Intelligent wardrobe capable of automatically recommending clothes based on weather information

By integrating weather information collection, interaction, recognition, and air treatment modules into the smart wardrobe, combined with self-service and anti-interference components, the problem of existing wardrobes being unable to make intelligent recommendations has been solved, enabling personalized clothing suggestions and efficient clothing management.

CN121415501APending Publication Date: 2026-01-27BEIJING JINJI ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511473561.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-01-27

AI Technical Summary

Technical Problem

Existing smart wardrobes cannot provide intelligent recommendations based on real-time weather information, requiring users to make their own judgments when choosing outfits, which reduces ease of use.

Method used

The smart wardrobe is equipped with a weather information collection module, a smart interaction module, an air treatment module, and a smart recognition module. It combines mobile terminals to generate personalized clothing recommendations and optimizes the clothing retrieval and placement operation through self-retrieval and anti-interference components.

Benefits of technology

It enables personalized clothing suggestions based on real-time weather data, improves the comfort and stability of the clothing storage environment, increases the efficiency of finding and retrieving clothing, and enhances the intelligence and ease of use of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent wardrobe capable of automatically recommending clothes based on weather information, and relates to the technical field of wardrobes, the intelligent wardrobe comprises an operation fixed cabinet, the operation fixed cabinet is internally provided with a weather information acquisition module, and the weather information acquisition module is used for acquiring real-time weather data and transmitting the real-time weather data to a cooperation controller; the outer surface of the operation fixed cabinet is provided with an intelligent interaction module, the intelligent interaction module comprises a voice recognition unit and a display screen or an intelligent mirror surface, and the intelligent interaction module is used for displaying weather information, providing wearing and building recommendation and achieving user interaction. The dressing recommendation meeting the environment of the day is provided for the user, the personalized dressing recommendation is generated through linkage with the mobile terminal in combination with the weather information and the schedule of the user, the dressing requirements of the user in different occasions can be met, and the user experience is improved. Therefore, the intelligent wardrobe has higher practicability and intelligence level in the aspects of clothes storage, management and recommendation.
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Description

Technical Field

[0001] This invention relates to the field of wardrobe technology, specifically to an intelligent wardrobe that automatically recommends clothing based on weather information. Background Technology

[0002] A wardrobe is a cabinet for storing clothes, usually made of stainless steel, solid wood, tempered glass, and hardware accessories. A smart wardrobe is a furniture system that uses technologies such as the Internet of Things, artificial intelligence, and RFID to achieve digital management, intelligent matching, convenient care, and efficient use of clothes.

[0003] However, most existing smart wardrobes only have the functions of storing clothes and mechanically taking them out. Although they improve storage efficiency to some extent, they still have many shortcomings. For example, they cannot combine real-time weather information to make intelligent recommendations. Users still need to make their own judgments when choosing what to wear, which reduces the convenience of use. Summary of the Invention

[0004] This invention provides a smart wardrobe that automatically recommends clothing based on weather information. It can effectively solve the problem mentioned in the background art that most existing smart wardrobes only have the functions of storing and mechanically taking out and putting away clothes. Although they improve storage efficiency to a certain extent, they still have many shortcomings. For example, they cannot combine real-time weather information for intelligent recommendations. Users still need to make their own judgments when choosing what to wear, which reduces the convenience of use.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an intelligent wardrobe that automatically recommends clothing based on weather information, including an operation fixed cabinet, wherein a weather information acquisition module is provided inside the operation fixed cabinet, and the weather information acquisition module is used to acquire real-time weather data and transmit it to a cooperating controller; The outer surface of the fixed operating cabinet is equipped with an intelligent interaction module, including a voice recognition unit and a display screen or smart mirror, for displaying weather information, providing outfit recommendations, and enabling user interaction; The operating cabinet is equipped with an air handling module, including an ultraviolet germicidal lamp, a constant temperature and humidity device, and an air purification device, which are used to dry, sterilize, and regulate the environment of the clothes inside the cabinet. The operating cabinet is further equipped with an intelligent identification module, including an RFID reader or a QR code identification device, for automatic identification and management of clothing. The fixed control cabinet is also connected to a mobile terminal, which receives weather information and user schedule information, and works with the controller to generate clothing recommendation schemes.

