Ventilation operation method and equipment of intelligent door and window and storage medium
Through the ventilation operation method of smart doors and windows, the step sliding of the movable fan forms ventilation distance and marks it as a preset position, which solves the problem of frequent manual adjustments when ventilating traditional doors and windows, and realizes the function of automatic closing and reserved ventilation distance, which improves the convenience and intelligence of users.
Patent Information
- Application Number
- CN202510438532.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-06-24
AI Technical Summary
Traditional doors and windows need to be opened and adjusted frequently when ventilation is ventilated, and it cannot automatically prevent rainwater from pouring in in the weather, resulting in inconvenience in use.
Provides a ventilation operation method for intelligent doors and windows. By activating the ventilation mode, the movable fan is controlled to step and slide multiple times along the opening direction to form a ventilation spacing, and is recorded as a preset position. When the door opening command is received, the movable fan continues to be turned on until fully opened; when the door closing command is received, the movable fan slides to the preset position in the closing direction.
It avoids the cumbersomeness of frequently adjusting ventilation distances, and can automatically close doors and windows and reserve ventilation distances when needed, greatly improving the convenience and intelligence of users.
Smart Images

Figure CN120193726A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of doors and windows, and in particular, to a ventilation operation method, device, and storage medium for intelligent doors and windows. Background Art
[0002] Traditional doors and windows, as common partition structures in buildings or homes, usually rely on manual operation for the opening and closing of their movable doors. When ventilation is required, users must manually open the movable door frequently to allow air circulation. After the door is fully opened, for example, in adverse weather conditions such as gentle breeze accompanied by light rain, fully opening the door will cause rainwater to drift into the room. At this time, the fully opened movable door needs to be adjusted manually to a specific ventilation distance to ensure that air enters the room while preventing a large amount of rainwater from pouring in. However, in actual use scenarios, after the movable door is fully opened, users are often busy or their hands are not free, unable to close the movable door in time and leave their hands free to leave a certain ventilation distance for the doors and windows, resulting in a large amount of rainwater pouring in due to long-term opening, which undoubtedly brings great inconvenience to users.
[0003] Therefore, it is necessary to provide an operation method, device, and storage medium for the ventilation mode of an intelligent sliding door that can avoid frequently opening the ventilation distance of the doors and windows, and can automatically close the doors and windows and reserve a certain ventilation distance when the doors and windows are fully opened. Summary of the Invention
[0004] In view of this, it is necessary to provide an operation method, device, and storage medium for the ventilation mode of an intelligent sliding door that can avoid frequently opening the ventilation distance of the doors and windows, and can automatically close the doors and windows and reserve a certain ventilation distance when the doors and windows are fully opened, so as to solve the above problems.
[0005] An embodiment of this application provides a ventilation operation method for intelligent doors and windows. The intelligent doors and windows include a frame body and a movable sash that can be slidably opened or closed within the frame body. The method includes the steps:
[0006] Start the ventilation mode;
[0007] Control the movable sash to slide step by step in the opening direction multiple times to form a ventilation gap for indoor and outdoor ventilation, and record the position where the movable sash stops as a preset position;
[0008] When a door opening instruction is received again, control the movable sash to continue sliding in the opening direction until the movable sash is fully opened;
[0009] When a door closing instruction is received again, control the movable sash to slide in the closing direction until the movable sash slides to the preset position.
[0010] In at least one embodiment of this application, the ventilation operation method for intelligent doors and windows further includes the steps:
[0011] Start the non-ventilation mode;
[0012] Clear the preset position.
[0013] In at least one embodiment of the present application, the step of "controlling the movable fan to step-slide multiple times in the opening direction to form a ventilation gap for indoor and outdoor ventilation, and recording the position where the movable fan stops as the preset position" includes the steps of:
[0014] Preset the step distance;
[0015] Control the movable fan to slide multiple times at the preset step distance. When the distance between the movable fan and the frame satisfies the ventilation gap, the movable fan stops sliding, where each preset step distance is equal;
[0016] After the movable fan stops sliding, record the current position where the movable fan stops.
