Lighting warmer

Through the combination of biometrics and adaptive airflow control modules, intelligent adjustments are achieved according to the user's differentiated heating mode and indoor environment, solving the problems of single functions and uneven temperature of traditional heaters, and improving the intelligence and comfort of the heaters.

CN120274326APending Publication Date: 2025-07-08JIAXING CHUANGMEI ELECTRIC APPLIANCE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510343895.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-22
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

Traditional heaters have a single function and cannot provide personalized heating modes according to user differentiation. They cannot monitor and adjust the inhomogeneity of indoor temperature and airflow, resulting in dead corners of airflow and problematic areas with uneven temperatures.

Method used

The biometric module and the adaptive airflow control module are used to link with the main control module, determine the user's identity through fingerprint or facial recognition, set personalized heating parameters, and use airflow and temperature sensors to monitor the indoor environment in real time, adjust the fan and air outlet louvers to evenly distribute the warm air.

Benefits of technology

It realizes a personalized heating mode according to user needs, eliminates airflow blind spots and temperature unevenness, and improves the comfort and intelligence level of the heater.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120274326A_ABST
    Figure CN120274326A_ABST
Patent Text Reader

Abstract

The lighting warmer comprises a main body, a main control module, a biological recognition module and a self-adaptive airflow regulation and control module, the main control module, the biological recognition module and the self-adaptive airflow regulation and control module are installed on the main body, the biological recognition module and the self-adaptive airflow regulation and control module are both connected with the main control module, and the biological recognition module recognizes a user identity input before and sends the user identity to the self-adaptive airflow regulation and control module. And different heating modes are started according to different users. According to the lighting warmer disclosed by the invention, linkage is carried out through the main body, the main control module, the biological recognition module and the self-adaptive airflow regulation and control module, so that users using the lighting warmer are recognized, and different heating modes are started according to different users; and a problem area including an airflow dead angle and non-uniform temperature is identified, so that a fan and an air outlet shutter of a main body are adjusted according to the problem area, and warm air is uniformly distributed in the whole indoor space.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of heaters, and particularly relates to a lighting heater. Background Art

[0002] With the continuous improvement of people's living quality, the functional requirements for heaters are becoming increasingly diverse. Traditional heaters have relatively single functions, and many can only achieve the basic function of heating, lacking intelligence, unable to provide different heating modes according to different users, and unable to monitor the heating degree of indoor areas, resulting in problem areas such as air flow dead angles and uneven temperatures.

[0003] Therefore, in view of the above problems, further improvements are made. Summary of the Invention

[0004] The main object of the present invention is to provide a lighting heater, which is linked by a main body, a main control module, a biometric recognition module, and an adaptive air flow regulation module, so as to identify the users, start different heating modes according to different users; and identify problem areas including air flow dead angles and uneven temperatures, and then adjust the fan and air outlet louvers of the main body for this problem area, so that warm air is evenly distributed throughout the indoor space.

[0005] To achieve the above object, the present invention provides a lighting heater, including a main body (equipped with a light source, a fan, air outlet louvers, a heating pipe, etc.) and a main control module, a biometric recognition module, and an adaptive air flow regulation module installed on the main body. The biometric recognition module and the adaptive air flow regulation module are both connected to the main control module, wherein:

[0006] The biometric recognition module recognizes the previously entered user identities and starts different heating modes according to different users (different family members have different temperature perceptions, and through biometric recognition, the heater can accurately meet the exclusive heating needs of each user);

[0007] The adaptive air flow regulation module includes a number of air flow sensors and temperature sensors installed indoors. When the heater is turned on, the air flow sensors and temperature sensors work, collect the air flow and temperature data at various places indoors in real time and transmit them to the main control module. After analysis and processing by the main control module, an initial model of the indoor environment (the air flow and temperature data of each area indoors) is established, so as to identify problem areas including air flow dead angles and uneven temperatures later, and then adjust the fan and air outlet louvers of the main body for this problem area, so that warm air is evenly distributed throughout the indoor space.