[0006] According to the above technical solution, the weather information acquisition module includes a temperature sensor, a humidity sensor, an air quality sensor, and a network communication unit. The network communication unit is used to receive weather forecast data from the meteorological platform and compare it with the real-time data collected by the sensors to improve the accuracy of the recommendations. The air treatment module further includes a fragrance release device and a dehumidifier box. The fragrance release device is used to release fragrance into the cabinet during the air purification process, and the dehumidifier box is used to assist in dehumidification when the humidity is too high, so as to improve the comfort and durability of the clothing storage environment.

[0007] According to the above technical solution, the mobile terminal is a smartphone or tablet computer. The mobile terminal is equipped with a user schedule management module. The user schedule management module is linked with the weather information collection module to generate personalized clothing recommendations based on the user's travel occasions and display them through the intelligent interaction module.

[0008] According to the above technical solution, a self-retrieval component is provided on the side of the operation cabinet; The self-service component includes a segmentation restriction plate; A dividing limit plate is installed in the middle of the inner side of the operating cabinet. A dividing operation frame is welded to one end of the inner side of the operating cabinet. Several top support plates are equidistantly clamped to one end of the dividing operation frame. One end of the operating cabinet is snapped with an electric sliding rail, and one end of the electric sliding rail is equipped with an electric lifting frame via a rail seat. A take-up and discharge machine is installed on one side of the top of the lifting frame via a motor mount, and the output shaft of the take-up and discharge machine is engaged with a take-up and discharge screw. The pick-and-place screw is mounted on a pick-and-place operation frame via a screw seat, and clamping electric slide rails are equidistantly embedded on the side end of the pick-and-place operation frame. One end of the clamping electric slide rail is equipped with a lifting fixed sleeve via a slide rail seat, and the other end of the lifting fixed sleeve is equipped with an unfolding motor via a motor seat. An unfolding support plate is installed on the output shaft of the unfolding motor.

[0009] According to the above technical solution, the side end of the bonding lifting frame is slidably attached to the side end of the dividing operation frame and the side end of the operation fixing cabinet, the picking and placing operation frame is slidably installed on the inner side of the bonding lifting frame, and there are two unfolding support plates.

[0010] According to the above technical solution, a power-hanging slide rail is installed at one end of the operation fixed cabinet, and a power-hanging processing block is installed at one end of the power-hanging slide rail via a slide rail seat. One end of the hanging processing block is symmetrically equipped with a counter-pressure electric push rod, and one end of each of the two counter-pressure electric push rods and one end of the dividing and limiting plate are equipped with a multi-slot support hanging rod. The top of the inner side of the fixed operating cabinet is fitted with a reciprocating electric slide rail, and the bottom of the reciprocating electric slide rail is equipped with an upward push motor through a slide rail seat. The output shaft of the push motor is engaged with a swing operation block, and a correction electric push rod is installed at one end of the swing operation block. One end of the correction electric actuator is equipped with an upward push clamping frame, and several fixed clamping electric slide rails are equidistantly embedded on the inner side of the upward push clamping frame. One end of the fixed clamping electric slide rail is equipped with a fixed clamping elastic block through a slide rail seat.

[0011] According to the above technical solution, the unfolding support plate is slidably installed inside the pick-and-place operation frame, the multi-slot support hanging rod is placed inside the operation fixed cabinet, and the fixed clamp elastic block is slidably installed inside the upward push clamp frame.

[0012] According to the above technical solution, the swing operation block and the upward push clamp are both placed inside the operation fixed cabinet; The input ends of the electric sliding rail, the electric discharge machine, the clamping electric sliding rail, the unfolding motor, the hanging electric sliding rail, the pressure electric push rod, the reciprocating electric sliding rail, the upward push motor, the correction electric push rod, and the fixed clamping electric sliding rail are all electrically connected to the output end of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

[0013] According to the above technical solution, an anti-interference component is provided on the side of the operation cabinet; The anti-interference component includes a load-bearing motor; Several load-bearing motors are installed at equal intervals through motor mounts on one side of the inner side of the operating cabinet, and the output shaft of the load-bearing motor is clamped to a fixed load-bearing plate; A drying mesh cage is inserted and installed at the bottom of the inner side of the operating cabinet, and a guide fan is embedded at one end of the operating cabinet. Several interlocking fixing rods are welded at equal intervals to the top of the inner side of the operating cabinet, and a protective net cage is sleeved on the side end of the interlocking fixing rod. The top of the fixed operating cabinet is provided with an inlet and outlet fitting hole, and protective mesh plates are attached to the top of the fixed operating cabinet and one end of the guide fan. A fixed clamping frame is installed at one end of the operating cabinet, and an opening and closing electric slide rail is installed at the top of the fixed clamping frame. An isolation and limiting plate is installed at one end of the electric sliding rail via a rail seat. The fixed locking frame and the operating fixed cabinet are symmetrically hinged with opening and closing fixed doors at one end. A matching controller is embedded at the side end of the isolation and limiting plate.

[0014] According to the above technical solution, the fixed bearing plate is rotatably installed inside the operating fixed cabinet, and the isolation limiting plate is slidably fitted with the fixed clamping frame; The input terminals of the load-bearing motor, the guide fan, and the opening / closing electric slide rail are all electrically connected to the output terminal of the controller. The input terminal of the matching controller is electrically connected to the output terminal of the external power supply.

[0015] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a scientific and reasonable structure and is safe and convenient to use. 1. Equipped with a self-retrieving component, the device uses a reciprocating electric slide rail, an upward push motor, and a corrective electric push rod to drive the swing operation and upward movement of the clamping frame. The retrieval position is adjusted according to the hanging position of the clothing, and the downward insertion and fine-tuning ensure accurate retrieval and placement. Combined with a fixed clamping electric slide rail and a fixed clamping elastic block, the clothing is secured, further reducing errors during retrieval. The retrieval and placement operation frame is moved by the contact electric slide rail, contact lifting frame, retrieval motor, and retrieval screw. The clamping electric slide rail moves the lifting fixed clamping sleeve, and the unfolding motor rotates the unfolding support plate. The device features dynamic repositioning, rotational unfolding, and lifting alignment. The clamping components are adjusted according to the thickness and position of the clothing to ensure accurate insertion and removal. This allows for rapid adjustment of component positions based on the location of the clothing, reducing the risk of over-removing or incorrectly removing clothing due to excessive stacking or hanging density. Furthermore, the multi-stage synchronous movement enhances operational efficiency, effectively improving both the speed and accuracy of clothing removal, significantly improving the user experience and ensuring efficient clothing handling.

[0016] 2. Equipped with an anti-interference component, the operating cabinet is opened by an electric sliding rail that drives the isolation and restriction plate. Combined with the fixed locking frame and the operating door, the cabinet is sealed and isolated. This allows for adjustments to the overall operation when retrieving and storing clothing, improving ease of use. A guide fan, protective mesh plate, inlet / outlet ports, protective mesh cage, and drying mesh cage promote air circulation between the inside and outside of the cabinet, achieving drying and deodorization of clothing. Furthermore, the inlet / outlet adsorption and detachment system prevents odors and humid air from entering the indoor environment, enhancing the stability of the clothing storage environment inside the cabinet and preventing indoor pollution. This ensures overall stability and reduces interference between the internal and external environments.

[0017] In summary, by combining the self-loading and anti-interference components, and utilizing multi-position lifting and rotation, accurate clamping operations are achieved. Furthermore, the unfolding support platform enables the isolated loading and unloading of different garments, enhancing the independence of operations on various garments and preventing mutual interference during loading and unloading, which could lead to wrinkles or arbitrary stacking of garments. The internal and external isolation and enclosure processes reduce the mutual influence of the internal and external environments, ensuring the effectiveness of the equipment in maintaining garments and the stability of loading and unloading operations. Furthermore, by incorporating a weather information collection module within the smart wardrobe, it can acquire and integrate external weather data in real time, providing users with clothing recommendations tailored to the day's environment, significantly enhancing its intelligence. The intelligent interaction module allows users to intuitively operate and receive personalized recommendations via voice recognition and a smart mirror, improving ease of use and user experience. The air treatment module maintains constant temperature and humidity, performs ultraviolet sterilization, purifies the air, and removes odors within the wardrobe, ensuring the dryness, cleanliness, and long-lasting storage of clothing. The intelligent identification module utilizes RFID or QR codes for automatic identification and management of clothing, greatly improving the efficiency of finding and retrieving garments. By linking with mobile terminals and combining weather information with the user's schedule to generate personalized clothing recommendations, it can meet the user's clothing needs for different occasions. Therefore, the smart wardrobe of this invention possesses higher practicality and intelligence in terms of clothing storage, management, and recommendations. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof.

[0019] In the attached diagram: Figure 1 This is a schematic diagram of the system structure of the present invention; Figure 2 This is a three-dimensional structural schematic diagram of the present invention; Figure 3 This is a schematic diagram of the self-retrieving component of the present invention; Figure 4 This is a schematic diagram of the installation structure of the electro-optical slide rail of the present invention; Figure 5 This is a schematic diagram of the installation structure of the bonding lifting frame of the present invention; Figure 6 This is a schematic diagram of the installation structure of the electric sliding rail of the present invention; Figure 7 This is a schematic diagram of the installation structure of the reciprocating electric slide rail of the present invention; Figure 8 This is a schematic diagram of the anti-interlocking component of the present invention; Marked in the diagram: 1. Fixed control cabinet; 2. Self-retrieving components; 201. Dividing restriction plate; 202. Dividing operation frame; 203. Placing top support plate; 204. Alignment electric slide rail; 205. Alignment lifting frame; 206. Discharge motor; 207. Discharge lead screw; 208. Discharge operation frame; 209. Clamping electric slide rail; 210. Lifting fixed clamp sleeve; 211. Unfolding motor; 212. Unfolding support plate; 213. Hanging electric slide rail; 214. Hanging processing block; 215. Pressure electric push rod; 216. Multi-slot support hanging rod; 217. Reciprocating electric slide rail; 218. Upward push motor; 219. Swinging operation block; 220. Correction electric push rod; 221. Upward push clamping frame; 222. Fixed clamping electric slide rail; 223. Fixed clamping elastic block; 3. Anti-interlocking components; 301. Bearing motor; 302. Fixed bearing plate; 303. Drying mesh cage; 304. Guide fan; 305. Insertion fixing rod; 306. Protective mesh cage; 307. Inlet and outlet mating holes; 308. Protective mesh plate; 309. Fixed clamping frame; 310. Opening and closing electric slide rail; 311. Isolation and restriction plate; 312. Opening and closing fixed door; 313. Matching controller. Detailed Implementation

[0020] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0021] Example: Figure 1-8 As shown, the present invention provides a technical solution, an intelligent wardrobe that automatically recommends clothing based on weather information, including an operation fixed cabinet 1, in which a weather information acquisition module is installed, which is used to acquire real-time weather data and transmit it to the cooperating controller 313; The outer surface of the fixed cabinet 1 is equipped with an intelligent interaction module, including a voice recognition unit and a display screen or smart mirror, which is used to display weather information, provide outfit recommendations and enable user interaction; An air handling module is installed inside the fixed cabinet 1, including an ultraviolet germicidal lamp, a constant temperature and humidity device and an air purification device, which is used to dry, sterilize and regulate the environment of the clothes inside the cabinet. The operating cabinet 1 is further equipped with an intelligent identification module, including an RFID reader or a QR code identification device, for automatic identification and management of clothing; The fixed cabinet 1 also interacts with a mobile terminal, which is used to receive weather information and user schedule information, and in conjunction with the controller 313, generates clothing recommendation schemes.

[0022] According to the above technical solution, the weather information acquisition module 401 includes a temperature sensor, a humidity sensor, an air quality sensor, and a network communication unit. The network communication unit is used to receive weather forecast data from the meteorological platform and compare it with the real-time data collected by the sensors to improve the accuracy of the recommendations. The air handling module further includes a fragrance release device and a dehumidifier box. The fragrance release device is used to release fragrance into the cabinet during the air purification process, and the dehumidifier box is used to assist in dehumidification when the humidity is too high, so as to improve the comfort and durability of the clothing storage environment.

[0023] According to the above technical solution, the mobile terminal is a smartphone or tablet computer. The mobile terminal has a user schedule management module, which is linked with the weather information collection module to generate personalized clothing recommendations based on the user's travel occasions and display them through the intelligent interaction module.