[0017] In at least one embodiment of the present application, record the ventilation distance as X and the preset step distance as A, satisfying the relationship:
[0018] X = a * A, where a is the number of sliding times of the movable fan.
[0019] In at least one embodiment of the present application, after the movable fan slides to the preset position and then starts the non-ventilation mode, control the movable fan to move in the closing direction until the movable fan is completely closed.
[0020] In at least one embodiment of the present application, after the step of "when receiving the door opening instruction again, controlling the movable fan to continue sliding in the opening direction until the movable fan is completely opened", the steps include:
[0021] After the movable fan is completely opened, control the movable fan to be stationary for a period of time;
[0022] After the stationary period ends, identify whether it is an automatic door closing;
[0023] If it is identified as an automatic door closing, control the movable fan to execute the door closing instruction;
[0024] If it is identified as non-automatic door closing, control the movable fan to remain stationary and start the non-ventilation mode.
[0025] In at least one embodiment of the present application, the step of "if it is identified as non-automatic door closing, control the movable fan to remain stationary and start the non-ventilation mode" includes the steps of:
[0026] If it is detected that the user manually moves the movable fan, it is determined as non-automatic door closing.
[0027] In at least one embodiment of the present application, the step of "clearing the preset position" further includes the steps of:
[0028] Read the operation data when reading the historical ventilation mode, where the operation data includes the stop position of the recorded historical active fan;
[0029] Clear the stop position of the historical active fan.
[0030] A computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of any of the above methods are implemented.
[0031] A computer-readable storage medium, characterized in that the computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of any of the above methods are implemented.
[0032] The provided ventilation operation method of an intelligent door and window starts the ventilation mode, controls the active fan to step and slide multiple times along the opening direction to form a ventilation interval and records it as a preset position. When a door opening instruction is received, the active fan continues to open until it is fully opened. When a door closing instruction is received, it controls the active fan to slide along the closing direction to the preset position. Thus, it not only avoids the cumbersome process of frequently adjusting the ventilation distance but also can automatically close the door and window and reserve the ventilation distance when needed, greatly improving the convenience and intelligence of user use and effectively solving the deficiencies in the prior art. Description of the Drawings
[0033] Figure 1 It is a schematic structural diagram of an intelligent door and window in an embodiment of the present application.
[0034] Figure 2 It is a flowchart of the ventilation operation method of an intelligent door and window in an embodiment of the present application.
[0035] Figure 3 It is a schematic diagram of the state of the active fan moving along the opening direction in an embodiment.
[0036] Figure 4 It is a schematic diagram of the state when the active fan is fully opened in an embodiment.
[0037] Figure 5 It is a schematic diagram of the state of the active fan moving along the closing direction in an embodiment.
[0038] Figure 6 It is a schematic diagram of the state when the active fan is fully closed in an embodiment.
[0039] Figure 7 It is a state change diagram of the active fan moving along the opening direction in an embodiment.
[0040] Figure 8 It is a state change diagram of the active fan moving along the closing direction in an embodiment.
[0041] Description of Main Component Symbols
[0042] 100, intelligent doors and windows; 10, movable sash; 20, frame; F1, opening direction; F2, closing direction; A, step distance; 30, preset position; X, ventilation gap. Specific Embodiment
[0043] Next, the embodiments of the present application will be described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments.
[0044] It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there may be an intermediate component at the same time. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component at the same time. The terms "top", "bottom", "upper", "lower", "left", "right", "front", "rear", and similar expressions used herein are only for the purpose of illustration.
[0045] An embodiment of the present application provides a ventilation operation method for intelligent doors and windows. The intelligent doors and windows include a frame and a movable sash that can be slidably opened or closed within the frame. The method includes the steps:
[0046] Start the ventilation mode;
[0047] Control the movable sash to step-slide multiple times along the opening direction to form a ventilation gap for indoor and outdoor ventilation, and record the position where the current movable sash stops as the preset position;
[0048] When a door opening instruction is received, control the movable sash to continue sliding along the opening direction until the movable sash is fully opened;
[0049] When a door closing instruction is received, control the movable sash to slide along the closing direction until the movable sash slides to the preset position.