[0008] As a further preferred technical solution of the above technical solution, the biometric recognition module is specifically implemented as:

[0009] When the user first uses the heater, biometric information is collected through the fingerprint recognition unit or the face recognition unit, so as to input the user identity into the main control module;

[0010] In the main control module, personalized heating parameters matching the user are set under the user identity. The personalized heating parameters include temperature, wind force, and heating mode (such as local heating or whole-house heating);

[0011] When using the heater later, biometric information is collected through the fingerprint recognition unit or the face recognition unit. After confirming the user identity, the previously set personalized heating parameters are retrieved, so that the heater selects the corresponding heating mode for heating according to the personalized heating parameters (if it is used by a visitor, there is no need to input identity information, and the general heating mode can be selected on the touch screen of the main body; if there are multiple users with input identities, the user with the most need takes the initiative to perform fingerprint or face recognition, so as to output the parameters matching it for heating).

[0012] As a further preferred technical solution of the above technical solution, the fingerprint recognition unit is specifically implemented as:

[0013] The fingerprint recognition sensor is installed on the main body, so that the fingerprint recognition sensor transmits the fingerprint information of the recognized user to the main control module, and then the main control module inputs the identity of this user;

[0014] The face recognition unit is specifically implemented as:

[0015] The camera is installed on the main body, so that the camera transmits the face information of the recognized user to the main control module, and then the main control module inputs the identity of this user.

[0016] As a further preferred technical solution of the above technical solution, for the adaptive air flow regulation module, the main control module generates corresponding adjusted fan parameters and air outlet louver parameters for the problem area, so as to adjust the rotation speed of the fan and the air outlet angle and opening degree of the air outlet louver (using the air flow and temperature sensors, the heater can monitor the indoor air flow state and temperature distribution in real time. When it detects that there are air flow dead corners or uneven temperature areas in the room, it automatically adjusts the rotation speed of the fan, the angle of the air outlet louver, and the opening degree of the air outlet, so that the warm air can be more evenly distributed in the whole space, avoiding local overheating or overcooling phenomena and improving the overall heating comfort. For example, when it detects that the temperature in a certain area is low and the air flow speed is slow, it increases the rotation speed of the fan, adjusts the angle of the louver so that the warm air blows to this area, and appropriately increases the opening degree of the air outlet to improve the temperature and air flow circulation in this area).

[0017] As a further preferred technical solution of the above technical solution, it further includes a voice module, and the voice module belongs to and is connected to the main control module, and the output of the main control module is controlled through the voice module, so as to control the heater by voice. Description of the Drawings

[0018] Figure 1 is a schematic diagram of the present invention. Detailed Embodiment

[0019] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments in the following description are only examples, and those skilled in the art can think of other obvious variations. The basic principles defined in the following description of the present invention can be applied to other implementation schemes, variant schemes, improvement schemes, equivalent schemes, and other technical schemes that do not deviate from the spirit and scope of the present invention.

[0020] In the preferred embodiment of the present invention, those skilled in the art should note that the light sources and the like involved in the present invention can be regarded as the prior art.

[0021] Preferred Embodiment.

[0022] Such as Figure 1 As shown, the present invention discloses a lighting heater, including a main body (provided with a light source, a fan, an air outlet louver, a heating pipe, etc.) and a main control module, a biometric identification module and an adaptive air flow regulation module installed on the main body. The biometric identification module and the adaptive air flow regulation module are both connected to the main control module, wherein:

[0023] The biometric identification module identifies the previously entered user identity and activates different heating modes according to different users (different family members have different temperature perceptions, and through biometric identification, the heater can accurately meet the exclusive heating needs of each user);

[0024] The adaptive air flow regulation module includes a plurality of air flow sensors and temperature sensors installed indoors. When the heater is turned on, the air flow sensors and temperature sensors work, and the air flow and temperature data at various places indoors are collected in real time and transmitted to the main control module. After analysis and processing by the main control module, an initial model of the indoor environment (the air flow and temperature data of each area indoors) is established, so as to identify problem areas including air flow dead angles and uneven temperatures in the later stage, and thus adjust the fan and air outlet louver of the main body for the problem areas, so that the warm air is evenly distributed in the entire indoor space.

[0025] Specifically, the biometric identification module is specifically implemented as:

[0026] When the user first uses the heater, biometric information is collected through the fingerprint recognition unit or the facial recognition unit, so as to input the user identity into the main control module;

[0027] In the main control module, personalized heating parameters matching the user are set under the user identity. The personalized heating parameters include temperature, wind force, and heating mode (such as local heating or whole-house heating);

[0028] When using the heater later, biometric information is collected through the fingerprint recognition unit or the facial recognition unit. After confirming the user identity, the previously set personalized heating parameters are retrieved, so that the heater selects the corresponding heating mode for heating according to the personalized heating parameters (if it is used by a visitor, there is no need to input identity information, and the general heating mode can be selected on the touch screen of the main body; if there are multiple users with input identities, the most needy user takes the initiative to perform fingerprint or facial recognition, so as to output the parameters matching it for heating).

