Intelligent wardrobe based on environment perception and data analysis and intelligent home system
The smart wardrobe, which combines a chain conveyor mechanism with temperature and humidity sensors, solves the problems of low space utilization and low drying efficiency in existing wardrobes, and achieves efficient clothing management and integration with smart home systems.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 浙江蚂蚁盒子家居用品有限公司
- Filing Date
- 2026-02-11
- Publication Date
- 2026-04-10
AI Technical Summary
Existing smart wardrobe designs take up a lot of space, have low capacity utilization, low drying efficiency, and clothes are prone to wrinkling.
The smart wardrobe adopts environmental perception and data analysis, realizes the circulation and drying of clothes through a chain conveyor mechanism, and achieves precise control by combining temperature and humidity sensors and control box. The clothes rack is designed to be hung according to season and type, and the spacing of the rack rods can be removed and adjusted, and it is integrated into the smart home system.
It improves the utilization rate of clothing storage capacity, drying efficiency and ease of finding clothes, reduces clothing wrinkles, enhances the intelligence of the wardrobe, and supports intelligent control of all house appliances.
Smart Images

Figure CN121817608A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to intelligent wardrobes, and more particularly to intelligent wardrobes and intelligent home systems based on environmental perception and data analysis. Background Technology
[0002] Wardrobes are not just furniture for storing clothes. With development, wardrobes have become more and more functional, such as drying and sterilization.
[0003] Patent application number 201810557567.7 discloses an intelligent wardrobe with an automatic drying function, including a cabinet body. A support column is fixedly connected inside the cabinet body. A first motor is fixedly installed on the side wall of the support column. A mounting base is fixedly supported at the upper end of the support column. A first gear is welded to the mounting base. A rotating shaft is rotatably connected to the mounting base. One end of the rotating shaft passes through the mounting base and is connected to the output end of the first motor. A square rotating frame is welded to the end of the rotating shaft away from the first motor. A second gear is rotatably connected to the diagonal rod of the square rotating frame via a rotating shaft, and the second gear meshes with the first gear. A first synchronous pulley is coaxially arranged on the diagonal rod of the square rotating frame with the second gear. This invention allows clothes for the four seasons to be stored separately, making them easier to find when changing seasons. Furthermore, it dries clothes before conveying them to the wardrobe door for retrieval, making it more convenient.
[0004] Household cabinets are generally divided into upper and lower layers. Clothes are stored separately to maximize the use of the space on both layers. Although the above-mentioned application achieves classified storage of clothes and has a drying function, its structural design occupies a lot of space, has a low capacity utilization rate, and can only store a small amount of clothes. In addition, the drying is done by a dryer, but if the hot air of the dryer is not controlled, the hot air will be blocked, and the leeward side will not be dried, which will prolong the drying time and reduce efficiency. Summary of the Invention
[0005] In view of the problems mentioned in the background art, the technical problem to be solved by the present invention is to provide an intelligent wardrobe and intelligent home system based on environmental perception and data analysis.
[0006] The technical solution adopted by the present invention to solve the above-mentioned technical problems is as follows: Smart wardrobes based on environmental perception and data analysis include: The cabinet has an upper space and a lower space that are connected, and the lower space has at least one door that can be opened and closed on the front side. The chain conveyor has a chain that is driven by a drive motor and forms a circular loop. Numbered racks are placed at intervals on the chain links. The racks are equipped with hangers, and clothes are hung on the hangers according to season and type. The chain's running path is located at the top of the lower space and the top of the upper space, so that the chain conveyor moves in a loop between the upper and lower spaces. The control box, which is embedded in the cabinet, is connected to the drive motor. It controls the drive motor to rotate a certain number of times, thereby precisely adjusting the position of the chain conveyor mechanism to rotate the clothes needed for the next day to the lower space.
[0007] Preferably, the chain consists of two identical chains facing each other. The front and rear sides of the cabinet are equipped with frames, the drive motor is mounted on the frames, and the frames are equipped with sprockets for supporting the chains. Each chain has a sprocket at one of its four corners, and one set of sprockets is connected to the output end of the drive motor via a shaft to drive the two chains to rotate synchronously.
[0008] Preferably, the chains are arranged in an isosceles trapezoidal structure with the top wider than the bottom for use in pole climbing.
