A control method and control device of an air conditioner, the air conditioner, and a storage medium
By judging the user's close-range interaction needs with the air conditioner in the wall-mounted air conditioner and adjusting the display brightness and buzzer status, the problem of ambiguous information feedback is solved, and the user's needs are accurately met and the air conditioner's energy-saving control is achieved.
Patent Information
- Application Number
- CN202411666967.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2044-11-21
AI Technical Summary
Existing wall-mounted air conditioners suffer from unclear information feedback when users operate the remote control to set temperature and other information, especially due to insufficient brightness causing unclear display. Furthermore, existing solutions increase the load and cost on the control board.
By determining the user's need for close-range information interaction with the air conditioner, the system obtains the current distance and adjusts the display brightness of the air conditioner panel and the operating status of the buzzer, including the volume and frequency of the buzzer, to meet the user's visualization and reminder needs.
It enables precise analysis of user needs under different requirements, meets user needs while achieving energy-saving control of air conditioning, integrates screen display function and frees up remote control button resources.
Smart Images

Figure CN119436424B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, in particular to an air conditioner control method, an air conditioner control device, an air conditioner and a readable storage medium. BACKGROUND
[0002] With the development trend of flat market of home appliances, the high cost performance of air conditioner products adapts to the demand of intelligent individualization function has become the strategic direction of home appliance enterprises, and quality, cost reduction and efficiency improvement are the three magic weapons to improve the market competitiveness of air conditioners. Wall-mounted air conditioners are favored by users due to their unique installation method, but market research shows that there are many inconveniences in the panel display of wall-mounted air conditioners (display is blurred, brightness is too low, remote control response sound is too small, etc.), especially due to the limitation of space distance, users often cannot accurately judge whether the temperature and other instructions executed by the air conditioner meet the information sent by the remote control.
[0003] Therefore, in the actual use process, there is a problem that in the prior art, when the user operates the remote control to set temperature and other information to the air conditioner, there is a problem of fuzzy information feedback (the user cannot hear the success of the buzzer sound, and cannot see the air conditioner display information, etc.). Generally, to solve the problem of unclear display caused by insufficient brightness, high-brightness high-power LED is mainly used, but the significant disadvantage is that it increases the load of the control panel, increases the cost, and reduces the reliability. SUMMARY
[0004] The present application solves the technical problem of fuzzy information feedback in the prior art when the user operates the remote control to set temperature and other information to the air conditioner.
[0005] To solve the above problems, the present application provides an air conditioner control method, which comprises: after the air conditioner is running, judging whether there is a close-range information interaction demand between the user and the air conditioner; in the case that there is a close-range information interaction demand, obtaining the current distance between the user and the air conditioner; adjusting the running parameters of the air conditioner according to the current distance; wherein the running parameters include the display brightness of the air conditioner panel and the running state of the buzzer.
[0006] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: when there is remote control operation, reading display content and the like between the user and the air conditioner, it indicates that there is a near distance information interaction demand between the user and the air conditioner. In the case that there is a near distance information interaction demand, by acquiring the user position and state information, the operation parameters of the air conditioner are adjusted. Specifically, when the air conditioner is in an operation state and there is a near distance information interaction demand between the user and the air conditioner, according to the current distance and the distance change (that is, the change of the current distance), the visual demand and the reminding demand of the user to the air conditioner (that is, the user demand is analyzed), and according to the visual demand and the reminding demand, the display brightness of the air conditioner panel and the operation state of the buzzer are adjusted, wherein the operation state of the buzzer includes: the volume of the buzzer and the sound emission times of the buzzer. Specifically, the greater the current distance, the stronger the visual demand for the air conditioner panel, and the display brightness of the air conditioner panel needs to be controlled to be stronger, and the stronger the reminding demand for the buzzer, and the volume of the buzzer needs to be controlled to be larger. The master control of the application carries out algorithm logic differentiation processing, accurately analyzes the user demand, and realizes that the air conditioner makes corresponding processing under different demands of the user, on the one hand, the user demand is met, on the other hand, the air conditioner itself is realized energy saving control, and the screen display function can be integrated to release the remote control key resources.
[0007] In an example of the application, adjusting the operation parameters of the air conditioner according to the current distance includes: controlling the LED driving pulse duty cycle and the buzzer driving current according to the current distance; and adjusting the operation parameters based on the LED driving pulse duty cycle and the buzzer driving current.
[0008] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by controlling the LED driving pulse duty cycle to adjust the display brightness of the air conditioner panel; and by controlling the buzzer driving current to adjust the volume of the buzzer, the adjustment process is more rigorous and accurate.
[0009] In an example of the application, controlling the LED driving pulse duty cycle and the buzzer driving current according to the current distance includes: judging whether the air conditioner meets a first adjustment condition according to the current distance; in the case that the air conditioner does not meet the first adjustment condition, controlling the LED driving pulse duty cycle to be an LED duty cycle threshold value and the buzzer driving current to be a driving current threshold value; and / or in the case that the air conditioner meets the first adjustment condition, controlling the LED driving pulse duty cycle and the buzzer driving current according to the current distance and a preset threshold value; wherein the first adjustment condition is that the current distance is less than a maximum distance threshold value.
[0010] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: in the case that there is a demand for close-range information interaction, the operation parameters are adjusted according to the current distance and the LED drive pulse duty cycle and the buzzer drive current, and whether the current distance reaches the maximum distance threshold can be judged by judging whether the air conditioner meets the first adjustment condition. The display brightness of the air conditioner panel is flexibly controlled by 0-100% through a new algorithm, the screen display function of the air conditioner is replaced by integration, and the remote control keys and software resources are released.
[0011] In an example of the present application, the preset threshold includes a first distance threshold and a second distance threshold; in the case that the air conditioner meets the first adjustment condition, the LED drive pulse duty cycle and the buzzer drive current are controlled according to the current distance and the preset threshold, including: according to the size relationship between the current distance and the first distance threshold and the second distance threshold, the LED drive pulse duty cycle and the buzzer drive current are controlled; the distance change of the current distance is obtained, and it is judged whether the air conditioner meets the second adjustment condition according to the distance change; in the case that the air conditioner meets the second adjustment condition, the LED drive pulse duty cycle and the buzzer drive current are adjusted and updated; wherein the second adjustment condition is that the distance change is continuously reduced in the first preset time period.
[0012] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: in the case that the air conditioner meets the first adjustment condition, the LED drive pulse duty cycle and the buzzer drive current are preliminarily adjusted according to the size relationship between the current distance and the first distance threshold and the second distance threshold. After preliminary adjustment, the distance change in the first preset time period is obtained and it is judged whether the air conditioner meets the second adjustment condition. By judging whether the air conditioner meets the second adjustment condition, it can be judged whether the air conditioner needs to be adjusted twice to improve the visibility and the reminding degree: when the distance change is continuously reduced in the first preset time period, it is determined that the user is continuously approaching the air conditioner, and it is considered that the visualization demand and / or the reminding demand are enhanced, and the LED drive pulse duty cycle and / or the buzzer drive current need to be enhanced (that is, the LED drive pulse duty cycle and / or the buzzer drive current are updated) to enhance the visibility and the reminding degree. The specific enhancement process is determined according to the value of the current distance.
[0013] In an example of the present application, according to the size relationship between the current distance and the first distance threshold value, the second distance threshold value, the LED drive pulse duty cycle and the buzzer drive current are controlled, including: when the current distance is less than the first distance threshold value, the LED drive pulse duty cycle is controlled to be the first LED duty cycle preset value, and the buzzer drive current is controlled to be the first drive current preset value; and / or when the current distance is greater than or equal to the first distance threshold value and less than the second distance threshold value, the LED drive pulse duty cycle is controlled to be the second LED duty cycle preset value, and the buzzer drive current is controlled to be the second drive current preset value; and / or when the current distance is greater than or equal to the second distance threshold value, the LED drive pulse duty cycle is controlled to be the third LED duty cycle preset value, and the buzzer drive current is controlled to be the third drive current preset value; wherein the first distance threshold value < the second distance threshold value < the maximum distance threshold value; the first LED duty cycle preset value < the second LED duty cycle preset value < the third LED duty cycle preset value < the LED duty cycle threshold value; the first drive current preset value < the second drive current preset value < the third drive current preset value < the drive current threshold value.
[0014] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: the application proposes an air conditioner display adaptive adjustment software algorithm control method, and differential control is more in line with application scenarios.
[0015] In an example of the present application, in the case that the air conditioner meets the second adjustment condition, the LED drive pulse duty cycle and the buzzer drive current are adjusted and updated, including: controlling the LED drive pulse duty cycle to increase by a first percentage every second preset time length; after the air conditioner receives a remote control signal once, controlling the buzzer drive current to increase by a second percentage, and controlling the buzzer to operate once.
[0016] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: when the air conditioner meets the second adjustment condition, it indicates that the distance change is that the current distance continuously decreases in the first preset time length, it is determined that the user continuously approaches the air conditioner, and it is considered that the visualization demand and / or the prompting demand are enhanced. The LED drive pulse duty cycle is controlled to increase every first preset time length, and the specific increase value is a first percentage; and after the air conditioner receives a remote control signal once, the buzzer drive current is controlled to increase by a second percentage, and the buzzer is controlled to operate once.
[0017] In an example of the present application, the control method further includes: in the case that there is no close distance information interaction demand, judging whether there is a long distance information interaction demand between the user and the air conditioner; in the case that there is a long distance information interaction demand, controlling the air conditioner to turn off the LED display and shield the buzzer drive program; in the case that there is no long distance information interaction demand, controlling the air conditioner to turn off the LED display and the air conditioner to enter a low-power consumption display mode.
[0018] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: when the air conditioner master control does not detect a remote control signal for a continuous third preset time length, it is determined that the user currently has no control or change demand for the state of the air conditioner, that is, there is no long-distance information interaction demand at this time, which indicates that there is no information interaction between the user and the air conditioner (that is, there is no short-distance / long-distance information interaction), and the software control LED driving pulse duty cycle D is 0%, that is, the LED display is turned off, and the low-power-consumption display mode is entered. When the user remotely controls the air conditioner by WIFI, the current state of the air conditioner can be obtained in real time by the mobile phone, which greatly reduces the direct information interaction demand between the user and the air conditioner, and at this time, the long-distance information interaction demand is met, the software control LED driving pulse duty cycle D is 0%, that is, the LED display is turned off, and the low-power-consumption display mode is entered, and the buzzer driving program is shielded, that is, the mobile phone WIFI remote control does not trigger the buzzer response (the user has no buzzer response feedback demand).
[0019] On the other hand, the embodiment of the present application also provides a control device of an air conditioner, which is used to execute the control method of the air conditioner according to any one of the above embodiments. The control device comprises: a judgment module, which is used to judge whether there is a short-distance information interaction demand between the user and the air conditioner after the air conditioner is running; an acquisition module, which is used to acquire the current distance between the user and the air conditioner when there is a short-distance information interaction demand; and an adjustment module, which is used to adjust the running parameter of the air conditioner according to the current distance. The running parameter comprises the display brightness of the air conditioner panel and the running state of the buzzer.
[0020] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the control device of the air conditioner in the embodiment is used to implement the control method of the air conditioner according to any one of the embodiments of the present application, and therefore has all the beneficial effects of the control method of the air conditioner according to any one of the embodiments of the present application, which will not be described herein again.
[0021] On the other hand, the embodiment of the present application also provides an air conditioner, which comprises a processor, a memory, and a program or instruction stored in the memory and executable on the processor. The program or instruction is executed by the processor to implement the steps of the control method of the air conditioner according to any one of the above embodiments.
[0022] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the air conditioner in the embodiment runs the control method of the air conditioner according to any one of the embodiments of the present application, and therefore has all the beneficial effects of the control method of the air conditioner according to any one of the embodiments of the present application, which will not be described herein again.
[0023] In still another aspect, the embodiment of the present application further provides a readable storage medium, and the readable storage medium stores programs or instructions, and the programs or instructions are executed by a processor to implement the steps of the control method of the air conditioner according to any one of the above embodiments.
[0024] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the readable storage medium in the embodiment is used to store the control method of the air conditioner according to any one of the embodiments of the present application, and therefore has all the beneficial effects of the control method of the air conditioner according to any one of the embodiments of the present application, which will not be repeated here.
[0025] After the technical scheme of the present application is adopted, the following technical effects can be achieved:
[0026] (1) The master control of the present application performs algorithm logic differentiation processing, accurately analyzes user requirements, and realizes corresponding processing of the air conditioner under different user requirements, on the one hand to meet user requirements, on the other hand to realize energy-saving control of the air conditioner itself, and further to release remote control key resources by integrating screen display functions;
[0027] (2) The present application adjusts the display brightness of the air conditioner panel by 0~100% through a new algorithm, integrates to replace the screen display function of the air conditioner, and releases remote control keys and software resources;
[0028] (3) The present application proposes an air conditioner display adaptive adjustment software algorithm control method, and the differentiation control is more suitable for application scenarios. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 A flowchart of the control method of the air conditioner according to the first embodiment of the present application is provided;
[0030] Figure 2 A detailed flowchart of the control method of the air conditioner according to the first embodiment of the present application is provided;
[0031] Figure 3 A structural schematic block diagram of the control device of the air conditioner according to the second embodiment of the present application is provided;
[0032] Figure 4 A composition block diagram of the air conditioner according to the third embodiment of the present application is provided;
[0033] Figure 5 A structural schematic diagram of the readable storage medium according to the fourth embodiment of the present application is provided.
[0034] EXPLANATION OF REFERENCE NUMERALS:
[0035] 100 - control device of the air conditioner; 101 - judging module; 102 - obtaining module; 103 - adjusting module; 200 - air conditioner; 210 - memory; 211 - computer program; 220 - processor; 300 - readable storage medium; 310 - computer executable instructions. DETAILED DESCRIPTION
[0036] In order to make the above objectives, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application are described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0037] Embodiment one
[0038] Reference Figure 1 , which is a flow chart of a control method of an air conditioner provided by the first embodiment of the present application, in combination with Figure 2 The control method of the air conditioner comprises the following steps.
[0039] Step S100: After the air conditioner is running, it is judged whether there is a demand for close-range information interaction between the user and the air conditioner.
[0040] Step S200: In the case of a demand for close-range information interaction, the current distance between the user and the air conditioner is obtained.
[0041] Step S300: The running parameters of the air conditioner are adjusted according to the current distance.
[0042] The running parameters include the display brightness of the air conditioner panel and the running state of the buzzer.
[0043] In a specific embodiment, when there is a remote control operation, reading of display content, etc. between the user and the air conditioner, it is indicated that there is a demand for close-range information interaction between the user and the air conditioner. In the case of a demand for close-range information interaction, the user's position and state information are obtained, and the running parameters of the air conditioner are adjusted.
[0044] Specifically, when the air conditioner is in a running state and there is a close distance information interaction demand between the user and the air conditioner, the visual demand and the reminding demand of the user to the air conditioner (that is, the user demand is analyzed) can be judged according to the current distance and the distance change (that is, the change of the current distance), and the display brightness of the air conditioner panel and the running state of the buzzer are adjusted according to the visual demand and the reminding demand, wherein the running state of the buzzer includes the volume of the buzzer and the sound emission times of the buzzer. Specifically, the larger the current distance, the stronger the visual demand for the air conditioner panel, and the display brightness of the air conditioner panel needs to be controlled to be stronger, and the stronger the reminding demand for the buzzer, and the volume of the buzzer needs to be controlled to be larger; when the distance change is that the current distance is continuously reduced, it indicates that the user is continuously approaching the air conditioner, at this time, the display brightness of the air conditioner panel is not enough, the visual demand is enhanced, and the display brightness needs to be enhanced to improve the visibility, and at this time, the volume of the buzzer is not enough, the reminding demand is enhanced, and the volume of the buzzer needs to be enhanced to improve the reminding demand. The distance change can be obtained by continuously obtaining the current distance. The master control of the application performs algorithm logic differentiation processing, accurately analyzes the user demand, and makes the air conditioner make corresponding processing under different user demands, on the one hand, to meet the user demand, on the other hand, to realize the energy saving control of the air conditioner itself, and to release the remote control key resources by integrating the screen display function. At the same time, the air conditioner display LED and the buzzer driving algorithm are coordinately controlled, and the user remote control instruction can be reliably answered and transmitted.
[0045] Further, step S300 comprises:
[0046] Step S310: controlling the LED driving pulse duty cycle and the buzzer driving current according to the current distance;
[0047] Step S320: adjusting the operating parameters based on the LED driving pulse duty cycle and the buzzer driving current.
[0048] Specifically, the display brightness of the air conditioner panel is adjusted by controlling the LED driving pulse duty cycle, and the volume of the buzzer is adjusted by controlling the buzzer driving current, so that the adjustment process is more rigorous and accurate.
[0049] Further, step S310 comprises:
[0050] Step S311: determining whether the air conditioner meets the first adjustment condition according to the current distance;
[0051] Step S312: in the case that the air conditioner does not meet the first adjustment condition, controlling the LED driving pulse duty cycle to be the LED duty cycle threshold value, and the buzzer driving current to be the driving current threshold value; and / or
[0052] Step S313: When the air conditioner meets the first adjustment condition, control the LED drive pulse duty cycle and the buzzer drive current according to the current distance and the preset threshold.
[0053] The first adjustment condition is: the current distance is less than the maximum distance threshold.
[0054] Specifically, when there is a need for close-range information interaction, the operating parameters are adjusted according to the current distance, specifically the duty cycle of the LED driving pulse and the buzzer driving current. By determining whether the air conditioner meets the first adjustment condition, it can be determined whether the current distance has reached the maximum distance threshold. When the air conditioner does not meet the first adjustment condition, it indicates... At this time, the user is far from the air conditioner. To meet the user's need to identify the air conditioner's status, the duty cycle D of the LED drive pulse is controlled to reach... Buzzer drive current achieve This maximizes visibility and alertness, making it easy for users to see and receive buzzer information. However, since the air conditioner panel's display brightness and buzzer volume are already at their maximum, further increases in brightness and volume are not possible. Simultaneously, the LED power supply is cyclically switched on for 2 seconds and off for 1 second, and the buzzer driver beeps 2-3 times consecutively after successfully parsing the remote control code (beep-beep or beep-beep-beep, 50ms interval (specific duration depends on the buzzer driver waveform)). When the air conditioner meets the first adjustment condition, it indicates... At this point, the user is not far from the air conditioner. Based on X and the preset threshold, control D and Where X is the current distance and D is the LED drive pulse duty cycle. This is the driving current for the buzzer; The maximum distance threshold, LED duty cycle threshold This is the drive current threshold. Preferably, The preferred value is 6m. The preferred value is 100%. The preferred value is , This refers to the rated current of the buzzer. This application utilizes a novel algorithm to flexibly control the display brightness of the air conditioner panel from 0% to 100%, integrating and replacing the air conditioner's screen display function, thus freeing up remote control buttons and software resources.
[0055] Furthermore, the preset thresholds include: a first distance threshold and a second distance threshold; step S313 includes:
[0056] Based on the relationship between the current distance and the first and second distance thresholds, control the duty cycle of the LED driving pulse and the buzzer driving current.
[0057] obtaining a distance change of the current distance, and determining whether the air conditioner meets a second adjustment condition according to the distance change;
[0058] In a case where the air conditioner meets the second adjustment condition, the LED driving pulse duty cycle and the buzzer driving current are adjusted and updated.
[0059] The second adjustment condition is that the distance change is continuously decreasing of the current distance within a first preset time length.
[0060] Specifically, in a case where the air conditioner meets the first adjustment condition, the LED driving pulse duty cycle and the buzzer driving current are preliminarily adjusted according to a size relationship between the current distance and the first distance threshold and the second distance threshold. After the preliminary adjustment, the distance change within the first preset time length is obtained and it is determined whether the air conditioner meets the second adjustment condition. By determining whether the air conditioner meets the second adjustment condition, it can be determined whether the air conditioner needs to be adjusted twice to improve the visibility and the prompting degree. When the distance change is continuously decreasing of the current distance within the first preset time length, it is determined that the user is continuously approaching the air conditioner, and it is considered that the visualization demand and / or the prompting demand are enhanced, and the D and / or the F need to be enhanced to enhance the visibility and the prompting degree. The specific enhancement process is determined according to the value of the current distance. The first preset time length is 2s. The first distance threshold is 0.5m, and the second distance threshold is 1.5m.
[0061] Further, the LED driving pulse duty cycle and the buzzer driving current are controlled according to the size relationship between the current distance and the first distance threshold and the second distance threshold, including:
[0062] When the current distance is less than the first distance threshold, the LED driving pulse duty cycle is controlled to be a first LED duty cycle preset value, and the buzzer driving current is controlled to be a first driving current preset value; and / or
[0063] When the current distance is greater than or equal to the first distance threshold and less than the second distance threshold, the LED driving pulse duty cycle is controlled to be a second LED duty cycle preset value, and the buzzer driving current is controlled to be a second driving current preset value; and / or
[0064] When the current distance is greater than or equal to the second distance threshold, the LED driving pulse duty cycle is controlled to be a third LED duty cycle preset value, and the buzzer driving current is controlled to be a third driving current preset value.
[0065] Wherein, the first distance threshold < the second distance threshold < the maximum distance threshold; the first LED duty cycle preset value < the second LED duty cycle preset value < the third LED duty cycle preset value < the LED duty cycle threshold; and the first driving current preset value < the second driving current preset value < the third driving current preset value < the driving current threshold.
