Fan lamp control method and device, storage medium and fan lamp

By integrating temperature, humidity, and human body detection devices into the ceiling fan light, the target rotation parameters of the ceiling fan are automatically determined, solving the problem of low intelligence in existing ceiling fan lights. This enables automatic control of the ceiling fan operation without user commands, thus improving the user experience.

CN121630772APending Publication Date: 2026-03-10MIDEA INTELLIGENT LIGHTING & CONTROLS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

The existing fan lights lack sufficient intelligent control, requiring users to issue control commands to achieve the corresponding functions, resulting in a poor user experience.

Method used

By integrating temperature, humidity, and human presence detection devices into the ceiling fan light, information on ambient temperature, humidity, and human presence is obtained, and the target rotation parameters of the ceiling fan, including direction and wind force, are automatically determined, thereby controlling the operation of the ceiling fan.

Benefits of technology

It has achieved automated control of the fan lights, improved the level of intelligence, and enhanced the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a fan lamp control method and device, a storage medium and a fan lamp. The method comprises the following steps: acquiring environment temperature sent by a temperature detection device, environment humidity sent by a humidity detection device and human body existence detection information sent by a human body induction detection device; according to the environment temperature, the environment humidity and the human body existence detection information, whether a ceiling fan in the fan lamp needs to operate or not is determined, and under the condition that it is determined that the ceiling fan needs to operate, target rotation parameters of the ceiling fan are determined, and the target rotation parameters comprise the target rotation direction and target wind power; and controlling the ceiling fan according to the target rotation parameter. According to the embodiment of the invention, the ceiling fan can be automatically controlled without sending a control instruction for the ceiling fan by a user, so that the intelligent degree of fan lamp control is improved, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of ceiling appliances, and particularly relates to a fan lamp control method and device, a storage medium and a fan lamp. BACKGROUND

[0002] A fan lamp is a household appliance that combines the functions of a ceiling fan and a ceiling lamp. It not only provides lighting, but also generates wind through the rotation of fan blades. With the popularity of fan lamps, people have increasingly high demands for the functions of fan lamps.

[0003] At present, most fan lamps on the market are only adapted for voice control and controller and mobile phone APP control. Although intelligent control is achieved to some extent, the corresponding control function can be realized only by the user issuing a control instruction, that is, the degree of intelligence is not high enough, resulting in poor user experience. SUMMARY

[0004] To solve the above technical problems, the present disclosure provides a fan lamp control method, device, storage medium and fan lamp.

[0005] In a first aspect, the present disclosure provides a fan lamp control method, the fan lamp comprising a temperature detection device, a humidity detection device and a human body sensing detection device, wherein the method comprises:

[0006] obtaining the ambient temperature sent by the temperature detection device, the ambient humidity sent by the humidity detection device and the human body presence detection information sent by the human body sensing detection device;

[0007] determining whether the ceiling fan in the fan lamp needs to run according to the ambient temperature, the ambient humidity and the human body presence detection information, and determining the target rotation parameter of the ceiling fan in the case of determining that the ceiling fan needs to run, wherein the target rotation parameter comprises a target rotation direction and a target wind power;

[0008] controlling the ceiling fan according to the target rotation parameter.

[0009] In a second aspect, the present disclosure also provides a fan lamp control device, the fan lamp comprising a temperature detection device, a humidity detection device and a human body sensing detection device, wherein the device comprises:

[0010] a first acquisition module, configured to obtain the ambient temperature sent by the temperature detection device, the ambient humidity sent by the humidity detection device and the human body presence detection information sent by the human body sensing detection device;

[0011] The first determining module is configured to determine whether the ceiling fan in the fan lamp needs to operate according to the ambient temperature, the ambient humidity and the human body presence detection information, and determine a target rotating parameter of the ceiling fan in a case where it is determined that the ceiling fan needs to operate, wherein the target rotating parameter comprises a target rotating direction and a target wind power.

[0012] The first control module is configured to control the ceiling fan according to the target rotating parameter.

[0013] In a third aspect, the present disclosure further provides a computer readable storage medium, and the storage medium stores a computer program. When the computer program is executed by a processor, the processor implements the control method of the fan lamp according to the first aspect.

[0014] In a fourth aspect, the present disclosure further provides a detection device, which comprises a ceiling fan, a ceiling lamp, a temperature detection apparatus, a humidity detection apparatus, a human body sensing detection apparatus, a processor and a memory.

[0015] The temperature detection apparatus is configured to collect an ambient temperature.

[0016] The humidity detection apparatus is configured to collect an ambient humidity.

[0017] The human body sensing detection apparatus is configured to detect a human body presence to obtain human body presence detection information.

[0018] The memory is configured to store executable instructions.

[0019] The processor is configured to read the executable instructions from the memory and execute the executable instructions to implement the control method of the fan lamp according to the first aspect.

[0020] Compared with the prior art, the technical scheme provided by the embodiments of the present disclosure has the following advantages:

[0021] The fan light control method, apparatus, storage medium, and fan light of this disclosure can acquire ambient temperature sent by a temperature detection device, ambient humidity sent by a humidity detection device, and human presence detection information sent by a human presence detection device. Based on the ambient temperature, ambient humidity, and human presence detection information, it determines whether the ceiling fan in the fan light needs to operate. If it is determined that the ceiling fan needs to operate, it determines the target rotation parameters of the ceiling fan, wherein the target rotation parameters include target direction and target airflow. Based on the target rotation parameters, the ceiling fan is controlled. Therefore, by adopting the above technical solution, the target rotation parameters of the ceiling fan (at least including target direction and target airflow) can be automatically determined based on the ambient temperature, ambient humidity, and human presence detection information, and then the ceiling fan can be controlled based on the target rotation parameters. Thus, the ceiling fan can be automatically controlled without the user issuing control commands, improving the intelligence level of the fan light control and enhancing the user experience. Attached Figure Description

[0022] The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments consistent with this disclosure and, together with the description, serve to explain the principles of this disclosure.

[0023] To more clearly illustrate the technical solutions in the embodiments of this disclosure or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 A flowchart illustrating a fan light control method provided in an embodiment of this disclosure;

[0025] Figure 2 This is a schematic diagram of the structure of a fan light control device provided in an embodiment of the present disclosure;

[0026] Figure 3 This is a schematic diagram of the structure of a fan light provided in an embodiment of the present disclosure;

[0027] Figure 4 Provided for the embodiments of this disclosure Figure 3 The exploded view of the fan light shown;

[0028] Figure 5 This is a schematic diagram of the structure of a fan light controller provided in an embodiment of this disclosure. Detailed Implementation

[0029] Embodiments of this disclosure will now be described in more detail with reference to the accompanying drawings. While some embodiments of this disclosure are shown in the drawings, it should be understood that this disclosure can be implemented in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of this disclosure. It should be understood that the accompanying drawings and embodiments of this disclosure are for illustrative purposes only and are not intended to limit the scope of protection of this disclosure.

[0030] It should be understood that the steps described in the method embodiments of this disclosure may be performed in different orders and / or in parallel. Furthermore, the method embodiments may include additional steps and / or omit the steps shown. The scope of this disclosure is not limited in this respect.

[0031] The term "comprising" and its variations as used herein are open-ended inclusions, meaning "including but not limited to". The term "based on" means "at least partially based on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Definitions of other terms will be given in the description below.

[0032] It should be noted that the concepts of "first" and "second" mentioned in this disclosure are used only to distinguish different devices, modules or units, and are not used to limit the order of functions performed by these devices, modules or units or their interdependencies.

[0033] It should be noted that the terms "a" and "a plurality of" used in this disclosure are illustrative rather than restrictive, and those skilled in the art should understand that, unless otherwise expressly indicated in the context, they should be understood as "one or more".

[0034] The names of messages or information exchanged between multiple devices in the embodiments of this disclosure are for illustrative purposes only and are not intended to limit the scope of such messages or information.

[0035] Figure 1 This is a flowchart illustrating a fan light control method provided in an embodiment of the present disclosure. Figure 1 The method shown is applicable to scenarios involving intelligent control of fan lights. This method can be executed by a fan light control device, which can be implemented by software and / or hardware, and this disclosure does not limit this.

[0036] like Figure 1 As shown, the control method for this fan light may include the following steps.

[0037] S110. Acquire ambient temperature sent by the temperature detection device, ambient humidity sent by the humidity detection device, and human presence detection information sent by the human body sensing detection device.

[0038] In some embodiments of this disclosure, the fan light includes a ceiling fan and a chandelier, and also includes a temperature detection device, a humidity detection device, and a human body detection device (the human body detection device includes, but is not limited to, human-sensing radar, infrared sensors, and / or cameras). The temperature detection device is used to collect ambient temperature, the humidity detection device is used to collect ambient humidity, and the human body detection device is used to detect the presence of a human body to obtain human presence detection information. It should be noted that the specific placement of the temperature detection device, humidity detection device, and human body detection device on the fan light can be determined by those skilled in the art according to actual conditions, and this disclosure does not limit this. Optionally, the temperature detection device is placed outside the fan light or outside the fan light controller (the controller includes, but is not limited to, remote controls and / or wired controllers). This allows the temperature detection device to directly contact the air, thereby more accurately and effectively sensing the ambient temperature, which is beneficial to improving the control accuracy of the fan light. Optionally, the humidity detection device is placed outside the fan light or outside the fan light controller. This allows the humidity detection device to directly contact the air, thereby more accurately and effectively sensing the ambient humidity, which is beneficial to improving the control accuracy of the fan light. Optionally, the human body detection device can be installed on the base of the fan light or outside the controller of the fan light. This allows the human body detection device to have a wide field of view and avoid being blocked by other objects, thereby more accurately and effectively sensing people coming and going, which helps to improve the control accuracy of the fan light.

[0039] In some embodiments of this disclosure, the temperature detection device can periodically or in real time collect the ambient temperature and send the collected ambient temperature to the fan light control device; the humidity detection device can periodically or in real time collect the ambient humidity and send the collected ambient humidity to the fan light control device; the human body detection device can periodically or in real time detect the presence of a human body to obtain human body presence detection information and send the human body presence detection information to the fan light control device. This disclosure does not limit the scope of the invention.

[0040] In some embodiments of this disclosure, the fan light control device may communicate with the temperature detection device, humidity detection device, and human body induction detection device via wired and / or wireless means, and this disclosure does not limit this.

[0041] Specifically, the ambient temperature is the temperature of the environment surrounding the fan light.

[0042] Specifically, the ambient humidity refers to the humidity of the environment surrounding the fan light, where humidity is the ratio of the actual amount of water vapor in the air to the saturated amount of water vapor at a certain temperature.

[0043] Specifically, the presence detection information is used to characterize whether a human body is present in the environment surrounding the fan light.

[0044] S120. Based on the ambient temperature, ambient humidity and human presence detection information, determine whether the ceiling fan in the fan light needs to be operated, and if it is determined that the ceiling fan needs to be operated, determine the target rotation parameters of the ceiling fan, wherein the target rotation parameters include the target direction and the target wind force.

[0045] In this embodiment of the present disclosure, it is determined whether the ceiling fan in the fan light needs to be operated based on the ambient temperature, ambient humidity and human presence detection information. If it is determined that the ceiling fan needs to be operated, the target rotation parameters of the ceiling fan are determined based on the ambient temperature, ambient humidity and human presence detection information.

[0046] Specifically, the rotation of a ceiling fan includes forward rotation and reverse rotation. When the ceiling fan rotates forward, it blows air downwards; when the ceiling fan rotates in reverse, it blows air upwards.

[0047] Specifically, the airflow of a ceiling fan can be characterized by its speed, speed setting, and / or the drive voltage across the motor, but is not limited to these.

[0048] In some embodiments of this disclosure, S120 may include: determining whether the ceiling fan in the fan light needs to be operated by querying a first correlation relationship based on ambient temperature, ambient humidity and human presence detection information, and determining the target rotation parameters of the ceiling fan if it is determined that the ceiling fan needs to be operated, wherein the first correlation relationship is the correspondence between ambient temperature, ambient humidity, human presence detection information, rotation status (i.e. whether it is rotating) and rotation parameters.

[0049] In some other embodiments of this disclosure, S120 may include: S121, determining the target temperature range to which the ambient temperature belongs from a plurality of candidate temperature ranges, and determining the target humidity range to which the ambient humidity belongs from a plurality of candidate humidity ranges.

[0050] Specifically, the specific number and endpoint values ​​of the multiple candidate temperature ranges can be set by those skilled in the art according to the actual situation, and this disclosure does not limit them. For example, the multiple candidate temperature ranges include the following five candidate humidity ranges: less than 20℃, greater than or equal to 20℃ and less than 23℃, greater than or equal to 23℃ and less than 26℃, greater than or equal to 26℃ and less than 28℃, and greater than or equal to 28℃.

[0051] Specifically, the specific number and endpoint values ​​of the multiple candidate humidity intervals can be set by those skilled in the art according to the actual situation, and this disclosure does not limit this. For example, the multiple candidate humidity intervals include the following two candidate humidity intervals: less than or equal to 70% and greater than 70%.

[0052] Specifically, the target temperature range is the candidate temperature range in which the ambient temperature falls, that is, the ambient temperature is a temperature value within the target temperature range.

[0053] Specifically, the target humidity range is the candidate humidity range in which the ambient humidity falls, that is, the ambient humidity is a humidity value within the target humidity range.

[0054] S122. Based on the human body presence detection information, target temperature range, and target humidity range, determine whether the ceiling fan needs to be operated, and if it is determined that the ceiling fan needs to be operated, determine the target rotation parameters of the ceiling fan.

[0055] Understandably, by setting the target rotation parameters based on human presence detection information, target temperature range, and target humidity range, the target rotation parameters can remain constant even when there are slight fluctuations in ambient temperature and humidity. This avoids the problem of frequently adjusting the ceiling fan's rotation parameters.

[0056] In some examples of this disclosure, S122 may include: S1211, if the detection information indicates that there is a person present, and the target temperature range is a low temperature range and the target humidity range is a low humidity range, determine that the ceiling fan does not need to be operated.

[0057] Specifically, multiple candidate temperature ranges can be divided into two categories based on the ambient temperature they cover: high-temperature ranges and low-temperature ranges. The minimum endpoint value of the high-temperature range is greater than or equal to a preset temperature threshold, while the maximum endpoint value of the low-temperature range is less than or equal to the preset temperature threshold. It should be noted that the specific value of the preset temperature threshold can be set by those skilled in the art according to actual conditions, and this disclosure does not limit it. For example, the preset temperature threshold can be arbitrarily selected between 18℃ and 26℃. For instance, if the preset temperature threshold is 20℃, then temperatures below 20℃ belong to the low-temperature range, while temperatures greater than or equal to 20℃ and less than 23℃, greater than or equal to 23℃ and less than 26℃, greater than or equal to 26℃ and less than 28℃, and greater than or equal to 28℃ belong to the high-temperature range.

[0058] Specifically, multiple candidate humidity ranges can be divided into two categories based on the ambient humidity they cover: high humidity ranges and low humidity ranges. The minimum endpoint value of the high humidity range is greater than or equal to a preset humidity threshold, and the maximum endpoint value of the low humidity range is also greater than or equal to a preset humidity threshold. It should be noted that the specific value of the preset humidity threshold can be set by those skilled in the art according to actual conditions, and this disclosure does not limit it. For example, the preset humidity threshold can be arbitrarily selected between 60℃ and 70℃. For instance, if the preset humidity threshold is 70%, then humidity levels less than or equal to 70% belong to the low humidity range, and humidity levels greater than 70% belong to the high humidity range.

[0059] For example, when the ambient temperature is less than 20°C and the ambient humidity is less than or equal to 70%, the blower function will not automatically turn on when a person arrives.

[0060] Understandably, when both the target temperature and humidity ranges are low, it indicates that the current ambient temperature is low, eliminating the need for a ceiling fan for cooling. Furthermore, the low humidity makes the environment dry and prevents a damp feeling. By setting the human presence detection information to indicate someone is present, and when both the target temperature and humidity ranges are low, the target fan direction is kept constant with a target fan speed of 0. This ensures that even when someone is present, the ceiling fan will not operate, thus saving energy, especially when the ambient temperature and humidity are relatively suitable.

[0061] And / or, S1212, if the detection information indicates that there is a person, the target temperature range is a low temperature range and the target humidity range is a high humidity range, determine that the ceiling fan needs to be operated, determine that the target direction is reversed, and determine the target wind force based on the target humidity range.

[0062] Understandably, when the target temperature range is low and the target humidity range is high, it indicates that the current ambient temperature is low and the ambient humidity is high, which can give people a damp and cold feeling. By setting the human presence detection information to indicate that someone is present, and when the target temperature range is low and the target humidity range is high, the target direction is reversed, causing the ceiling fan to blow air upwards, thereby promoting air circulation and improving environmental comfort.

[0063] Optionally, in step S1212, the target wind force is determined based on the target humidity range, including: determining the target wind force according to the principle that the higher the humidity corresponding to the target humidity range, the greater the target wind force. This allows the target wind force to match the ambient humidity, thereby quickly improving environmental comfort. Of course, in other examples, a preset first fixed wind force can also be determined as the target wind force.

[0064] For example, when the ambient temperature is less than 20°C and the ambient humidity is greater than 70%, the first-level reverse rotation fan function will be activated immediately when a person arrives, so as to blow the air upwards and promote air circulation.

[0065] And / or, S1213, if the detection information indicates that there is a person and the target temperature range is in the high temperature range, determine that the ceiling fan needs to be running, determine that the target direction is positive, and determine the target wind force based on the target temperature range and the target humidity range.

[0066] Understandably, when the target temperature range is in the high temperature range, it indicates that the current ambient temperature is high. Regardless of whether the current ambient humidity is high or low, cooling should be achieved by using a ceiling fan. By setting the human presence detection information to indicate that someone is present and the target temperature range is in the high temperature range, the target direction is set to positive, causing the ceiling fan to blow air downwards, thereby promoting air circulation and making people feel cooler.

[0067] Optionally, the target wind force is determined based on the target temperature range and the target humidity range, including: determining the target wind force according to the principle that the higher the temperature corresponding to the target temperature range, the greater the target wind force, and / or the higher the humidity corresponding to the target humidity range, the greater the target wind force. This allows the target wind force to match the ambient temperature and / or the ambient humidity, thereby quickly improving environmental comfort. Of course, in other examples, a preset second fixed wind force can also be determined as the target wind force.

[0068] For example, under conditions where the ambient temperature is greater than or equal to 20℃ and less than 23℃, and the ambient humidity is less than or equal to 70%, the human body detection device immediately activates the lowest setting (level 1) of the fan when a person is detected. Under the same conditions, when the ambient temperature is greater than or equal to 20℃ and less than 23℃, and the ambient humidity is greater than 70%, the fan immediately activates level 2. Under the same conditions, when the ambient temperature is greater than or equal to 23℃ and less than 26℃, and the ambient humidity is less than or equal to 70%, the fan immediately activates level 3. Under the same conditions, when the ambient temperature is greater than or equal to 23℃ and less than 26℃, and the ambient humidity is greater than 70%, the fan immediately activates level 4. Under the same conditions, when the ambient temperature is greater than or equal to 26℃ and less than 28℃, and the ambient humidity is less than or equal to 70%, the fan immediately activates level 5. Under the same conditions, when the ambient temperature is greater than or equal to 26℃ and less than 28℃, and the ambient humidity is greater than 70%, the fan immediately activates level 6. When the ambient temperature is 28℃ or higher, the fan will automatically turn on at level 6 (highest setting) when someone enters the room. The fan will automatically turn off when the person leaves. The fan speed is as follows: Level 1 < Level 2 < Level 3 < Level 4 < Level 5 < Level 6. This speed adjustment is based on ambient temperature and humidity. At the same humidity level, higher temperatures result in higher fan speeds, and lower temperatures result in lower fan speeds. Conversely, at the same temperature level, higher humidity results in higher fan speeds, and lower humidity results in lower fan speeds.

[0069] And / or, S1214, if the detection information for the human body is "no one", the target temperature range is a high temperature range and the target humidity range is a high humidity range, determine that the ceiling fan needs to be operated, determine that the target direction is reversed, and determine the target wind force based on the target temperature range.

[0070] Understandably, when both the target temperature and humidity ranges are high, it indicates that the current ambient temperature and humidity are both high, creating a stuffy and humid feeling. By setting the human presence detection information to "no one is present" and the target temperature and humidity ranges to be high, the target fan's direction is reversed. This causes the ceiling fan to blow air upwards, quickly mixing the hot and cool air in the room, thus achieving air circulation and cooling, improving environmental comfort. In this way, a relatively comfortable environment can be provided for users when they enter the room.

[0071] Optionally, S1214 includes: if the detection information indicates no human presence, the target temperature range is in the high temperature range, the target humidity range is in the high humidity range, and the current time is within the first time interval, determining the target direction to be reversed, and determining the target wind force based on the target temperature range. The first time interval is a time interval pre-set by the user based on their usual return home time. The maximum endpoint of the first time interval is earlier than the return home time, and the difference between the two is less than a preset difference threshold (e.g., 20 minutes). This provides a relatively comfortable environment for the user and may save energy on fans and lights.

[0072] Optionally, in step S1214, determining the target wind force based on the target temperature range includes: determining the target wind force according to the principle that the higher the ambient temperature corresponding to the target temperature range, the greater the target wind force. This allows the target wind force to match the ambient temperature, thereby quickly improving environmental comfort. Of course, in other examples, a preset third fixed wind force can also be determined as the target wind force.

[0073] For example, in an unoccupied environment with humidity greater than 70% and an ambient temperature greater than or equal to 20°C and less than 26°C, the first-level reverse airflow function automatically activates. In an unoccupied environment with humidity greater than 70% and an ambient temperature greater than or equal to 26°C, the second-level reverse airflow function automatically activates. This quickly mixes hot and cold air in the room, achieving air circulation and indoor cooling.

[0074] And / or, S1215, if the detection information indicates that no one is present and the target temperature range is in the low temperature range, it is determined that the ceiling fan does not need to be operated.

[0075] Understandably, when the target temperature range is in the low temperature range, it indicates that the current ambient temperature is low, and there is no need to cool it down with a ceiling fan. By setting the human presence detection information to "no one" and the target temperature range to be in the low temperature range, the target fan will maintain its current direction and the target fan speed will be 0. This will prevent the ceiling fan from working when no one is present, thus achieving energy saving.

[0076] In other examples of this disclosure, S122 may include: determining target rotation parameters by querying a second association relationship based on human presence detection information, target temperature range, and target humidity range, wherein the second association relationship is the correspondence between human presence detection information, candidate temperature range, candidate humidity range, and rotation parameters.

[0077] Understandably, by determining the target rotation parameters of the ceiling fan in the fan light based on ambient temperature, humidity, and human presence detection information, the fan speed can be automatically adjusted to a suitable level. This not only effectively reduces energy consumption but also improves comfort and convenience.

[0078] S130. Control the ceiling fan according to the target rotation parameters.

[0079] This embodiment of the invention can automatically determine the target rotation parameters (at least the target direction and the target wind force) of the ceiling fan based on ambient temperature, ambient humidity and human presence detection information, and then control the ceiling fan according to the target rotation parameters. In this way, the ceiling fan can be automatically controlled without the user issuing control commands, which improves the intelligence of the fan light control and helps to improve the user experience.

[0080] In another embodiment of this disclosure, the method further includes: determining the target wind range corresponding to the target wind force from a plurality of candidate wind ranges;

[0081] If the detection information indicates that a person is present, determine the duration of the person's continuous stay within the target airflow range;

[0082] The method of controlling the ceiling fan according to the target rotation parameters includes: if the continuous dwell time is greater than a preset time threshold, controlling the ceiling fan according to the target rotation parameters.

[0083] Optionally, if the detection information indicates that a person is present and the duration of their stay is less than or equal to a preset time threshold, the target wind force will be updated to 0.

[0084] Optionally, after the ceiling fan is turned on, if the duration of a person leaving the target airflow range reaches a preset time threshold, the human presence detection information is determined to be unoccupied; if the duration of a person leaving the target airflow range does not reach the preset time threshold after the ceiling fan is turned on, the human presence detection information is updated to be occupied. Here, "duration of a person leaving the target airflow range" refers to the duration of the last person leaving the target airflow range.

[0085] Specifically, generally speaking, the stronger the wind force, the larger the airflow range of the ceiling fan; the weaker the wind force, the smaller the airflow range. Here, the airflow range refers to the spatial area that can be effectively covered by the wind force generated when the fan blades rotate. Therefore, different wind forces correspond to different candidate airflow ranges, and the candidate airflow ranges corresponding to each wind force can be obtained through pre-measurement.

[0086] Specifically, the target blowing range is the candidate blowing range corresponding to the target wind force. That is, when the wind force of the ceiling fan is the target wind force, its blowing range is the target blowing range.

[0087] Specifically, if the detection information indicates that a person is present, the duration of each person's stay within the target airflow range is determined, and the maximum value among the durations of all people within the target airflow range is taken as the "duration of the human body within the target airflow range".

[0088] Specifically, the specific value of the preset time threshold can be set by those skilled in the art according to the actual situation, and this disclosure does not limit it. For example, the preset time threshold can be any value within 1 minute to 5 minutes, such as 2 minutes, 3 minutes or 5 minutes, but is not limited to this.

[0089] For example, a detection unit is configured for the ceiling fan light. If the detection unit detects a moving object within a preset range corresponding to the ceiling fan light, it determines whether the moving object is a human body. If the moving object is a human body, it acquires the current ambient temperature and humidity, matches an appropriate operating level as the target level (i.e., target wind speed) based on the ambient temperature and humidity, and determines the target direction. Then, it determines a pre-configured airflow range corresponding to the target level as the target airflow range. Next, it continues to detect the continuous stay time of the human body within the target airflow range. If the continuous stay time of the human body within the target airflow range exceeds a preset time threshold, the ceiling fan light is controlled to turn on according to the previously determined target level and target direction. Correspondingly, after the ceiling fan is turned on, if the duration of the human body leaving the target airflow range reaches a certain threshold, the ceiling fan is controlled to turn off.

[0090] It is understandable that when controlling a ceiling fan, taking into account the target airflow range corresponding to the target wind force and the duration of human stay within the target airflow range can avoid the problem of the ceiling fan being turned on but not effectively blowing air to the human body. Furthermore, when the human body only appears briefly within the target airflow range and then leaves, the fan should not be turned on, thus improving the effective utilization rate of the ceiling fan.

[0091] In another embodiment of this disclosure, the human body detection device is disposed on the blades of the ceiling fan, and the method further includes: shielding the human body presence detection information sent by the human body detection device during the process of adjusting the ceiling fan from the off state to the target wind force;

[0092] During the process of adjusting the ceiling fan from its current wind speed to the off state, the human presence detection information sent by the human body sensor is blocked.

[0093] When the ceiling fan is adjusted to the target wind speed, the system resumes receiving human presence detection information sent by the human presence detection device and records the number of times the human presence detection information is transmitted. If the number of transmissions is an integer multiple of the current speed of the ceiling fan, the human presence detection information is considered valid.

[0094] Specifically, when the human presence detection device is placed above the fan blades, it can transmit the presence information of a person to the control device of the ceiling fan light via a low-voltage signal. When someone is present, the presence information is transmitted to the control device, and the ceiling fan is turned on according to the target direction and wind speed. During the fan's startup, the presence information transmitted by the human presence detection device is blocked. When the fan reaches the target wind speed, the reception of presence information resumes and the number of transmissions is recorded. When the presence information indicates no one is present, if the number of transmissions of the presence information indicating no one is present is an integer multiple of the current fan speed, the presence information indicating no one is present is considered valid, the fan is turned off, and the signal from the human presence detection device is blocked. When the fan speed is 0, the presence detection function is activated.

[0095] Understandably, by blocking the human presence detection information sent by the human body sensor when the ceiling fan's speed is constantly changing, the ceiling fan can be ensured to turn on or off exactly as preset, avoiding situations where the fan restarts or shuts down due to human presence information. Furthermore, by comparing the number of times human presence detection information is transmitted with the ceiling fan's speed, false alarms can be reduced.

[0096] In another embodiment of this disclosure, the fan light further includes a heating module, and the method further includes: determining the target heating parameters of the heating module based on ambient temperature, ambient humidity and human presence detection information;

[0097] Control the heating module according to the target heating parameters.

[0098] Specifically, the exact location of the heating module within the fan light can be determined by those skilled in the art based on actual conditions, and is not limited here. Optionally, the heating module can be located between the base and the lampshade of the fan light (i.e., within the light cavity of the fan light) or on the outside of the fan light. In this way, the heat generated by the heating module can be dissipated into the surrounding environment more quickly, thereby raising the ambient temperature as soon as possible.

[0099] Specifically, the heating parameters of the heating module may include heating power, but are not limited to this.

[0100] In some embodiments, the target heating parameters of the heating module are determined based on ambient temperature, ambient humidity and human presence detection information, including: determining the target temperature range to which the ambient temperature belongs from multiple candidate temperature ranges, and determining the target humidity range to which the ambient humidity belongs from multiple candidate humidity ranges;

[0101] If the detection information indicates that no one is present, the target temperature range is low, and the target humidity range is high, the target heating power of the heating module is determined based on the target temperature range, and / or, if the detection information indicates that someone is present and the target temperature range is low, the target heating power of the heating module is determined based on the target temperature range.

[0102] The heating module is controlled to heat according to the target heating power.

[0103] For example, in an unoccupied state and under conditions where the ambient humidity is greater than 70% and the ambient temperature is less than 20°C, the heating module and the first-level blowing function are turned on to make the ambient temperature comfortable and maintain air circulation.

[0104] Understandably, when the target temperature range is in the low temperature range and the target humidity range is in the high humidity range, it indicates that the current ambient temperature is low but the ambient humidity is high, which will give people a damp and cold feeling. By setting the human presence detection information to indicate that someone is present, the target temperature range to the low temperature range, and the target humidity range to the high humidity range, the heating module can be turned on to raise the ambient temperature, thereby improving the comfort of the environment.

[0105] Optionally, the target heating power of the heating module is determined based on the target temperature range, including: determining the target heating power of the heating module according to the principle that the higher the temperature corresponding to the target temperature range, the higher the target heating power. This allows the target heating power to match the ambient temperature, thereby quickly improving environmental comfort. Of course, in other examples, a preset fixed heating power can also be determined as the target heating power.

[0106] In some embodiments, determining the target heating parameters of the heating module based on ambient temperature, ambient humidity, and human presence detection information includes: determining the target heating parameters of the heating module by querying a third correlation relationship based on ambient temperature, ambient humidity, and human presence detection information, wherein the third correlation relationship is the correspondence between ambient temperature, ambient humidity, human presence detection information, and heating parameters.

[0107] It is understandable that by setting up a heating module in the fan light to regulate the ambient temperature, the surrounding environment can be made more comfortable, which is conducive to achieving a constant temperature control effect.

[0108] In another embodiment of this disclosure, the fan light further includes a far-infrared module, and the method further includes: determining the target operating parameters of the far-infrared module based on ambient temperature and human presence detection information;

[0109] Control the far-infrared module according to the target operating parameters.

[0110] Specifically, the exact location of the far-infrared module within the fan light can be determined by those skilled in the art based on actual conditions, and is not limited here. Optionally, the far-infrared module can be positioned between the base and the lampshade of the fan light or on the outside of the fan light. In this way, the infrared rays generated by the far-infrared module can be transmitted to the surrounding environment with as little obstruction as possible, thereby improving the therapeutic effect.

[0111] Specifically, the operating parameters of the far-infrared module may include its continuous operating time, but are not limited to this.

[0112] In some embodiments, the target operating parameters of the far-infrared module are determined based on ambient temperature and human presence detection information, including:

[0113] If the detection information indicates that a person is present and the ambient temperature is within the first temperature range preset for the far-infrared module, the first continuous working time of the far-infrared module is determined based on the ambient temperature.

[0114] Among them, according to the target working parameters, the far-infrared module is controlled, including: when the fan is on, controlling the far-infrared module to work continuously for a first continuous working time.

[0115] Specifically, the specific endpoint values ​​of the first temperature range can be set by those skilled in the art according to actual conditions, and are not limited here. For example, the first temperature range is greater than or equal to 20°C and less than or equal to 25°C.

[0116] Understandably, by installing a far-infrared module in the ceiling fan, the fan can be turned on to ensure sufficient ventilation when the ambient temperature is suitable, and then the far-infrared therapy module can be activated to provide physical therapy to the human body. After the first continuous working time is reached, it will automatically turn off, thus providing users with a good physical therapy environment.

[0117] Optionally, if the human body detection information indicates that someone is present and the ambient temperature is within the first temperature range preset for the far-infrared module, the first continuous working time of the far-infrared module is determined based on the ambient temperature, including: if the human body detection information indicates that someone is present, the ambient temperature is within the first temperature range preset for the far-infrared module, and a first preset time interval has elapsed since the last operation of the far-infrared module, the first continuous working time of the far-infrared module is determined based on the ambient temperature.

[0118] Specifically, the specific value of the first preset time interval can be set by those skilled in the art according to the actual situation, and is not limited here. For example, the first preset time interval is half a day, one day, or two days, etc., but is not limited to this.

[0119] Optionally, the first continuous operating time of the far-infrared module is determined based on the ambient temperature, including: determining the first continuous operating time of the far-infrared module based on the principle that the lower the ambient temperature, the longer the first continuous operating time. This ensures that the first continuous operating time matches the ambient temperature, avoiding the problem of excessively high ambient temperatures caused by a long continuous operating time of the far-infrared module. Of course, in other examples, a preset first fixed duration can also be determined as the first continuous operating time.

[0120] In some embodiments, determining the target operating parameters of the far-infrared module based on ambient temperature and human presence detection information includes: determining the target operating parameters of the far-infrared module based on ambient temperature and human presence detection information by querying a fourth correlation relationship, wherein the fourth correlation relationship is the correspondence between ambient temperature, human presence detection information and the operating parameters of the far-infrared module.

[0121] In another embodiment of this disclosure, the fan light further includes an excrement imaging module, which includes an ultraviolet illumination submodule and an imaging submodule. The method further includes:

[0122] If the detection information indicates that no human body is present, the ultraviolet illumination module is controlled to emit ultraviolet light, and the imaging module is controlled to generate an image of the excrement based on the fluorescence emitted after the ultraviolet light shines on the excrement.

[0123] It receives images of excrement sent by the imaging module and sends these images to the user terminal.

[0124] Control the ceiling fan to operate continuously for the second duration.

[0125] Specifically, the exact locations of the ultraviolet illumination submodule and the imaging submodule within the fan lamp can be determined by those skilled in the art based on actual conditions, and are not limited here. Optionally, the ultraviolet illumination submodule and the imaging submodule can be positioned between the base and the lamp cover of the fan lamp. This avoids the ultraviolet illumination submodule and the imaging submodule being obstructed by other objects, thereby enabling better generation of images of excrement.

[0126] Specifically, the specific value of the second continuous working duration can be set by those skilled in the art according to the actual situation, and is not limited here. For example, the second continuous working duration can be any value between 5 minutes and 20 minutes, such as 10 minutes, but is not limited to this.

[0127] Understandably, by incorporating ultraviolet illumination and imaging submodules into the ceiling fan light, it can be used to monitor excrement (such as pet excrement), thereby informing the user of excrement images within the ultraviolet illumination range so that the user can clean it up promptly. Furthermore, by controlling the continuous operation duration of the ceiling fan, timely ventilation can be provided, improving the air quality of the surrounding environment.

[0128] In another embodiment of this disclosure, the fan light further includes an ultraviolet disinfection module, and the method further includes: if the detection information indicates that there is a person and the ambient temperature is within a second temperature range preset for the ultraviolet disinfection module, controlling the ultraviolet disinfection module to work continuously for a third continuous working time.

[0129] The fourth setting controls the continuous operation duration of the ceiling fan.

[0130] Specifically, the exact location of the ultraviolet disinfection module within the fan light can be determined by those skilled in the art based on actual conditions, and is not limited here. Optionally, the ultraviolet disinfection module can be located between the base and the lampshade of the fan light or on the outside of the fan light. This avoids the ultraviolet disinfection module being obstructed by other objects, thereby enabling better disinfection of the surrounding environment.

[0131] Specifically, the specific endpoint values ​​of the second temperature range can be set by those skilled in the art according to actual conditions, and are not limited here. For example, the second temperature range is greater than or equal to 20°C and less than or equal to 30°C.

[0132] Optionally, if the detection information indicates that a person is present and the ambient temperature is within the second temperature range preset for the ultraviolet disinfection module, the ultraviolet disinfection module is controlled to continue working for a third continuous working duration, including: if the detection information indicates that a person is present, the ambient temperature is within the second temperature range preset for the ultraviolet disinfection module, and a second preset time interval has elapsed since the last ultraviolet disinfection, the ultraviolet disinfection module is controlled to continue working for a third continuous working duration.

[0133] Specifically, the specific value of the second preset time interval can be set by those skilled in the art according to the actual situation, and is not limited here. For example, the second preset time interval is a day, a week, or a month, etc., but is not limited to this.

[0134] Understandably, by incorporating a UV disinfection module into the ceiling fan light, the module can be activated to disinfect the surrounding environment when the ambient temperature is suitable, and then automatically shut off after three consecutive working hours. This effectively disinfects the surrounding environment. Furthermore, controlling the fan's airflow after disinfection can effectively remove residual ozone from the air, preventing irritation or harm to the human body.

[0135] In another embodiment of this disclosure, the fan light further includes a photosensitive detection device, and the method further includes: acquiring the ambient light intensity emitted by the photosensitive detection device;

[0136] The target lighting parameters of the chandelier are determined based on the ambient light intensity and the detection information of the presence of human beings.

[0137] Control the chandelier according to the target lighting parameters.

[0138] Specifically, the exact location of the photosensitive detection device within the fan light can be determined by those skilled in the art based on actual conditions, and is not limited here. Optionally, the photosensitive detection device can be located outside the fan light or outside the fan light controller. This avoids the photosensitive detection device being obstructed by other objects, thereby allowing for better sensing of ambient light intensity.

[0139] Specifically, the lighting parameters of a chandelier include, but are not limited to, lighting power.

[0140] In some embodiments, the target lighting parameters of the chandelier are determined based on ambient light intensity and human presence detection information, including: if the human presence detection information indicates that there is a person, the target lighting power of the chandelier in the fan light is determined based on the ambient light intensity;

[0141] Controlling the chandelier according to the target lighting parameters includes controlling the chandelier according to the target lighting power.

[0142] Optionally, the target illumination power of the far-infrared module can be determined based on the ambient light intensity, including: determining the target illumination power of the chandelier according to the principle that the higher the ambient light intensity, the lower the target illumination power. This ensures that the target illumination power is matched to the ambient light intensity.

[0143] Understandably, by equipping fan lights with photosensitive detection devices, the lights can be turned on immediately when someone approaches at night and turned off when no one is detected, thus saving energy.

[0144] Figure 2 This is a schematic diagram of the structure of a fan light control device provided in an embodiment of the present disclosure.

[0145] In some embodiments of this disclosure, Figure 2 The device shown can be applied to a fan light, which includes a temperature detection device, a humidity detection device, and a human body detection device. For example... Figure 2 As shown, the control device for the fan light may include:

[0146] The first acquisition module 210 is used to acquire the ambient temperature sent by the temperature detection device, the ambient humidity sent by the humidity detection device, and the human presence detection information sent by the human body sensing detection device.

[0147] The first determining module 220 is used to determine whether the ceiling fan in the fan light needs to be operated based on the ambient temperature, the ambient humidity and the human presence detection information, and if it is determined that the ceiling fan needs to be operated, to determine the target rotation parameters of the ceiling fan, wherein the target rotation parameters include the target direction and the target wind force;

[0148] The first control module 230 is used to control the ceiling fan according to the target rotation parameters.

[0149] Optionally, the first determining module 220 specifically includes:

[0150] The first determining submodule is used to determine the target temperature range to which the ambient temperature belongs from multiple candidate temperature ranges, and to determine the target humidity range to which the ambient humidity belongs from multiple candidate humidity ranges;

[0151] The second determining submodule is used to determine whether the ceiling fan needs to be operated based on the human body presence detection information, the target temperature range, and the target humidity range, and to determine the target rotation parameters of the ceiling fan if it is determined that the ceiling fan needs to be operated.

[0152] Optionally, the second determining submodule specifically includes:

[0153] The first determining unit is configured to determine that the ceiling fan does not need to operate if the detection information of the human body indicates that there is a person, the target temperature range is a low temperature range, and the target humidity range is a low humidity range.

[0154] And / or, the second determining unit is configured to determine that the ceiling fan needs to run if the detection information of the human body indicates that there is a person, the target temperature range is a low temperature range and the target humidity range is a high humidity range, and to determine that the target direction is reversed, and to determine the target wind force according to the target humidity range;

[0155] And / or, a third determining unit, configured to determine that the ceiling fan needs to run if the human body detection information indicates that there is a person and the target temperature range is in the high temperature range, and to determine that the target direction is positive, and to determine the target wind force based on the target temperature range and the target humidity range;

[0156] And / or, the fourth determining unit is used to determine that the ceiling fan needs to run if the detection information of the human body is no one, the target temperature range is a high temperature range and the target humidity range is a high humidity range, and to determine that the target direction is reversed, and to determine the target wind force according to the target temperature range;

[0157] And / or, the fifth determining unit is used to determine that the ceiling fan does not need to be operated if the detection information of the human body is no one and the target temperature range is a low temperature range;

[0158] Wherein, the minimum endpoint value of the high temperature range is greater than or equal to a preset temperature threshold, the maximum endpoint value of the low temperature range is less than or equal to the preset temperature threshold, the minimum endpoint value of the high humidity range is greater than or equal to a preset humidity threshold, and the maximum endpoint value of the low humidity range is greater than or equal to the preset humidity threshold.

[0159] Optionally, the second determining unit is specifically used to determine the target turning direction as reverse if the human body detection information indicates that there is a person, the target temperature range belongs to the low temperature range and the target humidity range belongs to the high humidity range, and to determine the target wind force according to the target humidity range based on the target humidity range, in accordance with the principle that the higher the humidity corresponding to the target humidity range, the greater the target wind force.

[0160] The third determining unit is specifically used to determine the target direction as positive if the human body detection information indicates that there is a person and the target temperature range is a high temperature range, and to determine the target wind force according to the principle that the higher the temperature corresponding to the target temperature range, the greater the target wind force and / or the higher the humidity corresponding to the target humidity range, the greater the target wind force;

[0161] The fourth determining unit is used to determine the target turning direction as reverse if the detection information of the human body is no one, the target temperature range is a high temperature range and the target humidity range is a high humidity range, and to determine the target wind force according to the principle that the higher the temperature corresponding to the target temperature range, the greater the target wind force;

[0162] Optionally, the device further includes:

[0163] The second determining module is used to determine the target wind range corresponding to the target wind force from multiple candidate wind ranges;

[0164] The third determining module is used to determine the duration of the human body's continuous stay within the target airflow range if the human body detection information indicates that there is a person present.

[0165] The first control module 230 is specifically used to control the ceiling fan according to the target rotation parameters if the continuous dwell time is greater than a preset time threshold.

[0166] Optionally, the human body detection device is disposed on the blades of the ceiling fan, and the device further includes:

[0167] The first shielding module is used to shield the human presence detection information sent by the human body sensing detection device during the process of the ceiling fan adjusting from the off state to the target wind force;

[0168] The second shielding module is used to shield the human presence detection information sent by the human body sensing detection device during the process of the ceiling fan adjusting from the current wind speed to the off state.

[0169] The fourth determining module is used to resume receiving the human presence detection information sent by the human body sensing detection device when the ceiling fan is adjusted to the target wind force, and to record the number of times the human presence detection information is transmitted. If the number of transmissions is an integer multiple of the current rotation speed of the ceiling fan, the human presence detection information is determined to be valid.

[0170] Optionally, the fan light further includes a heating module, and the device also includes:

[0171] The fifth determining module is used to determine the target temperature range to which the ambient temperature belongs from multiple candidate temperature ranges, and to determine the target humidity range to which the ambient humidity belongs from multiple candidate humidity ranges;

[0172] The sixth determining module is used to determine the target heating power of the heating module based on the target temperature range if the detection information of the human body is no one, the target temperature range is a low temperature range and the target humidity range is a high humidity range, wherein the maximum endpoint value of the low temperature range is less than or equal to the preset temperature threshold, and the minimum endpoint value of the high humidity range is greater than or equal to the preset humidity threshold.

[0173] The second control module is used to control the heating module to heat according to the target heating power.

[0174] Optionally, the fan light further includes a far-infrared module, and the device also includes:

[0175] The seventh determining module is used to determine the first continuous working time of the far-infrared module based on the ambient temperature if the human body detection information indicates that there is a person and the ambient temperature is within a first temperature range preset for the far-infrared module.

[0176] The third control module is used to control the far-infrared module to continue working for the first continuous working time when the fan is on.

[0177] Optionally, the fan light further includes an excrement imaging module, which includes an ultraviolet illumination submodule and an imaging submodule. The device also includes:

[0178] The fourth control module is used to control the ultraviolet illumination module to emit ultraviolet light and control the imaging module to generate an image of the excrement based on the fluorescence emitted after the ultraviolet light shines on the excrement if the detection information of the human body is no one.

[0179] A transmitting module is used to receive the excrement image transmitted by the imaging module and transmit the excrement image to the user terminal;

[0180] The fourth control module is used to control the second continuous working duration of the ceiling fan.

[0181] Optionally, the fan light further includes an ultraviolet disinfection module, and the device also includes:

[0182] The fifth control module is used to control the ultraviolet disinfection module to continue working for the third continuous working duration if the detection information indicates that there is a person and the ambient temperature is within the second temperature range preset for the ultraviolet disinfection module.

[0183] The sixth control module is used to control the continuous operation of the ceiling fan for the fourth continuous operating time.

[0184] Optionally, the fan light further includes a photosensor, which also includes:

[0185] The second acquisition module is used to acquire the intensity of ambient light emitted by the photosensitive detection device;

[0186] The eighth determining module is used to determine the target lighting power of the chandelier in the fan light based on the ambient light intensity if the human body detection information indicates that there is a person present.

[0187] The seventh control module is used to control the chandelier according to the target lighting power.

[0188] It should be noted that, Figure 2 The fan light control device 200 shown can execute the various steps in any of the above method embodiments and achieve the various processes and effects in any of the above method embodiments, which will not be elaborated here.

[0189] This disclosure also provides a fan light, including: a ceiling fan, a chandelier, a temperature detection device, a humidity detection device, a human body induction detection device, a processor, and a memory;

[0190] Temperature detection device, used to collect ambient temperature;

[0191] Humidity detection device, used to collect ambient humidity;

[0192] Human body sensing and detection device, used to detect the presence of a human body and thus obtain human body presence detection information;

[0193] Memory, used to store executable instructions;

[0194] The processor is used to read executable instructions from memory and execute the executable instructions to implement the fan light control method described in any of the above method embodiments.

[0195] Specifically, the processor may include a central processing unit (CPU), an application-specific integrated circuit (ASIC), or one or more integrated circuits that can be configured to implement the embodiments of this application.

[0196] The memory may include a large-capacity storage device for information or instructions. For example, and not limitingly, the memory may include a hard disk drive (HDD), a floppy disk drive, flash memory, an optical disk drive, a magneto-optical disk drive, magnetic tape, or a Universal Serial Bus (USB) drive, or a combination of two or more of these. Where appropriate, the memory may include removable or non-removable (or fixed) media. Where appropriate, the memory may be internal or external to the integrated gateway device. In a particular embodiment, the memory is a non-volatile solid-state memory. In a particular embodiment, the memory includes read-only memory (ROM). Where appropriate, the ROM may be a mask-programmed ROM, a programmable ROM (PROM), an erasable PROM (Electrically Programmable ROM, EPROM), an electrically erasable programmable ROM (EEPROM), an electrically alterable ROM (EAROM), or flash memory, or a combination of two or more of these.

[0197] The processor can perform the steps in any of the above method embodiments by reading and executing computer program instructions stored in memory.

[0198] In one example, the detection device may also include a transceiver and a bus. The processor, memory, and transceiver are connected via the bus and communicate with each other.

[0199] A bus may be hardware, software, or both. For example, and not limitingly, a bus may include an Accelerated Graphics Port (AGP) or other graphics bus, an Extended Industry Standard Architecture (EISA) bus, a Front Side Bus (FSB), a Hyper Transport (HT) interconnect, an Industrial Standard Architecture (ISA) bus, an Infinite Bandwidth Interconnect, a Low Pin Count (LPC) bus, a memory bus, a MicroChannel Architecture (MCA) bus, a Peripheral Component Interconnect (PCI) bus, a PCI-Express (PCI-X) bus, a Serial Advanced Technology Attachment (SATA) bus, a Video Electronics Standards Association Local Bus (VLB) bus, or other suitable buses, or a combination of two or more of these. Where appropriate, a bus may include one or more buses. Although specific buses are described and illustrated in embodiments of this application, this application contemplates any suitable bus or interconnect.

[0200] Optionally, the fan light may also include: a heating module, a far-infrared module, an excrement imaging module, an ultraviolet disinfection module, and / or a photosensitive detection device;

[0201] The heating module is used to perform heating under the control of the processor;

[0202] The far-infrared module is used to emit far-infrared rays under the control of the processor;

[0203] The excrement imaging module includes an ultraviolet illumination submodule and an imaging submodule. The ultraviolet illumination submodule is used to emit ultraviolet light under the control of the processor, and the imaging submodule is used to generate an excrement image based on the fluorescence emitted after the ultraviolet light shines on the excrement under the control of the processor.

[0204] The ultraviolet disinfection module is used to perform disinfection under the control of the processor;

[0205] A photosensitive detection device is used to collect ambient light intensity.

[0206] Optionally, the fan light also includes a controller;

[0207] The temperature detection device is located outside the fan light or outside the controller;

[0208] The humidity detection device is located outside the fan light or outside the controller;

[0209] The human body detection device is installed on the base of the fan light or on the outside of the controller;

[0210] The photosensitive detection device is located outside the fan light or outside the controller;

[0211] The heating module, far-infrared module, excrement imaging module, and ultraviolet disinfection module are located between the base and the lampshade of the fan light.

[0212] For example, such as Figures 3-5As shown, the fan light includes an electrical control box, a lamp assembly, a hanging bracket 1, a hanging rod assembly 2, a hanging cup 3, a temperature detection device 4, a motor 5, fan blades 6, a fan blade disc 7, a human body induction detection device 9, a main control board 10, a humidity detection device 12, a controller, and a photosensitive detection device 13 mounted on the controller. The lamp assembly includes a lamp base 8 and a lampshade 11, etc. The hanging bracket 1 can be fixed to the ceiling. The hanging rod assembly 2 is used to connect the hanging bracket 1 and the motor 5. The hanging cup 3 is fixed to the hanging rod assembly 2 in a fixed manner. The temperature detection device 4 is fixed to the hanging cup 3 in the form of a snap-fit, which can realize the detection of ambient temperature and transmit the ambient temperature to the main control board 10. The humidity detection device 12 is fixed to the hanging cup 3 in the form of a snap-fit, which can realize the detection of ambient humidity and transmit the ambient humidity to the main control board 10. The main control board 10 is equipped with... A human body detection device 9 is included, covering the area with the lampshade 11 facing downwards. It detects when a person passes by and leaves, transmitting signals to the main control board 10. The motor 5 is fixed to the lower part of the hanging rod assembly 2 using threads and pins, and is also fixed to the fan blade disk 7 with screws. The fan blade 6 is fixed above the fan blade disk 7, allowing the fan blade disk 7 and fan blade 6 to rotate. The lamp base 8 is bolted to the motor shaft and fixed to the main control board 10, achieving basic functions including lighting and fan blade rotation. The lampshade 11 is installed under the lamp base 8 using a fixing method (such as a clip). The controller is equipped with a photosensitive detection device 13, which can detect the ambient light intensity. The electrical control box is fixed above the hanging rod assembly 2 or outside the lamp assembly. Alternatively, the temperature detection device 4 can be placed on other parts of the fan light or on the surface of the controller, allowing it to contact the air. The humidity detection device 12 can also be placed on other parts of the fan light or on the surface of the fan light controller, allowing it to contact the air. Human body detection devices can also be built into the light cavity of the fan light, on the surface of the lampshade (for example, by means of a clip), or placed on the surface of the controller.

[0213] This disclosure also provides a computer-readable storage medium that can store a computer program. When the computer program is executed by a processor, the processor enables the processor to implement the fan light control method provided in this disclosure.

[0214] The aforementioned storage medium may include, for example, a memory containing computer program instructions, which can be executed by the processor of the detection device to complete the fan light control method provided in the embodiments of this disclosure. Optionally, the storage medium may be a non-transitory computer-readable storage medium, such as a ROM, random access memory (RAM), compact disc-only memory (CD-ROM), magnetic tape, floppy disk, and optical data storage device.

[0215] The above description is merely a specific embodiment of this disclosure, enabling those skilled in the art to understand or implement it. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this disclosure. Therefore, this disclosure is not to be limited to the embodiments described herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A control method of a fan light, characterized by, The fan lamp comprises a temperature detection device, a humidity detection device and a human body sensing detection device, wherein the method comprises: obtaining the ambient temperature sent by the temperature detection device, the ambient humidity sent by the humidity detection device and the human body presence detection information sent by the human body sensing detection device; determining whether the ceiling fan in the fan lamp needs to operate according to the ambient temperature, the ambient humidity and the human body presence detection information, and determining the target rotation parameter of the ceiling fan if it is determined that the ceiling fan needs to operate, wherein the target rotation parameter comprises a target direction and a target wind force; controlling the ceiling fan according to the target rotation parameter.

2. The method of claim 1, wherein, The determination of whether the ceiling fan needs to operate according to the ambient temperature, the ambient humidity and the human body presence detection information, and the determination of the target rotation parameter of the ceiling fan if it is determined that the ceiling fan needs to operate, comprises: determining the target temperature interval to which the ambient temperature belongs from a plurality of candidate temperature intervals, and determining the target humidity interval to which the ambient humidity belongs from a plurality of candidate humidity intervals; determining whether the ceiling fan needs to operate according to the human body presence detection information, the target temperature interval and the target humidity interval, and determining the target rotation parameter of the ceiling fan if it is determined that the ceiling fan needs to operate.

3. The method of claim 2, wherein, The determination of whether the ceiling fan needs to operate according to the human body presence detection information, the target temperature interval and the target humidity interval, and the determination of the target rotation parameter of the ceiling fan if it is determined that the ceiling fan needs to operate, comprises: if the human body presence detection information is that there is a person, the target temperature interval belongs to a low temperature interval and the target humidity interval belongs to a low humidity interval, it is determined that the ceiling fan does not need to operate; and / or, if the human body presence detection information is that there is a person, the target temperature interval belongs to a low temperature interval and the target humidity interval belongs to a high humidity interval, it is determined that the ceiling fan needs to operate, the target direction is determined to be reverse, and the target wind force is determined according to the target humidity interval; and / or, if the human body presence detection information is that there is a person and the target temperature interval belongs to a high temperature interval, it is determined that the ceiling fan needs to operate, the target direction is determined to be forward, and the target wind force is determined according to the target temperature interval and the target humidity interval; and / or, if the human body presence detection information is that there is no person, the target temperature interval belongs to a high temperature interval and the target humidity interval belongs to a high humidity interval, it is determined that the ceiling fan needs to operate, the target direction is determined to be reverse, and the target wind force is determined according to the target temperature interval; and / or, if the human body presence detection information is that there is no person and the target temperature interval belongs to a low temperature interval, it is determined that the ceiling fan does not need to operate; wherein the minimum endpoint value of the high temperature interval is greater than or equal to a preset temperature threshold, the maximum endpoint value of the low temperature interval is less than or equal to the preset temperature threshold, the minimum endpoint value of the high humidity interval is greater than or equal to a preset humidity threshold, and the maximum endpoint value of the low humidity interval is greater than or equal to the preset humidity threshold.

4. The method of claim 3, wherein, The determining the target wind force according to the target humidity interval comprises: The determining the target wind force according to the target humidity interval comprises: The determining the target wind force according to the target temperature interval comprises: The determining the target wind force according to the target temperature interval comprises: The determining the target wind force according to the target temperature interval and the target humidity interval comprises: The determining the target wind force according to the target temperature interval and the target humidity interval comprises:

5. The method of claim 1, wherein, The method further comprises: determining a target blowing range corresponding to the target wind force from a plurality of candidate blowing ranges; if the human body presence detection information is that there is a human, determining a continuous stay time of the human body in the target blowing range; The method further comprises: if the continuous stay time is greater than a preset time threshold, controlling the ceiling fan according to the target rotation parameter.

6. The method of claim 1, wherein, The human body sensing detection device is arranged on a fan blade of the ceiling fan, and the method further comprises: shielding the human body presence detection information sent by the human body sensing detection device in a process in which the ceiling fan is adjusted from a closed state to the target wind force; shielding the human body presence detection information sent by the human body sensing detection device in a process in which the ceiling fan is adjusted from a current wind force to a closed state; when the ceiling fan is adjusted to the target wind force, resuming receiving the human body presence detection information sent by the human body sensing detection device, and recording a transmission frequency of the human body presence detection information, and if the transmission frequency is an integer multiple of a current rotation speed of the ceiling fan, determining that the human body presence detection information is valid.

7. The method of claim 1, wherein, The fan lamp further comprises a heating module, and the method further comprises: determining a target temperature interval to which the environment temperature belongs from a plurality of candidate temperature intervals, and determining a target humidity interval to which the environment humidity belongs from a plurality of candidate humidity intervals; if the human body presence detection information is that there is no human, the target temperature interval is a low temperature interval, and the target humidity interval is a high humidity interval, determining a target heating power of the heating module according to the target temperature interval, wherein a maximum end point value of the low temperature interval is less than or equal to the preset temperature threshold, and a minimum end point value of the high humidity interval is greater than or equal to a preset humidity threshold; controlling the heating module to heat according to the target heating power.

8. The method of claim 1, wherein, The fan lamp further comprises a far infrared module, and the method further comprises: if the human body presence detection information is that there is a human and the environment temperature belongs to a first temperature interval that is pre-set for the far infrared module, determining a first continuous working time length of the far infrared module according to the environment temperature; controlling the far infrared module to work continuously for the first continuous working time length in a case where the fan is in an open state.

9. The method of claim 1, wherein, The fan lamp further comprises a feces imaging module, the feces imaging module comprises an ultraviolet illumination submodule and an imaging submodule, and the method further comprises: If the human body presence detection information is no human, the ultraviolet illumination module is controlled to emit ultraviolet light, and the imaging module is controlled to generate a feces image according to the fluorescent light emitted by the feces after being irradiated by the ultraviolet light; The feces image sent by the imaging module is received, and the feces image is sent to a user terminal; The ceiling fan is controlled to continuously work for a second continuous working duration.

10. The method of claim 1, wherein, The fan lamp further comprises an ultraviolet sterilization module, and the method further comprises: If the human body presence detection information is human and the environmental temperature belongs to a second temperature interval pre-set for the ultraviolet sterilization module, the ultraviolet sterilization module is controlled to continuously work for the third continuous working duration; The ceiling fan is controlled to continuously work for a fourth continuous working duration.

11. The method of claim 1, wherein, The fan lamp further comprises a photosensitive detection device, and the method further comprises: The environmental light intensity sent by the photosensitive detection device is acquired; If the human body presence detection information is human, the target illumination power of a ceiling lamp in the fan lamp is determined according to the environmental light intensity; The ceiling lamp is controlled according to the target illumination power.

12. A control device for a fan light, characterized in that The fan lamp comprises a temperature detection device, a humidity detection device and a human body sensing detection device, wherein the devices comprise: A first acquisition module is configured to acquire the environmental temperature sent by the temperature detection device, the environmental humidity sent by the humidity detection device and the human body presence detection information sent by the human body sensing detection device; A first determination module is configured to determine whether the ceiling fan needs to work according to the environmental temperature, the environmental humidity and the human body presence detection information, and determine a target rotation parameter of the ceiling fan if it is determined that the ceiling fan needs to work, wherein the target rotation parameter comprises a target rotation direction and a target wind power; A first control module is configured to control the ceiling fan according to the target rotation parameter.

13. A computer-readable storage medium, characterized in that, The storage medium stores a computer program, and when the computer program is executed by the processor, the processor implements the control method of the fan lamp in any one of claims 1-11.

14. A fan light, characterized in that Comprise: a ceiling fan, a ceiling lamp, a temperature detection device, a humidity detection device, a human body sensing detection device, a processor and a storage; The temperature detection device is configured to collect environmental temperature; The humidity detection device is configured to collect environmental humidity; The human body sensing detection device is configured to detect the presence of a human body to obtain human body presence detection information; The storage is configured to store executable instructions; The processor is configured to read the executable instructions from the storage and execute the executable instructions to implement the control method of the fan lamp in any one of claims 1-11.

15. The fan lamp of claim 14, wherein, Further comprise: a heating module, a far infrared module, a feces imaging module, an ultraviolet sterilization module, and / or a photosensitive detection device; The heating module is configured to heat under the control of the processor; The far infrared module is configured to emit far infrared rays under the control of the processor; The excrement imaging module comprises an ultraviolet illumination submodule for emitting ultraviolet light under the control of the processor and an imaging submodule for generating an excrement image according to the fluorescence emitted after the ultraviolet light is irradiated onto the excrement under the control of the processor; The ultraviolet sterilization module is used for sterilization under the control of the processor; The photosensitive detection device is used for collecting ambient light intensity.

16. The fan lamp of claim 15, wherein, The fan lamp further comprises a controller; The temperature detection device is arranged outside the fan lamp or outside the controller; The humidity detection device is arranged outside the fan lamp or outside the controller; The human body sensing detection device is arranged on the base of the fan lamp or outside the controller; The photosensitive detection device is arranged outside the fan lamp or outside the controller; The heating module, the far infrared module, the excrement imaging module and the ultraviolet sterilization module are arranged between the base and the lampshade of the fan lamp.