An Adaptive Configuration Method for an Intelligent Temperature Control Panel
Through the adaptive configuration method of the intelligent temperature control panel, automatic detection and configuration are achieved using the combination of multiple modules, the problem of single function of the temperature control panel is solved, the user experience and inventory management efficiency is improved, and the sleep environment optimization and environmental detection functions are provided.
Patent Information
- Application Number
- CN202310076269.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-17
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-01-17
AI Technical Summary
The existing temperature control panel has a single function and cannot be intelligent, resulting in a single user experience and complex inventory management, which cannot meet the flexibility and timeliness of changes in customer needs, which increases the difficulty of inventory and logistics management and cannot meet the customer's DIY function needs.
An intelligent temperature control panel is designed, including display module, button module, communication module, storage module, sensor module, output module, clock module and main control module. Through the combination of these modules, automatic detection of equipment types is realized and adaptively configured according to the detection results. It has sleep curve adjustment, environmental quality detection and anti-freeze functions to improve user experience.
It realizes automatic detection and configuration of equipment types, reduces inventory categories and positions, improves customer experience, has sleep environment optimization, environmental quality detection and energy-saving functions, and ensures the comfort and environmental protection of the living environment.
Smart Images

Figure CN116164392B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of smart home, and specifically refers to an adaptive configuration method for an intelligent temperature control panel. Background Art
[0002] At present, the fixed modes of temperature control panels on the market are as follows: air conditioner linkage + fresh air linkage + floor heating control, air conditioner linkage + fresh air linkage + floor heating linkage, air conditioner linkage + fresh air execution + floor heating linkage; single air conditioner linkage panel, single fresh air control, single floor heating control, single fresh air linkage, single floor heating control, single air conditioner control; fresh air linkage + floor heating execution, fresh air linkage + floor heating linkage, fresh air control + floor heating linkage, fresh air linkage + air conditioner linkage, fresh air linkage + air conditioner control, fresh air execution + air conditioner linkage, etc. The above modes are relatively single in function and only for realizing the control function, and cannot achieve the trend of intelligence. The temperature control panel with a single fixed mode will result in a large demand for inventory positions, a wide variety of inventory types, and difficulties in inventory management and logistics management such as shipping. Sometimes the market customer needs change temporarily, and the fixed mode cannot meet the timeliness and flexibility of customer demand changes, which will cause the loss of sales opportunities. For the modes that customers do not currently need and may increase after-sales, the fixed mode cannot meet the DIY function of customers, resulting in an unfriendly customer experience. In summary, the existing temperature control panels can only achieve the existing control functions in terms of function, without more intelligent functions, resulting in a single user experience. Summary of the Invention
[0003] The present invention provides an adaptive configuration method for an intelligent temperature control panel, and its main purpose is to overcome the problems that the existing intelligent panels have no more intelligent functions, resulting in a single user experience, inflexible use, and insufficient automation and intelligence.
[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0005] An intelligent temperature control panel includes a display module, a button module, a communication module, a storage module, a sensor module, an output module, a clock module, a processing module, and a main control module;
[0006] The display module is used to display various states and sensor parameters of the intelligent temperature control panel;
[0007] The button module is used for the operation input of setting the control mode of the temperature control panel;
[0008] The communication module is used to communicate with the upper computer to realize information transmission; communicate with the lower computer to realize information interaction and control functions;
[0009] The storage module is used to store relevant parameters;
[0010] The sensor module is used to collect environmental information;
[0011] The output module is used for controlling the fresh air gear and ventilation, controlling the floor heating, and controlling the air conditioner;
[0012] The clock module is used to run the clock function and the timing function;
[0013] The processing module is used to process relevant logical data;
[0014] The main control module is connected to the display module, the button module, the communication module, the storage module, the sensor module, the output module, the clock module, and the processing module, and is used to control each module.
[0015] Further, the upper computer includes a gateway and a mobile phone APP, and the lower computer includes an air conditioner, a fresh air device, and a floor heating device.
[0016] Further, the storage module is used to store the sleep curve, the device type, and the device-related parameters.
