooker uniformly, and the safe time is 4 hours, 6 hours or 8 hours, for example.
In the second implementation mode, the cooking mode of the intelligent electric cooker is obtained, the food type is determined according to the cooking mode, and then the safe time is determined according to the food type. In the mode, safe time corresponding to different types of food is preset in the intelligent electric cooker, and different types of food correspond to different safe time.
In the third implementation mode, environmental parameters around the intelligent electric cooker are detected and detected, and the safety time is determined according to the environmental parameters. The environmental parameters include temperature, humidity, etc. Taking the environmental parameter as the environmental temperature as an example, when the environmental temperature is low, the quality guarantee time of the food is long, and when the environmental temperature is high, the quality guarantee time of the food is short, so that different environmental temperatures can be set to correspond to different safe times.
In a fourth implementation, the safe time is determined according to the food type and the environmental parameters.
In step S102, when it is detected that the food in the intelligent electric cooker is not taken out within the safe time, a prompt message for prompting the user to take out the food is sent to the terminal.
The intelligent electric cooker is connected with a terminal, the terminal is a mobile phone, an intelligent watch, a computer, a television and the like, and the intelligent electric cooker and the terminal can be connected and communicated through Bluetooth, invalid Fidelity (WIFI for short), a mobile network and the like.
When detecting that the food in the intelligent electric cooker is not taken out within the safe time, sending a prompt message to the terminal, and prompting the user to take out the food by the terminal according to the prompt message. The prompting message can also comprise a prompting mode, and the prompting mode comprises any one or more of a text prompt, a voice prompt and a vibration prompt. The text prompt means prompting the user by sending text information to the user, and the voice prompt means prompting the user by sending voice information to the user.
When the user connects to the intelligent rice cooker through the plurality of terminals, the terminal with the closest operation time may be selected from the plurality of terminals as the target terminal according to the operation time of the user on the plurality of terminals, and then the prompt message may be sent to the target terminal.
In this embodiment, after the food in the intelligent electric rice cooker is cooked, whether the food is taken out within the safe time is detected, and when the food in the intelligent electric rice cooker is not taken out within the safe time, a prompt message for prompting a user to take out the food is sent to the terminal. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.
On the basis of the embodiment shown in fig. 1, fig. 2 is a flowchart illustrating a method for prompting food pick-up and placement in an intelligent electric rice cooker according to an exemplary embodiment, and as shown in fig. 2, the method for prompting food pick-up and placement in the intelligent electric rice cooker includes the following steps.
In step S201, after the food in the intelligent electric cooker is cooked, a cooking mode of the intelligent electric cooker is obtained.
The cooking modes of the intelligent electric cooker comprise a soup stewing mode, a rice steaming mode, a porridge cooking mode and the like.
In step S202, the kind of food is determined according to the cooking mode.
Different cooking modes are used to cook different kinds of food, for example, the stew mode may determine that the kind of food is soup, the rice steaming mode may determine that the kind of food is rice, and the porridge cooking mode may determine that the kind of food is porridge.
In step S203, a safe time is determined according to the kind of food.
Different kinds of food may deteriorate at different times, for example, soup and porridge may deteriorate more easily than rice, and the safe time for rice may be set to 8 hours, the safe time for porridge to 6 hours, and the safe time for soup to 4 hours. The safety time corresponding to various kinds of food can be preset when the intelligent electric cooker leaves the factory, the safety time set when the intelligent electric cooker leaves the factory is a default value, and a subsequent user can reset the safety time corresponding to various kinds of food according to own needs. When the kind of food is to be detected later, the safe time can be determined according to the kind of food.
In step S204, it is detected whether the food is taken out within a safe time by the gravity sensor.
After the safety time is determined, the intelligent electric cooker starts to time, and detects whether the food is taken out or not through the gravity sensor, and the gravity sensor can detect whether the food is taken out or not according to a preset detection period, for example, every 10 minutes, half an hour or an hour, and certainly can detect whether the food is taken out or not in real time.
In step S205, when it is detected that the food in the intelligent electric cooker is not taken out within the safe time, a prompt message for prompting the user to take out the food is sent to the terminal.
In this embodiment, after the food in the intelligent electric rice cooker is cooked, the cooking mode of the intelligent electric rice cooker is obtained, the type of the food is determined according to the cooking mode, the safety time is determined according to the type of the food, whether the food is taken out within the safety time is detected by the gravity sensor, and when the food in the intelligent electric rice cooker is not taken out within the safety time, a prompt message is sent to the terminal, wherein the prompt message is used for prompting a user to take out the food. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.
