Harbor hoist control methods, devices, and the hoist itself.

By combining infrared sensors with indoor ambient temperature sensors, precise temperature control and air guide plate optimization of the ceiling fan are achieved, solving the problem of uneven temperature and improving comfort and safety.

CN116066985BActive Publication Date: 2026-04-03GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-28
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The existing temperature sensors in ceiling-mounted air conditioners have limited functionality, resulting in uneven temperatures, poor indoor comfort, and are not being used effectively.

Method used

By combining an infrared sensor with an indoor ambient temperature sensor, the system corrects the temperature by determining whether the indoor ambient temperature is equal to the temperature detected by the infrared sensor, and adjusts the operation of the ceiling fan according to the operating mode, optimizing the opening of the air guide plate to achieve precise control.

Benefits of technology

It improves the temperature control accuracy and human comfort of the ceiling unit, enhances the intelligent functions of the air conditioner, provides anti-theft and fire alarms, and improves the safety and comfort of the indoor environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a control method, device, and hoist for a ceiling-mounted air conditioner. The method includes: acquiring the temperature detected by an infrared sensor and the indoor ambient temperature detected by an indoor ambient temperature sensor; determining whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal; if they are equal, controlling the operation of the ceiling-mounted air conditioner according to the indoor ambient temperature; if they are not equal, correcting the indoor ambient temperature based on the operating mode of the ceiling-mounted air conditioner and the temperature detected by the infrared sensor, and controlling the operation of the ceiling-mounted air conditioner according to the corrected indoor ambient temperature. This invention solves the problem of ineffective utilization of temperature sensors on existing ceiling-mounted air conditioners, resulting in poor room temperature comfort. By using the precise indoor three-dimensional ambient temperature detected by the infrared sensor to correct the temperature detected by the indoor ambient temperature sensor, the temperature detected by the indoor ambient temperature sensor is made as close as possible to the actual ambient temperature value, improving the control accuracy of the ceiling-mounted air conditioner and the comfort level for human users.
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Description

Technical Field

[0001] This invention relates to the field of air conditioning technology, and more specifically, to a ceiling fan control method, device, and ceiling fan. Background Technology

[0002] In venues such as conference rooms, shops, and boarding gates, ceiling-mounted air conditioners are becoming increasingly important as a type of cooling appliance, with their comfort and smart features receiving more and more attention. Currently, the temperature sensors on ceiling-mounted units only detect whether someone is in the room through infrared temperature sensing. The sensors have a limited function and cannot reach their full potential. Moreover, the uneven cooling and heating temperatures and poor indoor comfort caused by the air conditioners have not yet been effectively resolved.

[0003] There is currently no effective solution to the problem of poor room temperature comfort caused by the ineffective use of temperature sensors on the ceiling hoist in related technologies. Summary of the Invention

[0004] This invention provides a method, device, and hoist control system for hoisting machines, which at least solves the problem of poor room temperature comfort caused by the ineffective use of temperature sensors on hoisting machines in the prior art.

[0005] To address the aforementioned technical problems, according to one aspect of the present invention, a method for controlling a boom hoist is provided, wherein an infrared sensor is provided on the boom hoist's control panel, and the method includes:

[0006] The temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor are obtained.

[0007] Determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal;

[0008] If they are equal, the operation of the ceiling machine shall be controlled according to the indoor ambient temperature;

[0009] If not, the indoor ambient temperature will be corrected based on the operating mode of the ceiling machine and the temperature detected by the infrared sensor, and the operation of the ceiling machine will be controlled according to the corrected indoor ambient temperature.

[0010] Furthermore, before determining whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal, the following steps are also included:

[0011] The operation mode of the ceiling fan is controlled according to the indoor ambient temperature; the operation mode includes at least a cooling operation mode, a heating operation mode, and a ventilation operation mode.

[0012] Furthermore, the operating mode of the ceiling fan is controlled according to the indoor ambient temperature, including:

[0013] Obtain the cooling set temperature and the heating set temperature;

[0014] Compare the indoor ambient temperature with the set cooling and heating temperatures;

[0015] When the indoor ambient temperature is greater than or equal to the set cooling temperature, the ceiling unit is controlled to enter the cooling operation mode;

[0016] When the indoor ambient temperature is less than or equal to the heating set temperature, the ceiling unit is controlled to enter the heating operation mode;

[0017] When the indoor ambient temperature is higher than the heating set temperature but lower than the cooling set temperature, the ceiling fan will be controlled to enter the air supply operation mode.