[0017] Further, the sensor module includes a temperature sensor, a PM2.5 sensor, a formaldehyde sensor, an air quality sensor, and a human body sensor.
[0018] Further, the processing module is used for sleep curve judgment, device type judgment, environmental parameter processing, and intelligent linkage judgment processing.
[0019] The present invention also discloses an adaptive configuration method for an intelligent temperature control panel, including the following steps:
[0020] S1. When the intelligent panel is powered on, first initialize each peripheral outside the main control module, and then the main control module reads the relevant storage module of the initialized peripherals;
[0021] S2. The processing module determines whether the device type of the intelligent panel has been determined. If the type has been determined, the intelligent panel enters the standby operation program. If the type has not been determined, it enters step S3; or, after the initialization of each peripheral outside the main control module, the intelligent panel enters the standby operation program, and determines the type through automatic detection by the button module, or sends an instruction to the main control module through the mobile phone APP for automatic detection to determine the type, and then enters step S3;
[0022] S3. The processing module communicates with the sensor module through the main control module, reads the parameters of the PM2.5 sensor and the formaldehyde sensor, and determines whether it is of the fresh air type based on this. If it is of the fresh air type, store and display the fresh air type, and enter step S4. If it is not of the fresh air type, also enter step S4;
[0023] S4. The processing module communicates with the communication module through the main control module, determines whether it is of the air conditioner type through the communication module. If it is of the air conditioner type, it stores and displays the air conditioner type, and enters step S5. If it is not of the air conditioner type, it also enters step S5;
[0024] S5. The processing module communicates with the sensor module through the main control module, determines whether an external temperature sensor and a floor heating control load are connected, and thereby determines whether it is of the floor heating type. If it is of the floor heating type, it stores and displays the floor heating type, and enters step S6. If it is not of the floor heating type, it also enters step S6;
[0025] S6. The intelligent panel enters the standby operation.
[0026] Further, an adaptive configuration method for an intelligent temperature control panel further includes the following steps:
[0027] S7. The processing module judges the human sleep curve and sends the human sleep characteristic parameters to the main control module, and the main control module automatically adjusts the indoor temperature to ensure the sleep curve of the sleep quality;
[0028] S8. The processing module communicates with the clock module through the main control module, automatically judges the season according to the clock module. When there is no one living in winter, the processing module judges the ambient temperature and sends the ambient temperature parameters to the main control module, and the main control module then controls the floor heating to prevent the water pipes from freezing.
[0029] Further, step S7 includes the following steps:
[0030] S71. The human body sensor detects whether there are people in the room. If there are people, it enters step S72. If there are no people, it exits the detection;
[0031] S72. The processing module detects whether it is in the sleep time. If it is in the sleep time, it enters step S73. If it is not in the sleep time, it exits the processing;
[0032] S73. The processing module detects the human sleep curve temperature through the temperature sensor. If it is within the human sleep curve temperature range, it exits the processing. If it is not within the human sleep curve temperature range, it controls the floor heating and / or the air conditioner through the main control module to adjust the temperature.
[0033] Further, step S8 includes the following steps:
[0034] S81. The human body sensor detects whether there are people in the room. If there are no people, it enters step S82. If there are people, it exits to be controlled manually;
[0035] S82. The processing module detects the current ambient temperature through a temperature sensor. When the ambient temperature is lower than or equal to 5°C, it controls the floor heating to generate heat through the main control module and sets a flag bit to indicate that it enters the working state due to low temperature. When the ambient temperature is higher than 5°C, it proceeds to step S83;
[0036] S83. When in the low-temperature protection state, the temperature sensor detects whether the current temperature is higher than 8°C. If the ambient temperature is higher than 8°C, the main control module controls the floor heating to turn off and enters the normal mode. If the ambient temperature is lower than or equal to 8°C, it proceeds to step S82 for judgment.
