Wearable device, article processing method and storage medium

By designing sensing components, cameras, and positioning modules for wearable devices, automated warehousing and outbound management of goods is achieved, solving the problem of low efficiency in manual processing and improving the efficiency of goods processing and user experience.

CN120996701APending Publication Date: 2025-11-21GREE ELECTRIC APPLIANCE INC OF ZHUHAI +1
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Patent Information

Application Number
CN202511039765.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

In existing technologies, the management of goods entering and leaving the warehouse mainly relies on manual processing, which is inefficient, prone to errors, and results in a poor user experience.

Method used

Design a wearable device comprising a sensing component, a camera, a positioning module, and a processing module. The sensing component acquires working signals to determine the working mode. In write mode, it binds item information and location information for storage. In read mode, it generates a navigation path and a release confirmation. The navigation path is displayed on a screen.

Benefits of technology

It improves the efficiency of item processing, allowing users to quickly find items to be shipped out, freeing up their hands and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides wearable equipment, an article processing method and a storage medium. The wearable equipment comprises a processing module, and a sensing assembly, a camera, a positioning module and a display screen which are connected with the processing module; the processing module is used for acquiring the working signal sent by the sensing assembly, and binding and storing the article information of the to-be-stored article and positioning information when the article information of the to-be-stored article scanned by the camera and the positioning information determined by the positioning module are acquired under the condition that a write-in mode is determined according to the working signal; under the condition that a reading mode is determined according to the working signal, obtaining article information of the to-be-delivered article, and querying to obtain positioning information of the to-be-delivered article; generating a navigation path according to the positioning information of the to-be-delivered article, so that a user completes delivery of the to-be-delivered article according to the navigation path; the display screen is used for displaying the navigation path. Therefore, the article processing efficiency is improved, and the user experience is improved.
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Description

Technical Field

[0001] This invention relates to the field of computer technology, and in particular to a wearable device, a method for processing an article, and a computer-readable storage medium. Background Technology

[0002] With economic development, people are becoming increasingly reliant on supermarkets and retail stores, resulting in a large volume of goods that need to be handled and managed for warehousing and outbound operations. Currently, the handling of these goods is done manually, with people manually entering or leaving the warehouse based on the item information. This method is often inefficient, prone to errors, and creates a poor user experience. Summary of the Invention

[0003] In view of the above problems, embodiments of the present invention are proposed to provide a wearable device, a method for processing an article, and a computer-readable storage medium that overcome or at least partially solve the above problems.

[0004] To address the above problems, embodiments of the present invention disclose a wearable device, comprising:

[0005] Sensing components are used to acquire input operating signals;

[0006] A camera is used to scan items and obtain information about them.

[0007] The positioning module is used to obtain positioning information;

[0008] A processing module connected to the sensing component, the camera, and the positioning module respectively is used to acquire the working signal sent by the sensing component and determine the corresponding working mode based on the working signal;

[0009] When the working mode is write mode, when the item information of the item to be put into the warehouse is obtained by the camera scanning and the location information determined by the positioning module is obtained, the item information of the item to be put into the warehouse and the location information are bound and stored to complete the warehousing of the item to be put into the warehouse.

[0010] When the working mode is read mode, the system obtains the item information of the item to be shipped from the order information, and queries the location information of the item to be shipped based on the item information; generates a navigation path based on the location information of the item to be shipped; obtains the item information of the item to be shipped obtained by the camera scan; and determines whether the item to be shipped from the order information has been shipped based on the item information of the item to be shipped obtained by the camera scan and the item information of the item to be shipped from the order information.

[0011] A display screen connected to the processing module is used to obtain and display the navigation path generated by the processing module.

[0012] In one embodiment, the working signals include: a write working signal and a read working signal;

[0013] The processing module is configured to determine the working mode as write mode when the working signal sent by the sensing component is the write working signal when there is an input task; and to determine the working mode as read mode when the working signal sent by the sensing component is the read working signal when there is no input task.

[0014] In one embodiment, the sensing component includes: a first button and a second button;

[0015] The first button is used to acquire a first operation in response to the write working signal and send the write working signal to the processing module;

[0016] The second button is used to obtain a second operation in response to the read operation signal and to send the read operation signal to the processing module.

[0017] In one embodiment, the sensing component includes: a gravity sensor;

[0018] The gravity sensor is used to send a write signal to the processing module when it detects a first change in gravity information, and to send a read signal to the processing module when it detects a second change in gravity information.

[0019] In one embodiment, the processing module is further configured to update the navigation path based on the location information of the item to be retrieved when a deviation from the navigation path is detected;

[0020] The display screen is also used to obtain the updated navigation path sent by the processing module and display the updated navigation path.