[0018] Furthermore, the indoor ambient temperature is corrected based on the operating mode of the ceiling fan and the temperature detected by the infrared sensor, including:

[0019] When the ceiling fan is in cooling mode, T 修正 =T 红外 -△t1; where T 修正 T represents the corrected indoor ambient temperature. 红外 The temperature is detected by the infrared sensor, Δt1 is the first preset temperature difference, and Δt1 > 0;

[0020] When the ceiling fan is in heating mode, T 修正 =T 红外 -△t2; where △t2 is the second preset temperature difference, and △t2>0;

[0021] When the ceiling fan is in air supply mode, T 修正 =T 红外 .

[0022] Furthermore, after controlling the operation of the ceiling fan according to the revised indoor ambient temperature, it also includes:

[0023] The air guide vane is controlled to sweep air according to the operating mode of the joist. Specifically, in the cooling mode, the opening of the air guide vane is less than or equal to the angle between the joist and the furthest person; in the heating mode, the opening of the air guide vane is greater than or equal to the angle between the joist and the nearest person; and in the supply mode, the air guide vane sweeps air at all angles.

[0024] Furthermore, before acquiring the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor, the following steps are also included:

[0025] Activate the human detection mode to detect whether there are people indoors using infrared sensors;

[0026] If there are people indoors, the system will acquire the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor.

[0027] Otherwise, the system will enter energy-saving mode and trigger an alarm based on the number of people in the room detected by the infrared sensor and the temperature detected by the infrared sensor.

[0028] Furthermore, alarm processing is initiated based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor, including:

[0029] The system can trigger a burglar alarm based on the number of people in the room detected by an infrared sensor and the temperature detected by an infrared sensor, and / or a fire alarm based on the number of people in the room detected by an infrared sensor and the temperature detected by an infrared sensor.

[0030] Furthermore, burglar alarms are triggered based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors, including:

[0031] If the temperature detected by the infrared sensor is within the preset temperature range, and someone is detected indoors for a continuous first preset time, an alert message will be sent to the user.

[0032] If no feedback is received from the user within a second preset time after sending the reminder message, the burglar alarm will be triggered.

[0033] Furthermore, fire alarms are triggered based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors, including:

[0034] If the temperature detected by the infrared sensor is higher than the preset high temperature, and no one is detected indoors for the third consecutive preset time, a reminder message will be sent to the user.

[0035] If no feedback is received from the user within the fourth preset time after sending the reminder message, a fire alarm will be triggered.

[0036] According to another aspect of the present invention, a hoist control device is provided, wherein an infrared sensor is provided on the panel of the hoist, and the device includes:

[0037] The acquisition module is used to acquire the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor.

[0038] The judgment module is used to determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal;

[0039] The first control module is used to control the operation of the ceiling machine according to the indoor ambient temperature if the values ​​are equal.

[0040] The second control module is used to correct the indoor ambient temperature based on the operating mode of the ceiling machine and the temperature detected by the infrared sensor if the temperature is not equal, and then control the operation of the ceiling machine according to the corrected indoor ambient temperature.

[0041] According to another aspect of the present invention, a riser is provided, including the riser control device as described above.

[0042] According to another aspect of the present invention, a storage medium containing computer-executable instructions is provided, which, when executed by a computer processor, are used to perform the above-described riser control method.

[0043] In this invention, the control of existing ceiling fan is optimized by using an infrared sensor. The precise indoor three-dimensional ambient temperature detected by the infrared sensor is used to correct the temperature detected by the indoor ambient temperature sensor, so that the temperature detected by the indoor ambient temperature sensor is as close as possible to the actual ambient temperature value, thereby improving the control accuracy of the ceiling fan and the comfort of the human body. Attached Figure Description

[0044] Figure 1 This is a schematic diagram of an optional structure of a ceiling hoist according to an embodiment of the present invention;

[0045] Figure 2 This is an optional flowchart of a hoist control method according to an embodiment of the present invention;

[0046] Figure 3 This is another optional flowchart of the boom hoist control method according to an embodiment of the present invention;

[0047] Figure 4 This is an optional structural block diagram of a boom lift control device according to an embodiment of the present invention. Detailed Implementation

[0048] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present invention. Rather, they are merely examples of apparatuses and methods consistent with some aspects of the invention as detailed in the appended claims.