[0050] The above-provided ventilation operation method for intelligent doors and windows starts the ventilation mode, controls the movable sash to step-slide multiple times along the opening direction to form a ventilation gap and records it as the preset position. When a door opening instruction is received, the movable sash continues to open until it is fully opened. When a door closing instruction is received, control the movable sash to slide along the closing direction to the preset position. Thus, it not only avoids the cumbersome process of manually adjusting the ventilation distance but also can automatically close the doors and windows and reserve a ventilation distance when needed, greatly improving the convenience and intelligence of user use and effectively solving the deficiencies in the prior art.
[0051] Next, in conjunction with the accompanying drawings Figures 1-8, some embodiments of the present application will be described in detail. In the case of no conflict, the following embodiments and the features in the embodiments can be combined with each other.
[0052] An embodiment of the present application provides a ventilation operation method for an intelligent door and window 100. The intelligent door and window 100 includes a frame body 20 and a movable sash 10 that can be slidably opened or closed within the frame body 20. The method includes the steps:
[0053] S1. Start the ventilation mode;
[0054] S2. Control the movable sash 10 to step-slid multiple times along the opening direction F1 to form a ventilation gap X for indoor and outdoor ventilation, and record the position where the current movable sash 10 stops as the preset position 30;
[0055] S3. When a door opening instruction is received again, control the movable sash 10 to continue sliding along the opening direction F1 until the movable sash 10 is fully opened;
[0056] S4. When a door closing instruction is received again, control the movable sash 10 to slide along the closing direction F2 until the movable sash 10 slides to the preset position 30.
[0057] Specifically, when the ventilation mode is started, the movable sash 10 and the frame body 20 are in a completely closed state to facilitate the operation of the ventilation mode. The movable sash 10 is intermittently moved at a fixed step length by a motor-driven guide rail system to form a controllable ventilation gap X between the movable sash 10 and the frame body 20. The user can start the ventilation mode to automatically adjust the opening size of the ventilation gap X according to the ventilation requirement, and the size of the gap between the movable sash 10 and the frame body 20 determines the ventilation volume flowing indoors and outdoors. After the door and window is fully opened, the movable sash 10 is moved again by the motor-driven guide rail system to make the movable sash 10 automatically return to the preset ventilation position without manual intervention, avoiding the problem that after passing through the movable sash 10, when the user's hands are busy, the fully opened movable sash 10 is not timely reduced in the opening gap.
[0058] Further, the ventilation mode can be triggered by any one of a remote operation button, on an APP, on an operation panel, etc. The user can click to start the ventilation mode, so that the intelligent window and door 100 runs in the ventilation mode. At this time, when the user clicks the ventilation mode multiple times or continuously clicks the ventilation mode, this multiple or continuous clicking method can be adjusted according to the preset opening method, so that the movable fan 10 makes corresponding movements. The preset step distance A determines the distance that the movable fan 10 slides each time, thereby affecting the operation method of whether the user chooses to click multiple times or click continuously. When the preset distance is large (such as 10 cm), since the sliding distance of the movable fan 10 is long and it needs to wait for the sliding time, it is suitable to click multiple times to achieve step-by-step sliding; when the preset distance is small (such as 1 cm), since the sliding distance of the movable fan 10 is short and it can slide quickly, it can be seen that the time of multiple clicks is shortened, so as to continuously click to achieve continuous sliding.
[0059] Furthermore, the ventilation spacing X is obtained by accumulating one-way step-by-step sliding until the maximum ventilation spacing X is reached. The maximum ventilation spacing X can be the maximum opening spacing of the movable fan 10. In the ventilation mode, the position where the movable fan 10 stops is recorded as the preset position 30, which is the reference point for the movable fan 10 to automatically return to the preset position 30 after the closing instruction is given, forming a closed-loop control of "ventilation mode → safe opening → automatic recovery" to ensure the coherence and controllability of the system state.