[0009] Preferably, the chain link is provided with a clamping sleeve and a cover that is detachably set on the top of the clamping sleeve. After the clamping sleeve and the cover are closed, a circular hole is formed. The end of the frame rod has a circular structure and is movably set in the circular hole.
[0010] Preferably, the clothes hanger includes a hanging rod rotatably mounted on a frame rod, a first frame rotatably mounted on the hanging rod via an upper mounting ring, and a second frame rotatably mounted on the hanging rod via a lower mounting ring. Both the first and second frames have two hanging corners, and the hanging corners of the first and second frames are vertically mirrored to form an X-shaped structure. The top of the lower mounting ring is provided with a slot, and the bottom of the upper mounting ring is provided with an insert block. The insert block extends into the slot to limit the rotation angle of the first and second frames. The first and second frames are provided with tension springs.
[0011] Preferably, the cabinet has partitions at the bottom and top. The bottom partition has an air inlet at the bottom and several drying air vents at the top. The top partition has several exhaust vents at the bottom that correspond to the drying air vents, and the top partition has an air outlet at the top. The number and spacing of the drying seals correspond to the number of clothes hangers.
[0012] As a preferred option, temperature and humidity sensors are installed in multiple locations inside the wardrobe, and these sensors are all connected to the control box to provide feedback on the temperature and humidity inside the wardrobe.
[0013] Preferably, the door is sealed to the cabinet when it is closed, and a magnetic attraction structure and a Hall sensor are provided between the two. The Hall sensor is connected to the control box, and the control box has a light installed on the cabinet through a power line. When the door is opened, the change in the magnetic field of the magnetic attraction structure is sensed by the Hall sensor and fed back to the control box to control the light to turn on.
[0014] A smart home system includes a cloud server, a router, terminal execution devices, and terminal control devices; the terminal control devices are used to send control commands, which are sent to the router via the cloud server or a local area network, and the router forwards the commands to the corresponding terminal execution devices; wherein, the terminal execution devices include the smart wardrobe based on environmental perception and data analysis as described above, and the control box of the smart wardrobe is equipped with a touch control screen for local operation.
[0015] Preferably, it also includes a central gateway and a slave gateway, with the terminal execution device communicating with the central gateway via Bluetooth through the slave gateway.
[0016] Compared with existing technologies, this invention has the following advantages: This application achieves clothing circulation and repositioning through the classification and placement of clothing and the construction of a chain conveyor structure, making it easy to find and allowing clothing to be hung to avoid wrinkles; in addition, based on the circulation conveyor, hot air is used to dry the clothing, and the position is adjusted using the conveyor structure during the drying process, and the top of the clothing is opened using hangers, thereby increasing the effective area of the hot air and improving drying efficiency; finally, the installation of sensors and a control box in the wardrobe increases the wardrobe's intelligence level, and also provides a solution for integrating the wardrobe into a smart home system, which is conducive to promoting the intelligence of all home devices. Attached Figure Description
[0017] The present invention will be further described in detail below with reference to the accompanying drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are drawn only for the purpose of explaining the preferred embodiments and therefore should not be regarded as a limitation on the scope of the present invention. In addition, unless specifically indicated, the drawings are only schematic representations of the composition or structure of the described objects and may contain exaggerated displays, and the drawings are not necessarily drawn to scale.
[0018] Figure 1 This is a side view of this application; Figure 2 This is a perspective view of the present application; Figure 3 This is the front view of the application (with the door open and closed removed); Figure 4 A three-dimensional view of the support pole; Figure 5 A 3D diagram of a clothes hanger; Figure 6An exploded view of the clothes hanger; Figure 7 for Figure 4 Enlarged view of point A in the middle; Figure 8 This is a block diagram illustrating the control principle of a smart home system. In the diagram: 10. Cabinet body; 101. Shelf; 100. Conical cover; 102. Air inlet; 103. Door; 104. Exhaust vent; 105. Frame; 01. Touch control screen; 201. Chain; 2011. Chain link; 20111. Clamping sleeve; 202. Sprocket; 30. Clothes hanger; 300. Hanging rod; 301. First frame; 3011. Upper mounting ring; 30111. Insert block; 302. Second frame; 3021. Lower mounting ring; 30211. Groove; 303. Third frame; 304. Tension spring; 40. Frame rod; 401. Circular structure. Detailed Implementation
[0019] Preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are merely descriptive and exemplary and should not be construed as limiting the scope of protection of the present invention.
[0020] It should be noted that similar labels in the following figures indicate similar items; therefore, once an item is defined in one figure, it may not be further defined and explained in subsequent figures. Example
[0021] This embodiment mainly describes the title of the smart wardrobe and smart home system based on environmental perception and data analysis, as follows: Smart wardrobes based on environmental perception and data analysis, such as Figure 1-2 As shown, it includes: The cabinet 10 has a connected upper space and a lower space. At least one switch door 103 is provided on the front side of the lower space. The switch door 103 is a structural hinge structure externally mounted on the cabinet 10. The external structure can fit against the edge of the door hole and can be provided with an elastic and raised sealing ring at the edge of the door hole or the inner side wall of the switch to form an annular seal. Alternatively, the switch door 103 can also be configured as a telescopic structure. When the telescopic structure is telescopic, it works with a silicone ring to achieve a seal. However, since the addition of a sealing structure to the telescopic structure increases friction, the sliding is hindered during use, and wear is detrimental to the drying function in this application, it is only disclosed here. The chain conveyor mechanism has a chain 201 that is driven by a drive motor and forms a circular loop. Since the chain 201 is used inside the wardrobe, both the chain 201 and the sprocket 202 are made of plastic. Numbered racks 40 are placed at intervals on the chain links 2011 of the chain 201. The numbering is mainly used to classify and store the clothes and make them easy to find. The racks 40 are equipped with hangers 30, and the hangers 30 are used to hang clothes according to season and type. The running line of the chain 201 is located at the top of the lower space and the top of the upper space, so that the chain conveyor mechanism circulates between the upper space and the lower space. During installation, the frame 105 and the chain 201 are set as a front-to-back structure to cover the chain 201 and improve the aesthetics. The control box, embedded in the cabinet 10, is connected to the drive motor. It precisely adjusts the position of the chain conveyor mechanism by controlling the motor's rotation to move the clothes needed for the next day to the lower storage space. Traditional wardrobes typically have partitions inside the cabinet 10 dividing the interior into upper and lower sections, each with several storage spaces. In such wardrobes, clothes can only be hung on the lower section, while the upper section generally cannot be hung and must be folded. This is because the upper section is tall and inconvenient to access; folded clothes also need to be stacked for easy access, making it extremely inconvenient to use. Furthermore, most clothes will wrinkle after being folded for a long time and need to be ironed before wearing. Therefore, this solution divides the wardrobe space into two interconnected upper and lower sections, and... A chain conveyor mechanism, racks 40, and hangers 30 form a cyclic motion system. During use, clothing is stored according to season and type. For example, in winter, clothing is stored on some racks 40. Sweaters, coats, and underwear are placed on different racks 40, and the arrangement is increased in the front-to-back direction according to thickness. The control box stores the storage information and is operated in conjunction with the touch control screen 01. When removing or storing clothing, the control box controls the cyclic rotation and moves the corresponding rack 40 to the back of the door 103 and stops it, and then the corresponding storage or retrieval action is performed.
[0022] like Figure 3 As shown, there are two identical chains 201 arranged in a front-to-back configuration. Frames 105 are provided on the front and rear sides of the cabinet 10. A drive motor is mounted on the frame 105, and sprockets 202 supporting the chains 201 are also provided on the frame 105. Each chain 201 has a sprocket 202 at each of its four corners. One set of sprockets 202 is connected via a shaft and driven by the output of the drive motor, thus driving the two chains 201 to rotate synchronously. In this design, the frame 105 is used to mount the sprockets 202 and the drive motor, and also to conceal the chains 201 to improve aesthetics.
