Jewelry retail system based on radio frequency identification technology
The jewelry retail system using radio frequency identification (RFID) technology solves problems such as chaotic information management, time-consuming inventory management, insufficient customer interaction, and security issues in jewelry retail, achieving efficient operation, accurate inventory, and security, thereby improving customer satisfaction and market competitiveness.
Patent Information
- Application Number
- CN202511366750.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2026-01-06
AI Technical Summary
Jewelry retail suffers from chaotic merchandise management, time-consuming inventory checks, insufficient customer interaction, inaccurate data analysis, and significant security management challenges, making it difficult to meet the demands of modern jewelry retail for efficiency, precision, and personalization.
The jewelry retail system, based on radio frequency identification (RFID) technology, includes modules for tag generation, identification, core control, mobile inventory management, intelligent interaction, data analysis, and security protection, enabling jewelry information management, inventory updates, customer interaction, data analysis, and security assurance.
It improves the operational efficiency of jewelry retail, reduces labor and time costs, enhances inventory counting efficiency, strengthens customer interaction, provides a basis for scientific decision-making, ensures system and product security, and enhances market competitiveness.
Smart Images

Figure CN121279918A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of jewelry retail management technology, specifically a jewelry retail system based on radio frequency identification (RFID) technology. Background Technology
[0002] In the jewelry retail industry, products are characterized by their small size and large variety, making daily management extremely cumbersome and resulting in low levels of digitalization. This is especially true for gold products, which require real-time gold price calculations, making the sales process particularly challenging. Due to their small size, jewelry is difficult to locate during storage, leading to time-consuming inventory checks. Furthermore, traditional jewelry retailing has significant shortcomings in customer interaction, data analysis, and security management, failing to meet the demands of modern jewelry retail for efficiency, accuracy, and personalization. Therefore, a jewelry retail system based on radio frequency identification (RFID) technology is urgently needed to address these issues. Summary of the Invention
[0003] The purpose of this invention is to provide a jewelry retail system based on radio frequency identification (RFID) technology to solve the problems mentioned in the background section.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a jewelry retail system based on radio frequency identification technology, comprising a label generation module, an identification module, a core control module, a mobile inventory module, an intelligent interaction module, a data analysis module, and a security protection module;
[0005] The tag generation module is used to generate and print RFID electronic tags containing detailed product information after the jewelry products have passed quality inspection.
[0006] The identification module is used to read and write information within the RFID electronic tag;
[0007] The core control module is used to receive data transmitted by the identification module, manage inventory, process payment and shipping requests, and monitor the system's operating status.
[0008] The mobile inventory module is used by staff to quickly count jewelry inventory by hand and compare it with the system inventory data;
[0009] The intelligent interaction module is used to interact with customers during the sales process, display product information, and process trial records;
[0010] The data analysis module is used to analyze various types of data generated during the sales process to provide support for business decisions;
[0011] The security protection module is used to ensure the security of system data and jewelry.
[0012] Preferably, when generating RFID electronic tags, the tag generation module will strictly verify the input product information to ensure the accuracy and completeness of the information; the product information includes, but is not limited to, number, batch, name, price, picture, material, and main stone; the generated RFID electronic tag has a unique identification code and is waterproof, antimagnetic, and wear-resistant, and can adapt to various requirements of the jewelry retail environment; after the tag is generated, it is printed using a dedicated printing device, and the information is verified a second time during the printing process to prevent the tag information from not matching the product.
[0013] Preferably, the identification module includes an RFID reader installed in a jewelry display case, cashier, or other location; the RFID reader uses high-frequency or ultra-high-frequency technology, enabling it to quickly and accurately read information from RFID electronic tags within a certain distance; during the reading process, it has anti-interference capabilities, avoiding signal conflicts caused by multiple tags existing simultaneously; simultaneously, the identification module also supports writing tag information, such as updating the sales status information within the tag after a product is sold; the identification module transmits data to the core control module via wired or wireless means, ensuring the real-time performance and stability of the data.
[0014] Preferably, the core control module employs a high-performance processor and a stable operating system; its inventory management functions include real-time updates of product inventory quantity and location information, and timely response and adjustment of inventory data when products are retrieved or returned; when processing payment requests, it supports multiple payment methods, such as cash, bank cards, and mobile payments, and interfaces with major payment platforms to ensure the security and convenience of the payment process; the core control module also monitors the system's operating status in real time, and automatically issues alarms and records relevant information when abnormalities are detected, such as equipment failures or network interruptions.
[0015] Preferably, the mobile inventory module is a portable handheld device with a built-in RFID reader and wireless communication module. When conducting inventory checks, staff only need to move the handheld device around the jewelry storage area. The device can automatically read the RFID electronic tag information of all jewelry within its range and transmit the read data to the core control module via the wireless communication module. The core control module compares the inventory data with the inventory data in the system, quickly identifies discrepancies, and displays the discrepancy information on the screen of the mobile inventory module in real time, facilitating timely verification and processing by staff. The mobile inventory module also has a data storage function. When the network signal is poor, the inventory data can be stored first and then uploaded after the network is restored.
[0016] Preferably, the intelligent interaction module includes, but is not limited to, touchscreens and displays installed in the sales area. When a customer places jewelry in the sensing area of the intelligent interaction module, the module reads the RFID electronic tag information of the product through the identification module and displays detailed product information on the display screen, such as high-definition pictures, material descriptions, and craftsmanship features. At the same time, the intelligent interaction module records the customer's try-on information, including but not limited to the try-on time and the product tried on. During promotional activities, the intelligent interaction module automatically calculates the discounted price according to the promotional plan issued by the core control module and displays it to the customer. The intelligent interaction module also supports customers to query relevant information and submit purchase intentions through touch operation.
[0017] Preferably, the data analysis module collects various types of data generated during system operation, including but not limited to sales data, inventory data, try-on data, and customer information; it then uses big data analytics to deeply mine and analyze this data; for example, it analyzes the sales performance of different types of jewelry over different time periods to identify best-selling and slow-moving items; it uses try-on data to understand customer preferences and needs, providing a reference for jewelry design and procurement; it analyzes customer information to achieve precise marketing; and the data analysis module generates various analysis reports, presented to managers in the form of charts, text, etc., to assist them in making scientific business decisions.
[0018] Preferably, the security protection module safeguards the system and the goods; regarding data security, it encrypts transmitted and stored data to prevent data leakage and tampering; it sets up strict user access management, with different personnel in different positions having different operating permissions to ensure data access security; regarding goods security, when jewelry is illegally removed or moved, the security protection module will issue an alarm through the identification module and the core control module, and trigger relevant security measures, such as locking the display case and notifying security personnel; in addition, the security protection module will also regularly perform security checks and vulnerability patching on the system to improve the system's risk resistance capabilities.
[0019] A method for using a jewelry retail system based on radio frequency identification (RFID) technology includes the following steps:
[0020] Step 1, System Initialization and Tag Generation: Administrators initialize the system, including parameter configuration and user permission allocation; after the jewelry passes quality inspection, the tag generation module generates RFID electronic tags based on the product information and prints them, and staff affix the tags to the corresponding jewelry.
[0021] Step 2, Product Shelving and Information Entry: Staff place jewelry with RFID electronic tags in the designated display location. The identification module reads the tag information and transmits it to the core control module. The core control module enters the product information into the system, completing the product shelving operation, and the inventory quantity increases accordingly.