[0024] A self-service component 2 is installed on the side of the fixed cabinet 1; The self-retrieving component 2 includes a dividing limiting plate 201, a dividing operation frame 202, a placement top support plate 203, an aligning electric slide rail 204, an aligning lifting frame 205, a retrieval and discharge motor 206, a retrieval and discharge lead screw 207, a retrieval and discharge operation frame 208, a clamping electric slide rail 209, a lifting fixed clamp sleeve 210, an unfolding motor 211, an unfolding support plate 212, a hanging electric slide rail 213, a hanging processing block 214, a pressure electric push rod 215, a multi-slot support hanging rod 216, a reciprocating electric slide rail 217, an upward push motor 218, a swing operation block 219, a correction electric push rod 220, an upward push clamping frame 221, a fixed clamping electric slide rail 222, and a fixed clamping elastic block 223. A partition limiting plate 201 is installed in the middle of the inner side of the operation cabinet 1. A partition operation frame 202 is welded to one end of the inner side of the operation cabinet 1. Several top support plates 203 are equidistantly attached to one end of the partition operation frame 202. One end of the fixed cabinet 1 is snapped with an electric sliding rail 204, and the other end of the electric sliding rail 204 is equipped with an electric lifting frame 205 via a rail seat. A take-off and discharge machine 206 is installed on one side of the top of the lifting frame 205 via a motor mount, and the output shaft of the take-off and discharge machine 206 is connected to a take-off and discharge screw 207. The side end of the take-up and put-down screw 207 is equipped with a take-up and put-down operation frame 208 through the screw seat. The side end of the contact lifting frame 205 slides and fits into the side end of the dividing operation frame 202 and the side end of the operation fixed cabinet 1. The take-up and put-down operation frame 208 is slidably installed inside the contact lifting frame 205 to achieve stable restriction when the whole moves the clothes, and ensure the stability of support positioning and sliding limit. The side end of the take-up and put-down operation frame 208 is equidistantly embedded with clamping electric slide rails 209. One end of the clamping electric slide rail 209 is equipped with a lifting fixed sleeve 210 through the slide rail seat, and the other end of the lifting fixed sleeve 210 is equipped with an unfolding motor 211 through the motor seat. The output shaft of the unfolding motor 211 is equipped with an unfolding support plate 212. There are two unfolding support plates 212. The unfolding support plates 212 are slidably installed on the inside of the pick-and-place operation frame 208 to achieve steady pressing and stable loading and unloading. One end of the fixed control cabinet 1 is equipped with a power-hanging slide rail 213, and the other end of the power-hanging slide rail 213 is equipped with a power-hanging processing block 214 via a slide rail seat. The hanging processing block 214 is symmetrically equipped with two opposing electric push rods 215 at one end. One end of each of the two opposing electric push rods 215 and one end of the dividing and limiting plate 201 are equipped with a multi-slot support hanging rod 216. The multi-slot support hanging rod 216 is placed inside the operating fixed cabinet 1 to achieve stable support for the placement of mixed clothes. The top of the inner side of the fixed cabinet 1 is fitted with a reciprocating electric slide rail 217, and the bottom of the reciprocating electric slide rail 217 is fitted with an upward push motor 218 through a slide rail seat. The output shaft of the push motor 218 is connected to a swing operation block 219, and a correction electric push rod 220 is installed at one end of the swing operation block 219. One end of the corrected electric push rod 220 is equipped with an upward push clamping bracket 221. Several fixed clamping electric slide rails 222 are equidistantly embedded in the inner side of the upward push clamping bracket 221. One end of the fixed clamping electric slide rail 222 is equipped with a fixed clamping elastic block 223 through the slide rail seat. The fixed clamping elastic block 223 is slidably installed in the inner side of the upward push clamping bracket 221. The swing operation block 219 and the upward push clamping bracket 221 are both placed inside the operation fixed cabinet 1 to realize the swing support and quick and stable operation of picking up and putting down clothes. To ensure stable operation of the equipment, the input terminals of the electric sliding rail 204, the electric discharge motor 206, the clamping electric sliding rail 209, the unfolding motor 211, the hanging electric sliding rail 213, the counter-pinch electric push rod 215, the reciprocating electric sliding rail 217, the upward push motor 218, the correction electric push rod 220, and the fixed clamping electric sliding rail 222 are all electrically connected to the output terminal of the external controller. The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

[0025] An anti-interference component 3 is installed on the side of the fixed control cabinet 1; The anti-interlocking component 3 includes a load-bearing motor 301, a fixed load-bearing plate 302, a drying mesh cage 303, a guide fan 304, a plug-in fixing rod 305, a protective mesh cage 306, an inlet / outlet mating hole 307, a protective mesh plate 308, a fixed clamping frame 309, an opening / closing electric slide rail 310, an isolation limiting plate 311, an opening / closing fixed door 312, and a mating controller 313; Several load-bearing motors 301 are installed at equal intervals through motor bases on one end of the inner side of the operation cabinet 1. The output shaft of the load-bearing motor 301 is snapped with a fixed load-bearing plate 302. The fixed load-bearing plate 302 is rotatably installed on the inner side of the operation cabinet 1 to achieve positioning support and facilitate the placement of clothes. A drying mesh cage 303 is inserted and installed at the bottom inside the operating cabinet 1, and a guide fan 304 is embedded and installed at one end of the operating cabinet 1. Several interlocking fixing rods 305 are welded at equal intervals on the top inner side of the operating cabinet 1, and a protective net cage 306 is sleeved on the side end of the interlocking fixing rods 305. The top side of the operating cabinet 1 is provided with an inlet / outlet mating hole 307, and protective mesh plates 308 are attached to the top of the operating cabinet 1 and one end of the guide fan 304. One end of the fixed cabinet 1 is equipped with a fixed clamping frame 309, and the top of the fixed clamping frame 309 is equipped with an opening and closing electric slide rail 310. An isolation limiting plate 311 is installed at one end of the electric sliding rail 310 via a rail seat. The isolation limiting plate 311 slides into the fixed clamping frame 309 to ensure the effect of sealing isolation and internal protection. The fixed clamping frame 309 and the operating fixed cabinet 1 are symmetrically hinged with opening and closing fixed doors 312. A matching controller 313 is embedded in the side end of the isolation limiting plate 311. To ensure stable operation of the equipment, the input terminals of the load motor 301, the guide fan 304, and the opening and closing electric slide rail 310 are all electrically connected to the output terminal of the controller 313. The input terminal of the controller 313 is electrically connected to the output terminal of the external power supply.