[0023] like Figure 3As shown, the chain 201 forms an isosceles trapezoidal structure with the top wider than the bottom for the climbing of the support pole 40. Since clothing may pile up during the climbing phase, and the required climbing height between the upper and lower layers is often greater than one meter—a height far exceeding the spacing between the support poles 40—the climbing section needs to be set up with an inclined structure to avoid multiple support poles 40 being distributed vertically and horizontally at the same position. This distribution would cause excessively long piles of clothing, dragging the clothing, hindering operation, or causing clothing to fall off. The inclined design reduces the piled-up portion, mitigating the dragging problem. The cabinet 10 has a connected upper space and a lower space. At least one switch door 103 is provided on the front side of the lower space. The switch door 103 is a structural hinge structure externally mounted on the cabinet 10. The external structure can fit against the edge of the door hole and can be provided with an elastic and raised sealing ring at the edge of the door hole or the inner side wall of the switch to form an annular seal. Alternatively, the switch door 103 can also be configured as a telescopic structure. When the telescopic structure is telescopic, it works with a silicone ring to achieve a seal. However, since the addition of a sealing structure to the telescopic structure increases friction, the sliding is hindered during use, and wear is detrimental to the drying function in this application, it is only disclosed here. The chain conveyor mechanism has a chain 201 that is driven by a drive motor and forms a circular loop. Since the chain 201 is used inside the wardrobe, both the chain 201 and the sprocket 202 are made of plastic. Numbered racks 40 are placed at intervals on the chain links 2011 of the chain 201. The numbering is mainly used to classify and store the clothes and make them easy to find. The racks 40 are equipped with hangers 30, and the hangers 30 are used to hang clothes according to season and type. The running line of the chain 201 is located at the top of the lower space and the top of the upper space, so that the chain conveyor mechanism circulates between the upper space and the lower space. During installation, the frame 105 and the chain 201 are set as a front-to-back structure to cover the chain 201 and improve the aesthetics. The control box, embedded in the cabinet 10, is connected to the drive motor. It precisely adjusts the position of the chain conveyor mechanism by controlling the motor's rotation to move the clothes needed for the next day to the lower storage space. Traditional wardrobes typically have partitions inside the cabinet 10 dividing the interior into upper and lower sections, each with several storage spaces. In such wardrobes, clothes can only be hung on the lower section, while the upper section generally cannot be hung and must be folded. This is because the upper section is tall and inconvenient to access; folded clothes also need to be stacked for easy access, making it extremely inconvenient to use. Furthermore, most clothes will wrinkle after being folded for a long time and need to be ironed before wearing. Therefore, this solution divides the wardrobe space into two interconnected upper and lower sections, and... A chain conveyor mechanism, racks 40, and hangers 30 form a cyclic motion system. During use, clothing is stored according to season and type. For example, in winter, clothing is stored on some racks 40. Sweaters, coats, and underwear are placed on different racks 40, and the arrangement is increased in the front-to-back direction according to thickness. The control box stores the storage information and is operated in conjunction with the touch control screen 01. When removing or storing clothing, the control box controls the cyclic rotation and moves the corresponding rack 40 to the back of the door 103 and stops it, and then the corresponding storage or retrieval action is performed.
[0024] like Figure 3 As shown, there are two identical chains 201 arranged in a front-to-back configuration. Frames 105 are provided on the front and rear sides of the cabinet 10. A drive motor is mounted on the frame 105, and sprockets 202 supporting the chains 201 are also provided on the frame 105. Each chain 201 has a sprocket 202 at each of its four corners. One set of sprockets 202 is connected via a shaft and driven by the output of the drive motor, thus driving the two chains 201 to rotate synchronously. In this design, the frame 105 is used to mount the sprockets 202 and the drive motor, and also to conceal the chains 201 to improve aesthetics.
[0025] like Figure 3 As shown, the chain 201 forms an isosceles trapezoidal structure with the top wider than the bottom for the climbing of the support pole 40. Since clothing may pile up during the climbing phase, and the required climbing height between the upper and lower layers is often greater than one meter—a height far exceeding the spacing between the support poles 40—the climbing section needs to be set up with an inclined structure to avoid multiple support poles 40 being distributed vertically and horizontally at the same position. This distribution would cause excessively long piles of clothing, dragging the clothing, hindering operation, or causing clothing to fall off. The inclined design reduces the piled-up portion, mitigating the dragging problem.
[0026] Figure 7As shown, the chain link 2011 is provided with a clamping sleeve 20111 and a cover detachably disposed on the top of the clamping sleeve 20111 (the cover is not shown in the figure). When the clamping sleeve 20111 and the cover are closed, a circular hole is formed. The end of the support rod 40 is a circular structure 401, and the end of the support rod 40 is movably disposed within the circular hole. Because the chain link 2011 is relatively short, the spacing between adjacent chain links 2011 is also relatively small. However, in actual installation, the spacing of the support rods 40 is generally greater than the spacing of the chain links 2011. This solution sets the support rods 40 as a detachable connection structure, allowing for spacing adjustment during use. Preferably, the clamping sleeve 20111 and the chain link 2011 are configured as a mutually rotating structure, with bearings preferentially used for support between them to reduce wear.
[0027] like Figure 4-6 As shown, the clothes hanger 30 includes a hanging rod 300 rotatably mounted on a frame rod 40, a first frame 301 rotatably mounted on the hanging rod 300 via an upper mounting ring 3011, and a second frame 302 rotatably mounted on the hanging rod 300 via a lower mounting ring 3021. Both the first frame 301 and the second frame 302 have two hanging corners, and the hanging corners of the first frame 301 and the second frame 302 are vertically mirrored to form an X-shaped structure. The lower mounting ring 3021 has a slot 30211 at the top and an insert 30111 at the bottom of the upper mounting ring 3011. The insert 30111 extends into the slot 30211 to limit the rotation angle of the first frame 301 and the second frame 302. The first frame 301 and the second frame 302 are provided with tension springs 304. Since clothes are prone to falling off during exercise, this solution sets up two frames on the clothes hanger 30 and uses four corners to hang clothes. In addition, a tension spring 304 is used to pull the two frames apart to form support.
[0028] like Figure 1 and 2As shown, the cabinet 10 has a partition 101 at the bottom and top. The partition 101 is a conical cover 100. The bottom partition 101 has an air inlet 102 at the bottom and several drying air vents at the top. The bottom of the top partition 101 has several exhaust vents 104 corresponding to the drying air vents at the bottom. The top partition 101 has an air outlet at the top. The number and spacing of the drying seals correspond to the number of clothes hangers 30. This solution is designed for use in damp situations or after washing clothes. There are two usage methods. The first method involves running the entire chain conveyor mechanism and then blowing hot air into the drying equipment through the air inlet 102. The second method consists of two stages. The first stage is the same as the first method; after the humidity decreases, the chain conveyor mechanism is stopped and positioned so that the frame rod 40 is vertically aligned with the drying air outlet, allowing hot air to pass through the inside of the clothes. The first method is suitable for low-humidity scenarios, such as when clothes are damp, while the second method is suitable for high-humidity scenarios, such as when clothes need to be dried after washing. Because the hanger 30 uses four-corner support and is equipped with tension springs 304, both methods will make the clothes lighter during use, causing the tension springs 304 to open the two frames of the hanger 30, thus opening the clothes significantly. This opening creates gaps inside the clothes to allow hot air to pass through, greatly improving drying efficiency.
[0029] Preferably, multiple temperature and humidity sensors are installed inside the wardrobe. These sensors are connected to the control box to provide feedback on the temperature and humidity inside the wardrobe. The temperature and humidity sensors are used in conjunction with the drying function, providing humidity feedback to determine whether drying is complete and assisting in control, while the temperature monitoring plays a protective role, preventing damage to clothing from excessively high temperatures.
[0030] Preferably, when the door 103 is closed, it is sealed to the cabinet 10, and a magnetic attraction structure and a Hall sensor are provided between them. The Hall sensor is connected to the control box, and the control box has a light installed on the cabinet 10 via a power cord. When the door 103 is opened, the change in the magnetic field of the magnetic attraction structure is sensed by the Hall sensor and fed back to the control box to control the light to turn on. The magnetic attraction structure is a strong magnetic structure used to hold the door firmly. In use, it can be used with a door lock to ensure that the door 103 is in a sealed state during drying. In addition, the magnetic attraction structure provides a changing magnetic field signal for the Hall sensor to sense, and finally converts it into a signal for opening or closing the door 103 to automatically control the light.
[0031] like Figure 7As shown, the chain link 2011 is provided with a clamping sleeve 20111 and a cover detachably disposed on the top of the clamping sleeve 20111 (the cover is not shown in the figure). When the clamping sleeve 20111 and the cover are closed, a circular hole is formed. The end of the support rod 40 is a circular structure 401, and the end of the support rod 40 is movably disposed within the circular hole. Because the chain link 2011 is relatively short, the spacing between adjacent chain links 2011 is also relatively small. However, in actual installation, the spacing of the support rods 40 is generally greater than the spacing of the chain links 2011. This solution sets the support rods 40 as a detachable connection structure, allowing for spacing adjustment during use. Preferably, the clamping sleeve 20111 and the chain link 2011 are configured as a mutually rotating structure, with bearings preferentially used for support between them to reduce wear.
