A wan's garment manufacturing data acquisition operation device and operation system
Through various devices and network transmission methods, the digitalization, precision, and standardization of clothing customization have been achieved, solving the problems of low accuracy in manual measurement and untimely data transmission in traditional clothing customization. This has improved measurement accuracy and efficiency, and promoted regional economic development.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 万象栋
- Filing Date
- 2026-02-12
- Publication Date
- 2026-05-29
AI Technical Summary
Traditional clothing customization suffers from low accuracy and efficiency due to manual measurement and untimely data transmission, making it difficult to meet modern consumers' expectations for fast, accurate, and digital customization services.
It automatically collects human body parameters using various methods such as infrared scanning equipment, robotic measuring equipment, and smartphone data acquisition and self-testing input devices. Combined with digital sensors and intelligent algorithms, it achieves fully automated and unmanned measurement, and realizes real-time data transmission and backup through multi-carrier networks to build a closed-loop management system.
It has significantly improved the accuracy and efficiency of anthropometric measurements, reduced returns and resource waste caused by inaccurate dimensions, established a closed-loop management system from measurement to production, broadened employment opportunities, and promoted regional economic development.
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Figure CN122096512A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of garment manufacturing, and in particular to a data acquisition and operation device and system for garment manufacturing. Background Technology
[0002] Against the backdrop of rapid development in the digital economy and the increasing popularity of online shopping, consumer demand for personalized and well-fitting clothing is continuously rising. However, traditional online clothing purchases commonly suffer from frequent returns and exchanges due to inaccurate sizing and the inability to try on clothes in person. This not only affects the consumer experience but also results in a significant waste of resources such as packaging materials, textiles, and logistics capacity, putting pressure on both the environment and industry efficiency. Currently, although clothing customization services have emerged in the market, most still rely on traditional manual measurement methods, leading to limited accuracy and low efficiency in human body data collection. Furthermore, the lack of a real-time and smooth data transmission mechanism between measurement, ordering, and production stages makes it difficult to meet modern consumers' expectations for fast, accurate, and digitally customized services. Summary of the Invention
[0003] The purpose of this invention is to provide a data acquisition and operation device and system for Wanshi garment manufacturing, which solves the problems of low accuracy, low efficiency and untimely data transmission caused by manual measurement in the existing garment customization process, and realizes the digitalization, precision and standardization of garment customization.
[0004] To achieve the above-mentioned objectives, the technical solution adopted by this invention is as follows:
[0005] A data acquisition and operation device for Wanshi clothing production, characterized in that it includes the following five different types of parameter acquisition devices: First, an infrared scanning device, which includes both vertical and horizontal structural forms, automatically acquires human body parameters through infrared scanning technology. The infrared scanning device is equipped with a touch screen display screen, a counterweight base is installed under the infrared scanning device, a light box is installed on the infrared scanning device, several lighting lamps are installed inside the light box, a pair of scanning strips are installed on the infrared scanning device, a pair of fixing ears are installed on the infrared scanning device, and a pair of human body rotating pull rings are fixedly installed under the light box;
[0006] The second type is a data self-testing input device, which includes an operating table, a first touch screen computer, a column support structure, and a measuring tool storage device.
[0007] The third type is a robot measurement data device. The robot measurement data device is equipped with measuring tools, which are divided into a width measuring ruler and a circumference measuring ruler. Based on the data self-testing input device, the robot measurement data device integrates the measuring tools onto the robotic arm to achieve fully automatic unmanned measurement.
[0008] The fourth type is a data measurement device, which includes a second touch screen computer, a column, a chassis, a measuring hook, and a network connection device.
[0009] The fifth method is smartphone data collection, which involves collecting human body information through smartphone selfies or photos taken by others, and configuring a photo frame positioning device to ensure that the human body is completely placed within the photo frame.
[0010] The touch screen display, the first touch screen computer, and the second touch screen computer serve as the core interactive interface and data processing unit of the device. The measuring tool storage device serves as both the supporting structure of the device and the storage of measuring tools. The chassis provides stability for the entire device. The measuring ruler hook is used to store measuring tools. The network connection device includes a network cable and a power cord to realize data transmission and power supply. The width measuring ruler and the circumference measuring ruler are used to measure linear distances such as shoulder width and hip width, respectively. Digital sensor technology is used to measure circumference parameters such as chest circumference, waist circumference, and hip circumference, and digital sensors are integrated.
[0011] As an improvement, information on customer clothing needs is collected, including clothing style (top, pants, or full-body), fabric type, and color selection.
[0012] As an improvement, customer body parameters are collected, including height, neck circumference, neck length, shoulder width, arm length, arm circumference, chest circumference, upper body length, hip circumference, lower body length, and thigh circumference. Delivery information is also collected, including the delivery address and delivery platform selection.