[0026] The working principle and usage process of this invention: When a user takes clothes out of the wardrobe, the controller 313 integrates the necessary conditions based on the weather forecast, the actual external environment, and the user's requirements for the occasion, and selects the clothes accordingly. Once the selection is complete, the device is powered by the controller 313. When it is necessary to retrieve the hanging clothes, the reciprocating electric slide rail 217 drives the upward push motor 218 to move, moving the upward push clamp 221 to the vicinity of the clothes. The upward push motor 218 drives the swing operation block 219 to rotate, and the correction electric push rod 220 drives the upward push clamp 221 to move. The clamping position of the upward push clamp 221 is adjusted according to the position of the clothes hook. When the upward push clamp 221 is in contact with the clothes hook, the fixed clamp electric slide rail 222 drives the fixed clamp elastic block 223 to move along the upward push clamp 221. Finally, the side end of the fixed clamp elastic block 223 is in contact with the side end of the hook. The fixed clamp elastic block 223 and the upward push clamp 221 are used to fix the hook. After fixing, the correction electric push rod 220 and the upward push motor 218 drive the upward push clamp 221 to reset, realizing the retrieval of the clothes. After the clothes are retrieved, the reciprocating electric slide rail 217 drives the upward push motor 218, the swing operation block 219, the correction electric push rod 220, and the upward push clamp 221 to move the clothes to the position of the multi-slot support hanging rod 216 at the position of the pressure electric push rod 215. At this time, the upward push motor 218 and the correction electric push rod 220 drive the upward push clamp 221 to move, which in turn drives the hanging processing block 214 to move with the hanging electric slide rail 213. The pressure electric push rod 215 drives the multi-slot support hanging rod 216 to move, and the hook is put into the side end of the multi-slot support hanging rod 216. At this time, the fixed clamp electric slide rail 222 drives the fixed clamp elastic block 223 to reset, releasing the clothes hook and causing the hook to move down to the side end of the multi-slot support hanging rod 216. At this time, the reset operation of the upward push clamp 221 is repeated to move the clothes to the position of the multi-slot support hanging rod 216, realizing the operation of retrieving the hanging clothes. When folded clothing needs to be retrieved, the folding lifting frame 205 moves along the operating cabinet 1 via the folding electric slide rail 204. The retrieval motor 206 drives the retrieval screw 207 to rotate along the folding lifting frame 205. The retrieval screw 207 drives the retrieval operating frame 208 to move, and the clamping electric slide rail 209 drives the lifting fixed clamp sleeve 210 to move, thereby changing the position of the unfolding support plate 212. When it reaches the desired clothing retrieval position, the two unfolding motors 211 drive the unfolding support plate 212 to rotate to the bottom and top of the clothing respectively. At this time, the clamping electric slide rail 209 drives the lifting... The lowering sleeve 210 moves to clamp and fix the clothes, thereby enabling the clothes to be taken out from the top of the placement support plate 203. After fixing, the clothes are driven through the pick-and-place screw 207 and the contact electric slide rail 204 to pass through the nearest dividing operation frame 202. At this time, the bearing motor 301 drives the fixed bearing plate 302 to rotate, so that the fixed bearing plate 302 is parallel to the placement support plate 203. The pick-and-place screw 207 and the contact electric slide rail 204 drive the clothes to move to the top of the fixed bearing plate 302, and the unfolding motor 211 drives the unfolding support plate 212 to reset, thus realizing the placement of the clothes. After all the clothes have been taken out and placed, the opening and closing electric slide rail 310 moves the isolation limiting plate 311 along the fixed clamping frame 309, opening the operating fixed cabinet 1. At this time, the user can take out the clothes from the fixed support plate 302 and the multi-slot support hanging rod 216. After taking out the clothes, the opening and closing electric slide rail 310 moves the isolation limiting plate 311 back to its original position. When it is necessary to change or replenish the clothes inside, the user opens the space for placing the clothes by operating the opening and closing fixed door 312, realizing quick operation. During the storage of clothes, the guide fan 304... The internal air is extracted, causing the internal air pressure to decrease. External air enters the inside of the operating cabinet 1 through the protective mesh plate 308 and the inlet / outlet mating hole 307. The airflow first comes into contact with the desiccant in the protective mesh cage 306. After drying, it comes into contact with the clothes, carrying away the moisture and odors on the surface of the clothes. After the flowing air comes into contact with the clothes, it moves to the position of the drying mesh cage 303. The air is adsorbed by the adsorbent in the drying mesh cage 303, achieving secondary drying and impurity interception. This ensures the dryness of the clothes when used indoors, while preventing the odor in the clothes from affecting the indoor environment.

