Intelligent clothes for pet
By designing smart pet clothing that uses posture sensors and communication modules to monitor the pet's status and location in real time, the problem of existing pet clothing being unable to provide real-time status information is solved, improving management convenience and preventing privacy leaks.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-14
AI Technical Summary
Existing pet clothing makes it difficult to monitor a pet's status in real time, and the use of cameras and other devices poses a risk of privacy breaches.
A smart pet garment has been designed, consisting of the garment body and sleeves. It is equipped with a posture sensor, a control motherboard, and a communication module, which can sense the pet's posture in real time and upload the data to a cloud server via the communication module to display the pet's status and location.
It enables real-time monitoring of pet status and location, improving management convenience, preventing privacy leaks, and enhancing the user's interaction experience with their pet.
Smart Images

Figure CN224111902U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of pet supplies technology, and in particular relates to smart pet clothing. Background Technology
[0002] Pets are creatures kept by people for emotional or psychological reasons, not economic ones. Traditionally, pets refer to mammals or birds, kept for enjoyment and companionship. In real life, pets include fish, reptiles, amphibians, insects, and even plants, kept for observation, companionship, and stress relief. The laws of most countries still limit pets to the category of animals. Keeping pets provides humans with an opportunity to connect with nature and fulfills psychological needs.
[0003] For aesthetic and tidy reasons, more and more people are dressing up their dogs and cats. However, existing pet clothes generally make it difficult to monitor the pet's status in real time, while using cameras or other devices can easily lead to privacy leaks. Utility Model Content
[0004] The purpose of this invention is to solve the aforementioned technical problems in the existing technology, and to provide smart pet clothing that can monitor the pet's status in a timely manner without infringing on the user's privacy.
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0006] The smart pet clothing is characterized by comprising a garment body and four sleeves, with the four sleeves respectively located on both sides of the garment body. The sleeves are equipped with posture sensors to sense the posture of the pet's limbs. The garment body is equipped with a control motherboard and a communication module, with the control motherboard connected to the posture sensors and the communication module respectively.
[0007] Furthermore, the garment itself is equipped with a display screen, which is connected to the control motherboard.
[0008] Furthermore, elastic cords are provided inside the sleeves to control the size of the sleeve opening.
[0009] Furthermore, the garment body includes a back panel and a fixing ring, with the fixing ring fixedly connected to the back panel and the sleeves fixedly connected to the back panel.
[0010] Furthermore, the retaining ring includes a first connecting piece and a second connecting piece, which are connected by Velcro.
[0011] Furthermore, the garment body and sleeves are made of sun-protective and waterproof fabric.
[0012] Furthermore, both sides of the back panel are equipped with fixing straps, and the two fixing straps are connected by buckles.
[0013] Furthermore, the communication module includes a positioning chip.
[0014] This utility model, by adopting the above-mentioned technical solution, has the following beneficial effects:
[0015] This invention, through the design of the garment body and sleeves, allows a posture sensor to be fixed to the pet's body, thereby sensing the pet's posture. The posture information and location information of the pet are then uploaded to a cloud server via a control motherboard and communication module. This allows users to obtain the pet's status and location in real time through mobile phones and other devices, facilitating pet management and enhancing the interaction experience with the pet. Attached Figure Description
[0016] The present invention will be further described below with reference to the accompanying drawings:
[0017] Figure 1 This is a schematic diagram of the left side of the smart pet clothing of this utility model;
[0018] Figure 2 This is a schematic diagram of the right side of the smart pet clothing of this utility model;
[0019] Figure 3 This is a schematic diagram of the bottom structure of the smart pet clothing of this utility model;
[0020] Figure 4 This is a schematic diagram of the upper part of the smart pet clothing of this utility model;
[0021] Figure 5 This is a schematic diagram of the connection between the control motherboard and the attitude sensor in this utility model;
[0022] Figure 6 This is a schematic diagram of the attitude sensor corresponding to the three axes in this utility model.