[0066] Specifically, according to X and , The size relationship between them controls D and Specifically, this includes: when At this time, the user is relatively close to the air conditioner, and the need for display on the air conditioner panel and the reminder from the buzzer is relatively weak. The software controls the LED drive pulse duty cycle D to be... Buzzer drive current for If the air conditioner meets the second adjustment condition during this period, that is, continuously The time-based detection indicates that X is decreasing (meaning the user's proximity suggests an increased need for visualization, and this is continuous). Time detection is achieved through software filtering (eliminating the possibility of users being too close to the air conditioner due to other factors), which then enhances and updates the process. To make the air conditioner work with the updated It operates to increase the display brightness of the air conditioner panel and controls the buzzer to sound once when a remote control signal is received.
[0067] when At this time, users are relatively far from the air conditioner, increasing their need for display on the air conditioner panel and alerts from the buzzer. Therefore, the software controls the LED drive pulse duty cycle D to be... Buzzer drive current for If the air conditioner meets the second adjustment condition during this period, that is, continuously If the time-detected value X decreases (meaning the user is closer and the visual need increases, or the remote control signal cannot be reliably received), then the value is increased and updated. To make the air conditioner work with the updated The system is activated to improve the brightness of the air conditioner panel display, and also enhances and updates the display when the main controller successfully parses the remote control code. To make the buzzer sound the updated Run the program to increase the volume of the buzzer, and the buzzer will sound once when the main controller successfully parses the remote control code.
[0068] when At this time, when users are far from the air conditioner, their need for display on the air conditioner panel and the need for buzzer alerts are stronger. The software controls the LED drive pulse duty cycle D to be... Buzzer drive current for , during which, if the air conditioner meets the second adjustment condition, that is, the X is detected to be smaller than the first distance threshold value for a second preset time period, the LED driving pulse duty cycle and the buzzer driving current are adjusted and updated , so that the air conditioner runs with the updated LED driving pulse duty cycle, to improve the display brightness of the air conditioner panel , and the buzzer runs with the updated buzzer driving current, to improve the volume of the buzzer , so that the air conditioner runs with the updated LED driving pulse duty cycle, to improve the display brightness of the air conditioner panel , and the buzzer runs with the updated buzzer driving current, to improve the volume of the buzzer , so that the air conditioner runs with the updated LED driving pulse duty cycle, to improve the display brightness of the air conditioner panel
[0069] wherein, , is a first distance threshold value, is a second distance threshold value; is a second preset time period; , is a first LED duty cycle preset value, is a second LED duty cycle preset value, is a third LED duty cycle preset value; , is a first driving current preset value, is a second driving current preset value, is a third driving current preset value.
[0070] Preferably, the preferred value of the first distance threshold value is 2m, the preferred value of the second distance threshold value is 4m; the value of the second preset time period is , the preferred value of the first LED duty cycle preset value is 15%, the preferred value of the second LED duty cycle preset value is ; the value of the third LED duty cycle preset value is , the preferred value of the first driving current preset value is 35%, the preferred value of the second driving current preset value is ; the value of the third driving current preset value is , the preferred value of the first driving current preset value is 55%, the preferred value of the second driving current preset value is .
[0071] Further, in the case where the air conditioner meets the second adjustment condition, the LED driving pulse duty cycle and the buzzer driving current are adjusted and updated, comprising:
[0072] controlling the LED driving pulse duty cycle to increase by a first percentage every second preset time period;
[0073] Each time the air conditioner receives a remote control signal, it increases the current driving the buzzer by a second percentage and controls the buzzer to run once.
[0074] Specifically, when the air conditioner meets the second adjustment condition, it means that... Within a given time period, the distance continuously decreases, indicating that the user is moving closer to the air conditioner, suggesting an increased need for visualization and / or alerts. This is further confirmed by adjusting the distance at intervals... The time control D is enhanced, specifically by increasing the value by a first percentage; and the control is activated after the air conditioner receives a remote control signal each time. Increase the percentage by 2 and control the buzzer to run once.
[0075] Specifically, this includes: when At that time, the initial control D was , for Continuously acquire X to obtain distance changes, and update when the air conditioner meets the second adjustment condition. and ,control Every The time increases by the first percentage, and a buzzer sounds once when a remote control signal is received. At that time, the initial control D was , for Continuously acquire X to obtain distance changes, and update when the air conditioner meets the second adjustment condition. and ,control Every Time increases by the first percentage. The second percentage is incremented each time a remote control code is successfully parsed (i.e., when a remote control signal is received), and a buzzer sounds accordingly. When At that time, the initial control D was , for Continuously acquire X to obtain distance changes, and update when the air conditioner meets the second adjustment condition. and ,control Every Time increases by the first percentage. The second percentage is increased each time a remote control code is successfully parsed (that is, when a remote control signal is received), and the buzzer sounds once accordingly.