[0027] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A smart wardrobe that automatically recommends clothing based on weather information, comprising an operation fixed cabinet (1), characterized in that: The operation cabinet (1) is equipped with a weather information acquisition module, which is used to acquire real-time weather data and transmit it to the cooperating controller (313). The outer surface of the fixed operating cabinet (1) is provided with an intelligent interactive module, including a voice recognition unit and a display screen or intelligent mirror, for displaying weather information, providing outfit recommendations and realizing user interaction; An air handling module is provided inside the fixed operating cabinet (1), including an ultraviolet germicidal lamp, a constant temperature and humidity device and an air purification device, which is used to dry, sterilize and regulate the environment of the clothes inside the cabinet. The operation cabinet (1) is further equipped with an intelligent identification module, including an RFID reader or a QR code identification device, for automatic identification and management of clothing; The fixed operating cabinet (1) is also connected to a mobile terminal, which is used to receive weather information and user schedule information, and to generate a clothing recommendation scheme in conjunction with the controller (313).

2. The smart wardrobe that automatically recommends clothing based on weather information according to claim 1, characterized in that, The weather information acquisition module (401) includes a temperature sensor, a humidity sensor, an air quality sensor, and a network communication unit. The network communication unit is used to receive weather forecast data from the meteorological platform and compare it with the real-time data collected by the sensors. The air handling module further includes a fragrance release device and a dehumidifier box, wherein the fragrance release device is used to release fragrance into the cabinet during the air purification process, and the dehumidifier box is used to assist in dehumidification when the humidity is too high.

3. The smart wardrobe that automatically recommends clothing based on weather information according to claim 1, characterized in that, The mobile terminal is a smartphone or tablet computer. The mobile terminal has a user schedule management module, which is linked with the weather information collection module to generate personalized clothing recommendations based on the user's travel occasion and display them through the intelligent interaction module.

4. The smart wardrobe that automatically recommends clothing based on weather information according to claim 1, characterized in that, The side of the fixed operating cabinet (1) is equipped with a self-retrieving component (2); The self-service component (2) includes a segmentation restriction plate (201); A dividing limit plate (201) is installed in the middle of the inner side of the operation fixed cabinet (1). A dividing operation frame (202) is welded to one end of the inner side of the operation fixed cabinet (1). A number of top support plates (203) are equidistantly connected to one end of the dividing operation frame (202). One end of the operation fixed cabinet (1) is snapped with a bonding electric slide rail (204), and one end of the bonding electric slide rail (204) is equipped with a bonding lifting frame (205) through a slide rail seat. The top side of the lifting frame (205) is equipped with a take-off and discharge machine (206) via a motor mount, and the output shaft of the take-off and discharge machine (206) is connected to a take-off and discharge screw (207). The take-up and put-down screw (207) is equipped with a take-up and put-down operation frame (208) through a screw seat, and the take-up and put-down operation frame (208) is equidistantly embedded with clamping electric slide rails (209). One end of the clamping electric slide rail (209) is equipped with a lifting fixed sleeve (210) through the slide rail seat, and the other end of the lifting fixed sleeve (210) is equipped with an unfolding motor (211) through the motor seat. The output shaft of the unfolding motor (211) is equipped with an unfolding support plate (212).