[0013] As an improvement, the robot measurement data device also includes a robotic arm system and a voice prompt system, which guides the user to perform measurement operations through voice commands.
[0014] A Wanshi Garment Production Data Acquisition and Operation System is characterized in that the other data devices adopt a simplified design, combining digital guidance and manual measurement, including a second touch screen computer system, a traditional manual measuring ruler, which is stored and retrieved through a measuring ruler hook, and a network transmission function, which transmits the collected data to the terminal system via a network cable.
[0015] As an improvement, the parameter acquisition process in the system compilation and transmission system includes the following steps: starting the system, selecting the platform, selecting the clothing style, selecting the fabric color, confirming storage, acquiring human body parameters, selecting the manufacturer, confirming the purchase, paying the deposit, and entering the address.
[0016] As an improvement, the online shopping platform adopts a "one-hand-two-party" operation model, providing a payment mechanism within 7 days to ensure that manufacturers receive payment in a timely manner.
[0017] As an improvement, the data transmission system adopts multiple operator networks including China Telecom, China Mobile, and China Unicom, and supports real-time transmission, breakpoint resume, and data backup functions.
[0018] As an improvement, the infrared scanning device employs a multiple measurement and averaging algorithm, repeating the scanning process twice to calculate the average parameters and improve measurement accuracy.
[0019] The specific formula for optimizing the measurement accuracy of infrared scanning equipment is as follows:
[0020] Suppose that the human body parameter value obtained from a certain scan is The parameters obtained from the second scan are Then the average parameter The formula for calculating ** is:
[0021] The beneficial effects of this invention are as follows: By introducing digital sensors and intelligent algorithms, the accuracy and efficiency of human body measurement are significantly improved, data acquisition and transmission are automated, and returns and resource waste caused by inaccurate dimensions are effectively reduced. Simultaneously, the system constructs a closed-loop management system from measurement to production. While ensuring quality and efficiency, the ease of operation of the equipment broadens employment opportunities, making it particularly suitable for deployment in county-level areas. Furthermore, by developing community processing and courtyard economy models, it provides a sustainable path to increase farmers' income. Attached Figure Description
[0022] Figure 1 This is a front view of the infrared scanning device in the Wanshi Clothing Production Data Acquisition and Operation Equipment of the present invention.
[0023] Figure 2 This is a right view of the infrared scanning device in the Wanshi Clothing Production Data Acquisition and Operation Equipment of the present invention.
[0024] Figure 3 This is a front view of the data self-test input device in the Wanshi Clothing Production Data Acquisition and Operation Equipment of the present invention.
[0025] Figure 4 This is a front view of the robot measurement data device in the Wanshi Clothing Production Data Acquisition and Operation Equipment of the present invention.
[0026] Figure 5 This is a front view of the data measurement device in the Wanshi Clothing Production Data Acquisition and Operation Device of the present invention.
[0027] Figure 6 This is an overall architecture diagram of the Wanshi Garment Production Data Acquisition and Operation System of the present invention.
[0028] Figure 7 This is a flowchart of the overall data collection and operation system for Wanshi clothing production according to the present invention.
[0029] In the diagram: 1. Touchscreen display; 2. Counterweight base; 3. Lightbox; 4. Scanning belt; 5. Fixing ear; 6. Human body rotation pull ring; 7. Operating table; 8. First touchscreen computer; 9. Column support structure; 10. Measuring tool storage device; 11. Measuring tool; 12. Second touchscreen computer; 13. Column; 14. Chassis; 15. Measuring ruler hook; 16. Network connection device. Detailed Implementation
[0030] To make the content of this invention easier to understand, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Identical components are represented by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.
[0031] like Figures 1 to 7 As shown, a data acquisition and operation device for Wanshi clothing production is characterized by comprising the following five different types of parameter acquisition devices: First, an infrared scanning device, which includes both vertical and horizontal structural forms, automatically acquiring human body parameters through infrared scanning technology. The infrared scanning device is equipped with a touch screen display 1, a counterweight base 2, a light box 3 containing several lighting lamps, a pair of scanning strips 4, a pair of fixing ears 5, and a pair of human body rotating pull rings 6 fixedly installed under the light box 3; Second, a data self-test input device... The equipment includes an operating table 7, a first touchscreen computer 8, a column support structure 9, and a measuring tool storage device 10; the third type is a robot measuring data device, which is equipped with measuring tools 11, which are divided into a width measuring ruler and a girth measuring ruler. Based on the data self-testing input device, the robot measuring data device integrates the measuring tools 11 onto the robotic arm to achieve fully automatic unmanned measurement; the fourth type is a data external testing device, which includes a second touchscreen computer 12, a column 13, a chassis 14, a measuring ruler hook 15, and a network connection device 16; the fifth type is smartphone acquisition, which collects human body information through smartphone self-portraits or external photography, and is equipped with a photo frame positioning device to ensure that the human body is completely placed in the photo frame.