[0037] As can be seen from the above description of the present invention, compared with the prior art, the present invention has the following advantages: The present invention can automatically detect and configure the device type, realize manual operation, reduce the inventory categories, reduce the labor cost and inventory positions. At the same time, it also has the following functions: It has a sleep curve to improve the sleep environment; it has an anti-freezing function by detecting the ambient temperature; it automatically detects the environmental quality and adjusts the working state of the fresh air to ensure the quality of the living environment; it detects the presence of people to achieve energy-saving operation; these intelligent operations can improve the customer experience and achieve an energy-saving, environmental-friendly and comfortable environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 It is a principle block diagram of the intelligent temperature control panel of the present invention.
[0039] Figure 2 It is a schematic flow diagram of the adaptive configuration of the present invention.
[0040] Figure 3 It is a schematic flow diagram of the automatic detection and configuration of the present invention.
[0041] Figure 4 It is a schematic flow diagram of the artificial configuration of the present invention.
[0042] Figure 5 It is a schematic flow diagram of the automatic adjustment of the sleep quality of the present invention.
[0043] Figure 6 It is a schematic diagram of the flow of the anti-freezing automatic adjustment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0044] Refer to Figure 1, An intelligent temperature control panel, comprising a display module 1, a button module 2, a communication module 3, a storage module 4, a sensor module 5, an output module 6, a clock module 7, a processing module 8 and a main control module 9. The display module 1 is used to display various states of the intelligent temperature control panel and sensor parameters; the button module 2 is used for operation input to set the control mode of the temperature control panel; the communication module 3 is used to communicate with the upper computer to realize information transmission, and communicate with the lower computer to realize information interaction and control functions; the storage module 4 is used to store relevant parameters; the sensor module 5 is used to collect environmental information; the output module 6 is used to control the fresh air gear and ventilation, control the floor heating, and control the air conditioner; the clock module 7 is used to run the clock function and timing function; the processing module 8 is used to process relevant logic data; the main control module 9 is connected to the display module 1, the button module 2, the communication module 3, the storage module 4, the sensor module 5, the output module 6, the clock module 7 and the processing module 8, and is used to control each module.
[0045] Specifically, the upper computer includes a gateway and a mobile phone APP, and the lower computer includes an air conditioner, a fresh air device, and a floor heating device. The storage module is used to store sleep curves, device types, and device-related parameters. The sensor module includes a temperature sensor, a PM2.5 sensor, a formaldehyde sensor, an air quality sensor, and a human body sensor. The processing module is used for sleep curve judgment, device type judgment, environmental parameter processing, and intelligent linkage judgment processing.
[0046] Refer to Figure 2 , An adaptive configuration method for an intelligent temperature control panel, comprising the following steps:
[0047] S1. When the intelligent panel is powered on, first initialize each peripheral outside the main control module, and then the main control module reads relevant storage modules of the initialized peripherals;
[0048] S2. The processing module determines whether the device type of the intelligent panel has been determined. If the type has been determined, the intelligent panel enters the standby operation program. If the type has not been determined, it enters step S3;
[0049] S3. The processing module communicates with the sensor module through the main control module, reads the parameters of the PM2.5 sensor and the formaldehyde sensor, and determines whether it is of the fresh air type based on this. If it is of the fresh air type, store and display the fresh air type, and enter step S4. If it is not of the fresh air type, also enter step S4;
[0050] S4. The processing module communicates with the communication module through the main control module, and determines whether it is of the air conditioner type through the communication module. If it is of the air conditioner type, store and display the air conditioner type, and enter step S5. If it is not of the air conditioner type, also enter step S5;
[0051] S5. The processing module communicates with the sensor module through the main control module, determines whether an external temperature sensor and a floor heating control load are connected, and thereby determines whether it is of the floor heating type. If it is of the floor heating type, it stores and displays the floor heating type and enters step S6. If it is not of the floor heating type, it also enters step S6. The floor heating control load can be driven by water floor heating or electric floor heating;
[0052] S6. The intelligent panel enters the standby operation.
[0053] Refer to Figure 3 , in step S2, after each peripheral outside the main control module is initialized, the intelligent panel enters the standby operation program, automatically detects and determines the type through the key module, or sends an instruction to the main control module through the mobile phone APP to automatically detect and determine the type, and then enters step S3.
[0054] Refer to Figure 4 , of course, through manual configuration, the present invention can freely select the configuration type according to needs. For example, if it is known that air conditioner linkage + fresh air linkage + floor heating execution is used on site, through manual configuration, these types can be fixed. After the intelligent temperature control panel is powered on again, it detects the device type and makes relevant parameter judgments according to the device type.
[0055] Refer to Figure 5 and Figure 6 , the adaptive configuration method of an intelligent temperature control panel further includes the following steps:
[0056] S7. The processing module judges the human sleep curve and sends the human sleep characteristic parameters to the main control module, and the main control module automatically adjusts the indoor temperature to ensure the sleep curve of the sleep quality;
[0057] S8. The processing module communicates with the clock module through the main control module, automatically judges the season according to the clock module. When there is no one living in winter, the processing module judges the ambient temperature and sends the ambient temperature parameters to the main control module, and the main control module then controls the floor heating to prevent the water pipe from freezing.
[0058] Specifically, step S7 includes the following steps:
[0059] S71. The human body sensor detects whether there are people in the room. If there are people, it enters step S72. If there are no people, it exits the detection;
[0060] S72. The processing module detects whether it is in the sleep time. If it is in the sleep time, it enters step S73. If it is not in the sleep time, it exits the processing;
[0061] S73. The processing module detects the temperature of the human sleep curve through a temperature sensor. If it is within the range of the human sleep curve temperature, the processing exits. If it is not within the range of the human sleep curve temperature, the floor heating and / or air conditioner is controlled by the main control module for temperature adjustment.
[0062] Specifically, step S8 includes the following steps:
[0063] S81. The human body sensor detects whether there are people in the room. If there are no people, it proceeds to step S82. If there are people, it exits and is controlled manually.
[0064] S82. The processing module detects the current ambient temperature through a temperature sensor. When the ambient temperature is lower than or equal to 5°C, the floor heating is controlled by the main control module for heating, and a flag bit is set to indicate that the working state is entered due to low temperature. When the ambient temperature is higher than 5°C, it proceeds to step S83.
[0065] S83. When in the low-temperature protection state, the temperature sensor detects whether the current temperature is higher than 8°C. If the ambient temperature is higher than 8°C, the main control module controls the floor heating to turn off and enters the normal mode. If the ambient temperature is lower than or equal to 8°C, it proceeds to step S82 for judgment.
[0066] The present invention can automatically detect and configure the device type, realize manual operation, reduce the inventory categories, reduce the labor cost and inventory positions. At the same time, it also has the following functions: having a sleep curve to improve the sleep environment; detecting the ambient temperature with an anti-freezing function; automatically detecting the environmental quality and adjusting the working state of the fresh air to ensure the quality of the living environment; detecting the presence of people to achieve energy-saving operation; these intelligent operations can improve the customer experience and achieve an energy-saving, environmental-friendly and comfortable environment. Moreover, it can also be flexibly configured manually to meet the needs of on-site demonstration and operation.
[0067] The above is only the specific implementation manner of the present invention, but the design concept of the present invention is not limited thereto. Any non-substantive modification made to the present invention using this concept shall fall within the scope of infringement of the protection of the present invention.