[0049] Example 1

[0050] In a preferred embodiment 1 of the present invention, a control method for a boom hoist is provided, which is applied to a boom hoist. The boom hoist's panel is equipped with an infrared sensor, which can be selected as a thermopile sensor. Figure 1 This diagram illustrates one possible structural design of the boom lift, such as... Figure 1As shown, the ceiling fan includes air guides on all four sides, a central grille, a display, and thermopile sensors.

[0051] Figure 2 An optional flowchart of the hoist control method is shown, such as... Figure 2 As shown, the method includes the following steps S202-S208:

[0052] S202: Acquire the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor;

[0053] S204: Determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal;

[0054] S206: If they are equal, the operation of the ceiling machine shall be controlled according to the indoor ambient temperature;

[0055] S208: If not, the indoor ambient temperature will be corrected according to the operating mode of the ceiling machine and the temperature detected by the infrared sensor, and the operation of the ceiling machine will be controlled according to the corrected indoor ambient temperature.

[0056] In the above implementation, the control of the existing ceiling fan is optimized by using an infrared sensor. The accurate indoor three-dimensional ambient temperature detected by the infrared sensor is used to correct the temperature detected by the indoor ambient temperature sensor, so that the temperature detected by the indoor ambient temperature sensor is as close as possible to the actual ambient temperature value, thereby improving the control accuracy of the ceiling fan and the comfort for the human body.

[0057] In a preferred embodiment of the present invention, before determining whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal, the method further includes: controlling the operating mode of the ceiling fan according to the indoor ambient temperature; wherein the operating mode includes at least a cooling operating mode, a heating operating mode, and a ventilation operating mode.

[0058] Specifically, the operation mode of the joist is controlled according to the indoor ambient temperature, including: obtaining the cooling set temperature and the heating set temperature; comparing the indoor ambient temperature with the cooling set temperature and the heating set temperature; controlling the joist to enter the cooling operation mode when the indoor ambient temperature is greater than or equal to the cooling set temperature; controlling the joist to enter the heating operation mode when the indoor ambient temperature is less than or equal to the heating set temperature; and controlling the joist to enter the air supply operation mode when the indoor ambient temperature is greater than the heating set temperature but less than the cooling set temperature.

[0059] In another preferred embodiment of the present invention, the indoor ambient temperature is corrected based on the operating mode of the ceiling fan and the temperature detected by the infrared sensor, including:

[0060] When the ceiling fan is in cooling mode, T 修正 =T 红外-△t1; where T 修正 T represents the corrected indoor ambient temperature. 红外 The temperature detected by the infrared sensor is Δt1, which is the first preset temperature difference, and Δt1 > 0. When the air conditioner is cooling, the cold air rises and the human body feels the cold air, but the temperature at the ceiling is higher than the temperature at the human body in the room. Δt1 is a temperature compensation for this temperature difference.

[0061] When the ceiling fan is in heating mode, T 修正 =T 红外 -△t2; where △t2 is the second preset temperature difference, and △t2>0; when the air conditioner is heating, the hot air rises, and the human body does not feel the hot air obviously, but the temperature at the ceiling is higher than the temperature at the human body in the room. △t2 is a temperature compensation for this situation.

[0062] The temperature compensation value is determined by the air conditioner's installation location and height. It corrects the temperature by allowing cold air to sink and hot air to rise, thereby improving human comfort.

[0063] When the ceiling fan is in air supply mode, T 修正 =T 红外 .

[0064] This invention utilizes a thermopile sensor to accurately detect indoor ambient temperature, thereby precisely controlling the indoor temperature. It corrects the temperature of the indoor temperature sensor, thus solving the problem of excessive cold air accumulation during air conditioning cooling. This is because the air conditioner's inlet temperature is higher than the ground temperature, causing the indoor temperature sensor to detect an inflated temperature, resulting in the air conditioner still operating at high power and causing a large amount of cold air to accumulate. It also addresses the issue of the air conditioner reducing its speed and airflow when heating, as hot air rises near the ceiling and the inlet temperature approaches the remote control's set temperature, resulting in the floor not being warm enough. This invention ensures that people do not feel too cold or too hot, providing comfort, health, and energy savings.

[0065] Optionally, after controlling the operation of the joist according to the corrected indoor ambient temperature, the method further includes: controlling the air guide plate to perform air sweeping according to the joist's operating mode; wherein, in the joist's operating mode of cooling mode, the opening of the air guide plate is less than or equal to the angle between the joist and the farthest human body; in the joist's operating mode of heating mode, the opening of the air guide plate is greater than or equal to the angle between the joist and the nearest human body; and in the joist's operating mode of supply air mode, the air guide plate performs air sweeping at all angles.

[0066] The above control process is implemented when people are present. When no one is present, the fire and burglar alarm information is quickly transmitted to the user via the App by controlling the thermopile sensor, predicting indoor security risks, and even triggering an alarm.

[0067] Specifically, before acquiring the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor, the process includes: activating the human detection mode and detecting whether there are people in the room using the infrared sensor; if there are people in the room, triggering the acquisition of the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor; otherwise, controlling the system to enter the energy-saving mode and triggering an alarm based on the number of people in the room detected by the infrared sensor and the temperature detected by the infrared sensor.

[0068] Alarm processing is performed based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors, including: burglar alarm based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors, and / or fire alarm based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors.

[0069] The burglar alarm is triggered based on the number of people indoors detected by infrared sensors and the temperature detected by infrared sensors. This includes: if someone is detected indoors for a first preset time when the temperature detected by the infrared sensors is within a preset temperature range, an alert message is sent to the user; if no feedback is received from the user for a second preset time after sending the alert message, the burglar alarm is triggered.

[0070] Fire alarms are triggered based on the number of people and temperature detected by infrared sensors. This includes: if the temperature detected by the infrared sensors exceeds a preset high temperature and no one is detected indoors for a third consecutive preset time, an alert is sent to the user; if no user feedback is received for a fourth consecutive preset time after sending the alert, a fire alarm is triggered. The preset high temperature for the fire protection function can be set individually according to the user's environment.

[0071] The aforementioned alarm system is controlled by a thermopile sensor to accurately determine the safety status of the indoor environment. Through the air conditioner's smart WiFi function, fire alarm information is quickly transmitted to the user via an app. This can greatly reduce indoor fire prevention costs, enhance the product's intelligent service functions, and provide users with a super-humanized, comfortable, and safe environment.

[0072] In a preferred embodiment 1 of the present invention, another method for controlling a well hoist is also provided, specifically... Figure 3 An optional flowchart of the method is shown, such as Figure 3 As shown:

[0073] When the system is in human-sensor mode, the indoor unit panel enters the control phase, and the control during this phase is as follows:

[0074] In human-sensing mode, the thermopile sensor operates;

[0075] When t is continuous 设定When the number of people detected is 0, the air conditioner will automatically enter the unattended energy-saving mode under the human detection mode;

[0076] At this time, the sensor will still automatically start the temperature detection function;

[0077] In unmanned energy-saving mode, when t≤T is detected 0bj When T ≤ T, if the presence of a person is detected for n1 minutes consecutively, the intelligent anti-theft system is activated.

[0078] The system sends a notification to the user via a smart app. If no response is received within n0 minutes, an alarm will be automatically triggered.

[0079] When T is detected in the room 内环 ≥T 火 (T 火 (This is the set fire warning temperature value);

[0080] If no human presence is detected for 2 consecutive hours, and the temperature in the detection area exceeds the standard for n2 consecutive minutes during that period, the intelligent fire prevention system will be activated and a message will be sent to remind the user. If no feedback is received within n0 minutes, an alarm will be automatically triggered.

[0081] After the thermopile sensor is activated, if it detects a number of people ≥ 1, it will execute the following steps;

[0082] Based on the indoor ambient temperature T detected by the thermopile sensor 红外 For internal environment temperature sensing bag T 内环 Make corrections;

[0083] When T 内环 ≥T 制冷设定 When this happens, the air conditioner will operate in cooling mode;

[0084] When T 制冷设定 >T 内环 >T 制热设定 When the air conditioner is in ventilation mode, it will operate in air conditioning mode.

[0085] When T 内环 ≤T 制热设定 When this time, the air conditioner will operate in heating mode;

[0086] When the air conditioner is running in cooling mode, T 内环 =T 红外 -△t1; At this time, the opening of the panel air guide plate is less than or equal to the angle of the furthest part of the human body to avoid direct cold air blowing.

[0087] When the air conditioner is running in fan mode, T 内环 =T 红外 The air guide plate operates in a global sweeping mode.

[0088] When the air conditioner is in heating mode, T 内环 =T红外 -△t2; At this time, the opening of the panel air guide plate is greater than or equal to the angle of the nearest human body.

[0089] Example 2

[0090] Based on the hoist control method provided in Embodiment 1 above, a hoist control device is also provided in a preferred embodiment 2 of the present invention. Specifically, Figure 4 An alternative structural block diagram of the device is shown, such as... Figure 4 As shown, the device includes:

[0091] The acquisition module 402 is used to acquire the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor.

[0092] The judgment module 404, connected to the acquisition module 402, is used to determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal;

[0093] The first control module 406 is connected to the judgment module 404 and is used to control the operation of the ceiling machine according to the indoor ambient temperature if they are equal.

[0094] The second control module 408, connected to the first control module 406, is used to correct the indoor ambient temperature based on the operating mode of the ceiling machine and the temperature detected by the infrared sensor if the temperature is not equal, and to control the operation of the ceiling machine according to the corrected indoor ambient temperature.

[0095] In the above implementation, the control of the existing ceiling fan is optimized by using an infrared sensor. The accurate indoor three-dimensional ambient temperature detected by the infrared sensor is used to correct the temperature detected by the indoor ambient temperature sensor, so that the temperature detected by the indoor ambient temperature sensor is as close as possible to the actual ambient temperature value, thereby improving the control accuracy of the ceiling fan and the comfort for the human body.

[0096] This device also includes: an operation mode control module, used to control the operation mode of the joist unit based on the indoor ambient temperature before determining whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal; wherein, the operation modes include at least a cooling operation mode, a heating operation mode, and a fan operation mode. The operation mode control module includes: an acquisition submodule, used to acquire the cooling set temperature and the heating set temperature; a comparison submodule, used to compare the indoor ambient temperature with the cooling set temperature and the heating set temperature; a first control submodule, used to control the joist unit to enter the cooling operation mode when the indoor ambient temperature is greater than or equal to the cooling set temperature; a second control submodule, used to control the joist unit to enter the heating operation mode when the indoor ambient temperature is less than or equal to the heating set temperature; and a third control submodule, used to control the joist unit to enter the fan operation mode when the indoor ambient temperature is greater than the heating set temperature and less than the cooling set temperature.

[0097] The second control module 408 includes: a correction submodule, used to correct the indoor ambient temperature based on the operating mode of the ceiling fan and the temperature detected by the infrared sensor, including: a first correction unit, used to adjust the temperature when the ceiling fan is in cooling mode. 修正 =T 红外 -△t1; where T 修正 T represents the corrected indoor ambient temperature. 红外 The temperature is detected by the infrared sensor, Δt1 is the first preset temperature difference, and Δt1 > 0; the second correction unit is used to adjust T when the hoist is in heating mode. 修正 =T 红外 -△t2; where △t2 is the second preset temperature difference, and △t2>0; the third correction unit is used to adjust T when the ceiling fan is in the air supply mode. 修正 =T 红外 .

[0098] The second control module 408 also includes: an air guide control submodule, used to control the air guide plate to perform air sweeping according to the operating mode of the joist after controlling the operation of the joist according to the corrected indoor ambient temperature; wherein, in the cooling operation mode of the joist, the opening of the air guide plate is less than or equal to the angle between the joist and the farthest human body; in the heating operation mode of the joist, the opening of the air guide plate is greater than or equal to the angle between the joist and the nearest human body; in the air supply operation mode of the joist, the air guide plate performs air sweeping at all angles.

[0099] This device also includes: an indoor detection module, used to activate the human detection mode before acquiring the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor, and to detect whether there are people in the room through the infrared sensor; a trigger module, used to trigger the acquisition of the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor if there are people in the room; and an alarm module, used to control the entry into the energy-saving mode otherwise, and to perform alarm processing based on the number of people in the room detected by the infrared sensor and the temperature detected by the infrared sensor.

[0100] The alarm module includes: a first alarm submodule for triggering a burglar alarm based on the number of people and temperature detected by infrared sensors; and a second alarm submodule for triggering a fire alarm based on the number of people and temperature detected by infrared sensors. The first alarm submodule sends a reminder to the user if someone is detected indoors for a first preset time when the temperature detected by the infrared sensor is within a preset temperature range; if no user feedback is received for a second preset time after sending the reminder, the module triggers a burglar alarm. The second alarm submodule sends a reminder to the user if the temperature detected by the infrared sensor is higher than a preset high temperature and no one is detected indoors for a third preset time; if no user feedback is received for a fourth preset time after sending the reminder, the module triggers a fire alarm.

[0101] Regarding the apparatus in the above embodiments, the specific manner in which each unit and module performs its operations has been described in detail in the embodiments related to the method, and will not be elaborated upon here.

[0102] Example 3

[0103] Based on the hoist control device provided in Embodiment 2 above, a hoist is further provided in a preferred embodiment 3 of the present invention, including the hoist control device as described above.

[0104] In the above implementation, the control of the existing ceiling fan is optimized by using an infrared sensor. The accurate indoor three-dimensional ambient temperature detected by the infrared sensor is used to correct the temperature detected by the indoor ambient temperature sensor, so that the temperature detected by the indoor ambient temperature sensor is as close as possible to the actual ambient temperature value, thereby improving the control accuracy of the ceiling fan and the comfort for the human body.

[0105] Example 4

[0106] Based on the hoist control method provided in Embodiment 1 above, in a preferred embodiment 4 of the present invention, a storage medium containing computer-executable instructions is also provided, wherein the computer-executable instructions are used to execute the hoist control method as described above when executed by a computer processor.

[0107] In the above implementation, the control of the existing ceiling fan is optimized by using an infrared sensor. The accurate indoor three-dimensional ambient temperature detected by the infrared sensor is used to correct the temperature detected by the indoor ambient temperature sensor, so that the temperature detected by the indoor ambient temperature sensor is as close as possible to the actual ambient temperature value, thereby improving the control accuracy of the ceiling fan and the comfort for the human body.

[0108] Other embodiments of the invention will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the invention that follow the general principles of the invention and include common knowledge or customary techniques in the art not invented by the invention. The specification and examples are to be considered exemplary only, and the true scope and spirit of the invention are indicated by the following claims.

[0109] It should be understood that the present invention is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of the invention is limited only by the appended claims.

Claims

1. A method for controlling a hoist, wherein the hoist's control panel is equipped with an infrared sensor, characterized in that, The method includes: The temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor are obtained; Determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal; If they are equal, the operation of the ceiling machine shall be controlled according to the indoor ambient temperature. If they are not equal, the indoor ambient temperature is corrected according to the operating mode of the ceiling machine and the temperature detected by the infrared sensor, and the operation of the ceiling machine is controlled according to the corrected indoor ambient temperature. The operating modes of the ceiling fan include at least a cooling operating mode, a heating operating mode, and a ventilation operating mode; The indoor ambient temperature is corrected based on the operating mode of the ceiling fan and the temperature detected by the infrared sensor, including: When the operating mode of the ceiling fan is the refrigeration operating mode, T 修正 =T 红外 -△t1; where T 修正 T represents the corrected indoor ambient temperature. 红外 The temperature detected by the infrared sensor is Δt1, which is the first preset temperature difference, and Δt1 > 0. When the operating mode of the ceiling fan is the heating operating mode, T 修正 =T 红外 -△t2; where △t2 is the second preset temperature difference, and △t2>0; When the hoist operates in the air supply mode, T 修正 =T 红外 .

2. The method according to claim 1, characterized in that, Before determining whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal, the method further includes: The operating mode of the ceiling machine is controlled according to the indoor ambient temperature.

3. The method according to claim 2, characterized in that, The operation mode of the ceiling fan is controlled according to the indoor ambient temperature, including: Obtain the cooling set temperature and the heating set temperature; The indoor ambient temperature is compared with the cooling set temperature and the heating set temperature; When the indoor ambient temperature is greater than or equal to the set cooling temperature, the ceiling unit is controlled to enter the cooling operation mode; When the indoor ambient temperature is less than or equal to the heating set temperature, the ceiling fan is controlled to enter the heating operation mode; When the indoor ambient temperature is greater than the heating set temperature but less than the cooling set temperature, the ceiling fan is controlled to enter the air supply operation mode.

4. The method according to claim 2, characterized in that, After controlling the operation of the ceiling fan according to the corrected indoor ambient temperature, the following is also included: The air guide plate is controlled to sweep air according to the operating mode of the joist; wherein, in the cooling operation mode, the opening of the air guide plate is less than or equal to the angle between the joist and the furthest human body; in the heating operation mode, the opening of the air guide plate is greater than or equal to the angle between the joist and the nearest human body; in the air supply operation mode, the air guide plate sweeps air at all angles.

5. The method according to claim 1, characterized in that, Before acquiring the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor, the method further includes: Activate the human detection mode to detect whether there are people in the room using the infrared sensor; If there are people indoors, the process of acquiring the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor is triggered. Otherwise, the system will enter energy-saving mode and trigger an alarm based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor.

6. The method according to claim 5, characterized in that, An alarm is triggered based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor, including: The system can trigger a burglar alarm based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor, and / or trigger a fire alarm based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor.

7. The method according to claim 6, characterized in that, The burglar alarm is triggered based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor, including: When the temperature detected by the infrared sensor is within a preset temperature range, if someone is detected indoors for a continuous first preset time, a reminder message is sent to the user. If no feedback is received from the user within a second preset time after the reminder message is sent, an anti-theft alarm will be triggered.

8. The method according to claim 6, characterized in that, Fire alarms are triggered based on the number of people indoors detected by the infrared sensor and the temperature detected by the infrared sensor, including: If the temperature detected by the infrared sensor is higher than the preset high temperature, and no one is detected indoors for a third consecutive preset time, a reminder message will be sent to the user. If no feedback is received from the user within a fourth preset time after the reminder message is sent, a fire alarm will be triggered.

9. A control device for a hoist, wherein an infrared sensor is provided on the panel of the hoist, characterized in that, The device includes: The acquisition module is used to acquire the temperature detected by the infrared sensor and the indoor ambient temperature detected by the indoor ambient temperature sensor. The judgment module is used to determine whether the indoor ambient temperature and the temperature detected by the infrared sensor are equal; The first control module is used to control the operation of the ceiling machine according to the indoor ambient temperature if the values ​​are equal. The second control module is used to correct the indoor ambient temperature according to the operating mode of the ceiling machine and the temperature detected by the infrared sensor if they are not equal, and to control the operation of the ceiling machine according to the corrected indoor ambient temperature. The operating modes of the ceiling fan include at least a cooling operating mode, a heating operating mode, and a ventilation operating mode; The second control module includes: a correction submodule, used to correct the indoor ambient temperature based on the operating mode of the ceiling fan and the temperature detected by the infrared sensor, including: a first correction unit, used to adjust the temperature of the ceiling fan when it is in cooling mode. 修正 =T 红外 -△t1; where T 修正 T represents the corrected indoor ambient temperature. 红外 The temperature is detected by the infrared sensor, Δt1 is the first preset temperature difference, and Δt1 > 0; the second correction unit is used to adjust T when the hoist is in heating mode. 修正 =T 红外 -△t2; where △t2 is the second preset temperature difference, and △t2>0; the third correction unit is used to adjust T when the ceiling fan is in the air supply mode. 修正 =T 红外 .

10. A ceiling machine, characterized in that, Includes the well machine control device as described in claim 9.

11. A storage medium containing computer-executable instructions, characterized in that, The computer-executable instructions, when executed by a computer processor, are used to perform the hoist control method as described in any one of claims 1 to 8.

Citation Information

Patent Citations

  • Fan intelligent temperature control system and method based on pyroelectric human body infrared

    CN103486069A

  • Control method and control device of temperature adjusting equipment

    CN110285536A

  • Method and device for adjusting indoor temperature, electronic equipment and storage medium

    CN112923532A

  • Ceiling air conditioner control method and device and ceiling air conditioner

    CN115479307A