[0060] Furthermore, through the human body induction sensor or by operating the door opening instruction through the button, the control system receives the door opening instruction, and the movable fan 10 continues to slide along the opening direction F1 from the preset position 30 until it is confirmed that the movable fan 10 is in the fully opened state. After the movable fan 10 is in the fully opened state, the movable fan 10 will automatically slide along the closing direction F2 until the movable fan 10 returns to the preset ventilation position. After the movable fan 10 is fully opened, there is no need for manual operation, and the movable fan 10 can slide to the ventilation position by itself, which not only ensures the indoor air circulation but also avoids rainwater intrusion, significantly improving the living convenience.
[0061] In a specific embodiment, the ventilation operation method of the intelligent window and door 100 further includes the steps:
[0062] S5. Start the non-ventilation mode;
[0063] S6. Clear the preset position 30.
[0064] Specifically, starting the non-ventilation mode is to turn off the ventilation mode state, stop the automated operations related to the previous ventilation of the movable fan 10, and clear the recorded preset position 30. Clearing the preset position 30 can prevent the system from generating unnecessary automatic operations due to misidentifying instructions related to the preset position 30 during the next startup of the ventilation mode. It makes the door and window control system return to the initial state in the non-ventilation mode, providing a clean and accurate environment for the subsequent operation of the next startup of the ventilation mode, and ensuring that each operation of the ventilation mode can be based on the correct initial conditions.
[0065] Furthermore, in the case where multiple users use the intelligent doors and windows 100 together, different users may have different setting requirements for the ventilation mode and the preset position 30. After starting the non-ventilation mode, clearing the preset position 30 of the movable fan 10 in the previous ventilation mode allows each user to reset the preset position 30 for the ventilation of the movable fan 10 according to their own needs when using it next time, improving the flexibility and personalization of use.
[0066] In a specific embodiment, the step of "S2. Control the movable fan 10 to stepwise slide along the opening direction F1 multiple times to form a ventilation gap X for indoor and outdoor ventilation, and record the position where the current movable fan 10 stops as the preset position 30" includes the steps:
[0067] S21. Preset a step distance A;
[0068] S22. Control the movable fan 10 to slide multiple times at the preset step distance A. When the distance between the movable fan 10 and the frame 20 satisfies the ventilation gap X, the movable fan 10 stops sliding, where each preset step distance A is equal;
[0069] S23. After the movable fan 10 stops sliding, record the position where the current movable fan 10 stops.
[0070] Specifically, the setting of the step distance A is that the merchant or manufacturer pre-sets the value of the step distance A in advance. The preset step distance A can be different step distance A values such as 5 cm, 10 cm, 15 cm, etc., and the distance of each step should be equal, providing a fixed moving unit for the sliding of the movable fan 10, so that the movable fan 10 can move intermittently at a unified step length during the opening process, thereby accurately controlling the ventilation gap X between the movable fan 10 and the frame 20.
[0071] Further, after entering the ventilation mode operation process, the user can, according to actual needs, start the ventilation mode by clicking multiple times or continuously click the ventilation mode, so that the movable fan 10 slides multiple times with a preset step distance A, thereby flexibly adjusting the ventilation spacing X and the ventilation volume. When the distance between the movable fan 10 and the frame 20 meets the ventilation spacing X, stop clicking the ventilation mode and the movable fan 10 stops sliding, avoiding the trouble of manual operation by the user and improving the convenience of use.
[0072] Even further, the record of the preset position 30 provides an accurate reference benchmark for the subsequent operation of the intelligent door and window 100, avoiding system operation abnormal problems caused by the loss or error of position information when the movable fan 10 closes the door, and improving the stability and reliability of the system. During the operation of the ventilation mode, after the movable fan 10 stops sliding, the control system will immediately record the position information where the current movable fan 10 stops and store it in the memory of the system. This position information will be used as the reference point for the movable fan 10 to automatically return to the preset position 30 under the subsequent closing door instruction.