Based on the embodiment shown in fig. 1, fig. 3 is a flowchart illustrating a method for prompting food pick-up and placement in an intelligent rice cooker according to an exemplary embodiment, and as shown in fig. 3, the method for prompting food pick-up and placement in an intelligent rice cooker includes the following steps.
In step S301, after the food in the intelligent electric rice cooker is cooked, environmental data around the intelligent electric rice cooker is detected.
The environmental data includes ambient temperature and/or humidity, etc. The environment temperature and the environment humidity can be measured by a temperature sensor arranged on the intelligent electric cooker, and the environment humidity can be measured by a humidity sensor arranged on the intelligent electric cooker.
In step S302, a secure time is determined from the environmental data.
When the environment data includes the environment temperature, the higher the environment temperature is, the more easily the food in the intelligent electric cooker goes bad, the shorter the corresponding safety time should be, the safety time corresponding to different temperature intervals can be preset, when the environment data includes the environment humidity, the larger the humidity is, the more easily the food goes bad, the shorter the corresponding safety time should be, the safety time corresponding to different environment humidity intervals can be preset. Taking the ambient temperature as an example:
when the ambient temperature is 25 degrees or above 25 degrees, the food in the intelligent electric cooker can be stored for 8 hours by default, and the safe time is 6 hours.
When the ambient temperature is 1-25 ℃, food in the intelligent electric cooker can be stored for 15 hours by default, and the safe time is 12 hours.
When the ambient temperature is 0 ℃ or below 0 ℃, food in the intelligent electric cooker can be stored for 24 hours by default, and the safe time is 22 hours.
After the environment temperature around the intelligent electric cooker is detected, the intelligent electric cooker judges which temperature interval the environment temperature falls in, and the safety time corresponding to the temperature interval is the safety time of food. The corresponding relationship between the environmental temperature and the safety time is only an example, and can be specifically adjusted according to the needs of the user.
In step S303, it is detected whether the food is taken out within a safe time by the gravity sensor.
In step S304, when it is detected that the food in the intelligent electric cooker is not taken out within the safe time, a prompt message for prompting the user to take out the food is sent to the terminal.
In this embodiment, after the food in the intelligent electric rice cooker is cooked, the safe time is determined according to the environmental data by detecting the environmental data around the intelligent electric rice cooker, whether the food is taken out within the safe time is detected by the gravity sensor, and when the food in the intelligent electric rice cooker is not taken out within the safe time, a prompt message for prompting a user to take out the food is sent to the terminal. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.
Based on the embodiment shown in fig. 1, fig. 4 is a flowchart illustrating a method for prompting food pick-up and placement in an intelligent rice cooker according to an exemplary embodiment, and as shown in fig. 4, the method for prompting food pick-up and placement in an intelligent rice cooker includes the following steps.
In step S401, after the food in the intelligent electric cooker is cooked, a cooking mode of the intelligent electric cooker is obtained.
In step S402, the kind of food is determined according to the cooking mode.
In step S403, environmental data around the intelligent rice cooker is detected.
In step S404, a safe time is determined according to the kind of food and the environmental data.
In this embodiment, the safe time of different types of food in different environments is different, and the corresponding relationship between the type of food and the environmental data and the safe time may be preset, for example:
when the food type is rice, the safe time of the rice at the ambient temperature of 1-20 deg.C is 15 hr, the safe time of the rice at the ambient temperature of 0 deg.C or below 0 deg.C is 24 hr, and the safe time of the rice at the ambient temperature of 20-30 deg.C is 8 hr.
When the food is soup, the safe time of the soup at the ambient temperature of 1-20 deg.C is 10 hr, the safe time of the soup at the ambient temperature of 0 deg.C or below 0 deg.C is 20 hr, and the safe time of the soup at the ambient temperature of 20-30 deg.C is 6 hr.
The corresponding relationship between the environmental temperature and the safety time is only an example, and can be specifically adjusted according to the needs of the user.
In step S405, it is detected whether the food is taken out within a safe time by the gravity sensor.
In step S406, when it is detected that the food in the intelligent electric cooker is not taken out within the safe time, a prompt message for prompting the user to take out the food is sent to the terminal.
In this embodiment, after the food in the intelligent electric rice cooker is cooked, the cooking mode of the intelligent electric rice cooker is obtained, the type of the food is determined according to the cooking mode, the environmental data around the intelligent electric rice cooker is detected, the safe time is determined according to the environmental data, whether the food is taken out within the safe time is detected through the gravity sensor, and when the situation that the food in the intelligent electric rice cooker is not taken out within the safe time is detected, a prompt message is sent to the terminal and used for prompting a user to take out the food. According to the method, when the food in the intelligent electric cooker is not taken out for a long time, the user is actively prompted to take out the food, so that the food is prevented from going bad.