[0032] Among them, the touch screen display 1, the first touch screen computer 8 and the second touch screen computer 12 serve as the core interactive interface and data processing unit of the device. The measuring tool storage device 10 serves as both the supporting structure of the device and the storage of measuring tools. The chassis 14 provides stability for the entire device. The measuring ruler hook 15 is used to store measuring tools. The network connection device 16 includes a network cable and a power cord to realize data transmission and power supply. The width measuring ruler and the circumference measuring ruler are used to measure linear distances such as shoulder width and hip width, respectively. Digital sensor technology is used to measure circumference parameters such as chest circumference, waist circumference and hip circumference, and digital sensors are integrated.
[0033] like Figures 1 to 7 As shown, the system collects customer clothing needs information, including clothing style (tops, pants, or full-body), fabric type, and color selection. It also collects customer body parameters, including height, neck circumference, neck length, shoulder width, arm length, arm circumference, chest circumference, upper body length, hip circumference, lower body length, and thigh circumference. Finally, it collects delivery information, including the delivery address and delivery platform selection.
[0034] like Figures 1 to 7 As shown, the robot measurement data device also includes a robotic arm system and a voice prompt system, the voice prompt system guiding the user to perform measurement operations through voice commands.
[0035] like Figures 6 to 7 As shown, a Wanshi Garment Production Data Acquisition and Operation System is characterized in that the other data devices adopt a simplified design, combining digital guidance and manual measurement, including a second touch screen computer system, a traditional manual measuring ruler, which is stored and retrieved through a measuring ruler hook, and a network transmission function, which transmits the collected data to the terminal system through a network cable.
[0036] like Figures 6 to 7 As shown, in the system compilation and transmission system, the parameter acquisition process includes the following steps: starting the system, selecting the platform, selecting the clothing style, selecting the fabric color, confirming storage, acquiring human body parameters, selecting the manufacturer, confirming the purchase, paying the deposit, and entering the address.
[0037] like Figures 1 to 7 As shown, the online shopping platform operates on a "one-hand-two-party" model, providing a 7-day payment mechanism to ensure that manufacturers receive payment in a timely manner.
[0038] like Figures 1 to 7 As shown, the data transmission system uses multiple operator networks, including China Telecom, China Mobile, and China Unicom, and supports real-time transmission, breakpoint resume, and data backup functions.
[0039] like Figures 1 to 7As shown, the infrared scanning device employs a multiple measurement and averaging algorithm, repeating the scanning process twice to calculate the average parameters and improve measurement accuracy. The specific formula for optimizing the measurement accuracy of the infrared scanning device is as follows: Let the human body parameter value obtained from a certain scan be... The parameters obtained from the second scan are Then the average parameter The formula for calculating ** is:
[0040] Example 1: During use, the user first starts the device on the touchscreen terminal, selects an e-commerce platform, and follows voice and graphic guidance to select the clothing style, type, fabric, and color in sequence, completing the initial information storage. Next, the system uses various technologies such as infrared scanning to accurately obtain key human body size parameters, including height, shoulder width, arm length, chest circumference, and hip circumference. Then, the user can select a suitable manufacturer or brand on the interface and obtain the final quote. Finally, after confirming the purchase intention, the user pays a deposit and fills in the delivery address to complete the entire customization and ordering process.
[0041] Example 2: In this model, the online shopping platform acts as the core hub, connecting customers and manufacturers. The platform forwards customization parameters to the manufacturer and verifies the price. After the customer confirms the purchase, a deposit is transferred. The manufacturer selects materials and processes the goods, then ships them after self-inspection. The customer signs for the goods and confirms they meet the requirements before settling the remaining balance. If the customer fails to settle in time, the platform will pay the manufacturer on their behalf within 7 days to ensure a smooth supply chain. Adhering to the principle of "serving both sides," the platform fulfills its service and supervisory responsibilities. Its honest operation is subject to government supervision, thus building a reliable and efficient closed-loop ecosystem for clothing customization that balances customer needs and manufacturer interests.
[0042] In Example 3, manufacturers, as a key link, must first submit an application to the platform and complete the registration process through low-cost or free methods, effectively reducing initial cooperation risks. During operation, the platform will charge a fee based on a percentage of the manufacturer's turnover, adhering to the principle of win-win cooperation. After receiving order parameters, confirming prices and deposits, manufacturers will select materials, process, inspect, package, and ship the goods. Finally, the remaining payment will be collected after customer acceptance, completing the order. To ensure integrity and quality, manufacturers must pay a security deposit. If they operate in compliance with regulations throughout the service period, they will receive a full refund of the deposit upon leaving the platform, thus building a healthy cooperative ecosystem with controllable risks and incentives for trustworthiness.
