Digital electronic detonator registration data display method and device and computer
Through RTK equipment and QR code scanning technology, efficient registration and information display of digital electronic detonators are achieved, solving the problem of unintuitive data display in the existing technology, and improving the safety and operation efficiency of the detonator.
Patent Information
- Application Number
- CN202510230745.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-02-28
AI Technical Summary
The existing digital electronic detonator registration data display method is difficult to provide an intuitive and efficient view, which leads to operators who need to repeatedly browse and compare when facing a large amount of digital electronic detonator information, which increases the complexity of registration and adjustment and reduces management and operation efficiency.
RTK equipment is used for high-precision positioning, and the registration and information update of digital electronic detonators are realized through QR code scanning. Combined with 2D and 3D display modes, it provides intuitive display of shell and tube code, delay and latitude and longitude information, and supports collaborative operation of multiple users.
It improves the safety and accuracy of digital electronic detonator detonator, optimizes the data display method, makes it more intuitive, comprehensive and interactive, is convenient for user management, enhances system integration and portability, reduces the number and volume of equipment, and improves safety guarantee measures.
Smart Images

Figure CN120277133A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of digital electronic detonator initiators, and particularly to a method, device, and computer for displaying digital electronic detonator registration data. Background Art
[0002] As the core device in blasting operations, the design of the structure and function of the initiator directly affects the safety and efficiency of blasting. The initiator usually consists of a power supply module, a signal processing module, and a blasting module, etc. The power supply module provides energy support for the initiator; the signal processing module is responsible for operations such as amplifying, shaping, and identifying input signals; the blasting module, after receiving the correct signal, causes the detonator to explode. It plays a crucial role in accurately controlling the division of the blasting area and the non-blasting area, real-time uploading of positioning information to the supervision platform, and ensuring blasting safety during blasting operations. With the continuous development of technology, the initiator has gradually integrated a high-precision positioning system to address the limitations of traditional methods in complex environments. Existing initiators combine positioning technology with detonator registration and can precisely control the registration timing and sequence according to the set position information. The emergence of this technological innovation marks the continuous improvement of the intelligence level of the initiator in blasting operations.
[0003] However, the existing technology still faces some challenges: Among them, in the digital electronic detonator registration stage, in the face of a large amount of digital electronic detonator information, the current data display method mainly uses a table form, which is difficult to provide an intuitive and efficient view. When the number of digital electronic detonators is huge, the operator needs to repeatedly browse and compare the shell codes and delay information of the digital electronic detonators, increasing the complexity of registration and adjustment. In a complex blasting system, it is difficult for the staff to quickly master the key information, resulting in a reduction in management and operation efficiency.
[0004] Therefore, how to improve and optimize the display method of digital electronic detonator registration data is the key to improving the performance of the initiator, ensuring blasting safety and efficiency. Summary of the Invention
[0005] Based on this, it is necessary to provide a method, device, and computer for displaying digital electronic detonator registration data in response to the above technical problems.
[0006] In the first aspect, this application provides a method for displaying digital electronic detonator registration data, including: Obtain blasting auxiliary design data and display the blasting auxiliary design data in a table form; Enter the operation area with an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the digital electronic detonator information; Registration is completed by scanning the QR code of the digital electronic detonator to be registered. The information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: shell code, delay time, longitude and latitude information.
[0007] In one embodiment, it further includes: 2D display mode; The real-time position information of the RTK device is displayed on the 2D map, and is represented by a green light point by default; The detonator to be registered is represented by a dark gray light point. When the distance between the position of the RTK device and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes a green light point. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light point.
[0008] In one embodiment, it further includes: 3D display mode; The real-time position information of the RTK device is displayed on the 3D map, and is represented by a green light point by default; The digital electronic detonator to be registered is represented by a dark gray cylinder. When the distance between the position of the RTK device and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
[0009] In one embodiment, the distance between the RTK device and the digital electronic detonator to be registered is calculated based on the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered.
[0010] In one embodiment, the operations of importing, registering, and deleting the information of the digital electronic detonator to be registered are all realized by QR code scanning.
[0011] In one embodiment, in the 2D display mode and the 3D display mode, the information of the digital electronic detonator to be registered supports dynamic update and is synchronized with the table display mode.
[0012] In one embodiment, a method for displaying digital electronic detonator registration data supports multi-user collaborative operation, and the data of multiple RTK devices are synchronized in real time to the same registration management system.
[0013] In a second aspect, the present application further provides a device for displaying digital electronic detonator registration data, including: An acquisition unit, the acquisition unit is used to acquire blasting auxiliary design data and display the blasting auxiliary design data in tabular form; Registration unit. The registration unit is used to enter the operation area by carrying an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted, prompting the user of the current position information and the digital electronic detonator information to be registered; Digital electronic detonator information update unit. The digital electronic detonator information update unit is used to complete the registration by scanning the QR code of the digital electronic detonator to be registered. The registered digital electronic detonator information is updated in the table. The user can view the registered digital electronic detonator information by swiping left and right. The registered digital electronic detonator information includes: cartridge code, delay time, and longitude and latitude information.
[0014] Thirdly, the present application also provides a computer device, including a memory and a processor. The memory stores a computer program. It is characterized in that when the processor executes the computer program, the following steps are implemented: Obtain blast auxiliary design data and display the blast auxiliary design data in tabular form; Enter the operation area by carrying an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted, prompting the user of the current position information and the digital electronic detonator information to be registered; Complete the registration by scanning the QR code of the digital electronic detonator to be registered. The registered digital electronic detonator information is updated in the table. The user can view the registered digital electronic detonator information by swiping left and right. The registered digital electronic detonator information includes: cartridge code, delay time, and longitude and latitude information.
[0015] Fourthly, a computer-readable storage medium. The computer-readable storage medium stores a computer program. When the computer program is executed by a processor, the following steps are implemented: Obtain blast auxiliary design data and display the blast auxiliary design data in tabular form; Enter the operation area by carrying an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted, prompting the user of the current position information and the digital electronic detonator information to be registered; Complete the registration by scanning the QR code of the digital electronic detonator to be registered. The registered digital electronic detonator information is updated in the table. The user can view the registered digital electronic detonator information by swiping left and right. The registered digital electronic detonator information includes: cartridge code, delay time, and longitude and latitude information.
[0016] The present application provides a method for displaying registration data of digital electronic detonators, including: obtaining blast auxiliary design data and displaying the blast auxiliary design data in tabular form; entering the operation area with an RTK device. When the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user with the current position information and the information of the digital electronic detonator to be registered; completing the registration by scanning the QR code of the digital electronic detonator to be registered, and the information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: shell code, delay time, and longitude and latitude information. The present application improves the safety and accuracy of digital electronic detonator initiators, uses RTK high-precision positioning technology to improve positioning accuracy and anti-interference ability to adapt to complex blasting environments; optimizes the data display method to make it more intuitive, comprehensive and interactive for easy user management; enhances system integration and portability, reduces the number and volume of devices; improves safety guarantee measures, including detonator status detection and multiple safety verifications, to ensure the safety of initiation operations. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0018] Figure 1 It is a schematic diagram of the RTK usage process for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 2 It is a schematic diagram of the RTK positioning process for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 3 It is a schematic diagram of the RTK receiving data for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 4 It is a schematic diagram of data display for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 5 It is a schematic diagram of data import for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 6 It is a schematic diagram of the 2D interaction implementation process for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 7 It is a schematic diagram of the 3D interaction implementation process for a method of displaying registration data of digital electronic detonators in an embodiment; Figure 8 It is the internal structure diagram of the microcontroller unit in an embodiment. Detailed implementation manners
[0019] To facilitate the understanding of the present application, the present application will be described more comprehensively below with reference to the relevant drawings. Embodiments of the present application are shown in the drawings. However, the present application can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the disclosure of the present application more thorough and comprehensive.
[0020] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs. The terms used in the specification of this application herein are only for the purpose of describing specific embodiments and are not intended to limit this application. The term "and / or" used herein includes any and all couplings of one or more of the related listed items.
[0021] It can be understood that the terms "first", "second", etc. used in this application can be used herein to describe various elements, but these elements are not limited by these terms. These terms are only used to distinguish the first element from another element.
[0022] As Figures 1 - 7 shown, in this embodiment, a method for displaying the registration data of digital electronic detonators includes: obtaining the blast auxiliary design data and displaying the blast auxiliary design data in tabular form; entering the operation area with an RTK device, when the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; completing the registration by scanning the QR code of the digital electronic detonator to be registered, and the information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: the shell code, the delay time, and the longitude and latitude information.
[0023] Specifically, it further includes: a 2D display mode; the real-time position information of the RTK device is displayed on a 2D map, and is defaultly represented by a green light point; the detonator to be registered is represented by a dark gray light point. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes a green light point. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light point. It further includes: a 3D display mode; the real-time position information of the RTK device is displayed on a 3D map, and is defaultly represented by a green light point; the detonator to be registered is represented by a dark gray cylinder. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
[0024] In this embodiment, a method for displaying digital electronic detonator registration data is provided, including: obtaining blasting auxiliary design data and displaying the blasting auxiliary design data in tabular form; entering the operation area with an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; completing the registration by scanning the QR code of the digital electronic detonator to be registered, and the information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: cartridge code, delay time, and longitude and latitude information. This application improves the safety and accuracy of the digital electronic detonator initiator, uses RTK high-precision positioning technology to improve the positioning accuracy and anti-interference ability to adapt to complex blasting environments; optimizes the data display method to make it more intuitive, comprehensive and interactive for easy user management; enhances the system integration and portability, reduces the number and volume of devices; improves safety guarantee measures, including detonator status detection and multiple safety verifications, to ensure the safety of the initiation operation.
[0025] In one of the embodiments, the distance between the RTK device and the digital electronic detonator to be registered is calculated based on the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered. The operations of importing, registering, and deleting the information of the digital electronic detonator to be registered are all realized through QR code scanning. In both the 2D display mode and the 3D display mode, the information of the digital electronic detonator to be registered supports dynamic update and is synchronized with the table display mode. The method supports multi-user collaborative operation, and the data of multiple RTK devices are synchronously updated to the same registration management system in real time.
[0026] Specifically, after the high-precision RTK device is powered on, it enters the RTK setting center, selects the current Bluetooth device. After successful connection, it selects the positioning mode, synchronizes the positioning information, and obtains updated data in real time. Enter the registration page, click the import detonator data button in the upper right corner to complete the import of blasting auxiliary design data. The default is table display. When the user carries the RTK device into the operation area, when the distance between the position where the RTK device is located and the detonator is less than 50 cm, the corresponding row of the detonator in the table will be highlighted, prompting the user of the current position and the detonator information to be registered. At this time, scanning the QR code of the ground detonator can complete the registration. At the same time, the user can slide left and right to view the basic information of the detonator - including shell code, delay, longitude and latitude, etc.
[0027] When the user clicks the 2D button to display, the real-time position information of the RTK device will be displayed on the 2D map. The default is a green light point, and the unregistered detonator is a dark gray light point. When the distance between the position where the RTK device is located and the detonator is less than 50 cm, both the operator and the detonator become green light points. At this time, scanning the QR code of the ground detonator can complete the registration, and the registered detonator is a red light point. The user can view the detonator information through the function area buttons provided on the right side of the screen.
[0028] Registry information selection button: The user can select up to 2 registry information for enlarged display in the UI layout. The currently provided information includes 1 - hole number, 2 - delay, 3 - shell code.
[0029] Zoom in / out button: Perform zoom in and out operations on the current UI layout. When zoomed in more than 2 times, the information selected for detonator registration can be automatically displayed, and at the same time, pinch-to-zoom gestures on the screen are supported.
[0030] Rotate screen button: Perform a horizontal / vertical screen switching action on the currently drawn detonator information to facilitate the horizontal display of the detonator registration distribution schematic diagram.
[0031] Operator's location button: When zooming in on the layout to view detonators in other areas, it can quickly return to the current location.
[0032] Global browse button: Quickly restore to the layout display with the center at the upper left corner of the screen and a ratio of 1.
[0033] When browsing the detonator light points, click operations are supported. After a short click, detailed detonator information will be prompted. After a long click, the user will be prompted whether to clear the currently registered detonator shell code information. After confirmation, the shell code under the current light point will be deleted.
[0034] When the user clicks the 3D button to display, the real-time position information of the RTK device will be shown on the 3D map as a default green light point. Unregistered detonators are dark gray cylinders. When the distance between the position of the RTK device and the detonator is less than 50 cm, both the operator and the detonator turn green. At this time, scanning the QR code of the ground detonator can complete the registration, and the registered detonator is a red cylinder.
[0035] Users can view detonator information through the function area buttons provided on the right side of the screen.
[0036] Registry information selection button: Users can select up to 2 pieces of registry information for enlarged display in the UI layout. The currently provided information includes 1 - hole number, 2 - delay, and 3 - shell code.
[0037] Gesture rotation button: Perform an angle rotation action on the currently drawn detonator information to facilitate the display of the detonator registration distribution schematic diagram.
[0038] Depth color change button: Dynamically display the color range change according to the drilling depth and density of the detonator to analyze the blasting effect.
[0039] Detonator tilt angle display button: Display the tilt angle of each detonator hole for easy construction and viewing by on-site staff.
[0040] Global browsing button: Quickly restore to the layout display with the center at the upper left corner of the screen and a scale of 1.
[0041] When browsing the detonator cylinders, click operations are supported. After a short click, detailed detonator information will be prompted. After a long click, the user will be prompted whether to clear the currently registered detonator shell code information. After confirmation, the shell code under the current cylinder will be deleted.
[0042] In this embodiment, the RTK high-precision positioning technology is adopted, which can determine the position of the initiator within the centimeter-level accuracy range, and is not restricted by natural conditions such as weather and terrain. Compared with the situation in the prior art where some use traditional GPS positioning technology and the positioning accuracy is limited in special environments, it can provide more accurate position information for blasting operations, ensure the accuracy of the initiation position, and is beneficial to optimizing the design and implementation of blasting schemes. Strong anti-interference ability: In a complex blasting site environment, even in the presence of various electromagnetic interference sources, the RTK positioning technology, combined with corresponding hardware designs (such as multi-band antennas, etc.) and algorithm optimizations (such as error compensation mechanisms), can still maintain stable positioning signal reception and accurate positioning results. This effectively overcomes the disadvantages of easy interference and inaccurate results in the prior art positioning, and further ensures the smooth progress of blasting operations. Intuitive and comprehensive presentation: It presents multi-faceted data such as detonator registration information, initiator working status, and detonator distribution positions in the form of tables and 2D graphics. Compared with the traditional simple presentation method and the insufficiently intuitive and comprehensive data presentation means in the prior art, the staff can more quickly and clearly understand the detailed situation of the entire blasting system, which is convenient for management decision-making and timely discovery of potential problems. Good interaction experience: The data display module has a data interaction function. The staff can operate the displayed data through a touch screen or other input devices, such as zooming in, zooming out, querying specific detonator information, etc., and the data can be updated in real time. This interactivity and timeliness are lacking in the prior art, greatly improving the convenience of the staff's operation and the degree of control over blasting operation information.
[0043] In one of the embodiments, a micro-control unit is provided. The micro-control unit can be a server, and its internal structure diagram can be as Figure 8 shown. The micro-control unit includes a processor, a memory, a network interface, and a database connected through a system bus. Among them, the processor of the micro-control unit is used to provide computing and control capabilities. The memory of the micro-control unit includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, programs, and a database. The internal memory provides an environment for the operation of the operating system and programs in the non-volatile storage medium. The database of the micro-control unit is used to store cycle task allocation data, such as configuration files, theoretical operation parameters, theoretical deviation value ranges, task attribute information, etc. The network interface of the micro-control unit is used to communicate with external terminals through a network connection. When the program is executed by the processor, it realizes a digital electronic detonator registration data display device.
[0044] Those skilled in the art can understand that Figure 8The structure shown is only a block diagram of some structures related to the solution of this application, and does not constitute a limitation on the microcontroller unit to which the solution of this application is applied. The specific microcontroller unit may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.
[0045] In one embodiment, a computer device is provided, including a memory and a processor. The memory stores a computer program, and when the processor executes the computer program, the following steps are implemented: Obtain blasting auxiliary design data and display the blasting auxiliary design data in tabular form; Enter the operation area with an RTK device. When the position where the RTK device is located is less than 50 cm away from the digital electronic detonator to be registered, the corresponding row of the digital electronic detonator to be registered in the table is highlighted, prompting the user of the current position information and the information of the digital electronic detonator to be registered; Complete the registration by scanning the QR code of the digital electronic detonator to be registered. The information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: shell code, delay, and longitude and latitude information.
[0046] In one embodiment, when the processor executes the computer program, it further includes: 2D display mode; The real-time position information of the RTK device is displayed on the 2D map and is represented by a green light point by default; The digital electronic detonator to be registered is represented by a dark gray light point. When the position where the RTK device is located is less than 50 cm away from the digital electronic detonator to be registered, the digital electronic detonator to be registered becomes a green light point. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light point.
[0047] In one embodiment, when the processor executes the computer program, it further includes: 3D display mode; The real-time position information of the RTK device is displayed on the 3D map and is represented by a green light point by default; The digital electronic detonator to be registered is represented by a dark gray cylinder. When the position where the RTK device is located is less than 50 cm away from the digital electronic detonator to be registered, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
[0048] In one embodiment, when the processor executes the computer program, the distance between the RTK device and the digital electronic detonator to be registered is calculated through the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered.
[0049] In one embodiment, when the processor executes the computer program, the operations of importing, registering, and deleting the information of the digital electronic detonators to be registered are all realized by QR code scanning.
[0050] In one embodiment, when the processor executes the computer program, in both the 2D display mode and the 3D display mode, the information of the digital electronic detonators to be registered supports dynamic update and is synchronized with the table display mode.
[0051] In one embodiment, when the processor executes the computer program, the method supports multi-user collaborative operation, and the data of multiple RTK devices are synchronized in real time to the same registration management system.
[0052] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by the processor, the following steps are realized: Obtain the blasting auxiliary design data and display the blasting auxiliary design data in tabular form; Enter the operation area with the RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; Complete the registration by scanning the QR code of the digital electronic detonator to be registered. The information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: the shell code, delay time, and longitude and latitude information.
[0053] In one embodiment, when the computer program is executed by the processor, it further includes: the 2D display mode; The real-time position information of the RTK device is displayed on the 2D map and is represented by a green light spot by default; The detonator to be registered is represented by a dark gray light spot. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes a green light spot. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light spot.
[0054] In one embodiment, when the computer program is executed by the processor, it further includes: the 3D display mode; The real-time position information of the RTK device is displayed on the 3D map and is represented by a green light spot by default; The digital electronic detonator to be registered is represented by a dark gray cylinder. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
[0055] In one embodiment, when the computer program is executed by a processor, it calculates the distance between the RTK device and the digital electronic detonator to be registered through the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered.
[0056] In one embodiment, when the computer program is executed by a processor, the operations of importing, registering, and deleting the information of the digital electronic detonator to be registered are all realized by scanning a QR code.
[0057] In one embodiment, when the computer program is executed by a processor, in the 2D display mode and the 3D display mode, the information of the digital electronic detonator to be registered supports dynamic update and is synchronized with the table display mode.
[0058] In one embodiment, when the computer program is executed by a processor, the method supports multi-user collaborative operation, and the data of multiple RTK devices are synchronized to the same registration management system in real time.
[0059] It should be understood that although Figure 2 the steps in the flowchart of Figure 2 are shown in sequence according to the indication of the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise clearly stated in this article, the execution of these steps has no strict order limit, and these steps can be executed in other orders. Moreover,
[0060] In one embodiment, as Figure 4 shown, a digital electronic detonator registration data display device is provided, including: An acquisition unit, configured to acquire blasting auxiliary design data and display the blasting auxiliary design data in tabular form; A registration unit, configured to enter the operation area with an RTK device. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; A digital electronic detonator information update unit, configured to complete registration by scanning the QR code of the digital electronic detonator to be registered. The information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: shell code, delay, and longitude and latitude information.
[0061] In one embodiment, it further includes: 2D display mode; A 2D display unit for displaying the real-time position information of the RTK device on a 2D map, which is default represented by a green light spot; A 2D registration display unit for representing the detonator to be registered by a dark gray light spot. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes a green light spot. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light spot.
[0062] In one embodiment, it further includes: 3D display mode; A 3D display unit for displaying the real-time position information of the RTK device on a 3D map, which is default represented by a green light spot; A 3D registration display unit for representing the digital electronic detonator to be registered by a dark gray cylinder. When the distance between the position where the RTK device is located and the digital electronic detonator to be registered is less than 50 cm, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
[0063] In one embodiment, an analysis unit for calculating the distance between the RTK device and the digital electronic detonator to be registered by calculating based on the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered.
[0064] In one embodiment, a data processing unit for realizing the import, registration, and deletion operations of the information of the digital electronic detonator to be registered through QR code scanning.
[0065] In one embodiment, an update unit for supporting dynamic update of the information of the digital electronic detonator to be registered in both 2D display mode and 3D display mode, and synchronizing with the table display mode.
[0066] In one embodiment, a data synchronization unit for supporting multi-user collaborative operation, and real-time synchronizing the data of multiple RTK devices to the same registration management system.
[0067] For the specific limitations of a digital electronic detonator registration data display device, reference can be made to the limitations of a digital electronic detonator registration data display method in the above text, which will not be elaborated here. Each module in the above digital electronic detonator registration data display device can be implemented in whole or in part through software, hardware, and their combination. The above modules can be embedded in the processor of the computer device in hardware form or be independent of it, or be stored in the memory of the computer device in software form, so that the processor can call and execute the operations corresponding to the above each module.
[0068] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above various methods. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided in the present application can include non-volatile and / or volatile memories. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and Rambus dynamic RAM (RDRAM), etc.
[0069] Each embodiment in the present disclosure is described in a progressive manner. For the same or similar parts among the embodiments, reference can be made to each other. The key point of each embodiment is to illustrate the differences from other embodiments.
[0070] The protection scope of the present disclosure is not limited to the above embodiments. Obviously, those skilled in the art can make various changes and deformations to the present disclosure without departing from the scope and spirit of the present disclosure. If these changes and deformations fall within the scope of the claims of the present disclosure and their equivalent technologies, the intention of the present disclosure also includes these changes and deformations.
Claims
1. A method for displaying registration data of digital electronic detonators, characterized in that, Including: Obtain the blasting auxiliary design data and display the blasting auxiliary design data in tabular form; Enter the operation area with an RTK device. When the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; Complete the registration by scanning the QR code of the digital electronic detonator to be registered. The information of the registered digital electronic detonator is updated in the table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: cartridge code, delay, and longitude and latitude information.
2. A method for displaying registration data of digital electronic detonators according to claim 1, characterized in that, Also including: 2D display mode; The real-time position information of the RTK device is displayed on a 2D map and is represented by a green light point by default; The detonator to be registered is represented by a dark gray light point. When the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the digital electronic detonator to be registered becomes a green light point. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red light point.
3. A method for displaying registration data of digital electronic detonators according to claim 1, characterized in that, Also including: 3D display mode; The real-time position information of the RTK device is displayed on a 3D map and is represented by a green light point by default; The digital electronic detonator to be registered is represented by a dark gray cylinder. When the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the digital electronic detonator to be registered becomes green. After the user scans the QR code of the digital electronic detonator to be registered to complete the registration, the registered digital electronic detonator is represented by a red cylinder.
4. A method for displaying registration data of digital electronic detonators according to any one of claims 1-3, characterized in that, The distance between the RTK device and the digital electronic detonator to be registered is calculated through the real-time positioning data of the RTK device and the preset longitude and latitude data of the digital electronic detonator to be registered.
5. A method for displaying registration data of digital electronic detonators according to any one of claims 1-3, characterized in that, The import, registration, and deletion operations of the information of the digital electronic detonator to be registered are all realized through QR code scanning.
6. A method for displaying registration data of digital electronic detonators according to claim 2 or 3, characterized in that, In the 2D display mode and the 3D display mode, the information of the digital electronic detonator to be registered supports dynamic update and is synchronized with the table display mode.
7. A method for displaying registration data of digital electronic detonators according to claim 6, characterized in that The method supports multi-user collaborative operation, and the data of multiple RTK devices are synchronized to the same registration management system in real time.
8. A digital electronic detonator registration data display device, characterized in that, Including: An acquisition unit, which is used to obtain the blasting auxiliary design data and display the blasting auxiliary design data in tabular form; A registration unit, which is used to enter the operation area with an RTK device. When the position of the RTK device is less than 50 cm away from the digital electronic detonator to be registered, the corresponding row of the digital electronic detonator to be registered in the table is highlighted to prompt the user of the current position information and the information of the digital electronic detonator to be registered; Digital electronic detonator information update unit, the digital electronic detonator information update unit is used to complete registration by scanning the QR code of the digital electronic detonator to be registered, and the information of the registered digital electronic detonator is updated in a table. The user can view the information of the registered digital electronic detonator by swiping left and right. The information of the registered digital electronic detonator includes: shell code, delay time, and longitude and latitude information.
9. A computer device, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 7.
10. A computer storage medium, on which a computer program is stored, characterized in that, When the computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 7.
Citation Information
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