Fig. 5 is a block diagram illustrating a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment, and as shown in fig. 5, the food pick-and-place prompting device in the intelligent electric rice cooker of the present embodiment includes: a detection module 11 and a transmission module 12.
The detection module 11 is configured to detect whether food is taken out within a safe time after the food in the intelligent electric cooker is cooked;
a sending module 12 configured to send a prompt message to a terminal when the detection module detects that the food in the intelligent electric cooker is not taken out within the safe time, wherein the prompt message is used for prompting a user to take out the food.
Optionally, the prompt message further includes a prompt mode, where the prompt mode includes any one or more of a text prompt, a voice prompt, and a vibration prompt.
In the food taking and placing prompting device in the intelligent electric cooker of the embodiment, each module of the device can be used for executing the method in the embodiment shown in fig. 1, and specific modes refer to the description of the embodiment shown in fig. 1, which is not described herein again.
Fig. 6 is a block diagram of a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment, as shown in fig. 6, the device of this embodiment is based on the device shown in fig. 5, and the detection module 11 includes:
a first obtaining sub-module 111 configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule 112 configured to determine a kind of the food according to the cooking mode;
a second determination submodule 113 configured to determine the safe time according to the kind of the food;
a first detection submodule 114 configured to detect whether the food is taken out within the safe time through a gravity sensor.
In the food taking and placing prompting device in the intelligent electric cooker of the embodiment, each module of the device can be used for executing the method in the embodiment shown in fig. 2, and specific manner refers to the description of the embodiment shown in fig. 2, which is not described herein again.
Fig. 7 is a block diagram of a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment, as shown in fig. 7, the device of this embodiment is based on the device shown in fig. 5, and the detection module 11 includes:
a second detection submodule 115 configured to detect environmental data around the intelligent rice cooker;
a third determining submodule 116 configured to determine the safe time from the environment data;
a third detection submodule 117 configured to detect whether the food is taken out within the safe time through a gravity sensor.
In the food taking and placing prompting device in the intelligent electric cooker of the embodiment, each module of the device can be used for executing the method in the embodiment shown in fig. 3, and specific manner refers to the description of the embodiment shown in fig. 3, which is not described herein again.
Fig. 8 is a block diagram of a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment, as shown in fig. 8, the device of this embodiment is based on the device shown in fig. 5, and the detection module 11 includes:
a first obtaining sub-module 111 configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule 112 configured to determine a kind of the food according to the cooking mode;
a second detection submodule 115 configured to detect environmental data around the intelligent rice cooker;
a fourth determination submodule 118 configured to determine the safe time according to the type of the food and the environment data;
a fifth detection submodule 119 configured to detect whether the food is taken out within the safe time by a gravity sensor.
In the food taking and placing prompting device in the intelligent electric cooker of the embodiment, each module of the device can be used for executing the method in the embodiment shown in fig. 4, and specific modes refer to the description of the embodiment shown in fig. 4, which is not described herein again.
Fig. 9 is a block diagram of a food pick-and-place prompting device in an intelligent electric rice cooker according to an exemplary embodiment, as shown in fig. 9, the device of this embodiment is based on the device shown in fig. 5, and the sending module 12 includes:
a selection submodule 121 configured to select, when the user is connected to the intelligent rice cooker through a plurality of terminals, a terminal having the closest operation time from among the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals;
a sending submodule 122 configured to send the prompt message to the target terminal.
In the food taking and placing prompting device in the intelligent electric cooker of the embodiment, each module of the device can be used for executing the method in the embodiment shown in fig. 1, and specific modes refer to the description of the embodiment shown in fig. 1, which is not described herein again.
Fig. 10 is a block diagram illustrating an example of a food pick-and-place prompting device in an intelligent rice cooker, and as shown in fig. 10, the food pick-and-place prompting device 200 in the intelligent rice cooker includes: a processor 21 and a memory 22 for storing instructions executable by the processor 21, the memory 22 being coupled to and in communication with the processor 21 via a system bus.
Wherein the processor 21 is configured to:
after the food in the intelligent electric cooker is cooked, detecting whether the food is taken out within a safe time;
and when detecting that the food in the intelligent electric cooker is not taken out within the safe time, sending a prompt message to a terminal, wherein the prompt message is used for prompting a user to take out the food.
It should be understood that in the above embodiments, the processor may be a Central Processing Unit (CPU), other general-purpose processors, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), etc. The general-purpose processor may be a microprocessor, or the processor may be any conventional processor, and the aforementioned memory may be a read-only memory (ROM), a Random Access Memory (RAM), a flash memory, a hard disk, or a solid state disk. The steps of a method disclosed in connection with the embodiments of the present invention may be directly implemented by a hardware processor, or may be implemented by a combination of hardware and software modules in the processor.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the invention following, in general, the principles of the invention and including such departures from the present disclosure as come within known or customary practice within the art to which the invention pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims.
It will be understood that the invention is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the invention is limited only by the appended claims.

Claims (9)

1. A food taking and placing prompting method in an intelligent electric cooker is characterized by comprising the following steps:
after the food in the intelligent electric cooker is cooked, detecting whether the food is taken out within a safe time; different kinds of food are safe for different times in different environments;
when the situation that the food in the intelligent electric cooker is not taken out within the safe time is detected, a prompt message is sent to a terminal, and the prompt message is used for prompting a user to take out the food; when the user is connected with the intelligent electric cooker through a plurality of terminals, selecting a terminal with the nearest operation time from the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals;
sending the prompt message to the target terminal;
the detecting whether the food is taken out within a safe time includes:
acquiring a cooking mode of the intelligent electric cooker;
determining a kind of the food according to the cooking mode;
determining the safe time according to the type of the food;
and detecting whether the food is taken out within the safe time through a gravity sensor.
2. The method of claim 1, wherein said detecting whether the food is removed within a safe time comprises:
detecting environmental data around the intelligent electric cooker;
determining the safe time according to the environment data;
and detecting whether the food is taken out within the safe time through a gravity sensor.
3. The method of claim 1, wherein said detecting whether the food is removed within a safe time comprises:
acquiring a cooking mode of the intelligent electric cooker;
determining a kind of the food according to the cooking mode;
detecting environmental data around the intelligent electric cooker;
determining the safe time according to the type of the food and the environmental data;
and detecting whether the food is taken out within the safe time through a gravity sensor.
4. The method according to any one of claims 1-3, wherein the prompting message further comprises a prompting mode, and the prompting mode comprises any one or more of a text prompt, a voice prompt and a vibration prompt.
5. The utility model provides a food in intelligence rice cooker gets puts suggestion device which characterized in that includes:
the detection module is configured to detect whether food is taken out within a safe time after the food in the intelligent electric cooker is cooked; different kinds of food are safe for different times in different environments;
a sending module configured to send a prompt message to a terminal when the detection module detects that the food in the intelligent electric cooker is not taken out within the safe time, wherein the prompt message is used for prompting a user to take out the food;
the sending module comprises:
a selection submodule configured to select a terminal having the closest operation time from the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals when the user is connected to the intelligent electric rice cooker through the plurality of terminals;
a sending submodule configured to send the prompt message to the target terminal;
the detection module comprises:
a first obtaining sub-module configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule configured to determine a kind of the food according to the cooking mode;
a second determination submodule configured to determine the safe time according to a kind of the food;
a first detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
6. The apparatus of claim 5, wherein the detection module comprises:
a second detection sub-module configured to detect environmental data around the intelligent rice cooker;
a third determination submodule configured to determine the safe time from the environment data;
a third detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
7. The apparatus of claim 5, wherein the detection module comprises:
a first obtaining sub-module configured to obtain a cooking mode of the intelligent electric cooker;
a first determination submodule configured to determine a kind of the food according to the cooking mode;
a second detection sub-module configured to detect environmental data around the intelligent rice cooker;
a fourth determination submodule configured to determine the safe time according to the kind of the food and the environment data;
a fifth detection submodule configured to detect whether the food is taken out within the safe time through a gravity sensor.
8. The device according to any one of claims 5-7, wherein the prompting message further comprises a prompting mode, and the prompting mode comprises any one or more of a text prompt, a voice prompt and a vibration prompt.
9. The utility model provides a food in intelligence rice cooker gets puts suggestion device which characterized in that includes:
a memory;
a memory configured to store processor-executable instructions;
wherein the processor is configured to:
after the food in the intelligent electric cooker is cooked, detecting whether the food is taken out within a safe time; different kinds of food are safe for different times in different environments;
when the situation that the food in the intelligent electric cooker is not taken out within the safe time is detected, a prompt message is sent to a terminal, and the prompt message is used for prompting a user to take out the food; when the user is connected with the intelligent electric cooker through a plurality of terminals, selecting a terminal with the nearest operation time from the plurality of terminals as a target terminal according to the operation time of the user on the plurality of terminals;
sending the prompt message to the target terminal;
the detecting whether the food is taken out within a safe time includes:
acquiring a cooking mode of the intelligent electric cooker;
determining a kind of the food according to the cooking mode;
determining the safe time according to the type of the food;
and detecting whether the food is taken out within the safe time through a gravity sensor.
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