[0043] Example 4: Data transmission is handled by China Telecom, China Mobile, and China Unicom.
[0044] Example 5: Regarding equipment layout, it is recommended to prioritize the deployment of customized measurement terminals in high-traffic areas such as express delivery stations to maximize convenience and efficiency. While this may have some impact on traditional brick-and-mortar clothing stores, it also prompts clothing manufacturers to actively transform, relocating some processing workshops to urban areas, thereby effectively absorbing local labor and opening up new paths for solving employment and promoting regional economic development.
[0045] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A data acquisition and operation device for Wanshi garment manufacturing, characterized in that, The following five different types of parameter acquisition devices are included: First, infrared scanning device, which includes two structural forms: vertical and horizontal. It automatically collects human body parameters through infrared scanning technology. The infrared scanning device is equipped with a touch screen (1), a counterweight base (2) is installed under the infrared scanning device, a light box (3) is installed on the infrared scanning device, several lighting lamps are installed in the light box (3), a pair of scanning strips (4) are installed on the infrared scanning device, a pair of fixed ears (5) are installed on the infrared scanning device, and a pair of human body rotating pull rings (6) are fixedly installed under the light box (3). The second type is a data self-test input device, which includes an operating table (7), a first touch screen computer (8), a column support structure (9), and a measuring tool storage device (10). The third type is a robot measurement data device. The robot measurement data device is equipped with a measuring tool (11). The measuring tool (11) is divided into a width measuring ruler and a circumference measuring ruler. Based on the data self-testing input device, the robot measurement data device integrates the measuring tool (11) onto the robotic arm to achieve fully automatic unmanned measurement. The fourth type is a data measurement device, which includes a second touch screen computer (12), a column (13), a chassis (14), a measuring hook (15), and a network connection device (16). The fifth method is smartphone data collection, which involves collecting human body information through smartphone selfies or photos taken by others, and configuring a photo frame positioning device to ensure that the human body is completely placed within the photo frame.
2. The Wanshi Garment Manufacturing Data Acquisition and Operation Device according to claim 1, characterized in that, Collect customer clothing needs information, including clothing style (top, pants, or full-body), fabric type, and color selection.
3. The Wanshi Garment Manufacturing Data Acquisition and Operation Device according to claim 2, characterized in that, The system collects customer body parameters, including height, neck circumference, neck length, shoulder width, arm length, arm circumference, chest circumference, upper body length, hip circumference, lower body length, and thigh circumference, as well as delivery information, including the delivery address and delivery platform selection.
4. The Wanshi Garment Manufacturing Data Acquisition and Operation Device according to claim 1, characterized in that, The robot measurement data device also includes a robotic arm system and a voice prompt system, which guides the user to perform measurement operations through voice commands.
5. The Wanshi Garment Manufacturing Data Acquisition and Operation System according to claim 1, characterized in that, The data transmission equipment adopts a simplified design, combining digital guidance and manual measurement, including a second touchscreen computer system, a traditional manual measuring ruler, which is stored and retrieved through a measuring ruler hook, and a network transmission function that transmits the collected data to the terminal system via a network cable.
6. The Wanshi Garment Manufacturing Data Acquisition and Operation System according to claim 1, characterized in that, The parameter acquisition process in the system compilation and transmission system includes the following steps: starting the system, selecting the platform, selecting the clothing style, selecting the fabric color, confirming storage, acquiring human body parameters, selecting the manufacturer, confirming the purchase, paying the deposit, and entering the address.
7. The Wanshi Garment Manufacturing Data Acquisition and Operation System according to claim 1, characterized in that, The online shopping platform operates on a "one-stop-shop" model, providing a 7-day payment mechanism to ensure manufacturers receive payment promptly.
8. The Wanshi Garment Manufacturing Data Acquisition and Operation System according to claim 1, characterized in that, The data transmission system uses networks from multiple operators, including China Telecom, China Mobile, and China Unicom, and supports real-time transmission, resume transmission, and data backup.
9. The Wanshi Garment Manufacturing Data Acquisition and Operation System according to claim 1, characterized in that, The infrared scanning device employs a multiple measurement and averaging algorithm, repeating the scanning process twice to calculate the average parameters and improve measurement accuracy. The specific formula for optimizing the measurement accuracy of infrared scanning equipment is as follows: Suppose that the human body parameter value obtained from a certain scan is The parameters obtained from the second scan are Then the average parameter The formula for calculating ** is: