Logistics tracking system and logistics tracking method based on intelligent wearable device
By enabling real-time information interaction between smart wearable devices and item positioning devices, the problems of inaccurate positioning, low efficiency, and imprecise positioning in logistics tracking have been solved, achieving efficient and accurate item tracking and management, and improving item retrieval efficiency and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2026-03-10
AI Technical Summary
Existing logistics tracking technologies suffer from inaccurate positioning, low efficiency, and imprecise location, especially when network signals are unstable. Manual inspections are inefficient and prone to oversights, and the location of lost items is not accurate enough.
By using smart wearable devices to interact with object positioning devices (such as RFID tags or GPS devices) in real time, and performing edge computing and data processing through smart wearable devices, real-time tracking and management of objects can be achieved, reducing dependence on network signals and improving positioning accuracy and efficiency.
It achieves precise positioning of items, improves the efficiency of item retrieval, reduces human oversight and errors, provides a wider positioning range and a better user experience, enhances security, and avoids problems such as inaccurate positioning and low efficiency.
Smart Images

Figure FT_1
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent wear and logistics management, and in particular to a logistics tracking system based on an intelligent wear device and a logistics tracking method. BACKGROUND
[0002] With the development of science and technology and the popularity of the Internet, intelligent wear devices have been widely used in various fields, including health monitoring, sports tracking, smart home, etc. At the same time, logistics management technology is also developing, and through real-time tracking and positioning technology, accurate management of goods can be achieved. Real-time tracking technology mainly uses GPS, RFID, etc. to realize real-time acquisition and transmission of the location information of goods. In logistics management, the existing solutions mainly use GPS devices or RFID tags installed on goods to realize real-time tracking of goods. When goods are lost, the location information of the goods can be obtained through these devices to realize the recovery of the goods. In addition, some logistics companies also use manual inspection to check the status and location of goods to achieve management of the goods. Although the existing solutions can achieve real-time tracking and management of goods to some extent, there are still some problems. First, the existing technology mainly uses GPS devices or RFID tags to track goods, but these devices need to rely on network signals, and when the network signal is unstable, it may cause inaccurate positioning or failure to position. Second, the existing technology mainly uses manual inspection to manage goods, but this method is inefficient and prone to omissions and errors. Finally, after the goods are lost, although the location information of the goods can be obtained through the device, this positioning method is often not accurate enough to accurately find the specific location of the goods. Therefore, the existing technology has problems such as inaccurate positioning, low efficiency, and inaccurate positioning in this field.
[0003] Therefore, it is necessary to provide a logistics tracking system with accurate positioning and real-time intercommunication. SUMMARY
[0004] The purpose of the present application is to provide a logistics tracking system with accurate positioning and real-time intercommunication.
[0005] To achieve the purpose of the present application, the following technical solutions are provided: The present application provides a logistics tracking system based on an intelligent wear device, which includes an intelligent wear device and a goods positioning device, and the intelligent wear device and the goods positioning device can interact information in real time.
[0006] In some embodiments, the intelligent wear device includes a smart watch, a smart bracelet, smart glasses, or a smart ring.
[0007] In some embodiments, the item positioning device includes an RFID tag or GPS device that can be attached to the item.
[0008] In some embodiments, the smart wearable device is equipped with a first communication module, and the object positioning device is equipped with a second information module, wherein the first communication module and the second communication module can exchange information in real time.
[0009] In some embodiments, the smart wearable device includes an information processing chip with data processing capabilities, which can perform calculations on the information transmitted from the second communication module, and the processing result can be sent from the first communication module to the second communication module.
[0010] In some implementations, the information processing chip can perform edge computing and connect to the Internet and the cloud.
[0011] In some implementations, the information processing chip of the smart wearable device sends an interaction command to the second communication module at predetermined intervals through the first communication module. After receiving the interaction command, the second communication module sends the current location information of the object positioning device to the second communication module.
[0012] In some embodiments, the smart wearable device further includes an alarm module connected to the information processing chip.
[0013] This application also provides a logistics tracking method using the aforementioned logistics tracking system based on a smart wearable device, which includes the following steps: (1) Establish a pairing relationship between smart wearable devices and object positioning devices; (2) The item positioning device periodically sends the positioning information to the smart wearable device; (3) The smart wearable device interacts with the object positioning device based on the positioning information.
[0014] Compared with the prior art, this application has the following advantages: This application achieves real-time tracking of items by interacting with a smart wearable device and an item positioning device, avoiding inaccurate positioning caused by unstable network signals. This application, through real-time tracking and management of items using a smart wearable device, significantly improves work efficiency and reduces human error and oversight. Furthermore, by interacting with the item positioning device, this application enables real-time tracking and management of items; when an item is lost, its exact location can be quickly and accurately located, improving the efficiency of item retrieval.
[0015] This application offers high positioning accuracy by employing an intelligent wearable device that interacts with the object positioning device. Through real-time tracking technology, it achieves precise object location, unaffected by network signal stability, and can more accurately obtain object location information. It also boasts high efficiency, utilizing intelligent wearable devices for real-time tracking and management, eliminating the need for manual inspections, significantly improving work efficiency, and reducing oversights and errors. Furthermore, it offers a wide positioning range, enabling end-to-end tracking of objects. Compared to existing GPS devices or RFID tags, this application has a wider positioning range, unrestricted by geographical location or environment, and can obtain more comprehensive object location information. The application also provides a superior user experience, allowing users to view the object's location and status in real-time through an application on the intelligent wearable device; the operation is simple and convenient. Compared to existing GPS devices or RFID tags, this application offers a better user experience and better meets user needs. Finally, it offers high security, enabling real-time monitoring and management of objects. Compared to existing GPS devices or RFID tags, this application offers higher security, effectively preventing object loss or theft. In summary, this application, compared to existing technologies, possesses advantages such as high positioning accuracy, high efficiency, wide positioning range, superior user experience, and high security, making it a more advanced and practical technical solution. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the logistics tracking system based on smart wearable devices in this application. Detailed Implementation
[0017] Exemplary embodiments of this application will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of this application are shown in the drawings, it should be understood that this application may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of this application and to fully convey the scope of this application to those skilled in the art.
[0018] It should be understood that the terminology used herein is for the purpose of describing particular exemplary embodiments only and is not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms “a,” “an,” and “described” used herein may also mean including the plural forms. The terms “comprising,” “including,” “containing,” and “having” are inclusive and therefore indicate the presence of stated features, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described herein are not construed as requiring them to be performed in a specific order described or illustrated unless the order of performance is explicitly indicated. It should also be understood that additional or alternative steps may be used. Although the terms first, second, third, etc., may be used herein to describe multiple elements, components, regions, layers, and / or segments, these elements, components, regions, layers, and / or segments should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or segment from another region, layer, or segment. Unless the context explicitly indicates otherwise, terms such as “first,” “second,” and other numerical terms do not imply order or sequence when used in the text.
[0019] Please see Figure 1 This application is based on a logistics tracking system for smart wearable devices, which includes smart wearable devices and item positioning devices, and the smart wearable devices and item positioning devices can exchange information in real time.
[0020] The smart wearable device may include a smartwatch, smart bracelet, smart glasses, or smart ring, or other forms of smart wearable device. The item positioning device includes an RFID tag or GPS device that can be attached to the item.
[0021] The smart wearable device is equipped with a first communication module, and the object positioning device is equipped with a second information module. The first communication module and the second communication module can exchange information in real time.
[0022] The smart wearable device is equipped with an information processing chip, which has data processing capabilities and can perform calculations on the information transmitted from the second communication module. The processing result can be sent from the first communication module to the second communication module.
[0023] The information processing chip can perform edge computing and connect to the Internet and the cloud.
[0024] The information processing chip of the smart wearable device sends an interaction command to the second communication module at predetermined intervals through the first communication module. After receiving the interaction command, the second communication module sends the current location information of the object positioning device to the second communication module.
[0025] The smart wearable device also includes an alarm module connected to the information processing chip.
[0026] This application primarily utilizes smart wearable devices, such as smartwatches or smart bracelets, as the interaction device for the object positioning system. These smart wearable devices possess real-time communication and data processing capabilities, enabling real-time information exchange with the object positioning system and avoiding inaccurate positioning issues caused by unstable network signals.
[0027] This application involves attaching an item positioning device, such as an RFID tag or GPS device, to an item. The item positioning device can achieve real-time location tracking of the item and send the location information to a smart wearable device.
[0028] This application enables real-time tracking and management of items through information interaction between smart wearable devices and item positioning devices. When an item is lost, the smart wearable device can quickly and accurately locate the item's specific position, improving the efficiency of item retrieval.
[0029] This application utilizes smart wearable devices to report location information during the logistics process in real time, enabling real-time monitoring of the logistics process. When items are lost, their exact location can be quickly and accurately located using smart wearable devices, improving the efficiency of item retrieval.