[0032] like Figure 4-6 As shown, the clothes hanger 30 includes a hanging rod 300 rotatably mounted on a frame rod 40, a first frame 301 rotatably mounted on the hanging rod 300 via an upper mounting ring 3011, and a second frame 302 rotatably mounted on the hanging rod 300 via a lower mounting ring 3021. Both the first frame 301 and the second frame 302 have two hanging corners, and the hanging corners of the first frame 301 and the second frame 302 are vertically mirrored to form an X-shaped structure. The lower mounting ring 3021 has a slot 30211 at the top and an insert 30111 at the bottom of the upper mounting ring 3011. The insert 30111 extends into the slot 30211 to limit the rotation angle of the first frame 301 and the second frame 302. The first frame 301 and the second frame 302 are provided with tension springs 304. Since clothes are prone to falling off during exercise, this solution sets up two frames on the clothes hanger 30 and uses four corners to hang clothes. In addition, a tension spring 304 is used to pull the two frames apart to form support.
[0033] like Figure 1 and 2As shown, the cabinet 10 has a partition 101 at the bottom and top. The partition 101 is a conical cover 100. The bottom partition 101 has an air inlet 102 at the bottom and several drying air vents at the top. The bottom of the top partition 101 has several exhaust vents 104 corresponding to the drying air vents at the bottom. The top partition 101 has an air outlet at the top. The number and spacing of the drying seals correspond to the number of clothes hangers 30. This solution is designed for use in damp situations or after washing clothes. There are two usage methods. The first method involves running the entire chain conveyor mechanism and then blowing hot air into the drying equipment through the air inlet 102. The second method consists of two stages. The first stage is the same as the first method; after the humidity decreases, the chain conveyor mechanism is stopped and positioned so that the frame rod 40 is vertically aligned with the drying air outlet, allowing hot air to pass through the inside of the clothes. The first method is suitable for low-humidity scenarios, such as when clothes are damp, while the second method is suitable for high-humidity scenarios, such as when clothes need to be dried after washing. Because the hanger 30 uses four-corner support and is equipped with tension springs 304, both methods will make the clothes lighter during use, causing the tension springs 304 to open the two frames of the hanger 30, thus opening the clothes significantly. This opening creates gaps inside the clothes to allow hot air to pass through, greatly improving drying efficiency.
[0034] Preferably, multiple temperature and humidity sensors are installed inside the wardrobe. These sensors are connected to the control box to provide feedback on the temperature and humidity inside the wardrobe. The temperature and humidity sensors are used in conjunction with the drying function, providing humidity feedback to determine whether drying is complete and assisting in control, while the temperature monitoring plays a protective role, preventing damage to clothing from excessively high temperatures.
[0035] Preferably, when the door 103 is closed, it is sealed to the cabinet 10, and a magnetic attraction structure and a Hall sensor are provided between them. The Hall sensor is connected to the control box, and the control box has a light installed on the cabinet 10 via a power cord. When the door 103 is opened, the change in the magnetic field of the magnetic attraction structure is sensed by the Hall sensor and fed back to the control box to control the light to turn on. The magnetic attraction structure is a strong magnetic structure used to hold the door firmly. In use, it can be used with a door lock to ensure that the door 103 is in a sealed state during drying. In addition, the magnetic attraction structure provides a changing magnetic field signal for the Hall sensor to sense, and finally converts it into a signal for opening or closing the door 103 to automatically control the light.
[0036] In the description of this embodiment, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the invention product is habitually placed during use. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the present invention.
[0037] The following solution integrates the above wardrobe into the smart home system: A smart home system includes a cloud server, a router, terminal execution devices, and terminal control devices; the terminal control devices are used to send control instructions, and the control instructions are sent to the router via the cloud server or a local area network, and the router forwards the instructions to the corresponding terminal execution devices; among them, the terminal execution devices include the intelligent wardrobe based on environmental perception and data analysis as claimed above, and a touch control screen for local operation is provided on the control box of the intelligent wardrobe. Among them, a voice module can be built into the control box for voice control. This solution mainly provides three control modes. The first is local manual control - directly operate on the touch control screen of the intelligent wardrobe; the second is remote network control - App instruction → Internet → cloud server → home router → intelligent wardrobe; the third is scenario automatic control - automatically trigger instructions according to time, environmental data (such as temperature and humidity), or user-set scenarios.
[0038] Preferably, it further includes a central gateway and a slave gateway, and the terminal execution devices are connected to the central gateway through Bluetooth communication via the slave gateway. The settings of the central gateway and the slave gateway enable devices within the same local area network to communicate and control each other, mainly for the linkage of the entire home system, such as turning on the living room lights after the anti-theft door is opened.
Claims
1. A smart wardrobe based on environmental perception and data analysis. Its features are, include: The cabinet has an upper space and a lower space that are connected, and the lower space has at least one door that can be opened and closed on the front side. The chain conveyor has a chain that is driven by a drive motor and forms a circular loop. Numbered racks are placed at intervals on the chain links. The racks are equipped with hangers, and clothes are hung on the hangers according to season and type. The chain's running path is located at the top of the lower space and the top of the upper space, so that the chain conveyor moves in a loop between the upper and lower spaces. The control box, which is embedded in the cabinet, is connected to the drive motor. It controls the drive motor to rotate a certain number of times, thereby precisely adjusting the position of the chain conveyor mechanism to rotate the clothes needed for the next day to the lower space.
2. The intelligent wardrobe based on environmental perception and data analysis according to claim 1, characterized in that, The chain consists of two identical chains that face each other. The front and rear sides of the cabinet are equipped with frames. The drive motor is mounted on the frames, and the frames are equipped with sprockets to support the chains. Each chain has a sprocket at one of its four corners. One set of sprockets is connected to the output of the drive motor via a shaft, thereby driving the two chains to rotate synchronously.
3. The intelligent wardrobe based on environmental perception and data analysis according to claim 2, characterized in that, The chains are arranged in an isosceles trapezoidal structure with the top wider than the bottom for use in pole climbing.
4. The intelligent wardrobe based on environmental perception and data analysis according to claim 1, characterized in that, The chain link is equipped with a clamping sleeve and a detachable cover on the top of the clamping sleeve. When the clamping sleeve and the cover are closed, they form a circular hole. The end of the frame rod has a circular structure and is movably installed in the circular hole.
5. The intelligent wardrobe based on environmental perception and data analysis according to claim 1, characterized in that, The clothes hanger includes a hanging rod rotatably mounted on a frame rod, a first frame rotatably mounted on the hanging rod via an upper mounting ring, and a second frame rotatably mounted on the hanging rod via a lower mounting ring. Both the first and second frames have two hanging corners, and the hanging corners of the first and second frames are vertically mirror images of each other in an X-shape. The top of the lower mounting ring is provided with a slot, and the bottom of the upper mounting ring is provided with an insert block. The insert block extends into the slot to limit the rotation angle of the first and second frames. The first and second frames are provided with tension springs.
6. The intelligent wardrobe based on environmental perception and data analysis according to claim 5, characterized in that, The cabinet has compartments at the bottom and top. The bottom compartment has an air inlet at the bottom and several drying vents at the top. The top compartment has several exhaust vents at the bottom that correspond to the drying vents, and an air outlet at the top. The number and spacing of the drying vents correspond to the number and spacing of the clothes hangers.
7. The intelligent wardrobe based on environmental perception and data analysis according to claim 6, characterized in that, Temperature and humidity sensors are installed in multiple locations inside the wardrobe, and these sensors are connected to the control box to provide feedback on the temperature and humidity inside the wardrobe.
8. The intelligent wardrobe based on environmental perception and data analysis according to claim 6, characterized in that, When the door is closed, it seals with the cabinet and is connected to a magnetic structure and a Hall sensor. The Hall sensor is connected to the control box, and the control box has a light installed on the cabinet via a power cord. When the door is opened, the change in the magnetic field of the magnetic structure is sensed by the Hall sensor and fed back to the control box to turn on the light.
9. A smart home system, characterized in that, It includes a cloud server, a router, a terminal execution device, and a terminal control device; the terminal control device is used to send control commands, which are sent to the router via the cloud server or a local area network, and the router forwards the commands to the corresponding terminal execution device; wherein, the terminal execution device includes the smart wardrobe based on environmental perception and data analysis as described in any one of claims 1-8, and the control box of the smart wardrobe is equipped with a touch control screen for local operation.
10. The smart home system according to claim 9, characterized in that, It also includes a central gateway and slave gateways, with the terminal execution device communicating with the central gateway via Bluetooth through the slave gateway.
Citation Information
Patent Citations
A smart wardrobe with automatic drying function
CN108783959B