[0022] Step 3, Sales Process Management: Customers select jewelry in the sales area and learn about product information through the intelligent interaction module; if a customer tries on jewelry, the intelligent interaction module records the try-on information and transmits it to the core control module; when a customer decides to purchase, the staff places the jewelry in the recognition area of the cashier, the recognition module reads the tag information, the core control module calculates the price (if there is a promotion, the discount will be applied automatically), processes the payment request, and updates the product inventory and tag information after the transaction is completed;
[0023] Step 4, Inventory Count: Staff use the mobile inventory module to count the jewelry inventory. The module reads the tag information and transmits it to the core control module. The core control module compares the inventory data with the system inventory data and generates a discrepancy report. Staff then check and adjust the data based on the report.
[0024] Step 5, Data Analysis and Decision Support: The data analysis module continuously collects and analyzes various types of data, generating analysis reports; managers use these reports to understand the business situation and adjust marketing strategies, procurement plans, and product design directions.
[0025] Step 6: System Security Maintenance: The security protection module regularly performs security checks on the system, promptly identifies and fixes security vulnerabilities, and records and handles abnormal operations and security incidents to ensure the security of the system and products.
[0026] Compared with the prior art, the beneficial effects of the present invention are:
[0027] This invention generates a unique RFID electronic tag for each piece of jewelry through a tag generation module, ensuring the accuracy and uniqueness of product information and solving the problem of chaotic product information management in traditional jewelry retail. The identification module can quickly and accurately read tag information, and in conjunction with the core control module, it enables real-time inventory updates and efficient transaction processing, greatly improving the operational efficiency of jewelry retail and reducing manpower and time costs. The mobile inventory module significantly shortens inventory counting time, greatly improving efficiency and accuracy, and reducing manpower and time consumption during the inventory process. The intelligent interaction module enhances interaction with customers, providing them with rich product information and a convenient operating experience, increasing customer satisfaction and repurchase rates. The data analysis module, through the analysis of sales, try-on, and other data, provides enterprises with scientific decision-making basis, helping to optimize product design, adjust marketing strategies, and enhance the enterprise's market competitiveness. The security protection module ensures the security of system data and jewelry products, reducing economic losses caused by security issues. Attached Figure Description
[0028] Figure 1 This is a system schematic diagram of the present invention;
[0029] Figure 2 This is a flowchart of the method of the present invention;
[0030] Figure 3 This is a schematic diagram of the label generation module of the present invention;
[0031] Figure 4 This is a schematic diagram of the identification module of the present invention;
[0032] Figure 5 This is a schematic diagram of the core control module of the present invention;
[0033] Figure 6 This is a schematic diagram of the mobile inventory module of the present invention. Detailed Implementation
[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0035] Please see Figure 1-6 This invention provides a jewelry retail system based on radio frequency identification (RFID) technology, including a label generation module, an identification module, a core control module, a mobile inventory module, an intelligent interaction module, a data analysis module, and a security protection module.
[0036] The tag generation module is used to generate and print RFID electronic tags containing detailed product information after jewelry products have passed quality inspection.
[0037] The identification module is used to read and write information within RFID electronic tags;
[0038] The core control module is used to receive data transmitted by the identification module, manage inventory, process payment and shipping requests, and monitor the system's operating status.
[0039] The mobile inventory module allows staff to quickly count jewelry inventory by hand and compare it with the system's inventory data;
[0040] The intelligent interaction module is used to interact with customers during the sales process, display product information, and process trial records;
[0041] The data analysis module is used to analyze various types of data generated during the sales process to support business decisions;
[0042] The security protection module is used to ensure the security of system data and jewelry.
[0043] When generating RFID electronic tags, the tag generation module rigorously verifies the input product information to ensure its accuracy and completeness. Product information includes, but is not limited to, serial number, batch number, name, price, image, material, and main stone. The generated RFID electronic tags have a unique identification code and are waterproof, antimagnetic, and wear-resistant, making them suitable for various requirements of the jewelry retail environment. After the tags are generated, they are printed using dedicated printing equipment. During the printing process, the information is verified a second time to prevent mismatches between the tag information and the product.