[0073] In a specific embodiment, the ventilation distance is denoted as X, the preset step distance is denoted as A, and the relationship is satisfied: X = a * A, (a is the number of sliding times of the movable fan 10)
[0074] Specifically, the ventilation distance is the sum of the total distances of multiple sliding steps of the movable fan 10.
[0075] Further, when the preset step distance A is 10 cm, since the sliding distance of the movable fan 10 is long, it needs to wait for the sliding time. Because it is necessary to click the ventilation mode multiple times to make the movable fan 10 slide step by step multiple times, the user clicks the "ventilation mode" 3 times, and the number of step-by-step sliding times is 3 times. The movable fan 10 steps and moves along the opening direction F1 and slides 3 times. At this time, the ventilation spacing X is 30 cm. After a total opening of 30 cm, the user stops clicking the ventilation mode. At this time, the control system controls the movable fan 10 to stop sliding and records the current position of the movable fan 10.
[0076] Even further, when the preset step distance A is 1 cm, the movable fan 10 can slide quickly because the sliding distance is short and the ventilation mode can be continuously clicked. Since the preset step distance A is 1 cm, the distance of each slide of the movable fan 10 is relatively short, so it can slide quickly. The system controls the movable fan 10 to continuously slide at a fixed time interval (such as sliding once per second) or speed (such as sliding 1 cm per second). During the continuous click, the movable fan 10 continuously steps and slides along the opening direction F1, sliding 1 cm each time, so that the movable fan 10 continuously slides to the required ventilation position.
[0077] In a specific embodiment, after the movable fan 10 slides to the preset position 30 and then starts the non-ventilation mode, control the movable fan 10 to move along the closing direction F2 until the movable fan 10 is completely closed.
[0078] Specifically, in the ventilation mode, the movable fan 10 passes through the preset position 30 of the ventilation spacing X twice. The first time is that after the ventilation mode is turned on, the movable fan 10 adjusts the ventilation spacing X according to the user's needs, and records the ventilation spacing X at which it stays as the preset position 30. If the user starts the non-ventilation mode at this time, the movable fan 10 executes the operation process of the non-ventilation mode, exits the operation of the ventilation mode, and makes the movable fan 10 slide along the closing direction F2 until the movable fan 10 is completely closed.
[0079] The second time is that after the movable fan 10 is fully opened and a door closing instruction is received, the movable fan 10 slides past the preset position 30 and then stops sliding. If the user starts the non-ventilation mode at this time, the movable fan 10 executes the operation process of the non-ventilation mode, exits the operation of the ventilation mode, and makes the movable fan 10 slide along the closing direction F2 until the movable fan 10 is completely closed, so as to realize the overall operation process of the ventilation mode.
[0080] In a specific embodiment, after the step of "S3. When a door opening instruction is received again, control the movable fan 10 to continue sliding in the opening direction until the movable fan 10 is fully opened", the following steps are included:
[0081] S31. After the movable fan 10 is fully opened, control the movable fan 10 to be stationary for a period of time;
[0082] S32. After the stationary period ends, identify whether it is an automatic door closing;
[0083] S33. If it is identified as an automatic door closing, control the movable fan 10 to execute the door closing instruction;
[0084] S34. If it is identified as a non-automatic door closing, control the movable fan 10 to stay still and start the non-ventilation mode.
[0085] Specifically, after the movable fan 10 is fully opened, controlling the movable fan 10 to be stationary for a period of time provides a buffer period for the movable fan 10 after it is fully opened, allowing the user to have enough time to operate or observe in the state where the movable fan 10 is fully opened, and avoiding inconvenience to the user caused by the movable fan 10 immediately executing subsequent actions.
[0086] Further, during the period when the movable fan 10 is stationary for a certain time, the installed human body induction sensor can detect whether there is a user passing by after the movable fan 10 is fully opened. After the user passes by, after a period of detection, when no one passes by, the control system determines that an automatic door closing instruction is required, and controls the movable fan 10 to close automatically. When the system recognizes the automatic door closing instruction, it controls the movable fan 10 to slide along the closing direction F2 until the movable fan 10 slides to the preset position 30. The user does not need to operate manually, and the system can automatically complete the door closing action and make the movable fan 10 slide to the preset ventilation position by itself, thus improving the convenience of use and avoiding the ventilation distance of frequently opening and closing doors and windows.
[0087] Furthermore, when the system recognizes a non-automatic door closing instruction, it controls the movable fan 10 to exit the automatic door closing instruction, keeps the movable fan 10 in the current fully opened state without moving, and starts the non-ventilation mode, stopping the automated operations related to ventilation. Thus, it respects the user's operation intention. When the user does not want the door to close automatically, the system will not enforce the door closing action, ensuring the user's autonomy in controlling the doors and windows. Starting the non-ventilation mode can clear the settings related to ventilation, providing a clean and accurate environment for subsequent door and window operations, and ensuring the independence and accuracy of each operation.
[0088] In a specific embodiment, the step of "S34. If it is recognized as non-automatic door closing, control the movable fan 10 to remain stationary and start the non-ventilation mode" includes the steps:
[0089] S341. If it is detected that the user manually moves the movable fan 10, it is determined as non-automatic door closing.
[0090] Specifically, after the movable fan 10 is fully opened, the user can directly control the opening and closing state of the doors and windows by manually operating the movable fan 10 without relying on the automatic judgment of the system, thus improving the user's autonomy and flexibility in use. By real-time monitoring the state of the movable fan 10, it can be monitored through built-in sensors (such as force sensors, displacement sensors, etc.). When it is detected that the user manually moves the movable fan 10, the system immediately recognizes this operation. The system determines the current non-automatic door closing state according to the detected user's manual operation. The system controls the movable fan 10 to remain in the current position without performing the automatic door closing action. At the same time, the system starts the non-ventilation mode to clear the settings related to ventilation, providing a clean and accurate environment for subsequent door and window operations.
[0091] In a specific embodiment, the step of "S6. Clear the preset position" further includes the steps:
[0092] S61. Read the operation data when the historical ventilation mode was running. The operation data includes the recorded stop position of the historical movable fan 10;
[0093] S62. Clear the stop position of the historical active fan 10.
[0094] Specifically, the stop position of the historical active fan 10 is the data of the last ventilation mode operation. When the non-ventilation mode is started, the control system reads the data of the last ventilation mode operation. During the operation of the ventilation mode, the stop position of the active fan in the current ventilation mode is recorded as the preset position, that is, the preset position of the last ventilation mode operation is read. Clearing the stop position of the historical active fan 10 can prevent the system from generating unnecessary automatic operations due to misidentifying instructions related to the preset position 30 when the ventilation mode is started next time. It enables the door and window control system to return to the initial state in the non-ventilation mode, providing a clean and accurate environment for the subsequent start of the ventilation mode operation, ensuring that each ventilation mode operation can be based on the correct initial conditions.
[0095] This application provides a computer device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the steps of any of the above methods. The method includes the steps:
[0096] Start the ventilation mode;
[0097] Control the active fan 10 to step and slide multiple times along the opening direction F1 to form a ventilation gap X for indoor and outdoor ventilation, and record the position where the active fan 10 stops as the preset position 30;
[0098] When a door opening instruction is received, control the active fan 10 to continue sliding along the opening direction F1 until the active fan 10 is fully opened;
[0099] When a door closing instruction is received, control the active fan 10 to slide along the closing direction F2 until the active fan 10 slides to the preset position 30.
[0100] This computer device can specifically be a terminal or a server. The computer device includes a processor, a memory, and a network interface connected through a system bus. Among them, the memory includes a non-volatile storage medium and an internal memory. The non-volatile storage medium of this computer device stores an operating system and can also store a computer program. When the computer program is executed by the processor, the processor can implement the ventilation operation method of the intelligent door and window 100. The internal memory can also store a computer program. When the computer program is executed by the processor, the processor can execute the ventilation operation method of the intelligent door and window 100.
[0101] This application provides a computer-readable storage medium. The computer-readable storage medium stores a computer program. When the computer program is executed by the processor, it implements the steps of any of the above methods.
[0102] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The program can be stored in a non-volatile computer-readable storage medium. When the program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the embodiments provided in the present application can include non-volatile and / or volatile memories. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and Rambus dynamic RAM (RDRAM), etc.
[0103] Thereby, for the ventilation operation method of the intelligent window and door 100 provided above, by starting the ventilation mode, the movable fan 10 is controlled to step-slide multiple times along the opening direction F1 to form a ventilation interval X and record it as the preset position 30. When a door opening instruction is received, the movable fan 10 continues to open until it is fully opened. When a door closing instruction is received, the activity room is controlled to slide along the closing direction F2 to the preset position 30. Thus, it not only avoids the cumbersome process of manually adjusting the ventilation distance frequently, but also can automatically close the window and door and reserve a ventilation distance when needed, greatly improving the convenience and intelligence of user use and effectively solving the deficiencies in the prior art.
[0104] The above are only the implementation manners of the present application. It should be noted here that for those of ordinary skill in the art, improvements can be made without departing from the creative concept of the present application, but these all belong to the protection scope of the present application.
Claims
1. A ventilation operation method for smart doors and windows, characterized in that: The smart door and window comprises a frame, and a movable fan that can be slid open or closed in the frame, and the method comprises the steps of: Activate ventilation mode; Controlling the movable fan to slide in steps multiple times in the opening direction to form a ventilation gap for indoor and outdoor ventilation, and recording the current stop position of the movable fan as a preset position; When receiving the door opening command again, the movable door is controlled to continue sliding in the opening direction until the movable door is fully opened; When a door closing command is received again, the movable fan is controlled to slide in the closing direction until the movable fan slides to a preset position.
2. A ventilation operation method for smart doors and windows according to claim 1, characterized in that: The ventilation operation method of the intelligent door and window also includes the steps of: Activate non-ventilation mode; Clears the preset position.
3. A ventilation operation method for smart doors and windows according to claim 1, characterized in that: The "controlling the movable fan to slide in steps multiple times in the opening direction to form a ventilation distance for indoor and outdoor ventilation, and recording the current stop position of the movable fan as a preset position" includes the following steps: Preset step distance; Controlling the movable fan to slide multiple times at preset step distances, and when the movable fan moves to a distance between the movable fan and the frame that satisfies the ventilation spacing, the movable fan stops sliding, wherein each of the preset step distances is equal; After the movable fan stops sliding, the current position where the movable fan stops is recorded.
4. A ventilation operation method for intelligent doors and windows according to claim 3, characterized in that: Let the ventilation distance be X, and the preset step distance be A, satisfying the relationship: X=a*A, where a is the number of sliding times of the movable fan.
5. The ventilation operation method of a smart door and window according to claim 1, characterized in that: After the movable fan slides to the preset position, when the non-ventilation mode is started, the movable fan is controlled to move in the closing direction until the movable fan is completely closed.
6. The ventilation operation method of a smart door and window according to claim 1, characterized in that: After the "when receiving the door opening command again, controlling the movable door to continue sliding in the opening direction until the movable door is fully opened", the steps include: After the movable fan is fully opened, the movable fan is controlled to be stationary for a period of time; After a period of inactivity, identify whether the door is closed automatically; If it is identified as automatic door closing, the movable fan is controlled to execute the door closing command; If it is identified as non-automatic door closing, the movable fan is controlled to remain stationary and the non-ventilation mode is activated.
7. A ventilation operation method for intelligent doors and windows according to claim 6, characterized in that: The method of "if the door is identified as non-automatic closing, controlling the movable fan to remain stationary and starting the non-ventilation mode" includes the following steps: If it is detected that the user manually moves the movable door, it is determined to be non-automatic door closing.
8. The ventilation operation method of a smart door and window according to claim 2, characterized in that: The "clearing preset position" also includes the steps of: Reading historical operation data of ventilation mode, wherein the operation data includes recording the stop position of the historical active fan; Clear the stop position of the historical activity fan.
9. A computer device, characterized in that: The method comprises a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the method according to any one of claims 1 to 8 when executing the computer program.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 8 are implemented.