CN115291648A - Intelligent household appliance and temperature control method, system, equipment and medium thereof - Google Patents

Intelligent household appliance and temperature control method, system, equipment and medium thereof Download PDF

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Publication number
CN115291648A
CN115291648A CN202210917516.7A CN202210917516A CN115291648A CN 115291648 A CN115291648 A CN 115291648A CN 202210917516 A CN202210917516 A CN 202210917516A CN 115291648 A CN115291648 A CN 115291648A
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temperature
preset
air outlet
intelligent household
household appliance
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CN202210917516.7A
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CN115291648B (en
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熊伟伟
洪坤
方献良
诸永定
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Ningbo Fotile Kitchen Ware Co Ltd
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Ningbo Fotile Kitchen Ware Co Ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D23/00Control of temperature
    • G05D23/19Control of temperature characterised by the use of electric means
    • G05D23/20Control of temperature characterised by the use of electric means with sensing elements having variation of electric or magnetic properties with change of temperature
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D13/00Electric heating systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/10Arrangement or mounting of control or safety devices
    • F24D19/1096Arrangement or mounting of control or safety devices for electric heating systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00Components of central heating installations excluding heat sources
    • F24D2220/04Sensors
    • F24D2220/042Temperature sensors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00Components of central heating installations excluding heat sources
    • F24D2220/20Heat consumers
    • F24D2220/2009Radiators
    • F24D2220/2036Electric radiators

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

The invention discloses an intelligent household appliance and a temperature control method, a system, equipment and a medium thereof, wherein the temperature control method comprises the following steps: acquiring the actual environment temperature of the environment where the intelligent household appliance is located; calculating to obtain a temperature difference value between the preset environment temperature and the actual environment temperature; determining a preset temperature range to which the temperature difference value belongs; collecting set parameter information in a preset temperature range; and generating a corresponding temperature adjusting strategy based on the set parameter information. The invention utilizes the oven to adjust the environmental temperature under different temperature difference values under the condition of not additionally arranging other household appliances; generating a corresponding temperature adjusting strategy according to the temperature of the air outlet and the existence of a preset object approaching the intelligent household appliance; the temperature of the kitchen and the space communicated with the kitchen can be dynamically adjusted timely, accurately and safely, a more comfortable environment is provided for a user, and the use experience of the user is improved; in addition, the temperature of the oven is adjusted, so that the energy is saved, the environment is protected, and the overall performance of the product is effectively improved.

Description

Intelligent household appliance and temperature control method, system, equipment and medium thereof
Technical Field
The invention relates to the technical field of intelligent household appliances, in particular to an intelligent household appliance and a temperature control method, a system, equipment and a medium thereof.
Background
At present, household appliances such as an air conditioner, a fan, a heater and the like are mainly adopted to regulate the temperature of a kitchen and a communicated space. However, such a temperature adjustment method would occupy additional indoor space and increase the cost of the household appliance configuration; on the other hand, the heat generated by the work of household appliances such as an oven can be wasted, the energy is not saved, the environment is protected, the service life of the equipment can be influenced to a certain extent, and poor use experience can be caused to a user.
Disclosure of Invention
The invention aims to overcome the defects that heat generated by the work of household appliances is not effectively recycled in the prior art, and the additional household appliances are additionally arranged, so that the cost is increased, the resources are wasted, and the kitchen space is occupied.
The invention solves the technical problems through the following technical scheme:
the invention provides a temperature control method for an intelligent household appliance, wherein the intelligent household appliance comprises a heat-dissipation air outlet;
the temperature control method comprises the following steps:
acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
calculating to obtain a temperature difference value between a preset environment temperature and the actual environment temperature;
determining a preset temperature range to which the temperature difference value belongs;
collecting set parameter information in the preset temperature range;
generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet and/or represents the proximity parameter whether the preset object is in the set position range of the intelligent household appliance.
Preferably, the different preset temperature ranges correspond to different preset air outlet temperatures for triggering and controlling the working state of a heating element in the intelligent household appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the temperature of the preset air outlet is.
Preferably, the intelligent household appliance further comprises a fan and a heating element;
the step of determining the preset temperature range to which the temperature difference value belongs further comprises the following steps:
controlling and starting the fan to work at a preset running speed;
when the setting parameter information includes the air outlet temperature, the step of generating a corresponding temperature adjustment strategy based on the setting parameter information includes:
when the air outlet temperature is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed;
when the air outlet temperature is lower than the preset air outlet temperature, controlling the heating element to be opened;
and different preset temperature ranges are matched with and set corresponding preset air outlet temperatures.
