Method for implementing communication connection with laser processing device, and related apparatus

By establishing a direct wireless network connection with the laser processing equipment through the host computer software interface, the problem of connection failure caused by complex user operation is solved, and a higher connection success rate and stability are achieved.

WO2025246796A1PCT designated stage Publication Date: 2025-12-04MAKEBLOCK CO LTD
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Patent Information

Application Number
PCT/CN2025/092409
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-05-27
Filing Date
2025-04-30
Publication Date
2025-12-04

AI Technical Summary

Technical Problem

When users establish a wireless communication connection with laser processing equipment via mobile terminals, they need to go through a long operation path, which can easily lead to connection failure due to improper operation, resulting in a low connection success rate.

Method used

A method and apparatus are provided to enable a mobile terminal to communicate directly with a laser processing equipment via a wireless direct connection network, eliminating the need for a wireless router and simplifying the user's operation path. This includes displaying a device connection interface in the host computer software interface and establishing a wireless direct connection network with the laser processing equipment based on triggered instructions.

Benefits of technology

It improves the connection success rate between mobile terminals and laser processing equipment, reduces the possibility of user operation errors, is suitable for offline scenarios without network access, and improves user experience and connection stability.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

Disclosed in embodiments of the present application are a method for implementing a communication connection with a laser processing device, and a related apparatus. The laser processing device provides a wireless direct network. The method is applied to a mobile terminal on which superordinate computer software is installed. The method comprises: displaying a device control interface of the superordinate computer software; when a device connection entry in the device control interface is triggered, displaying a device connection interface, the device connection interface corresponding to a wireless direct mode; and on the basis of a device connection instruction triggered on the device connection interface, performing a communication connection with the wireless direct network provided by the laser processing device.
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Description

Method for realizing communication connection with laser processing equipment and related device

[0001] The present application claims priority from the Chinese patent application No. 202410663907.X filed on May 27, 2024, and entitled "Method for realizing communication connection with laser processing equipment and related device", the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD

[0002] The present application relates to the field of laser processing technology, in particular to a method for realizing communication connection with laser processing equipment and related device. BACKGROUND

[0003] With the development of laser processing equipment from industry to terminal application, laser processing equipment will no longer be limited to industrial applications. Laser processing equipment has gradually become a terminal available intelligent hardware, and people can realize laser processing on the processing object through the use of laser processing equipment.

[0004] Currently, users can control the laser processing process of laser processing equipment by operating the host computer software of the mobile terminal, such as sending the project file to be processed to the laser processing equipment. Since the wireless communication connection between the mobile terminal and the laser processing equipment needs to go through a long user operation path, improper user operation is prone to occur, which makes it difficult to successfully configure the mobile terminal and the laser processing equipment to the same local area network, resulting in wireless communication connection failure. SUMMARY

[0005] To solve the above technical problems, the embodiments of the present application provide a method for realizing communication connection with laser processing equipment and related device, electronic equipment, computer readable storage medium and computer program product. The embodiments of the present application shorten the user operation path required for the mobile terminal and the laser processing equipment to establish communication connection, and can improve the connection success rate between the mobile terminal and the laser processing equipment.

[0006] In one aspect of the present application, a method for realizing communication connection with laser processing equipment is provided, the laser processing equipment provides a wireless direct connection network, the method is applied to a mobile terminal installed with host computer software, and the method comprises: displaying a device control interface of the host computer software; when a device connection entry in the device control interface is triggered, a device connection interface is displayed, the device connection interface corresponds to a wireless direct connection mode; and according to a device connection instruction triggered on the device connection interface, a communication connection is established with the wireless direct connection network provided by the laser processing equipment.

[0007] In another aspect of the embodiments of the present application, an implementation device is provided, which is communicatively connected with a laser processing device, the laser processing device is enabled to provide a wireless direct connection network, the device is configured to a mobile terminal installed with host computer software, and the device comprises: a first display module configured to display a device control interface of the host computer software; a second display module configured to display a device connection interface when a device connection entry in the device control interface is triggered, the device connection interface corresponds to a wireless direct connection mode; and a connection module configured to perform a communication connection with the wireless direct connection network provided by the laser processing device according to a device connection instruction triggered on the device connection interface.

[0008] In another aspect of the embodiments of the present application, an electronic device is provided, which comprises: one or more processors; a memory configured to store one or more programs, when the one or more programs are executed by the one or more processors, the electronic device is enabled to implement the implementation method of the communication connection with the laser processing device as described above.