5. A smart wardrobe that automatically recommends clothing based on weather information according to claim 4, characterized in that, The side end of the bonding lifting frame (205) is slidably attached to the side end of the dividing operation frame (202) and the side end of the operation fixing cabinet (1). The pick-up and put-down operation frame (208) is slidably installed inside the bonding lifting frame (205). There are two unfolding support plates (212).

6. A smart wardrobe that automatically recommends clothing based on weather information according to claim 4, characterized in that, The operation cabinet (1) is equipped with a power-hanging slide rail (213) at one end, and a power-hanging processing block (214) is installed at the other end of the power-hanging slide rail (213) through the slide rail seat. The hanging processing block (214) is symmetrically equipped with a counter-pole electric actuator (215) at one end, and a multi-slot support hanging rod (216) is installed at one end of the two counter-pole electric actuators (215) and one end of the dividing restriction plate (201). The top of the inner side of the fixed cabinet (1) is fitted with a reciprocating electric slide rail (217), and the bottom of the reciprocating electric slide rail (217) is fitted with an upward push motor (218) through a slide rail seat. The output shaft of the push motor (218) is connected to a swing operation block (219), and a correction electric push rod (220) is installed at one end of the swing operation block (219). The corrective electric actuator (220) is equipped with an upward push clamping bracket (221) at one end. Several fixed clamping electric slide rails (222) are equidistantly embedded on the inner side of the upward push clamping bracket (221). A fixed clamping elastic block (223) is installed at one end of the fixed clamping electric slide rail (222) through the slide rail seat.

7. A smart wardrobe that automatically recommends clothing based on weather information according to claim 6, characterized in that, The unfolding support plate (212) is slidably installed inside the pick-and-place operation frame (208), the multi-slot support hanging rod (216) is placed inside the operation fixed cabinet (1), and the fixed clamp elastic block (223) is slidably installed inside the upward push clamp frame (221).

8. A smart wardrobe that automatically recommends clothing based on weather information according to claim 6, characterized in that, The swing operation block (219) and the upward push clamp (221) are both placed inside the operation fixed cabinet (1); The input ends of the following components are all electrically connected to the output end of an external controller: the contacting electric slide rail (204), the discharge motor (206), the clamping electric slide rail (209), the unfolding motor (211), the hanging electric slide rail (213), the pressure-adjusting electric push rod (215), the reciprocating electric slide rail (217), the upward push motor (218), the correction electric push rod (220), and the fixed clamping electric slide rail (222). The input terminal of the external controller is electrically connected to the output terminal of the external power supply.

9. A smart wardrobe that automatically recommends clothing based on weather information according to claim 8, characterized in that, The side of the fixed operating cabinet (1) is equipped with an anti-interference component (3); The anti-interference component (3) includes a carrier motor (301); The operation cabinet (1) has several load-bearing motors (301) installed at equal intervals through motor bases on one side of its inner side. The output shaft of the load-bearing motor (301) is clamped to a fixed load-bearing plate (302). A drying mesh cage (303) is inserted and installed at the bottom of the inner side of the operation fixed cabinet (1), and a guide fan (304) is embedded at one end of the operation fixed cabinet (1). The top inner side of the operating cabinet (1) is welded with several interlocking fixing rods (305) at equal intervals, and the side end of the interlocking fixing rods (305) is fitted with a protective net cage (306). The top of the fixed operating cabinet (1) is provided with an inlet and outlet mating hole (307), and a protective mesh plate (308) is attached to the top of the fixed operating cabinet (1) and one end of the guide fan (304). The fixed cabinet (1) is equipped with a fixed card frame (309) at one end, and an opening and closing electric slide rail (310) is installed at the top of the fixed card frame (309). An isolation limiting plate (311) is installed at one end of the opening and closing electric slide rail (310) through the slide rail seat. An opening and closing fixed door (312) is symmetrically hinged at one end of the fixed clamping frame (309) and the operation fixed cabinet (1). A matching controller (313) is embedded at the side end of the isolation limiting plate (311).

10. A smart wardrobe that automatically recommends clothing based on weather information according to claim 9, characterized in that, The fixed bearing plate (302) is rotatably installed inside the operating fixed cabinet (1), and the isolation limiting plate (311) is slidably fitted with the fixed clamping frame (309); The input terminals of the load-bearing motor (301), the guide fan (304), and the opening and closing electric slide rail (310) are all electrically connected to the output terminal of the cooperating controller (313); The input terminal of the matching controller (313) is electrically connected to the output terminal of the external power supply.