[0021] In one embodiment, the display screen is further configured to acquire the item information and corresponding location information of the item to be shipped from the warehouse sent by the processing module, and display the item information and corresponding location information of the item to be shipped from the warehouse.

[0022] In one embodiment, the operating signals include: a write operating signal and a read operating signal; the wearable device further includes:

[0023] A voice interaction module connected to the processing module is used to acquire a first voice and send a write signal to the processing module according to the first voice; acquire a second voice and send a read signal to the processing module according to the second voice; acquire the navigation path sent by the processing module and output the navigation path; acquire the updated navigation path and prompt voice sent by the processing module and output the updated navigation path and prompt voice.

[0024] The processing module is further configured to update the navigation path based on the location information of the item to be retrieved when a deviation from the navigation path is detected, and generate the prompt voice.

[0025] This invention also discloses a method for processing an article, the method being applied to a wearable device; the wearable device includes: a processing module, and a sensing component, a camera, a positioning module, and a display screen respectively connected to the processing module, the method comprising:

[0026] The processing module acquires the operating signal sent by the sensing component and determines the corresponding operating mode based on the operating signal.

[0027] When the working mode is write mode, when the processing module obtains the item information of the item to be put into the warehouse obtained by the camera scanning and the location information determined by the positioning module, it binds and stores the item information of the item to be put into the warehouse and the location information to complete the warehousing of the item to be put into the warehouse.

[0028] When the working mode is read mode, the processing module obtains the item information of the item to be shipped from the order information, and queries the location information of the item to be shipped based on the item information of the item to be shipped.

[0029] The processing module generates a navigation path based on the location information of the item to be shipped out, and sends the navigation path to the display screen so that the display screen can display the navigation path;

[0030] The processing module obtains the item information of the item to be shipped from the camera scan, and determines whether the item to be shipped from the order information has been shipped based on the item information of the item to be shipped and the item information of the item to be shipped from the order information.

[0031] Optionally, the operating signal includes: a write operating signal and a read operating signal; the step of acquiring the operating signal sent by the sensing component through the processing module and determining the corresponding operating mode based on the operating signal includes:

[0032] When there is an input task, if the processing module obtains that the working signal sent by the sensing component is the write working signal, it determines that the working mode is the write mode.

[0033] When there is no input task, if the processing module receives the working signal sent by the sensing component as the reading working signal, it determines that the working mode is the reading mode.

[0034] Optionally, the sensing component includes: a first button and a second button; the step of acquiring the operating signal sent by the sensing component through the processing module includes:

[0035] The first operation for the write signal is obtained by pressing the first button, and the write signal is sent to the processing module.

[0036] The second operation is obtained by pressing the second button for the read operation signal, and the read operation signal is sent to the processing module.

[0037] Optionally, the sensing component includes: a gravity sensor; the step of acquiring the operating signal sent by the sensing component through the processing module includes:

[0038] When the gravity sensor detects the first gravity change information, it sends a write operation signal to the processing module.

[0039] When the gravity sensor detects the second gravity change information, it sends the read operation signal to the processing module.

[0040] Optionally, the step of sending the navigation path to the display screen to display the navigation path further includes:

[0041] When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped out, sends the updated navigation path to the display screen, and displays the updated navigation path on the display screen.

[0042] Optionally, the working signal includes: a write working signal and a read working signal; the wearable device further includes: a voice interaction module connected to the processing module; the step of obtaining the working signal sent by the sensing component through the processing module includes:

[0043] The system acquires a first voice signal through the voice interaction module and sends the write signal to the processing module based on the first voice signal; it also acquires a second voice signal and sends the read signal to the processing module based on the second voice signal.

[0044] The step of sending the navigation path to the display screen so that the display screen displays the navigation path further includes:

[0045] When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped and generates a prompt voice.

[0046] The processing module sends the updated navigation path and the prompt voice to the voice interaction module, so that the voice interaction module outputs the updated navigation path and the prompt voice.

[0047] The present invention also discloses a computer-readable storage medium storing a computer program that, when executed by a processor, implements the steps of the article processing method described above.