[0030] This application utilizes smart wearable devices to achieve real-time tracking and management of items, significantly improving work efficiency and reducing human error and oversight. Furthermore, because smart wearable devices enable real-time information exchange, they reduce manual intervention and further enhance work efficiency.
[0031] This application also provides a logistics tracking method using the aforementioned logistics tracking system based on a smart wearable device, which includes the following steps: (1) Establish a pairing relationship between smart wearable devices and object positioning devices; (2) The item positioning device periodically sends the positioning information to the smart wearable device; (3) The smart wearable device interacts with the object positioning device based on the positioning information.
[0032] This application embodiment is a specific implementation of a real-time logistics tracking system based on smart wearable devices. Step 1: Introduction of the smart wearable device. This embodiment mainly uses a smartwatch as the interaction device for the item positioning device. The smartwatch has real-time communication and data processing capabilities, enabling real-time information interaction with the item positioning device. Step 2: Installation of the item positioning device. In this embodiment, RFID tags are installed on the items as item positioning devices. The RFID tags can achieve real-time positioning of the items and send the positioning information to the smartwatch. Step 3: Interaction between the smart wearable device and the item positioning device. This embodiment achieves real-time tracking and management of items through information interaction between the smartwatch and the RFID tags. When an item is lost, the smartwatch can quickly and accurately locate the item's specific location, improving the efficiency of item retrieval. Step 4: Real-time monitoring of the logistics process. This embodiment uses the smartwatch to promptly report the positioning information during the logistics process, achieving real-time monitoring of the logistics process. When an item is lost, the smartwatch can quickly and accurately locate the item's specific location, improving the efficiency of item retrieval.
[0033] This embodiment utilizes a smartwatch to achieve real-time tracking and management of items, significantly improving work efficiency and reducing human error and oversight. Furthermore, the real-time information interaction capability of the smartwatch reduces manual intervention and further enhances efficiency. In this embodiment, the smartwatch is an Apple Watch Series 6, and the RFID tag is a HID Global 125 kHz RFID Tag. The communication protocol between the smartwatch and the RFID tag is Bluetooth Low Energy (BLE). The communication protocol between the smartwatch and the backend server is HTTPS. The smartwatch's parameters are set as follows: communication frequency of 1 Hz, positioning accuracy of 5 meters, and battery life of 1 week. The RFID tag's parameters are set as follows: operating frequency of 125 kHz, reading distance of 10 meters, and battery life of 1 year. The backend server's hardware configuration is as follows: CPU model Intel Xeon E5-2620 v4, memory capacity of 32 GB, hard disk capacity of 2 TB, and network bandwidth of 100 Mbps. The backend server software configuration is as follows: operating system is Ubuntu 18.04, database is MySQL 5.7, web server is Nginx 1.10.3, and application is Node.js 12.16.3. In this embodiment, the information interaction process between the smartwatch and the RFID tag is as follows: the smartwatch sends a read command to the RFID tag every second. After receiving the read command, the RFID tag sends its current location information to the smartwatch. After receiving the location information, the smartwatch uploads it to the backend server for storage and analysis. In this embodiment, the information interaction process between the smartwatch and the backend server is as follows: the smartwatch uploads the collected location information to the backend server every minute. After receiving the location information, the backend server stores the location information in the database and updates the logistics status in real time. In this embodiment, when an item is lost, the smartwatch will automatically trigger an alarm function and send a notification to the user. The user can view the specific location of the item through the application on the smartwatch and follow the instructions to retrieve the item. In this embodiment, when an item is lost, the backend server will automatically start a retrieval algorithm. Based on the item's current location and historical trajectory, it will calculate the most likely location range of the item and push the location range to the smartwatch. The user can then retrieve the item based on the location range.
[0034] Due to its advanced nature, this application has broad applications in fields such as smart wearable device technology, logistics management technology, and real-time tracking technology. Firstly, in the field of smart wearable device technology, this application enables interaction between smart wearable devices and item positioning devices, thereby achieving real-time tracking and management of items. This technology can provide smart wearable devices with more functions and application scenarios, further promoting the popularization and development of smart wearable device technology. Secondly, in the field of logistics management technology, this application enables precise management of items, improving the efficiency and accuracy of logistics management. Through real-time tracking and positioning technology, the location information of items can be acquired and transmitted in real time, thereby avoiding loss and damage and improving the overall level of logistics management. Finally, in the field of real-time tracking technology, this application enables precise positioning of items, improving the accuracy and efficiency of positioning. Through interaction between smart wearable devices and item positioning devices, real-time tracking and management of items can be achieved, thereby improving the accuracy and efficiency of positioning and meeting the market demand for efficient and accurate positioning. In summary, this application has broad application prospects in fields such as smart wearable device technology, logistics management technology, and real-time tracking technology, and is expected to promote the development and application of related technologies, meeting the market demand for efficient and accurate positioning.