[0029] More specifically, the fingerprint recognition unit is specifically implemented as:

[0030] The fingerprint recognition sensor is installed on the main body, so that the fingerprint recognition sensor transmits the fingerprint information of the recognized user to the main control module, and then the main control module inputs the identity of the user;

[0031] The facial recognition unit is specifically implemented as:

[0032] The camera is installed on the main body, so that the camera transmits the facial information of the recognized user to the main control module, and then the main control module inputs the identity of the user.

[0033] Furthermore, for the adaptive air flow regulation module, the main control module generates corresponding adjusted fan parameters and air outlet louver parameters for the problem area, so as to adjust the rotation speed of the fan and the air outlet angle and opening degree of the air outlet louver (using the air flow and temperature sensors, the heater can monitor the indoor air flow state and temperature distribution in real time. When it detects that there are air flow dead angles or uneven temperature areas in the room, it automatically adjusts the rotation speed of the fan, the angle of the air outlet louver, and the opening degree of the air outlet, so that the warm air can be more evenly distributed in the whole space, avoiding local overheating or overcooling phenomena and improving the overall heating comfort. For example, when it detects that a certain area has a low temperature and a slow air flow speed, it increases the rotation speed of the fan, adjusts the angle of the louver so that the warm air blows towards this area, and appropriately increases the opening degree of the air outlet to increase the temperature and air flow circulation of this area).

[0034] Even further, it further includes a voice module. The voice module is connected to the main control module and controls the output of the main control module through the voice module, so as to control the heater by voice.

[0035] It is worth mentioning that technical features such as the light source involved in this invention patent application should be regarded as the prior art. For the specific structures, working principles, and possible control methods and spatial arrangement methods of these technical features, conventional selections in the art can be adopted, and they should not be regarded as the inventive points of this invention patent. This invention patent will not be further specifically elaborated.

[0036] For those skilled in the art, it is still possible to modify the technical solutions described in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. An illumination heater, characterized in that, It includes a main body, as well as a main control module, a biometric recognition module, and an adaptive air flow regulation module installed on the main body. The biometric recognition module and the adaptive air flow regulation module are both connected to the main control module, where: The biometric recognition module recognizes the previously entered user identity and activates different heating modes according to different users. The adaptive air flow regulation module includes several air flow sensors and temperature sensors installed indoors. When the heater is turned on, the air flow sensors and temperature sensors work to collect real-time air flow and temperature data at various locations indoors and transmit them to the main control module. After analysis and processing by the main control module, an initial model of the indoor environment is established to later identify problem areas including air flow dead zones and uneven temperatures, and then adjust the fan and air outlet louvers of the main body for the problem areas, so that warm air is evenly distributed throughout the indoor space.

2. The lighting heater according to claim 1, wherein The biometric recognition module is specifically implemented as follows: When the user first uses the heater, biometric information is collected through a fingerprint recognition unit or a face recognition unit, and thus the user identity is entered into the main control module. In the main control module, personalized heating parameters matching the user are set under the user identity. The personalized heating parameters include temperature, wind force, and heating mode. When the heater is used later, biometric information is collected through a fingerprint recognition unit or a face recognition unit. After the user identity is confirmed, the previously set personalized heating parameters are retrieved, so that the heater selects the corresponding heating mode for heating according to the personalized heating parameters.

3. The lighting heater according to claim 2, characterized in that, For the fingerprint recognition unit, it is specifically implemented as follows: The fingerprint recognition sensor is installed on the main body, so that the fingerprint information of the recognized user is transmitted to the main control module, and thus the main control module enters the identity of this user. For the face recognition unit, it is specifically implemented as follows: The camera is installed on the main body, so that the face information of the recognized user is transmitted to the main control module, and thus the main control module enters the identity of this user.

4. The lighting heater according to claim 3, characterized in that, For the adaptive air flow regulation module, the main control module generates corresponding adjusted fan parameters and air outlet louver parameters for the problem area, so as to adjust the rotation speed of the fan and the air outlet angle and opening degree of the air outlet louvers.

5. A lighting and heating appliance according to claim 4, characterized in that, It further includes a voice module. The voice module is connected to the main control module to control the output of the main control module through voice, so as to control the heater through voice.