[0044] The identification module includes an RFID reader installed in jewelry display cases, cash registers, or other locations. The RFID reader uses high-frequency or ultra-high-frequency technology, enabling it to quickly and accurately read information from RFID tags within a certain distance. During the reading process, it has anti-interference capabilities, avoiding signal conflicts when multiple tags are present simultaneously. The identification module also supports writing tag information, such as updating the sales status information within the tag after a product is sold. The identification module transmits data to the core control module via wired or wireless means, ensuring data real-time performance and stability.
[0045] The core control module employs a high-performance processor and a stable operating system. Its inventory management functions include real-time updates of product inventory quantity and location information, and timely response and adjustment of inventory data when products are retrieved or returned. When processing payment requests, it supports multiple payment methods, such as cash, bank cards, and mobile payments, and integrates with major payment platforms to ensure the security and convenience of the payment process. The core control module also monitors the system's operating status in real time, and automatically issues alarms and records relevant information when abnormalities are detected, such as equipment failures or network interruptions.
[0046] The mobile inventory module is a portable handheld device with a built-in RFID reader and wireless communication module. When conducting inventory checks, staff simply move the handheld device around the jewelry storage area, and the device automatically reads the RFID electronic tag information of all jewelry within range. The data is then transmitted to the core control module via the wireless communication module. The core control module compares the inventory data with the system's inventory data, quickly identifies discrepancies, and displays the discrepancies on the mobile inventory module's screen in real time, facilitating timely verification and processing by staff. The mobile inventory module also has data storage capabilities; when network signal is poor, inventory data can be stored first and then uploaded later when the network is restored.
[0047] The intelligent interaction module includes, but is not limited to, touchscreens and displays installed in the sales area. When a customer places jewelry in the sensing area of the intelligent interaction module, the module will read the RFID electronic tag information of the product through the identification module and display detailed product information on the display screen, such as high-definition pictures, material descriptions, and craftsmanship features. At the same time, the intelligent interaction module will record the customer's try-on information, including but not limited to the try-on time and the product tried on. During promotional activities, the intelligent interaction module will automatically calculate the discounted price according to the promotional plan issued by the core control module and display it to the customer. The intelligent interaction module also allows customers to query relevant information and submit purchase intentions through touch operation.
[0048] The data analysis module collects various types of data generated during system operation, including but not limited to sales data, inventory data, try-on data, and customer information. Through big data analytics, it performs in-depth mining and analysis of this data. For example, it analyzes sales performance of different jewelry categories over different time periods to identify best-selling and slow-moving items; it understands customer preferences and needs based on try-on data, providing a reference for jewelry design and procurement; it analyzes customer information to achieve precise marketing; and the data analysis module generates various analytical reports, presented to managers in the form of charts, text, etc., to assist them in making informed business decisions.
[0049] The security protection module safeguards the system and merchandise. Regarding data security, it encrypts transmitted and stored data to prevent leakage and tampering. Strict user access management is implemented, with different personnel holding different access permissions to ensure secure data access. For merchandise security, when jewelry is illegally removed or moved, the security protection module triggers an alarm through the identification and core control modules, simultaneously initiating relevant security measures such as locking the display case and notifying security personnel. Furthermore, the security protection module regularly performs security checks and vulnerability patching to enhance the system's resilience.
[0050] A method for using a jewelry retail system based on radio frequency identification (RFID) technology includes the following steps:
[0051] Step 1, System Initialization and Tag Generation: Administrators initialize the system, including parameter configuration and user permission allocation; after the jewelry passes quality inspection, the tag generation module generates RFID electronic tags based on the product information and prints them, and staff affix the tags to the corresponding jewelry.
[0052] Step 2, Product Shelving and Information Entry: Staff place jewelry with RFID electronic tags in the designated display location. The identification module reads the tag information and transmits it to the core control module. The core control module enters the product information into the system, completing the product shelving operation, and the inventory quantity increases accordingly.
[0053] Step 3, Sales Process Management: Customers select jewelry in the sales area and learn about product information through the intelligent interaction module; if a customer tries on jewelry, the intelligent interaction module records the try-on information and transmits it to the core control module; when a customer decides to purchase, the staff places the jewelry in the recognition area of the cashier, the recognition module reads the tag information, the core control module calculates the price (if there is a promotion, the discount will be applied automatically), processes the payment request, and updates the product inventory and tag information after the transaction is completed;
[0054] Step 4, Inventory Count: Staff use the mobile inventory module to count the jewelry inventory. The module reads the tag information and transmits it to the core control module. The core control module compares the inventory data with the system inventory data and generates a discrepancy report. Staff then check and adjust the data based on the report.
[0055] Step 5, Data Analysis and Decision Support: The data analysis module continuously collects and analyzes various types of data, generating analysis reports; managers use these reports to understand the business situation and adjust marketing strategies, procurement plans, and product design directions.
[0056] Step 6: System Security Maintenance: The security protection module regularly performs security checks on the system, promptly identifies and fixes security vulnerabilities, and records and handles abnormal operations and security incidents to ensure the security of the system and products.
[0057] Example:
[0058] Taking a large jewelry retail store as an example, the jewelry retail system based on radio frequency identification technology of the present invention will be specifically described.
[0059] In this jewelry retail store, the label generation module is equipped with a dedicated information input terminal and an RFID tag printer. After a batch of gold necklaces passes quality inspection, staff input information such as the necklace's serial number, batch number, name, material (gold), main stone (none), initial price (calculated based on the day's gold price and weight), and a high-resolution image into the label generation module. The module verifies this information to ensure there are no omissions or errors, and then generates a unique RFID electronic tag. The tag is made of waterproof, anti-magnetic, and wear-resistant materials. Subsequently, the dedicated printer prints the tag. During the printing process, the system automatically compares the printed tag information with the entered product information. After confirming that everything is correct, staff affix the tag to the corresponding gold necklace.
[0060] The RFID readers for the identification module are installed in various compartments of the gold necklace display case, in the identification area of the cashier, and under the sensing platform in the try-on area. These readers use ultra-high frequency technology, have a suitable reading distance, and can accurately identify the RFID tag information of the gold necklaces placed there. When multiple necklaces are placed in the display case or try-on area at the same time, the reader's anti-interference function comes into play, avoiding signal conflicts and accurately reading the information of each necklace. After a sale, the reader can also write the sales status (sold) of the necklace into the tag.
[0061] The core control module is installed in the retail store's back-end server, utilizing a high-performance processor and a stable Linux operating system. When a gold necklace is placed in a display case, the identification module inside the case reads the tag information and transmits it to the core control module. The core control module immediately records the necklace's information into the system, increases the inventory accordingly, and records its storage location. When a customer tries on a necklace in the fitting area and returns it to the display case, the core control module can promptly sense the change in the necklace's position and update the inventory status. At the checkout, staff place the purchased gold necklace in the identification area of the cashier. The identification module reads the information and transmits it to the core control module. The core control module recalculates the price based on the real-time gold price of the day and the necklace's weight. If there is a "spend 1000, get 100 off" promotion in the store, the system automatically applies the promotion to calculate the discounted price. After the customer chooses mobile payment, the core control module connects with the payment platform to complete the payment process, then updates the necklace's inventory status to "sold" and records the transaction time, amount, and other information. Meanwhile, the core control module monitors the operation of each device in real time. If the identification module of a certain display cabinet fails to read information, the core control module will immediately issue an alarm and record the location and time of the faulty device in the background.
[0062] The mobile inventory module is a lightweight handheld device. Staff conduct a weekly inventory check of the gold necklaces in the store. Staff move the device around the gold display area, and the built-in RFID reader quickly reads the tag information of each gold necklace, transmitting the data in real time to the core control module via a wireless communication module. The core control module compares the inventory data with the inventory data recorded in the system. If a necklace is found to exist in the system but not during the inventory check, or if a necklace is counted but not recorded in the system, these discrepancies are immediately displayed on the mobile inventory module's screen. Staff then verify the information on-site based on the screen prompts, identify the cause of the discrepancy, and make adjustments. If the network signal is unstable during the inventory check, the mobile inventory module will first store the read information internally and automatically upload it to the core control module once the network is restored.
[0063] The intelligent interactive module is equipped with multiple touchscreens and high-definition displays in the gold sales area. When a customer places a gold necklace on the sensing platform in the fitting area, the intelligent interactive module reads the necklace's RFID tag information through its identification module. The display immediately shows a 360-degree high-definition image of the necklace, detailed material specifications (e.g., 99.9% gold content), weight, real-time calculated price, and craftsmanship features. Simultaneously, the intelligent interactive module begins recording fitting information, including the start time of the fitting and the necklace number, and transmits this information to the core control module in real time. If a customer tries on different necklaces of the same style multiple times, the intelligent interactive module will count the number of fittings. During promotional periods, when a customer views the necklace price, the intelligent interactive module will clearly display the original price, discount amount, and discounted price on the display according to the promotional rules issued by the core control module, along with detailed descriptions of the promotional activities. Customers can also use the touchscreen to search for other sizes of the same necklace and similar style recommendations.
[0064] The data analytics module continuously collects sales data for gold necklaces in the store (such as daily sales volume, sales revenue, best-selling styles, etc.), inventory data (such as inventory turnover rate, overstocked styles, etc.), try-on data (such as the number of times each style was tried on, and the purchase conversion rate after trying on, etc.), and customer information (such as customer age group, preferred styles, etc.). This data is processed using big data analytics algorithms. For example, if the analysis reveals that a certain style of gold necklace is tried on more frequently and has a higher purchase conversion rate among female customers aged 25-35, the data analytics module will generate a corresponding analysis report, indicating that this style is popular among young women and suggesting increasing the stock of this style and launching new designs with similar features. Simultaneously, analyzing sales data for different time periods reveals that sales on weekends and holidays are significantly higher than on weekdays, and the report suggests deploying more sales staff and launching targeted promotional activities during these periods. Management can review these analysis reports to adjust purchasing plans, marketing strategies, and product design direction.
[0065] The security module employs advanced data encryption algorithms to encrypt information transmitted and stored in the system, including gold necklace data, transaction data, and customer information, preventing unauthorized theft and tampering. The system has strict user access controls: sales personnel can only view and process sales-related information and cannot modify basic inventory data; administrators have higher privileges but are still subject to operation log recording and monitoring. Regarding product security, if someone attempts to forcibly remove the RFID tag from a gold necklace in the display case, the identification module senses the anomaly and transmits a signal to the core control module. The security module immediately activates an alarm, the display case emits an audible and visual alarm, and the backend system sends an alert to the security personnel's mobile phone, displaying the location of the anomaly. The security module also performs daily security checks on the system, scanning for software vulnerabilities and potential security threats. Any problems discovered are promptly fixed, and the detection results and fixes are recorded.
[0066] 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 jewelry retail system based on radio frequency identification technology, characterized in that: The system comprises a label generation module, an identification module, a core control module, a mobile inventory module, an intelligent interaction module, a data analysis module, and a security protection module. The label generation module is used to generate an RFID electronic label containing detailed information of a jewelry product after the product passes quality inspection, and to print the label. The identification module is used to read and write information in the RFID electronic label. The core control module is used to receive data transmitted by the identification module, manage inventory, process payment and delivery requests, and monitor system operation status. The mobile inventory module is used for staff to conduct rapid inventory of jewelry inventory and compare with system inventory data. The intelligent interaction module is used to interact with customers during the sales process, display product information, and process try-on records. The data analysis module is used to analyze various data generated during the sales process to support business decision-making. The security protection module is used to protect system data security and jewelry product security.
2. The radio frequency identification technology based jewelry retail system as claimed in claim 1, wherein: The label generation module strictly checks the input product information when generating the RFID electronic label to ensure the accuracy and integrity of the information. The product information includes but is not limited to serial number, batch number, name, price, picture, material, and main stone. The generated RFID electronic label has a unique identification code and has the characteristics of waterproof, anti-magnetic, and wear-resistant, which can meet various requirements of jewelry retail environment. After the label is generated, it is printed by a special printing device. Information is verified again during the printing process to prevent mismatch between label information and product.
3. The radio frequency identification technology based jewelry retail system as claimed in claim 1, wherein: The identification module comprises RFID readers installed on jewelry display cabinets, cash registers, or other locations. The RFID readers use high-frequency or ultra-high-frequency technology to quickly and accurately read the information of RFID electronic labels within a certain distance. During the reading process, the identification module has anti-interference ability to avoid signal conflicts when multiple labels exist simultaneously. In addition, the identification module also supports writing operations on label information. The identification module transmits data to the core control module through wired or wireless methods to ensure real-time and stability of data.
4. The radio frequency identification technology based jewelry retail system as claimed in claim 1, wherein: The core control module uses high-performance processors and stable operating systems. The inventory management function of the core control module includes real-time updating of product inventory quantity and location information. When a product is taken out or put back, the system can respond in time and adjust the inventory data. When processing payment requests, the system supports multiple payment methods and interfaces with major payment platforms to ensure the safety and convenience of the payment process. The core control module also monitors the system's operation status in real time. When abnormal conditions such as device failure or network interruption are found, the system automatically sends an alarm and records relevant information.
5. The radio frequency identification technology based jewelry retail system as claimed in claim 1, wherein: The mobile inventory module is a portable handheld device with an RFID reader and a wireless communication module. When the staff conducts inventory, they only need to move the device in the jewelry storage area. The device can automatically read the RFID electronic tag information of all jewelry within the range and transmit the read data to the core control module through the wireless communication module. The core control module compares the inventory data with the system inventory data, quickly finds the differences, and displays the difference information on the screen of the mobile inventory module in real time, making it easy for staff to check and handle in a timely manner. The mobile inventory module also has data storage function. When the network signal is not good, it can store the inventory data first, and then upload it after the network is restored.
6. The radio frequency identification technology based jewelry retail system of claim 1, wherein: The intelligent interaction module includes but is not limited to touch screen and display screen set in the sales area. When the customer places the jewelry in the sensing area of the intelligent interaction module, the module will read the RFID electronic tag information of the goods through the identification module and display the detailed information of the goods on the display screen. At the same time, the intelligent interaction module will record the customer's try-on information, including but not limited to try-on time and try-on goods. During the promotion period, the intelligent interaction module will automatically calculate the discount price and display it to the customer according to the promotion plan issued by the core control module. The intelligent interaction module also supports customers to query related information and submit purchase intention through touch operation.
7. The radio frequency identification technology based jewelry retail system of claim 1, wherein: The data analysis module collects various data generated during system operation, including but not limited to sales data, inventory data, try-on data, and customer information. Through big data analysis technology, the above data is deeply mined and analyzed. According to the try-on data, the customer's preferences and needs are understood, providing reference for jewelry design and procurement. The customer information is analyzed to achieve precise marketing. The data analysis module generates various analysis reports in the form of charts and text to present to management personnel, assisting them in making scientific business decisions.
8. The radio frequency identification technology based jewelry retail system of claim 1, wherein: The security protection module ensures the safety of the system and goods. In terms of data security, the transmitted and stored data is encrypted to prevent data leakage and tampering. Strict user permission management is set up, and different personnel in different positions have different operation permissions to ensure the security of data access. In terms of product safety, when the jewelry is illegally taken out or moved, the security protection module will issue an alarm through the identification module and the core control module, and trigger related security measures at the same time. In addition, the security protection module will also regularly conduct security detection and vulnerability repair on the system to improve the risk resistance of the system.