Preferably, the intelligent household appliance further comprises a fan and a heating element;
the step of determining the preset temperature range to which the temperature difference value belongs further comprises the following steps:
controlling and starting the fan to work at a preset running speed;
when the setting parameter information includes the air outlet temperature and the approach parameter, the step of generating a corresponding temperature adjustment strategy based on the setting parameter information includes:
if the proximity parameter indicates that the preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the air outlet temperature is lower than a first preset air outlet temperature, and controlling the heating element to be closed when the air outlet temperature is higher than or equal to the first preset air outlet temperature;
if the proximity parameter indicates that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the air outlet temperature is lower than a second preset air outlet temperature, and controlling the heating element to be closed when the air outlet temperature is higher than or equal to the second preset air outlet temperature;
and the first preset air outlet temperature is lower than the second preset air outlet temperature.
Preferably, the step of collecting the setting parameter information within the preset temperature range includes:
acquiring infrared parameters of the environment where the intelligent household appliance is located by adopting an infrared sensor, and determining that the preset object is in the set position range of the intelligent household appliance when the infrared parameters meet a first preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
Preferably, the step of collecting the setting parameter information within the preset temperature range includes:
adopting an image acquisition device to acquire images of the environment where the intelligent household appliance is located, analyzing the acquired images to obtain an analysis result, and determining that the preset object is in the set position range of the intelligent household appliance when the analysis result meets a second preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
The invention also provides a temperature control system for the intelligent household appliance, wherein the intelligent household appliance comprises a heat-dissipation air outlet;
the temperature control system includes:
the temperature acquisition module is used for acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
the temperature difference value calculation module is used for calculating to obtain a temperature difference value between a preset environment temperature and the actual environment temperature;
the temperature range determining module is used for determining a preset temperature range to which the temperature difference value belongs;
the information acquisition module is used for acquiring the set parameter information in the preset temperature range;
the temperature adjusting module is used for generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet and/or represents the proximity parameter whether the preset object is in the set position range of the intelligent household appliance.
Preferably, the different preset temperature ranges correspond to different preset air outlet temperatures for triggering and controlling the working state of a heating element in the intelligent household appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the corresponding preset air outlet temperature is.
Preferably, the intelligent household appliance further comprises a fan and a heating element;
the temperature control system further comprises:
the fan control module is used for controlling and starting the fan to work at a preset running speed;
when the setting parameter information comprises the air outlet temperature, the temperature adjusting module is used for:
when the air outlet temperature is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed;
when the air outlet temperature is lower than the preset air outlet temperature, controlling the heating element to be opened;
and different preset temperature ranges are matched with and set corresponding preset air outlet temperatures.
Preferably, the intelligent household appliance further comprises a fan and a heating element;
the temperature control system further comprises:
the fan control module is used for controlling and starting the fan to work at a preset running speed;
when the set parameter information comprises the air outlet temperature and the approach parameter, the temperature adjusting module is used for:
if the proximity parameter indicates that the preset object is in the set position range of the intelligent household appliance, controlling the heating element to be turned on when the temperature of the air outlet is lower than a first preset air outlet temperature, and controlling the heating element to be turned off when the temperature of the air outlet is higher than or equal to the first preset air outlet temperature;
if the proximity parameter represents that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be started when the air outlet temperature is lower than a second preset air outlet temperature, and controlling the heating element to be stopped when the air outlet temperature is higher than or equal to the second preset air outlet temperature;
and the first preset air outlet temperature is less than the second preset air outlet temperature.
Preferably, the information acquisition module includes:
the infrared parameter acquisition unit is used for acquiring infrared parameters of the environment where the intelligent household appliance is located by adopting an infrared sensor;
the first determining unit is used for determining that the preset object is in the set position range of the intelligent household appliance when the infrared parameter meets a first preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
Preferably, the information acquisition module includes:
the image acquisition unit is used for acquiring images of the environment where the intelligent household appliance is located by adopting an image acquisition device;
the image analysis unit is used for analyzing the acquired image to obtain an analysis result;
a second determining unit, configured to determine that the preset object is within the set position range of the smart appliance when the analysis result satisfies a second preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance. The invention also provides an intelligent household appliance, which comprises the temperature control system for the intelligent household appliance.
The invention also provides an electronic device, which comprises a memory, a processor and a computer program stored in the memory for running, wherein the processor executes the computer program to realize the temperature control method for the intelligent household appliance.
The present invention also provides a computer-readable storage medium storing a computer program, which when executed by a processor, implements the above-described temperature control method for an intelligent home appliance.
On the basis of the common general knowledge in the field, the preferred conditions can be combined randomly to obtain the preferred embodiments of the invention.
The positive progress effects of the invention are as follows: under the condition of not additionally arranging other household appliances, the oven is utilized to adjust the environmental temperatures under different temperature difference values; generating a corresponding temperature adjusting strategy according to the air outlet temperature and whether a preset object is close to the intelligent household appliance or not; the temperature of the kitchen and the space communicated with the kitchen can be dynamically adjusted timely, accurately and safely, a more comfortable environment is provided for a user, and the use experience of the user is improved; in addition, the temperature of the oven is adjusted, so that the energy is saved, the environment is protected, and the overall performance of the product is effectively improved.
Drawings
Fig. 1 is a flowchart of a temperature control method for an intelligent home appliance according to embodiment 1 of the present invention.
Fig. 2 is a first flowchart of a temperature control method for an intelligent household appliance according to embodiment 2 of the present invention.
Fig. 3 is a second flowchart of a temperature control method for an intelligent appliance according to embodiment 2 of the present invention.
Fig. 4 is a schematic block diagram of a temperature control system for an intelligent home appliance according to embodiment 3 of the present invention.
Fig. 5 is a schematic block diagram of a temperature control system for an intelligent home appliance according to embodiment 4 of the present invention.
Fig. 6 is a schematic structural diagram of an electronic device according to embodiment 6 of the present invention.
Detailed Description
The invention is further illustrated by the following examples, which are not intended to limit the invention thereto.
Example 1
The embodiment provides a temperature control method for an intelligent household appliance, wherein the intelligent household appliance comprises a heat dissipation air outlet; referring to fig. 1, the temperature control method includes the steps of:
s1, acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
s2, calculating to obtain a temperature difference value between the preset environment temperature and the actual environment temperature;
s3, determining a preset temperature range to which the temperature difference value belongs;
s4, collecting set parameter information in a preset temperature range;
s5, generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet, a proximity parameter representing whether the preset object is in the set position range of the intelligent household appliance or not and the like.
In daily life, home appliances such as air conditioners and heaters are generally used to adjust the indoor temperature. However, the addition of household appliances such as an air conditioner and a heater in a kitchen occupies additional space, which brings inconvenience to the user. For intelligent household appliances including a steaming oven and an oven, the intelligent household appliance is provided with heating elements such as a heating pipe and the like, and the kitchen environment is heated by utilizing the structure and the function of the intelligent household appliance, so that the temperature control can be realized more in an energy-saving and environment-friendly manner. Of course, the intelligent appliances may also include other types of appliances, which will not be described herein again.
The temperature control method for the intelligent household appliance provided by the embodiment is based on the above thought, and adjusts the ambient temperature by using the heat generated by the work of the intelligent household appliance:
firstly, a temperature sensor is arranged on the outer surface of the intelligent household appliance or in a certain area around the intelligent household appliance, and the current actual environment temperature is acquired through the temperature sensor; the preset environment temperature is preset by a system or is set by a user in a self-defined way; the temperature difference between the actual ambient temperature and the preset ambient temperature is calculated, for example, in winter the actual ambient temperature is 15 ℃, the preset ambient temperature is 20 ℃, and the temperature difference is 5 ℃.
Then, a preset temperature range to which the temperature difference belongs is determined, for example, the preset temperature range can be divided into three grades of 0-10 ℃, 10-20 ℃ and more than 20 ℃, and the temperature difference of 5 ℃ belongs to the preset temperature range of 0-10 ℃. Aiming at the temperature difference values belonging to different preset temperature ranges, the working modes with different intensities need to be switched for temperature adjustment, and the larger the temperature difference value is, the larger the intensity of the temperature adjustment is correspondingly.
And finally, acquiring set parameter information according to a preset temperature range and generating a corresponding temperature regulation strategy. The setting parameter information includes, but is not limited to, outlet temperature and proximity parameter. When the temperature of the air outlet is higher, additional heating is not needed, only the hot air at the heat dissipation air outlet needs to be blown out, and when the temperature of the air outlet is lower, additional heating is needed to improve the temperature control efficiency; the approach parameter is used for representing whether preset objects such as human bodies and animals are close to the intelligent household appliance or not, and when the human bodies and the animals are close to the intelligent household appliance, a heating mode with low intensity should be adopted correspondingly to prevent the human bodies or the animals from being scalded.
According to the temperature control method for the intelligent household appliance, the environment temperature under different temperature differences is adjusted by the oven under the condition that other household appliances are not additionally arranged; generating a corresponding temperature adjusting strategy according to the air outlet temperature and whether a preset object is close to the intelligent household appliance or not; the temperature of the kitchen and the space communicated with the kitchen can be dynamically adjusted timely, accurately and safely, a more comfortable environment is provided for a user, and the use experience of the user is improved; in addition, the temperature of the oven is adjusted, so that the energy is saved, the environment is protected, and the overall performance of the product is effectively improved.
Example 2
On the basis of embodiment 1, the present embodiment provides a temperature control method for an intelligent household appliance.
In an implementable scheme, different preset temperature ranges correspond to different preset air outlet temperatures for triggering and controlling the working state of a heating piece in the intelligent household appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the corresponding preset air outlet temperature is.
For example, different preset air outlet temperatures for triggering and controlling the working state of a heating element in the intelligent household appliance are set for the three preset temperature ranges of 0-10 ℃, 10-20 ℃ and above 20 ℃: when the temperature difference value is within a preset temperature range of 0-10 ℃, the temperature of the air outlet is preset to be 80 ℃; when the temperature difference value belongs to a preset temperature range of 10-20 ℃, the temperature of the air outlet is preset to be 100 ℃; when the temperature difference value belongs to a preset temperature range of more than 20 ℃, the temperature of the air outlet is preset to be 120 ℃. When the temperature of the air outlet is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed; and when the temperature of the air outlet is lower than the preset temperature of the air outlet, controlling the heating element to open.
Different preset air outlet temperatures used for triggering and controlling the working state of a heating piece in the intelligent household appliance are set in different preset temperature ranges, so that the accuracy of temperature regulation of the environment can be improved.
In an implementation scheme, the intelligent household appliance further comprises a fan and a heating element (such as a heating pipe);
before step S3, the method further includes:
controlling the starting fan to work at a preset running speed; the fan is controlled to work in a high-speed running mode; of course, the working gear of the fan can be dynamically adjusted according to the actual situation;
when the setting parameter information includes the outlet temperature, as shown in fig. 2, step S5 includes:
s511, controlling the heating element to be closed when the air outlet temperature is greater than or equal to the preset air outlet temperature;
s512, controlling the heating element to be started when the temperature of the air outlet is lower than the preset air outlet temperature;
wherein, different preset temperature ranges are matched with and set up the corresponding preset air outlet temperature.
Taking the temperature difference as the preset temperature range of 0-10 ℃, the corresponding preset air outlet temperature is 80 ℃. When the temperature of the air outlet is greater than or equal to 80 ℃, the fan is controlled to work at a preset running speed to blow out the hot air, and the heating element does not need to be started for additional heating, so that the heating element is controlled to be closed; when the temperature of the air outlet is less than 80 ℃, the fan is only started to achieve the required heating power, so that the heating pipe needs to be started for heating treatment.
Through the preset air outlet temperature that the preset temperature range to the difference matches and sets up the correspondence, and then control opening and closing of heating member, can carry out timely, effectual temperature regulation to the environment.
In an implementable scheme, the intelligent household appliance further comprises a fan and a heating element;
before step S3, the method further includes:
controlling the starting fan to work at a preset running speed;
when the setting parameter information includes the outlet temperature and the proximity parameter, as shown in fig. 3, step S5 includes:
s521, if the approaching parameter indicates that a preset object is in a set position range of the intelligent household appliance, controlling the heating element to be opened when the temperature of the air outlet is lower than the temperature of a first preset air outlet, and controlling the heating element to be closed when the temperature of the air outlet is higher than or equal to the temperature of the first preset air outlet;
s522, if the approaching parameter indicates that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the temperature of the air outlet is lower than the temperature of a second preset air outlet, and controlling the heating element to be closed when the temperature of the air outlet is higher than or equal to the temperature of the second preset air outlet;
wherein, the first preset air outlet temperature is less than the second preset air outlet temperature.
Specifically, under the condition that the temperature difference belongs to same preset temperature range, when someone is close to intelligent household electrical appliances than unmanned when being close to intelligent household electrical appliances, the corresponding preset air outlet temperature should be littleer to prevent that the people from scalding. For example, when the temperature difference value belongs to a preset temperature range of 0-10 ℃, if a preset object such as a human body or an animal exists in the set position range of the intelligent household appliance, the preset air outlet temperature is a first preset air outlet temperature of 30 ℃, and when the air outlet temperature is greater than or equal to 30 ℃, the heating element is controlled to be turned off; if no preset objects such as human bodies or animals exist in the set position range of the intelligent household appliance, the preset air outlet temperature is the second preset air outlet temperature of 80 ℃, and when the air outlet temperature is higher than or equal to 80 ℃, the heating element is controlled to be closed.
Through the situation that the preset objects such as human bodies or animals are close to the intelligent household appliance, the preset air outlet temperature which is relatively low is set, people and animals can be prevented from being scalded by overhigh temperature, and the safety of temperature adjustment can be improved.
In an implementation scenario, step S4 includes:
acquiring infrared parameters of an environment where the intelligent household appliance is located by adopting an infrared sensor, and determining that a preset object is in a set position range of the intelligent household appliance when the infrared parameters meet a first preset condition; and otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
For example, a human body infrared sensor can be used for collecting infrared parameters of the environment, and when the collected infrared rays emitted by a human body reach a certain threshold value, it is indicated that a person is in a set position range of the intelligent household appliance; otherwise, the situation that no person is in the set position range of the intelligent household appliance is indicated.
The infrared sensor is used for identifying whether preset objects such as human bodies are close to the intelligent household appliance or not, and the intelligent household appliance can be assisted to carry out more accurate and safe temperature regulation.
In one embodiment, step S4 includes:
the method comprises the steps that an image acquisition device is adopted to acquire images of the environment where the intelligent household appliance is located, the acquired images are analyzed to obtain an analysis result, and when the analysis result meets a second preset condition, a preset object is determined to be in the set position range of the intelligent household appliance; and otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
For example, a camera may be used to capture and analyze images of an environment to determine whether a preset object, such as a human body, is within a set location range of the smart appliance.
Whether a human body and the like are preset and close to the intelligent household appliance is identified through the image acquisition device, and the intelligent household appliance can be assisted to carry out more accurate and safe temperature regulation.
The acquisition equipment such as infrared sensor, image acquisition device can set up the preset position department on intelligent household electrical appliances, also can fix the region apart from intelligent household electrical appliances certain range in the kitchen, as long as can gather the ambient temperature that obtains around the intelligent household electrical appliances.
In addition, can also combine infrared sensor and image acquisition device to confirm whether there is the preset object at the settlement position within range of intelligent household electrical appliances to guarantee temperature control's accuracy, reduce the injury, promote user experience and feel.
Of course, other acquisition devices capable of determining whether there is a preset object in the set position range of the intelligent household appliance may also be used, and even the acquisition devices may be combined with the infrared sensor and the image acquisition device, which are not described herein again.
The following describes an implementation principle of the temperature control method for an intelligent household appliance according to this embodiment by using a specific embodiment:
1. the temperature difference is more than 20 DEG C
(1) If no one is close to the intelligent household appliance, the fan is controlled to be started and is in a high-speed running mode, and when the temperature of the air outlet is lower than 120 ℃, the heating pipe is controlled to be started for heating; when the temperature of the air outlet is higher than or equal to 120 ℃, controlling the heating pipe to be closed and stopping heating;
(2) If someone approaches to the intelligent household appliance, controlling the fan to start and be in a high-speed operation mode, and controlling the heating pipe to start to heat when the temperature of the air outlet is less than 50 ℃; and when the temperature of the air outlet is greater than or equal to 50 ℃, controlling the heating pipe to be closed to stop heating.
2. The temperature difference is between 10 and 20 DEG C
(1) If no one is close to the intelligent household appliance, the fan is controlled to be started and is in a high-speed operation mode, and when the temperature of the air outlet is lower than 100 ℃, the heating pipe is controlled to be started for heating; when the temperature of the air outlet is greater than or equal to 100 ℃, controlling the heating pipe to be closed and stopping heating;
(2) If someone approaches the intelligent household appliance, the fan is controlled to be started and in a high-speed running mode, and when the temperature of the air outlet is lower than 40 ℃, the heating pipe is controlled to be started for heating; and when the temperature of the air outlet is higher than or equal to 40 ℃, controlling the heating pipe to be closed and stopping heating.
3. The temperature difference is less than 10 DEG C
(1) If no one is close to the intelligent household appliance, the fan is controlled to be started and is in a high-speed operation mode, and when the temperature of the air outlet is lower than 80 ℃, the heating pipe is controlled to be started for heating; when the temperature of the air outlet is greater than or equal to 80 ℃, controlling the heating pipe to be closed and stopping heating;
(2) If someone approaches the intelligent household appliance, the fan is controlled to be started and in a high-speed running mode, and when the temperature of the air outlet is lower than 30 ℃, the heating pipe is controlled to be started for heating; and when the temperature of the air outlet is greater than or equal to 30 ℃, controlling the heating pipe to be closed and stopping heating.
The temperature control method for the intelligent household appliance provided by the embodiment sets the corresponding temperature regulation strategy through specific situations such as different temperature difference values, air outlet temperatures, human body approaching and the like, can improve the accuracy, timeliness and effectiveness of temperature regulation, can prevent scalding of people or animals, improves the safety performance of the intelligent household appliance, and improves the experience of users.
Example 3
The present embodiment provides a temperature control system for an intelligent household appliance, and referring to fig. 4, the temperature control system for an intelligent household appliance provided in the present embodiment includes:
the temperature acquisition module 1 is used for acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
the temperature difference calculation module 2 is used for calculating and obtaining a temperature difference between the preset environment temperature and the actual environment temperature;
the temperature range determining module 3 is used for determining a preset temperature range to which the temperature difference value belongs;
the information acquisition module 4 is used for acquiring set parameter information in a preset temperature range;
the temperature adjusting module 5 is used for generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet and/or represents the proximity parameter whether the preset object is in the set position range of the intelligent household appliance.
The principle of the temperature control system for intelligent home appliances in this embodiment is the same as that of the temperature control method for intelligent home appliances in embodiment 1, and therefore, details are not described herein.
According to the temperature control system for the intelligent household electrical appliance, the environment temperature under different temperature difference values is adjusted by the oven under the condition that other household electrical appliances are not additionally arranged; generating a corresponding temperature adjusting strategy according to the temperature of the air outlet and the existence of a preset object approaching the intelligent household appliance; the temperature of the kitchen and the space communicated with the kitchen is dynamically adjusted timely, accurately and safely, a more comfortable environment is provided for a user, and the use experience of the user is improved; in addition, the temperature of the oven is adjusted, so that the energy is saved, the environment is protected, and the overall performance of the product is effectively improved.
Example 4
On the basis of embodiment 3, referring to fig. 5, the present embodiment provides a temperature control system for an intelligent home appliance.
In an implementable scheme, different preset temperature ranges correspond to different preset air outlet temperatures for triggering and controlling the working state of a heating piece in the intelligent household appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the corresponding preset air outlet temperature is.
In an implementable scheme, the intelligent household appliance further comprises a fan and a heating element;
the temperature control system further comprises:
the fan control module 6 is used for controlling the starting fan to work at a preset running speed;
when setting parameter information includes the air outlet temperature, temperature regulation module 5 is used for:
when the temperature of the air outlet is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed;
when the temperature of the air outlet is lower than the preset air outlet temperature, controlling the heating element to be started;
wherein, different preset temperature ranges are matched with and set up the corresponding preset air outlet temperature.
In one possible implementation of the solution, the first and second,
the intelligent household appliance also comprises a fan and a heating element;
the temperature control system further comprises:
the fan control module 6 is used for controlling the starting fan to work at a preset running speed;
when setting parameter information includes air outlet temperature and proximity parameter, temperature regulation module 5 is used for:
if the approaching parameter indicates that the preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the temperature of the air outlet is lower than the first preset air outlet temperature, and controlling the heating element to be closed when the temperature of the air outlet is higher than or equal to the first preset air outlet temperature;
if the approaching parameter represents that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be started when the temperature of the air outlet is lower than a second preset air outlet temperature, and controlling the heating element to be stopped when the temperature of the air outlet is higher than or equal to the second preset air outlet temperature;
and the first preset air outlet temperature is less than the second preset air outlet temperature.
In an implementable solution, the information acquisition module 4 comprises:
the infrared parameter acquisition unit 41 is used for acquiring infrared parameters of the environment where the intelligent household appliance is located by adopting an infrared sensor;
the first determining unit 42 is configured to determine that a preset object is within a set position range of the intelligent household appliance when the infrared parameter meets a first preset condition; and otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
In an implementable solution, the information acquisition module 4 comprises:
the image acquisition unit 43 is used for acquiring images of the environment where the intelligent household appliance is located by adopting an image acquisition device;
an image analysis unit 44, configured to analyze the acquired image to obtain an analysis result;
a second determining unit 45, configured to determine that a preset object is within a set position range of the smart appliance when the analysis result satisfies a second preset condition; and otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
The principle of the temperature control system for intelligent home appliances in this embodiment is the same as that of the temperature control method for intelligent home appliances in embodiment 2, and therefore, the details are not described herein.
The temperature control method for the intelligent household appliance provided by the embodiment sets the corresponding temperature regulation strategy through specific situations such as different temperature difference values, air outlet temperatures, human body approaching and the like, can improve the accuracy, timeliness and effectiveness of temperature regulation, can prevent scalding of people or animals, improves the safety performance of the intelligent household appliance, and improves the experience of users.
Example 5
The present embodiment provides an intelligent home appliance including the temperature control system for an intelligent home appliance of embodiment 3 or 4.
The intelligent household appliance provided by the embodiment includes but is not limited to a steam box and a steam oven.
The intelligent household appliance in the embodiment is integrated with the temperature control system, so that the temperature can be accurately, timely and safely controlled, and the product performance of the intelligent household appliance is effectively improved.
Example 6
The present embodiment provides an electronic device, which may be represented in the form of a computing device (for example, may be a server device), and includes a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor executes the computer program to implement the temperature control method for an intelligent appliance provided in embodiment 1 or 2.
As shown in fig. 6, the electronic device 9 specifically includes:
at least one processor 91, at least one memory 92, and a bus 93 for connecting the various system components (including the processor 91 and the memory 92), wherein:
the bus 93 includes a data bus, an address bus, and a control bus.
Memory 92 includes volatile memory, such as Random Access Memory (RAM) 921 and/or cache memory 922, and can further include Read Only Memory (ROM) 923.
Memory 92 also includes programs/utilities 925 having a set (at least one) of program modules 924, such program modules 924 including but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which or some combination thereof may comprise an implementation of a network environment.
The processor 91 executes various functional applications and data processing, such as the temperature control method for intelligent home appliances provided in embodiments 1 or 2 of the present invention, by running the computer program stored in the memory 92.
The electronic device 9 may further communicate with one or more external devices 94 (e.g., a keyboard, a pointing device, etc.). Such communication may be through an input/output (I/O) interface 95. Also, the electronic device 9 may communicate with one or more networks (e.g., a Local Area Network (LAN), a Wide Area Network (WAN), and/or a public network, such as the Internet) via the network adapter 96. The network adapter 96 communicates with the other modules of the electronic device 9 via the bus 93. It should be understood that although not shown in the figures, other hardware and/or software modules may be used in conjunction with the electronic device 9, including but not limited to: microcode, device drivers, redundant processors, external disk drive arrays, RAID (disk array) systems, tape drives, and data backup storage systems, etc.
It should be noted that although in the above detailed description several units/modules or sub-units/modules of the electronic device are mentioned, such a division is merely exemplary and not mandatory. Indeed, the features and functionality of two or more of the units/modules described above may be embodied in one unit/module, according to embodiments of the application. Conversely, the features and functions of one unit/module described above may be further divided into embodiments by a plurality of units/modules.
Example 7
The present embodiment provides a computer-readable storage medium on which a computer program is stored, which when executed by a processor implements the steps of the temperature control method for an intelligent appliance provided in embodiment 1 or 2.
More specific examples that may be employed by the readable storage medium include, but are not limited to: a portable disk, hard disk, random access memory, read only memory, erasable programmable read only memory, optical storage device, magnetic storage device, or any suitable combination of the foregoing.
In a possible implementation, the present invention can also be implemented in the form of a program product including program code for causing a terminal device to perform the steps of implementing the temperature control method for an intelligent appliance of embodiment 1 or 2 when the program product is run on the terminal device.
Where program code for carrying out the invention is written in any combination of one or more programming languages, the program code may execute entirely on the user's device, partly on the user's device, as a stand-alone software package, partly on the user's device, partly on a remote device or entirely on the remote device.
While specific embodiments of the invention have been described above, it will be understood by those skilled in the art that this is by way of example only, and that the scope of the invention is defined by the appended claims. Various changes or modifications to these embodiments may be made by those skilled in the art without departing from the principle and spirit of this invention, and these changes and modifications are within the scope of this invention.

Claims (15)

1. A temperature control method for intelligent household appliances is characterized in that the intelligent household appliances comprise heat dissipation air outlets;
the temperature control method comprises the following steps:
acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
calculating to obtain a temperature difference value between a preset environment temperature and the actual environment temperature;
determining a preset temperature range to which the temperature difference value belongs;
collecting set parameter information in the preset temperature range;
generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet and/or represents the proximity parameter whether the preset object is in the set position range of the intelligent household appliance.
2. The temperature control method for the intelligent household electrical appliance according to claim 1, wherein different preset temperature ranges correspond to different preset outlet temperatures for triggering and controlling the working state of a heating element in the intelligent household electrical appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the corresponding preset air outlet temperature is.
3. The temperature control method for intelligent home appliances according to claim 1 or 2, wherein the intelligent home appliances further comprise a blower and a heating element;
the step of determining the preset temperature range to which the temperature difference value belongs further comprises the following steps:
controlling and starting the fan to work at a preset running speed;
when the setting parameter information includes the air outlet temperature, the step of generating a corresponding temperature adjustment strategy based on the setting parameter information includes:
when the air outlet temperature is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed;
when the air outlet temperature is lower than the preset air outlet temperature, controlling the heating element to be started;
and the different preset temperature ranges are matched with and set corresponding to the preset air outlet temperatures.
4. The temperature control method for intelligent home appliances according to claim 1 or 2, wherein the intelligent home appliances further comprise a blower and a heating element;
the step of determining the preset temperature range to which the temperature difference value belongs further comprises the following steps:
controlling and starting the fan to work at a preset running speed;
when the setting parameter information includes the air outlet temperature and the approach parameter, the step of generating a corresponding temperature adjustment strategy based on the setting parameter information includes:
if the proximity parameter indicates that the preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the air outlet temperature is lower than a first preset air outlet temperature, and controlling the heating element to be closed when the air outlet temperature is higher than or equal to the first preset air outlet temperature;
if the proximity parameter represents that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be started when the air outlet temperature is lower than a second preset air outlet temperature, and controlling the heating element to be stopped when the air outlet temperature is higher than or equal to the second preset air outlet temperature;
and the first preset air outlet temperature is less than the second preset air outlet temperature.
5. The temperature control method for intelligent home appliances according to claim 1, wherein the step of collecting the setting parameter information within the preset temperature range includes:
acquiring infrared parameters of the environment where the intelligent household appliance is located by adopting an infrared sensor, and determining that the preset object is in the set position range of the intelligent household appliance when the infrared parameters meet a first preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
6. The temperature control method for intelligent home appliances according to claim 1, wherein the step of collecting the setting parameter information within the preset temperature range includes:
adopting an image acquisition device to acquire images of the environment where the intelligent household appliance is located, analyzing the acquired images to obtain an analysis result, and determining that the preset object is in the set position range of the intelligent household appliance when the analysis result meets a second preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
7. A temperature control system for intelligent household appliances is characterized in that the intelligent household appliances comprise a heat dissipation air outlet;
the temperature control system includes:
the temperature acquisition module is used for acquiring the actual environment temperature of the environment where the intelligent household appliance is located;
the temperature difference value calculation module is used for calculating to obtain a temperature difference value between a preset environment temperature and the actual environment temperature;
the temperature range determining module is used for determining a preset temperature range to which the temperature difference value belongs;
the information acquisition module is used for acquiring the set parameter information in the preset temperature range;
the temperature adjusting module is used for generating a corresponding temperature adjusting strategy based on the set parameter information;
the set parameter information comprises the air outlet temperature of the heat dissipation air outlet and/or represents the proximity parameter whether the preset object is in the set position range of the intelligent household appliance.
8. The temperature control system for intelligent household electrical appliances according to claim 7, wherein different preset temperature ranges correspond to different preset outlet temperatures for triggering and controlling the operating state of a heating member in the intelligent household electrical appliance;
the higher the temperature value corresponding to the preset temperature range is, the higher the temperature of the preset air outlet is.
9. The temperature control system for intelligent appliances according to claim 7 or 8, wherein the intelligent appliance further comprises a blower and a heating element;
the temperature control system further comprises:
the fan control module is used for controlling and starting the fan to work at a preset running speed;
when the setting parameter information comprises the air outlet temperature, the temperature adjusting module is used for:
when the air outlet temperature is greater than or equal to the preset air outlet temperature, controlling the heating element to be closed;
when the air outlet temperature is lower than the preset air outlet temperature, controlling the heating element to be started;
and the different preset temperature ranges are matched with and set corresponding to the preset air outlet temperatures.
10. The temperature control system for intelligent appliances according to claim 7 or 8, wherein the intelligent appliance further comprises a blower and a heating element;
the temperature control system further comprises:
the fan control module is used for controlling and starting the fan to work at a preset running speed;
when the set parameter information comprises the air outlet temperature and the approach parameter, the temperature adjusting module is used for:
if the proximity parameter indicates that the preset object is in the set position range of the intelligent household appliance, controlling the heating element to be turned on when the temperature of the air outlet is lower than a first preset air outlet temperature, and controlling the heating element to be turned off when the temperature of the air outlet is higher than or equal to the first preset air outlet temperature;
if the proximity parameter indicates that no preset object is in the set position range of the intelligent household appliance, controlling the heating element to be opened when the air outlet temperature is lower than a second preset air outlet temperature, and controlling the heating element to be closed when the air outlet temperature is higher than or equal to the second preset air outlet temperature;
and the first preset air outlet temperature is lower than the second preset air outlet temperature.
11. The temperature control system for intelligent appliances according to claim 7, wherein the information collection module comprises:
the infrared parameter acquisition unit is used for acquiring infrared parameters of the environment where the intelligent household appliance is located by adopting an infrared sensor;
the first determining unit is used for determining that the preset object is in the set position range of the intelligent household appliance when the infrared parameter meets a first preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
12. The temperature control system for intelligent appliances according to claim 7, wherein the information collecting module comprises:
the image acquisition unit is used for acquiring images of the environment where the intelligent household appliance is located by adopting an image acquisition device;
the image analysis unit is used for analyzing the acquired image to obtain an analysis result;
a second determining unit, configured to determine that the preset object is within the set position range of the smart appliance when the analysis result satisfies a second preset condition; otherwise, determining that no preset object is in the set position range of the intelligent household appliance.
13. An intelligent appliance, comprising the temperature control system for an intelligent appliance according to any one of claims 7 to 12.
14. An electronic device comprising a memory, a processor and a computer program stored in the memory for execution, wherein the processor implements the temperature control method for an intelligent appliance according to any one of claims 1 to 6 when executing the computer program.
15. A computer-readable storage medium storing a computer program, wherein the computer program, when executed by a processor, implements the temperature control method for an intelligent appliance according to any one of claims 1 to 6.
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* Cited by examiner, † Cited by third party
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JP2004069216A (en) * 2002-08-08 2004-03-04 Daikin Ind Ltd Waste heat recovery system for kitchen
US20100192877A1 (en) * 2010-04-15 2010-08-05 Scott Houtz Sustainable Waste Heat Management System
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