[0023] In the diagram, 1-control mainboard; 2-display screen; 3-posture sensor; 4-communication module; 5-garment body; 6-sleeve; 7-elastic cord buckle; 8-back panel; 9-fixing ring; 10-first connecting piece; 11-second connecting piece; 12-fixing strap; 13-buckle. Detailed Implementation
[0024] like Figures 1 to 6As shown, this utility model also discloses a smart pet garment, comprising a garment body 5 and four sleeves 6. The four sleeves 6 are respectively located on both sides of the garment body 5. The garment body 5 and the sleeves 6 constitute the main body of the smart garment, designed to fit the pet's body. Specifically, each sleeve 6 contains a posture sensor 3 to sense the pet's limb posture. The garment body 5 contains a control motherboard 1 and a communication module 4, with the control motherboard 1 connected to both the posture sensor 3 and the communication module 4. Through this setup, the pet's posture can be collected in real time, allowing users to easily monitor their pet's real-time information, facilitating pet management and enhancing the interaction experience with the pet. The number of posture sensors 3 can be flexibly arranged according to user needs, production costs, etc., with a minimum of one and generally three, distributed on the two front legs and one hind leg. The posture sensors 3 can also be located on the pet's torso, neck, or tail, thereby improving the posture collection and recognition effect.
[0025] As one implementation method, the garment body 5 is equipped with a display screen 2, which is connected to the control motherboard 1. The display screen can show the pet's inferred mood based on the pet's current posture, allowing users to more intuitively understand the pet's mood and status. Furthermore, the display screen 2 can display the user's contact information if the pet gets lost, making it easier to find the lost pet.
[0026] As one implementation method, the sleeve 6 is equipped with an elastic cord buckle 7 to control the size of the opening of the sleeve 6. With the above setting, the size of the opening of the sleeve 6 can be easily adjusted, so that the sleeve 6 can be fixed on the pet's limbs, ensuring the fixation effect of the posture sensor 3, thereby improving detection accuracy and detection precision.
[0027] As one implementation, the garment body 5 includes a back panel 8 and a fixing ring 9, with the fixing ring 9 fixedly connected to the back panel 8 and the sleeve 6 fixedly connected to the back panel 8. The garment body 5 adopts a semi-open design, which makes it easy for pets to wear, saves time during dressing, and facilitates heat dissipation in summer. To wear the garment, simply slip one side of the pet's limbs into the sleeve 6, then wrap the back panel 8 around the pet's back and slip the other side of the limbs into the sleeve 6.
[0028] Specifically, the fixing ring 9 includes a first connecting piece 10 and a second connecting piece 11, which are connected by Velcro. This design facilitates the fixing of the ring 9, making it easier to wear smart clothing and improving the wearing experience.
[0029] As a result, the garment body 5 and sleeves 6 are made of sun-resistant and waterproof fabric. This design improves the pet's comfort and prevents the garment from getting dirty or wet.
[0030] As one implementation method, the back piece 8 is provided with fixing straps 12 on both sides, and the two fixing straps 12 are connected by buckles 13. This configuration can improve the fixing effect of the back piece 8 and make it easier for pets to wear.
[0031] As one implementation method, the communication module 4 includes a positioning chip. This allows for real-time monitoring of the pet's location, preventing it from getting lost.
[0032] This utility model also discloses a method for sensing pet posture, including the following steps:
[0033] S1. Attach the posture sensor 3 to the pet's limbs and fix it in place;
[0034] S2 and attitude sensor 3 read their own data at regular intervals and transmit the read data to the control motherboard; the attitude sensor typically reads data every 1 second.
[0035] S3. The main board 1 analyzes the data from the attitude sensor 3 and determines the pet's attitude;
[0036] S4. Control motherboard 1 aggregates the data and uploads it to the cloud server in real time; control motherboard 1 typically uploads data every 3 seconds.
[0037] S5: After receiving a user's request, the cloud server will transmit the aggregated data to the user's device and play the pet's current posture animation in the device software.
[0038] The attitude sensor 3 reads data including triaxial angle data, velocity data, and acceleration data. By reading these data and combining them with big data analysis, the system can infer the pet's posture, allowing users to easily monitor their pet's condition.
[0039] The data aggregated in the control motherboard 1 includes data read by the attitude sensor 3 and positioning data. The collection of data from the attitude sensor 3 facilitates the analysis of pet posture on the cloud server, improving the accuracy of the analysis. The positioning data and analyzed pet posture data allow users to easily track their pet's posture and location.
[0040] Pet postures include standing, sitting, walking, lying down, lying on one's side, lying on one's back, shaking hands, running, leaping, standing upright, jumping, spinning, downward-facing dog, curling up, digging in the litter box, and pouncing. These are the most common and recognizable pet postures.
[0041] Examples include common simple movements and complex postures. Figure 6As shown, the X-axis is a straight line perpendicular to the ground, the Y-axis is the horizontal direction (the Y-axis for the right sensor is the direction the pet is facing, and the Y-axis for the left sensor is the direction the pet is facing away), and the Z-axis is the direction the pet's legs are pointing outward (the Z-axis direction is different for different legs). The X-axis is parallel to the pet's legs, and the Y-axis is perpendicular to the pet's legs. Taking a smart garment equipped with three posture sensors 3 as an example, the first posture sensor 3 is located on the pet's left front leg, with angles ∠Ax, ∠Ay, and ∠Az to the corresponding X, Y, and Z axes, respectively, with an acceleration of a1 and a velocity of s1. The second sensor is located on the pet's right front leg, with angles ∠Bx, ∠By, and ∠Bz to the corresponding X, Y, and Z axes, respectively, with an acceleration of a2 and a velocity of s2. The third sensor is located on the pet's left hind leg, with angles ∠Cx, ∠Cy, and ∠Cz to the corresponding X, Y, and Z axes, respectively, with an acceleration of a3 and a velocity of s3. The angles in the detailed data must be simultaneously satisfied for the corresponding action to be recognized.
[0042]
[0043]
[0044]
[0045] This invention, through the design of the garment body 5 and sleeves 6, allows the posture sensor 3 to be fixed to the pet's body, thereby sensing the pet's posture. The posture and location information of the pet are then uploaded to a cloud server via the control motherboard 1 and communication module 4. This allows users to access the pet's status and location in real time via mobile phones or other devices, facilitating pet management and enhancing the interaction experience with the pet. If the pet goes missing, the user's mobile phone sends a command, which is then transmitted to the control motherboard 1 by the cloud server. The control motherboard 1 controls the display screen 2 to show the pet owner's contact information and continuously uploads the pet's location information. Using the posture sensor 3 to monitor the pet's status in real time avoids the privacy risks associated with using cameras or other similar devices.
[0046] The above are merely specific embodiments of this utility model, but the technical features of this utility model are not limited thereto. Any simple changes, equivalent substitutions, or modifications made based on this utility model to solve essentially the same technical problems and achieve essentially the same technical effects are all covered within the protection scope of this utility model.
Claims
1. Smart pet clothing, characterized by: The garment includes a main body and four sleeves, which are respectively located on both sides of the main body. Each sleeve is equipped with a posture sensor to sense the posture of the pet's limbs. The main body of the garment is equipped with a control motherboard and a communication module, which are respectively connected to the posture sensor and the communication module.
2. The smart pet clothing according to claim 1, characterized in that: The garment itself is equipped with a display screen, which is connected to the control motherboard.
3. The smart pet clothing according to claim 1, characterized in that: The sleeve is equipped with an elastic cord buckle to control the size of the sleeve opening.
4. The smart pet clothing according to claim 1, characterized in that: The garment body includes a back panel and a fixing ring, the fixing ring being fixedly connected to the back panel, and the sleeves being fixedly connected to the back panel.
5. The smart pet clothing according to claim 4, characterized in that: The fixing ring includes a first connecting piece and a second connecting piece, which are connected by Velcro.
6. The smart pet clothing according to claim 4, characterized in that: Both sides of the back panel are provided with fixing straps, and the two fixing straps are connected by buckles.
7. The smart pet clothing according to claim 1, characterized in that: The garment body and the sleeves are made of sun-proof and waterproof fabric.
8. The smart pet clothing according to claim 1, characterized in that: The communication module is equipped with a positioning chip.
Citation Information
Cited By
Pet posture sensing method and intelligent clothes
CN120266772A