[0048] The embodiments of the present invention have the following advantages:

[0049] In this embodiment of the invention, the wearable device includes: a processing module, configured to acquire working signals sent by sensing components, and determine corresponding working modes based on the working signals; when the working mode is write mode, when acquiring item information of items to be put into storage obtained by camera scanning and location information determined by positioning module, binding and storing the item information of items to be put into storage and location information to complete the storage of items to be put into storage; when the working mode is read mode, acquiring item information of items to be shipped out of order information, and querying the location information of items to be shipped out of order information based on the item information of items to be shipped out of order information; generating a navigation path based on the location information of items to be shipped out of order information; acquiring item information of items to be shipped out of order obtained by camera scanning; and determining whether the shipping of items to be shipped out of order information has been completed based on the item information of items to be shipped out of order information obtained by camera scanning and the item information of items to be shipped out of order information; and a display screen, configured to acquire and display the navigation path generated by the processing module. This allows users to use wearable devices to store incoming items and outgoing items. When outgoing items are being shipped, users can quickly locate the items by following the displayed navigation path, increasing the efficiency of item processing. Furthermore, the wearable device can be worn on the user's wrist or finger, freeing up the user's hands and enhancing the user experience. Attached Figure Description

[0050] Figure 1 This is a structural block diagram of a wearable device provided in an embodiment of the present invention;

[0051] Figure 2 This is a flowchart of the steps of a method for processing an article provided in an embodiment of the present invention;

[0052] Figure 3 This is a flowchart illustrating the steps of an embodiment of the present invention for updating a navigation path;

[0053] Figure 4 This is a flowchart of another article processing method provided in an embodiment of the present invention.

[0054] Explanation of reference numerals in the attached figures:

[0055] 01-Sensing component, 11-First button, 12-Second button, 13-Third button, 14-Gravity sensor, 02-Camera, 03-Positioning module, 04-Processing module, 05-Display screen, 06-Voice interaction module. Detailed Implementation

[0056] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0057] In related technologies, the processing of items is done manually, with people manually entering or leaving the warehouse based on item information. This method is often inefficient, prone to errors, and results in a poor user experience. To address the aforementioned technical problems, this invention discloses a wearable device. The core concept of the wearable device is that it includes: a processing module, used to acquire working signals sent by sensing components and determine the corresponding working mode based on the working signals; when the working mode is write mode, when acquiring item information of items to be put into storage obtained by camera scanning and location information determined by the positioning module, binding and storing the item information and location information of the items to be put into storage to complete the storage of the items to be put into storage; when the working mode is read mode, acquiring item information of items to be shipped out of order information and querying the location information of the items to be shipped out based on the item information of the items to be shipped out; generating a navigation path based on the location information of the items to be shipped out; acquiring item information of items to be shipped out obtained by camera scanning; determining whether the shipping of the items to be shipped out of the order information has been completed based on the item information of the items to be shipped out obtained by camera scanning and the item information of the items to be shipped out of order information; and a display screen, used to acquire and display the navigation path generated by the processing module. This allows users to use wearable devices to store incoming items and outgoing items. When outgoing items are being shipped, users can quickly locate the items by following the displayed navigation path, increasing the efficiency of item processing. Furthermore, the wearable device can be worn on the user's wrist or finger, freeing up the user's hands and enhancing the user experience.

[0058] Reference Figure 1The diagram illustrates a structural block diagram of a wearable device according to an embodiment of the present invention, which may include:

[0059] Sensing component 01 is used to acquire input operating signals;

[0060] Camera 02 is used to scan items and obtain item information;

[0061] Positioning module 03 is used to acquire positioning information;

[0062] The processing module 04, which is connected to the sensing component 01, the camera 02 and the positioning module 03 respectively, is used to acquire the working signal sent by the sensing component 01 and determine the corresponding working mode based on the working signal.

[0063] When the working mode is write mode, when the camera 02 scans and obtains the item information of the item to be put into the warehouse, and the positioning information determined by the positioning module 03, the item information and positioning information of the item to be put into the warehouse are bound and stored to complete the warehouse entry of the item to be put into the warehouse.

[0064] When the working mode is read mode, the system obtains the item information of the items to be shipped from the order information, and queries the location information of the items to be shipped based on the item information; generates a navigation path based on the location information of the items to be shipped; obtains the item information of the items to be shipped from the camera 02 scan; and determines whether the items to be shipped from the order information have been shipped based on the item information of the items to be shipped from the camera 02 scan and the item information of the items to be shipped from the order information.

[0065] The display screen 05, which is connected to the processing module 04, is used to obtain and display the navigation path generated by the processing module 04.

[0066] In this embodiment of the invention, the wearable device can be worn on a user's wrist or fingers. The wearable device may include: a processing module 04, a sensing component 01, a camera 02, a positioning module 03, and a display screen 05, wherein the sensing component 01, camera 02, positioning module 03, and display screen 05 can be connected to the processing module 04 respectively. The sensing component 01 can acquire a working signal input by the user and send the working signal to the processing module 04. The user can scan an object using the camera 02 to obtain object information and send the object information to the processing module 04. The positioning module 03 can detect and acquire the wearable device's positioning information and send the positioning information to the processing module 04.

[0067] After receiving the working signal, the processing module 04 can determine the corresponding working mode based on the signal. If the working mode is write mode, it indicates that the user needs to perform an inbound operation on the items to be inbound. At this time, the processing module 04 obtains the item information scanned by the camera 02 and the location information determined by the positioning module 03. It can then bind and store the item information and location information, thus completing the inbound operation. In this invention, the processing module 04 can obtain the item information scanned by the camera 02 and the location information determined by the positioning module 03 simultaneously. For example, when a user needs to inbound an item to shelf A, the user needs to wear a wearable device, transport the item to shelf A, and then scan the item using the wearable device's camera 02 to obtain the corresponding item information. This information is then sent to the processing module 04. At this time, the wearable device's positioning module 03 can obtain the location information as shelf A and send the shelf A's location information to the processing module 04.

[0068] After receiving the working signal, the processing module 04 can determine the corresponding working mode based on the signal. If the working mode is read mode, it indicates that the user needs to perform a shipment operation for the items to be shipped. The wearable device's processing module 04 can obtain order information from the server or the order system, thereby obtaining the item information of the items to be shipped from the order information. In this invention, the order information may include multiple items to be shipped, and the processing module 04 can simultaneously obtain the item information of multiple items to be shipped.

[0069] Processing module 04 can retrieve the location information corresponding to the item to be shipped from the stored item information and corresponding location information. Then, processing module 04 can generate a navigation path based on the current location information determined by positioning module 03 (i.e., the user's location information) and the location information of the item to be shipped. This navigation path can be the optimal navigation path generated from the location information corresponding to multiple items to be shipped and the current location information. Processing module 04 can send the navigation path to display screen 05, which can display the navigation path. The user can quickly find the item to be shipped based on the navigation path and then scan it with camera 02 to obtain the item information. When the item information obtained by camera 02 matches the item information in the order information, it indicates that the item scanned by the user through the wearable device is the item to be shipped in the order information, thus completing the shipment of the item to be shipped in the order information.

[0070] In this invention, in order to Figure 1 The structural diagram is more concise. Figure 1 The connection relationships between the various components are not shown.

[0071] In one embodiment, the working information may include: a write working signal and a read working signal; the processing module 04 is configured to determine the working mode as a write mode when the working signal sent by the sensing component 01 is a write working signal when there is an input task; and to determine the working mode as a read mode when the working signal sent by the sensing component 01 is a read working signal when there is no input task.

[0072] In this invention, when the processing module 04 determines that there is an input task, i.e., there are items to be put into storage, and receives a write signal from the sensing component 01, it can determine the working mode as write mode. Conversely, when the processing module 04 determines that there is no input task, i.e., no items to be put into storage, and receives a read signal from the sensing component 01, it can determine the working mode as write mode. Thus, the processing module 04 in the wearable device can determine the corresponding working mode based on different working signals sent by the sensing component 01, distinguishing between item release and storage to prevent user confusion regarding item release and storage.

[0073] In one embodiment, the sensing component 01 includes: a first button 11 and a second button 12; the first button 11 is used to acquire a first operation for a write working signal and send the write working signal to the processing module 04; the second button 12 is used to acquire a second operation for a read working signal and send the read working signal to the processing module 04.

[0074] In this invention, the sensing component 01 on the wearable device may include a first button 11 and a second button 12. The user can send a write signal to the processing module 04 via the first button 11 and a read signal to the processing module 04 via the common second button 12. This allows the user to send different working signals via different buttons on the wearable device, preventing the user from sending incorrect working signals.

[0075] In this invention, the sensing component 01 on the wearable device may further include a third button 13, which can be a power button, allowing the user to turn on the wearable device and begin operation. The wearable device of this invention may also be equipped with more buttons according to actual needs and functions; however, this invention does not impose specific limitations on this.

[0076] like Figure 2The diagram illustrates a flowchart of a method for processing items according to an embodiment of the present invention. The user clicks the third button 13 to activate the working mode. The processing module 04 determines whether an input task exists. If an input task exists, the user clicks the first button 11 to enter the writing mode. The wearable device's camera 02 scans the item to be stored to obtain item information, which is then sent to the processing module 04. The wearable device's positioning module 03 obtains location information and sends it to the processing module 04. The processing module 04 stores the item information and location information of the item to be stored. The user clicks the first button 11 again to exit the writing mode, completing the storage of the item to be stored.

[0077] When no data entry task exists, the user presses the second button 12 to enter read mode. The processing module 04 retrieves the item information of the items to be shipped from the order information and queries the location information of the items to be shipped. Based on the location information of the items to be shipped, a navigation path is generated and sent to the display screen 05 for display. The processing module 04 determines whether the items to be shipped in the order information have been shipped. If the shipment has been completed, the user presses the second button 12 again, automatically switching to the next order information and continuing to retrieve item information from the order information. If the shipment has not been completed, the user presses the second button 12 again to exit read mode. Alternatively, if the shipment has been completed, the user presses the second button 12 again, and if there is no next order information, the read mode is exited.

[0078] In one embodiment, the sensing component 01 includes: a gravity sensor 14; the gravity sensor 14 is used to send a write operation signal to the processing module 04 when a first gravity change information is detected; and to send a read operation signal to the processing module 04 when a second gravity change information is detected.

[0079] In this invention, the sensing component 01 may include a gravity sensor 14. Users can use different gestures to make the gravity sensor 14 detect different gravity changes. When the gravity sensor 14 detects a first gravity change, it can send a write signal to the processing module 04. When the gravity sensor 14 detects a second gravity change, it can send a read signal to the processing module 04. Thus, users can send corresponding signals to the processing module 04 through different gestures, thereby improving user convenience and enhancing the user experience.

[0080] In one embodiment, the processing module 04 is further configured to update the navigation path based on the location information of the item to be retrieved when a deviation from the navigation path is detected; the display screen 05 is further configured to acquire the updated navigation path sent by the processing module 04 and display the updated navigation path.

[0081] In this invention, users can locate items to be shipped according to the navigation path. The positioning module 03 can acquire the current positioning information in real time, i.e., acquire the user's positioning information in real time, and send it to the processing module 04. When the processing module 04 detects that the positioning information deviates from the navigation path, it can update the navigation path based on the positioning information of the items to be shipped and the current positioning information, and display the updated navigation path on the display screen 05. Thus, when a user needs items to be shipped according to the navigation path but deviates from the path, the navigation path can be updated in real time, guiding the user to quickly and accurately find the items to be shipped, increasing the efficiency of shipping items, and also improving the user experience.

[0082] In one embodiment, the display screen 05 is also used to acquire the item information and corresponding location information of the items to be shipped from the processing module 04, and to display the item information and corresponding location information of the items to be shipped from the warehouse.

[0083] In this invention, after the processing module 04 obtains the item information and corresponding location information of the item to be shipped, it can send the item information and corresponding location information to the display screen 05. The display screen 05 can display the item information and corresponding location information of the item to be shipped, so that the user can understand the item information and corresponding location information of the item to be shipped in real time through the display screen 05, thereby increasing the user experience.

[0084] In one embodiment, the working signals include: a write working signal and a read working signal; the wearable device may further include: a voice interaction module 06 connected to the processing module 04, used to acquire a first voice and send a write working signal to the processing module 04 according to the first voice; acquire a second voice and send a read working signal to the processing module 04 according to the second voice; acquire a navigation path sent by the processing module 04 and output the navigation path; acquire an updated navigation path and prompt voice sent by the processing module 04 and output the updated navigation path and prompt voice; the processing module 04 is further used to update the navigation path according to the location information of the item to be retrieved when a deviation from the navigation path is detected, and generate a prompt voice.

[0085] In this invention, the wearable device may further include a voice interaction module 06. A user can input a first voice signal into the voice interaction module 06. After receiving the first voice signal, the voice interaction module 06 can send a write signal to the processing module 04. A user can also input a second voice signal into the voice interaction module 06. After receiving the second voice signal, the voice interaction module 06 can send a read signal to the processing module 04. A user can also send a third voice signal into the voice interaction module 06. After receiving the third voice signal, the voice interaction module 06 can send a start signal to the processing module 04, thus waking up the wearable device and enabling it to begin operation.

[0086] After generating the navigation path, the processing module 04 can send the navigation path to the voice interaction module 06, which can then output the navigation path to the user in the form of voice.

[0087] When processing module 04 detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be retrieved and generates a prompt voice to remind the user that the path has been missed. Processing module 04 then sends the updated navigation path and prompt voice to voice interaction module 06. Voice interaction module 06 outputs the updated navigation path and prompt voice to the user. Thus, the user can control the wearable device's operating mode through the voice interaction module and also receive navigation path and prompt voice information through the voice control module, enhancing the user experience.

[0088] like Figure 3 The diagram illustrates a flowchart of a navigation path update method provided by an embodiment of the present invention. Processing module 04 obtains the item information of the item to be shipped from the order information, queries the location information of the item to be shipped based on the item information, generates a navigation path based on the location information of the item to be shipped, and sends the navigation path to the display screen 05 for display. Processing module 04 determines whether the user has deviated from the navigation path. If the user has not deviated from the navigation path, the user proceeds according to the navigation path. If the user has deviated from the navigation path, the user updates the navigation path based on the current location information and the location information of the item to be shipped, sends the updated navigation path to the display screen 05, and continues to determine whether the user has deviated from the navigation path.

[0089] In this embodiment of the invention, a sensing component is used to acquire input working signals; a camera is used to scan items to acquire item information; a positioning module is used to acquire positioning information; a processing module connected to the sensing component, camera, and positioning module respectively is used to acquire the working signals sent by the sensing component and determine the corresponding working mode based on the working signals; when the working mode is write mode, when acquiring the item information of the item to be put into storage obtained by the camera scan and the positioning information determined by the positioning module, the item information of the item to be put into storage and the positioning information are bound and stored to complete the storage of the item to be put into storage; when the working mode is read mode, the item information of the item to be shipped out in the order information is acquired, and the positioning information of the item to be shipped out is retrieved based on the item information of the item to be shipped out; a navigation path is generated based on the positioning information of the item to be shipped out; the item information of the item to be shipped out obtained by the camera scan is acquired; based on the item information of the item to be shipped out obtained by the camera scan and the item information of the item to be shipped out in the order information, it is determined whether the shipment of the item to be shipped out in the order information has been completed; a display screen connected to the processing module is used to acquire the navigation path generated by the processing module and display the navigation path. This allows users to use wearable devices to store incoming items and outgoing items. When outgoing items are being shipped, users can quickly locate the items by following the displayed navigation path, increasing the efficiency of item processing. Furthermore, the wearable device can be worn on the user's wrist or finger, freeing up the user's hands and enhancing the user experience.

[0090] like Figure 4 The diagram illustrates a flowchart of another article processing method provided by an embodiment of the present invention. This method is applied to a wearable device. The wearable device includes a processing module, and a sensing component, a camera, a positioning module, and a display screen, all connected to the processing module. The method specifically includes the following steps:

[0091] Step 401: The processing module obtains the working signal sent by the sensing component and determines the corresponding working mode based on the working signal;

[0092] Step 402: When the working mode is write mode, when the processing module obtains the item information of the item to be put into the warehouse obtained by the camera scanning and the location information determined by the positioning module, it binds and stores the item information of the item to be put into the warehouse and the location information to complete the warehouse entry of the item to be put into the warehouse.

[0093] Step 403: When the working mode is read mode, the processing module obtains the item information of the item to be shipped from the order information, and queries the location information of the item to be shipped based on the item information of the item to be shipped.

[0094] Step 404: The processing module generates a navigation path based on the location information of the item to be shipped out, and sends the navigation path to the display screen so that the display screen displays the navigation path;

[0095] Step 405: The processing module obtains the item information of the item to be shipped from the camera scan, and determines whether the item to be shipped from the order information has been shipped based on the item information of the item to be shipped and the item information of the item to be shipped from the order information.

[0096] In one embodiment, the operating signal includes: a write operating signal and a read operating signal; the step of acquiring the operating signal sent by the sensing component through the processing module and determining the corresponding operating mode based on the operating signal includes:

[0097] When there is an input task, if the processing module obtains that the working signal sent by the sensing component is the write working signal, it determines that the working mode is the write mode.

[0098] When there is no input task, if the processing module receives the working signal sent by the sensing component as the reading working signal, it determines that the working mode is the reading mode.

[0099] In one embodiment, the sensing component includes: a first button and a second button; the step of acquiring the operating signal sent by the sensing component through the processing module includes:

[0100] The first operation for the write signal is obtained by pressing the first button, and the write signal is sent to the processing module.

[0101] The second operation is obtained by pressing the second button for the read operation signal, and the read operation signal is sent to the processing module.

[0102] In one embodiment, the sensing component includes: a gravity sensor; the step of acquiring the operating signal sent by the sensing component through the processing module includes:

[0103] When the gravity sensor detects the first gravity change information, it sends a write operation signal to the processing module.

[0104] When the gravity sensor detects the second gravity change information, it sends the read operation signal to the processing module.

[0105] In one embodiment, the step of sending the navigation path to the display screen to display the navigation path further includes:

[0106] When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped out, sends the updated navigation path to the display screen, and displays the updated navigation path on the display screen.

[0107] In one embodiment, the working signal includes: a write working signal and a read working signal; the wearable device further includes: a voice interaction module connected to the processing module; the step of obtaining the working signal sent by the sensing component through the processing module includes:

[0108] The system acquires a first voice signal through the voice interaction module and sends the write signal to the processing module based on the first voice signal; it also acquires a second voice signal and sends the read signal to the processing module based on the second voice signal.

[0109] The step of sending the navigation path to the display screen so that the display screen displays the navigation path further includes:

[0110] When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped and generates a prompt voice.

[0111] The processing module sends the updated navigation path and the prompt voice to the voice interaction module, so that the voice interaction module outputs the updated navigation path and the prompt voice.

[0112] In this embodiment of the invention, the processing module obtains the working signal sent by the sensing component and determines the corresponding working mode based on the working signal. When the working mode is write mode, the processing module obtains the item information of the item to be put into storage obtained by the camera scan and the positioning information determined by the positioning module, and binds and stores the item information and positioning information of the item to be put into storage to complete the storage of the item to be put into storage. When the working mode is read mode, the processing module obtains the item information of the item to be shipped out of the order information and queries the positioning information of the item to be shipped out of the order information. The processing module generates a navigation path based on the positioning information of the item to be shipped out of the order information and sends the navigation path to the display screen so that the display screen displays the navigation path. The processing module obtains the item information of the item to be shipped out of the order information obtained by the camera scan and determines whether the item to be shipped out of the order information has been shipped out based on the item information of the item to be shipped out of the order information and the item information of the item to be shipped out of the order information. This allows users to use wearable devices to store incoming items and outgoing items. When outgoing items are being shipped, users can quickly locate the items by following the displayed navigation path, increasing the efficiency of item processing. Furthermore, the wearable device can be worn on the user's wrist or finger, freeing up the user's hands and enhancing the user experience.

[0113] It should be noted that, for the sake of simplicity, the method embodiments are all described as a series of actions. However, those skilled in the art should understand that the embodiments of the present invention are not limited to the described order of actions, because according to the embodiments of the present invention, some steps can be performed in other orders or simultaneously. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are preferred embodiments, and the actions involved are not necessarily essential to the embodiments of the present invention.

[0114] This invention also provides a computer-readable storage medium storing a computer program. When the computer program is executed by a processor, it implements the various processes of the above-described article processing method embodiments and achieves the same technical effect. To avoid repetition, it will not be described again here.

[0115] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0116] Those skilled in the art will understand that embodiments of the present invention can be provided as methods, apparatus, or computer program products. Therefore, embodiments of the present invention can take the form of entirely hardware embodiments, entirely software embodiments, or embodiments combining software and hardware aspects. Furthermore, embodiments of the present invention can take the form of computer program products implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0117] This invention is described with reference to flowchart illustrations and / or block diagrams of methods, terminal devices (systems), and computer program products according to embodiments of the invention. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing terminal device to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing terminal device, generate instructions for implementing the flowchart illustrations and / or block diagrams. Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.

[0118] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing terminal device to operate in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.

[0119] These computer program instructions can also be loaded onto a computer or other programmable data processing terminal equipment, causing a series of operational steps to be performed on the computer or other programmable terminal equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable terminal equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.

[0120] Although preferred embodiments of the present invention have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of the embodiments of the present invention.

[0121] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or terminal device that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or terminal device. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or terminal device that includes said element.

[0122] The wearable device, the article processing method, and the computer-readable storage medium provided by the present invention have been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of the present invention. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of the present invention. Therefore, the content of this specification should not be construed as a limitation of the present invention.

Claims

1. A wearable device, characterized in that, include: Sensing components are used to acquire input operating signals; A camera is used to scan items and obtain information about them. The positioning module is used to obtain positioning information; A processing module connected to the sensing component, the camera, and the positioning module respectively is used to acquire the working signal sent by the sensing component and determine the corresponding working mode based on the working signal; When the working mode is write mode, when the item information of the item to be put into the warehouse is obtained by the camera scanning and the location information determined by the positioning module is obtained, the item information of the item to be put into the warehouse and the location information are bound and stored to complete the warehousing of the item to be put into the warehouse. When the working mode is read mode, the system obtains the item information of the item to be shipped from the order information, and queries the location information of the item to be shipped based on the item information; generates a navigation path based on the location information of the item to be shipped; obtains the item information of the item to be shipped obtained by the camera scan; and determines whether the item to be shipped from the order information has been shipped based on the item information of the item to be shipped obtained by the camera scan and the item information of the item to be shipped from the order information. A display screen connected to the processing module is used to obtain and display the navigation path generated by the processing module.

2. The wearable device according to claim 1, characterized in that, The working signals include: a write working signal and a read working signal; The processing module is configured to determine the working mode as write mode when the working signal sent by the sensing component is the write working signal when there is an input task; and to determine the working mode as read mode when the working signal sent by the sensing component is the read working signal when there is no input task.

3. The wearable device according to claim 2, characterized in that, The sensing component includes: a first button and a second button; The first button is used to acquire a first operation in response to the write working signal and send the write working signal to the processing module; The second button is used to obtain a second operation in response to the read operation signal and to send the read operation signal to the processing module.

4. The wearable device according to claim 2, characterized in that, The sensing component includes: a gravity sensor; The gravity sensor is used to send a write signal to the processing module when it detects a first change in gravity information, and to send a read signal to the processing module when it detects a second change in gravity information.

5. The wearable device according to claim 1, characterized in that, The processing module is also used to update the navigation path according to the location information of the item to be shipped when a deviation from the navigation path is detected. The display screen is also used to obtain the updated navigation path sent by the processing module and display the updated navigation path.

6. The wearable device according to claim 1, characterized in that, The display screen is also used to acquire the item information and corresponding location information of the item to be shipped from the warehouse sent by the processing module, and to display the item information and corresponding location information of the item to be shipped from the warehouse.

7. The wearable device according to claim 5, characterized in that, The operating signals include: a write operating signal and a read operating signal; the wearable device further includes: A voice interaction module connected to the processing module is used to acquire a first voice and send a write signal to the processing module according to the first voice; acquire a second voice and send a read signal to the processing module according to the second voice; acquire the navigation path sent by the processing module and output the navigation path; acquire the updated navigation path and prompt voice sent by the processing module and output the updated navigation path and prompt voice. The processing module is further configured to update the navigation path based on the location information of the item to be retrieved when a deviation from the navigation path is detected, and generate the prompt voice.

8. A method for processing an article, characterized in that, The method is applied to wearable devices; The wearable device includes: a processing module, and sensing components, a camera, a positioning module, and a display screen respectively connected to the processing module; the method includes: The processing module acquires the operating signal sent by the sensing component and determines the corresponding operating mode based on the operating signal. When the working mode is write mode, when the processing module obtains the item information of the item to be put into the warehouse obtained by the camera scanning and the location information determined by the positioning module, it binds and stores the item information of the item to be put into the warehouse and the location information to complete the warehousing of the item to be put into the warehouse. When the working mode is read mode, the processing module obtains the item information of the item to be shipped from the order information, and queries the location information of the item to be shipped based on the item information of the item to be shipped. The processing module generates a navigation path based on the location information of the item to be shipped out, and sends the navigation path to the display screen so that the display screen can display the navigation path; The processing module obtains the item information of the item to be shipped from the camera scan, and determines whether the item to be shipped from the order information has been shipped based on the item information of the item to be shipped and the item information of the item to be shipped from the order information.

9. The method for processing articles according to claim 8, characterized in that, The operating signals include: a write operating signal and a read operating signal; the step of obtaining the operating signals sent by the sensing component through the processing module and determining the corresponding operating mode based on the operating signals includes: When there is an input task, if the processing module obtains that the working signal sent by the sensing component is the write working signal, it determines that the working mode is the write mode. When there is no input task, if the processing module receives the working signal sent by the sensing component as the reading working signal, it determines that the working mode is the reading mode.

10. The method for processing articles according to claim 9, characterized in that, The sensing component includes: a first button and a second button; the step of acquiring the operating signal sent by the sensing component through the processing module includes: The first operation for the write signal is obtained by pressing the first button, and the write signal is sent to the processing module. The second operation is obtained by pressing the second button for the read operation signal, and the read operation signal is sent to the processing module.

11. The method for processing articles according to claim 9, characterized in that, The sensing component includes: a gravity sensor; the step of acquiring the operating signal sent by the sensing component through the processing module includes: When the gravity sensor detects the first gravity change information, it sends a write operation signal to the processing module. When the gravity sensor detects the second gravity change information, it sends the read operation signal to the processing module.

12. The method for processing articles according to claim 8, characterized in that, The step of sending the navigation path to the display screen so that the display screen displays the navigation path further includes: When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped out, sends the updated navigation path to the display screen, and displays the updated navigation path on the display screen.

13. The method for processing articles according to claim 12, characterized in that, The operating signals include: a write operating signal and a read operating signal; the wearable device further includes: a voice interaction module connected to the processing module; the step of obtaining the operating signals sent by the sensing components through the processing module includes: The system acquires a first voice signal through the voice interaction module and sends the write signal to the processing module based on the first voice signal; it also acquires a second voice signal and sends the read signal to the processing module based on the second voice signal. The step of sending the navigation path to the display screen so that the display screen displays the navigation path further includes: When the processing module detects a deviation from the navigation path, it updates the navigation path based on the location information of the item to be shipped and generates a prompt voice. The processing module sends the updated navigation path and the prompt voice to the voice interaction module, so that the voice interaction module outputs the updated navigation path and the prompt voice.

14. A computer-readable storage medium, characterized in that, A computer program is stored on the computer-readable storage medium, which, when executed by a processor, implements the steps of the method for processing an article as described in any one of claims 8-13.