[0009] In another aspect of the embodiments of the present application, a computer readable storage medium is provided, which stores computer readable instructions, when the computer readable instructions are executed by a processor of a computer, the computer is enabled to perform the implementation method of the communication connection with the laser processing device as described above.

[0010] In another aspect of the embodiments of the present application, a computer program product is provided, which comprises a computer program, when the computer program is executed by a processor, the implementation method of the communication connection with the laser processing device as described above is implemented.

[0011] In the technical solutions provided by the embodiments of the present application, a connection mode of a mobile terminal installed with host computer software and a laser processing device is provided. Specifically, since the laser processing device provides a wireless direct connection network, the mobile terminal can be directly connected with the laser processing device by accessing the wireless direct connection network, without the need of a wireless router.

[0012] Since the wireless router is not needed, the user only needs to trigger an operation of accessing the wireless direct connection network provided by the laser processing device in the device control interface provided by the host computer software, and the user operation of using the wireless router as a relay is saved, so that the user operation path for establishing a wireless communication connection between the mobile terminal and the laser processing device is shortened, the possibility of improper user operation is reduced, the user can more easily configure the mobile terminal and the laser processing device under the same local area network, and the connection success rate between the mobile terminal and the laser processing device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 is a schematic diagram of an exemplary implementation environment of this application;

[0014] Figure 2 is a flowchart illustrating a method for establishing a communication connection with a laser processing device, as shown in an exemplary embodiment of this application.

[0015] Figure 3 is a schematic diagram of an exemplary process of switching from a device control interface to a device connection interface;

[0016] Figure 4 is a flowchart of a method for establishing a communication connection with a laser processing device, based on the embodiment illustrated in Figure 2.

[0017] Figure 5 is a schematic diagram of an exemplary host computer software interface, which shows a list of wireless hotspots containing hotspot names corresponding to multiple laser processing devices.

[0018] Figure 6 is a flowchart of a method for establishing a communication connection with a laser processing device, based on the embodiment illustrated in Figure 4.

[0019] Figure 7 is a schematic diagram of the display interface jump process corresponding to an exemplary host computer software.

[0020] Figure 8 is a schematic diagram of another exemplary host computer software interface, which shows that the device connection interface corresponds to the sub-interface of WiFi mode.

[0021] Figure 9 is a block diagram illustrating an exemplary embodiment of this application of a device for communicating with a laser processing equipment;

[0022] Figure 10 shows a schematic diagram of the structure of a computer system suitable for implementing the electronic device of the present application. Detailed Implementation

[0023] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0024] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically independent entities. That is, these functional entities can be implemented in software, in one or more hardware modules or integrated circuits, or in different network and / or processor devices and / or microcontroller devices.

[0025] The flowcharts shown in the drawings are only illustrative, and do not necessarily include all the contents and operations / steps, nor are they necessarily executed in the order described. For example, some operations / steps can be further decomposed, and some operations / steps can be combined or partially combined, so the actual execution order can be changed according to actual conditions.

[0026] In the present application, "multiple" refers to two or more. "And / or" describes the association between the associated objects, indicating that there can be three relationships, for example, A and / or B can represent the three cases of A alone, A and B together, and B alone. The character " / " generally represents that the associated objects before and after are in an "or" relationship.

[0027] The terms "first", "second", "third", and "fourth" and the like in the description and claims of the present application and the drawings are used to distinguish different objects, and are not used to describe a particular order. The terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or device.

[0028] In the embodiments of the present application, the term "module" or "unit" refers to a computer program or a part of a computer program with a predetermined function, and works together with other related parts to achieve a predetermined target, and can be implemented entirely or partially by using software, hardware (such as a processing circuit or a memory), or a combination thereof. Similarly, one processor (or multiple processors or memories) can be used to implement one or more modules or units. In addition, each module or unit can be a part of an overall module or unit that includes the functions of the module or unit.

[0029] First, refer to FIG. 1, which is a schematic diagram of an exemplary implementation environment of the present application. The implementation environment is a schematic diagram of the operation of a laser processing device.

[0030] With the development of laser processing devices from industry to terminal applications, laser processing devices are gradually becoming intelligent and convenient, and users can conveniently use laser processing devices to achieve laser processing on a processing object by operating the host computer software installed on a mobile terminal such as a smart phone or a tablet. As shown in FIG. 1, a mobile terminal 110 has a host computer software of a laser processing device 120 installed thereon, and the host computer software provides a device operation interface, and the user can control the laser processing device to achieve laser processing on a processing object by performing relevant triggering operations on the device operation interface.