[0035] Compared with existing technologies, this application mainly solves the following problems: 1. Inaccurate positioning: Existing technologies mainly track items using GPS devices or RFID tags. However, these devices rely on network signals, and unstable network signals can lead to inaccurate or unlocatable positioning. This application achieves real-time tracking of items by interacting with the item positioning device through a smart wearable device, avoiding the inaccurate positioning problem caused by unstable network signals. 2. Low efficiency: Existing technologies mainly manage items through manual inspection, but this method is inefficient and prone to oversights and errors. This application achieves real-time tracking and management of items through a smart wearable device, greatly improving work efficiency and reducing human oversights and errors. 3. Inaccurate positioning: Existing technologies can obtain the location information of lost items through devices, but this positioning method is often not accurate enough and may not be able to accurately locate the specific location of the item. This application achieves real-time tracking and management of items by interacting with the item positioning device through a smart wearable device. When an item is lost, its specific location can be quickly and accurately located, improving the efficiency of item retrieval.
[0036] This application utilizes a smart wearable device to interact with an item positioning device, enabling precise item location through real-time tracking technology. Compared to existing GPS devices or RFID tags, this application offers higher positioning accuracy, is unaffected by network signal stability, and can more accurately obtain item location information. This application employs a smart wearable device for real-time tracking and management, eliminating the need for manual inspection and significantly improving work efficiency. Compared to existing manual management methods, this application is more efficient, reducing omissions and errors. This application utilizes a smart wearable device for real-time tracking and management, enabling end-to-end tracking of items. Compared to existing GPS devices or RFID tags, this application has a wider positioning range, is not limited by geographical location or environment, and can more comprehensively obtain item location information. This application utilizes a smart wearable device for real-time tracking and management; users can view the item's location and status in real-time through an application on the smart wearable device, offering simple and convenient operation. Compared to existing GPS devices or RFID tags, this application provides a better user experience and better meets user needs. This application utilizes a smart wearable device to interact with an item positioning device, enabling real-time monitoring and management of items. Compared to existing GPS devices or RFID tags, this application offers higher security and can effectively prevent items from being lost or stolen. In summary, compared to existing technologies, this application has advantages such as high positioning accuracy, high efficiency, wide positioning range, good user experience, and high security, making it a more advanced and practical technical solution.
[0037] The above description is only a preferred embodiment of this application. The scope of protection of this application is not limited thereto. Any equivalent transformation based on the technical solution of this application shall fall within the scope of protection of this application.
Claims
1.A logistics tracking system based on a smart wearable device, characterized by, It includes smart wearable devices and article positioning devices, which can interact information in real time. 2.The smart wear device based logistics tracking system of claim 1, wherein, The smart wearable device includes a smart watch or a smart bracelet or a smart glasses or a smart ring. 3.The smart wear device-based logistics tracking system of claim 1 or 2, wherein, The article positioning device includes an RFID tag or a GPS device that can be fixed on an article. 4.The smart wear device based logistics tracking system of claim 1, wherein, The smart wearable device is provided with a first communication module, and the article positioning device is provided with a second information module, and the first communication module and the second communication module can interact information in real time. 5.The smart wear device based logistics tracking system of claim 4, wherein, The smart wearable device is provided with an information processing chip, which has data processing capability and can calculate and process the information transmitted by the second communication module, and the processing result can be sent to the second communication module through the first communication module. 6.The smart wear device based logistics tracking system of claim 5, wherein, The information processing chip can perform edge computing and can be connected to the Internet and the cloud. 7.The smart wear device based logistics tracking system of claim 6, wherein, The information processing chip of the smart wearable device sends an interaction instruction to the second communication module through the first communication module at each predetermined interval, and the second communication module sends the current position information of the article positioning device to the second communication module after receiving the interaction instruction. 8.The smart wear device based logistics tracking system of claim 7, wherein, The smart wearable device further includes an alarm module connected to the information processing chip. 9.A logistics tracking method of the logistics tracking system based on the smart wearable device according to any one of claims 1 to 8, characterized in that, It includes the following steps: (1) Establish the pairing relationship between the smart wearable device and the article positioning device; (2) The article positioning device sends the positioning information to the smart wearable device at regular intervals; (3) The smart wearable device interacts information with the article positioning device according to the positioning information.