[0076] in, For the second preset duration, The preferred value is 1s. The preferred value for the first percentage is 1%, and the preferred value for the second percentage is 10%.
[0077] Further, the control method further comprises:
[0078] In the absence of the close-range information interaction requirement, it is determined whether there is a long-range information interaction requirement between the user and the air conditioner;
[0079] In the presence of the long-range information interaction requirement, the air conditioner is controlled to turn off the LED display and shield the buzzer driving program;
[0080] In the absence of the long-range information interaction requirement, the air conditioner is controlled to turn off the LED display and enter a low-power display mode.
[0081] Specifically, when the air conditioner main control does not detect a remote control signal for a continuous third preset time length, it is determined that the user currently has no control or change requirement for the state of the air conditioner, that is, there is no long-range information interaction requirement at this time, and that there is no information interaction between the user and the air conditioner (that is, there is no close-range or long-range information interaction), and the software controls the LED driving pulse duty cycle D to be 0%, that is, the LED display is turned off, and the low-power display mode is entered.
[0082] When the user remotely controls the air conditioner through WIFI, the current state of the air conditioner can be obtained by the mobile phone in real time, which greatly reduces the direct information interaction requirement between the user and the air conditioner. At this time, the long-range information interaction requirement is determined, the software controls the LED driving pulse duty cycle D to be 0%, that is, the LED display is turned off, and the low-power display mode is entered, and the buzzer driving program is shielded, that is, the mobile phone WIFI remote control does not trigger the buzzer response (the user has no buzzer response feedback requirement).
[0083] Preferably, the preferred value of the third preset time length is 10s.
[0084]
Embodiment Two
[0085] With reference to Figure 3 The embodiment also provides an air conditioner control device 100, which comprises a judgment module 101, an acquisition module 102, and an adjustment module 103. The judgment module 101 is used to determine whether there is a close-range information interaction requirement between the user and the air conditioner after the air conditioner is operated. The acquisition module 102 is used to acquire the current distance between the user and the air conditioner in the presence of the close-range information interaction requirement. The adjustment module 103 is used to adjust the operating parameter of the air conditioner according to the current distance. The operating parameter comprises the display brightness of the air conditioner panel and the operating state of the buzzer.
[0086] In one specific embodiment, the judgment module 101, the acquisition module 102, and the adjustment module 103 of the air conditioner control device 100 cooperate to realize the air conditioner control method of the first embodiment, which will not be described herein again.
[0087] Embodiment Three
[0088] With reference to Figure 4 The embodiment provides a structural schematic diagram of an air conditioner 200, and the air conditioner 200 comprises a processor 220 and a memory 210 electrically connected to the processor 220, the memory 210 stores a computer program 211, and the processor 220 loads the computer program 211 to realize the control method of the air conditioner as in the first embodiment.
[0089] Embodiment Four
[0090] With reference to Figure 5 The embodiment also provides a readable storage medium 300, the readable storage medium 300 stores computer executable instructions 310, and when the computer executable instructions 310 are read and run by the processor 220, the air conditioner 200 where the readable storage medium 300 is located implements the control method of the air conditioner as in the first embodiment.
[0091] In several embodiments provided in the present application, it should be understood that the disclosed apparatus and method can also be implemented by other manners. The apparatus embodiment described above is only schematic, for example, each functional module in the embodiments of the present application can be integrated together to form an independent part, or each module can exist independently, or two or more modules can be integrated to form an independent part.
[0092] If the functions are realized in the form of software function modules and sold or used as independent products, the software function modules can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the part that contributes to the prior art or the part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the embodiments of the method of the present application. The aforementioned readable storage medium includes various media that can store program codes, such as a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.
[0093] It should be pointed out finally that the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit the same; and although the present application has been described in detail with reference to the foregoing embodiments, it should be appreciated by those skilled in the art that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features thereof can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A control method of an air conditioner, characterized by, The control method comprises: After the air conditioner is running, it is judged whether there is a close-range information interaction demand between the user and the air conditioner; In the case where the close-range information interaction demand exists, the current distance between the user and the air conditioner is acquired; According to the current distance, the running parameter of the air conditioner is adjusted; The running parameter comprises the display brightness of the air conditioner panel and the running state of the buzzer. According to the current distance, the running parameter of the air conditioner is adjusted, which comprises: According to the current distance, the LED driving pulse duty cycle and the buzzer driving current are controlled; Based on the LED driving pulse duty cycle and the buzzer driving current, the running parameter is adjusted. According to the current distance, the LED driving pulse duty cycle and the buzzer driving current are controlled, which comprises: According to the current distance, it is judged whether the air conditioner meets the first adjustment condition; In the case where the air conditioner does not meet the first adjustment condition, the LED driving pulse duty cycle is controlled to be an LED duty cycle threshold value, and the buzzer driving current is controlled to be a driving current threshold value; and / or In the case where the air conditioner meets the first adjustment condition, according to the current distance and a preset threshold value, the LED driving pulse duty cycle and the buzzer driving current are controlled. The first adjustment condition is that the current distance is less than a maximum distance threshold value. The preset threshold value comprises a first distance threshold value and a second distance threshold value. In the case where the air conditioner meets the first adjustment condition, according to the current distance and a preset threshold value, the LED driving pulse duty cycle and the buzzer driving current are controlled, which comprises: According to the size relationship between the current distance and the first distance threshold value and the second distance threshold value, the LED driving pulse duty cycle and the buzzer driving current are controlled. The distance change condition of the current distance is acquired, and it is judged whether the air conditioner meets a second adjustment condition according to the distance change condition; In the case where the air conditioner meets the second adjustment condition, the LED driving pulse duty cycle and the buzzer driving current are adjusted and updated. The second adjustment condition is that in a first preset time length, it is detected that the distance change condition is that the current distance continuously decreases. In the case where the air conditioner meets the second adjustment condition, the LED driving pulse duty cycle and the buzzer driving current are adjusted and updated, which comprises: Every second preset time length, the LED driving pulse duty cycle is controlled to increase by a first percentage. After the air conditioner receives a remote control signal once, the buzzer driving current is controlled to increase by a second percentage, and the buzzer is controlled to run once.
2. The control method according to claim 1, wherein According to the size relationship between the current distance and the first distance threshold value and the second distance threshold value, the LED driving pulse duty cycle and the buzzer driving current are controlled, which comprises: when the current distance is less than the first distance threshold, controlling the LED driving pulse duty cycle to be a first LED duty cycle preset value, and the buzzer driving current to be a first driving current preset value; and / or when the current distance is greater than or equal to the first distance threshold and less than the second distance threshold, controlling the LED driving pulse duty cycle to be a second LED duty cycle preset value, and the buzzer driving current to be a second driving current preset value; and / or when the current distance is greater than or equal to the second distance threshold, controlling the LED driving pulse duty cycle to be a third LED duty cycle preset value, and the buzzer driving current to be a third driving current preset value. wherein the first distance threshold < the second distance threshold < the maximum distance threshold; the first LED duty cycle preset value < the second LED duty cycle preset value < the third LED duty cycle preset value < the LED duty cycle threshold; the first driving current preset value < the second driving current preset value < the third driving current preset value < the driving current threshold.
3. The control method according to claim 1, characterized by, The control method further comprises: in the absence of the close distance information interaction requirement, determining whether there is a long distance information interaction requirement between the user and the air conditioner; in the presence of the long distance information interaction requirement, controlling the air conditioner to turn off the LED display and shield the buzzer driving program; in the absence of the long distance information interaction requirement, controlling the air conditioner to turn off the LED display and the air conditioner to enter a low-power consumption display mode.
4. A control device for an air conditioner, characterized by comprising: The control device is used to execute the control method of the air conditioner according to any one of claims 1-3, and the control device comprises: a determination module, configured to determine whether there is a close distance information interaction requirement between a user and the air conditioner after the air conditioner is running; an acquisition module, configured to acquire a current distance between the user and the air conditioner in the presence of the close distance information interaction requirement; an adjustment module, configured to adjust a running parameter of the air conditioner according to the current distance; wherein the running parameter comprises a display brightness of an air conditioner panel and a running state of a buzzer.
5. An air conditioner characterized by comprising: The air conditioner comprises a processor, a memory, and a program or instruction stored in the memory and executable on the processor, and the program or instruction is executed by the processor to implement the steps of the control method of the air conditioner according to any one of claims 1-3.
6. A readable storage medium characterized by, The readable storage medium stores a program or instruction, and the program or instruction is executed by the processor to implement the steps of the control method of the air conditioner according to any one of claims 1-3.
Citation Information
Patent Citations
Buzzer volume control apparatus and method for controlling buzzer volume by using the same, and household appliance
CN105045186A
Display control method and device, storage medium and air conditioner
CN107731179A