Claims
1. An adaptive configuration method for an intelligent temperature control panel, the intelligent temperature control panel including a display module, a button module, a communication module, a storage module, a sensor module, an output module, a clock module, a processing module and a main control module; the display module is used to display various states and sensor parameters of the intelligent temperature control panel; the button module is used for operation input to set the control mode of the temperature control panel; the communication module is used to communicate with a host computer to achieve information transmission; communicate with a slave computer to achieve information interaction and control functions; the host computer includes a gateway and a mobile phone APP, and the slave computer includes an air conditioner, a fresh air device and a floor heating device; the storage module is used to store relevant parameters, including a sleep curve, device types and device-related parameters; the sensor module includes a temperature sensor, a PM2.5 sensor, a formaldehyde sensor, an air quality sensor and a human body sensor, and is used to collect environmental information; the output module is used for controlling the fresh air gear and ventilation, controlling the floor heating, and controlling the air conditioner; the clock module is used to run the clock function and the timing function; the processing module is used to process relevant logical data, including sleep curve judgment, device type judgment, environmental parameter processing and intelligent linkage judgment processing; the main control module is connected to the display module, the button module, the communication module, the storage module, the sensor module, the output module, the clock module and the processing module, and is used to control each module; It is characterized in that The method is based on the intelligent temperature control panel and includes the following steps: S1. When the intelligent panel is powered on, first initialize each peripheral outside the main control module, and then the main control module reads the relevant storage module of the initialized peripherals; S2. The processing module determines whether the device type of the intelligent panel has been determined. If the type has been determined, the intelligent panel enters the standby operation program. If the type has not been determined, it enters step S3; or, after initializing each peripheral outside the main control module, the intelligent panel enters the standby operation program, automatically detects and determines the type through the button module, or sends an instruction to the main control module through the mobile phone APP for automatic detection and determination of the type, and then enters step S3; S3. The processing module communicates with the sensor module through the main control module, reads the parameters of the PM2.5 sensor and the formaldehyde sensor, and determines whether it is of the fresh air type based on this. If it is of the fresh air type, store and display the fresh air type, and enter step S4. If it is not of the fresh air type, also enter step S4; S4. The processing module communicates with the communication module through the main control module, and determines whether it is of the air conditioner type through the communication module. If it is of the air conditioner type, store and display the air conditioner type, and enter step S5. If it is not of the air conditioner type, also enter step S5; S5. The processing module communicates with the sensor module through the main control module, and judges whether an external temperature sensor and a floor heating control load are connected, so as to determine whether it is of the floor heating type. If it is of the floor heating type, store and display the floor heating type, and enter step S6. If it is not of the floor heating type, also enter step S6; S6. The intelligent panel enters the standby operation.
2. The adaptive configuration method of an intelligent temperature control panel according to claim 1, wherein: It also includes the following steps: S7. The processing module judges the human sleep curve and sends the human sleep characteristic parameters to the main control module, and the main control module automatically adjusts the indoor temperature to ensure the sleep curve of the sleep quality. S8. The processing module communicates with the clock module through the main control module, automatically judges the season according to the clock module. When there is no one living in winter, the processing module judges the ambient temperature and sends the ambient temperature parameters to the main control module, and the main control module then controls the floor heating to prevent the water pipes from freezing.
3. The adaptive configuration method of an intelligent temperature control panel according to claim 2, characterized in that: The step S7 includes the following steps: S71. The human body sensor detects whether there is a person in the room. If there is a person, it enters step S72. If there is no person, it exits the detection. S72. The processing module detects whether it is in the sleep time. If it is in the sleep time, it enters step S73. If it is not in the sleep time, it exits the processing. S73. The processing module detects the human sleep curve temperature through the temperature sensor. If it is within the human sleep curve temperature range, it exits the processing. If it is not within the human sleep curve temperature range, it controls the floor heating and / or air conditioner through the main control module to adjust the temperature.
4. The adaptive configuration method of an intelligent temperature control panel according to claim 2, characterized in that: The step S8 includes the following steps: S81. The human body sensor detects whether there is a person in the room. If there is no person, it enters step S82. If there is a person, it exits the manual control. S82. The processing module detects the current ambient temperature through the temperature sensor. When the ambient temperature is lower than or equal to 5°C, it controls the floor heating to generate heat through the main control module and sets a flag bit to indicate that it enters the working state due to low temperature. When the ambient temperature is higher than 5°C, it enters step S83. S83. When entering the low-temperature protection state, and the temperature sensor detects whether the current temperature is higher than 8°C. If the ambient temperature is higher than 8°C, the main control module controls the floor heating to turn off and enters the normal mode. If the ambient temperature is lower than or equal to 8°C, it enters step S82 for judgment.
Citation Information
Patent Citations
Detector intelligent control system, control method thereof and PET equipment
CN104820452A
System and method for automatically controlling sleeping environment
CN104950686A