[0031] After the mobile terminal 110 and the laser processing device 120 need to establish a communication connection under the same local area network, the laser processing device 120 can be controlled by the host computer software, such as sending the project file to be processed to the laser processing device 120, to control the laser processing device 120 to process the edge frame preview processing area or preview the processing effect, laser processing, etc.

[0032] In order to improve the success rate of the mobile terminal 110 and the laser processing device 120 establishing a communication connection under the same local area network, a mobile terminal 110 and a laser processing device 120 direct connection technical solution is illustrated in the implementation environment of FIG. 1. Specifically, the laser processing device 120 provides a wireless direct connection network to the mobile terminal 110, and after the mobile terminal 110 accesses the wireless direct connection network, it can transmit data with the laser processing device 120. Under this direct connection technical solution, the data transmission between the mobile terminal 110 and the laser processing device 120 is directly carried out without the need for transfer through a wireless router, so that the process of establishing a communication connection between the mobile terminal 110 and the laser processing device 120 is also relatively simple, and the user operation is not easy to make mistakes, thereby improving the success rate of establishing a communication connection between the mobile terminal 110 and the laser processing device 120.

[0033] The wireless direct connection network provided by the laser processing device 120 can include a wireless hotspot network, or other wireless networks such as a wireless Bluetooth network, and the specific type of the wireless direct connection network is not limited in the present application. In the case that the laser processing device 120 is provided with a WiFi module, the WiFi module is set to AP (Access Point, wireless access point) mode, so that the laser processing device 120 provides a wireless hotspot network to the outside. In the case that the laser processing device 120 is provided with a Bluetooth module, by turning on the Bluetooth module, the laser processing device 120 provides a wireless Bluetooth network to the outside.

[0034] Based on this direct connection technical solution, the laser processing device 120 can also be applied to the off-line processing scene in the network-free state in the wild. That is, in the network-free state in the wild environment, by turning on the wireless direct connection network of the laser processing device 120, the user can use the mobile terminal 110 installed with the host computer software to communicate with the laser processing device 120. After the communication connection is established, the laser processing device 120 can be controlled by operating the host computer software to process the edge frame, laser processing, etc.

[0035] The laser processing device 120 can establish a communication connection with multiple mobile terminals 110 respectively, so as to be cooperatively controlled by the multiple mobile terminals 110. That is, the laser processing device 120 supports direct connection with multiple mobile terminals 110 at the same time. For example, the application scenario of processing a large workpiece by the laser processing device 120 can be applicable, and the processing efficiency can be effectively improved by the cooperative control of the multiple mobile terminals 110.

[0036] The mobile terminal 110 can also establish a communication connection with multiple laser processing devices 120 respectively. For example, the mobile terminal 110 provides multiple channels for establishing a wireless communication connection, such as a WiFi channel in addition to the wireless direct connection network channel required for direct connection. In the scenario of multiple laser processing devices 120, the direct connection and WiFi are mixed to control the multiple laser processing devices 120 respectively, thereby greatly improving the processing efficiency.

[0037] It should be noted that in the implementation environment shown in FIG. 1, the mobile terminal 110 can be a smart phone, a tablet, a notebook computer, etc., but is not limited thereto. In actual application scenarios, devices that can support access to the wireless direct connection network provided by the laser processing device 120 to control the laser processing device for laser processing can be used as the mobile terminal 110 in the embodiment.

[0038] Referring to FIG. 2, FIG. 2 is a flowchart of an implementation method for establishing a communication connection with a laser processing device according to an example embodiment of the present application.

[0039] The method can be applied to the implementation environment shown in FIG. 1 and be specifically executed by the mobile terminal 110 in the implementation environment. Of course, the method can also be applied to other implementation environments and be executed by a mobile terminal in the other implementation environments to configure the mobile terminal with the host software installed and the laser processing device to be controlled to the same local area network by direct connection.

[0040] It should be understood that in the direct connection scheme provided in the embodiment of the present application, the laser processing device needs to provide a wireless direct connection network externally. For example, the laser processing device is started in an access point mode, i.e., an AP mode, or a Bluetooth mode. In the scheme requiring a wireless router to relay, the mobile terminal and the laser processing device are both STAs (stations) connected with the wireless router as an AP to connect with the wireless router and access network resources by wireless means.

[0041] The laser processing device can be set to provide the wireless direct connection network by default after being powered on. Alternatively, the laser processing device can be set to provide the wireless direct connection network by other means, such as a designated function button provided on the laser processing device. The laser processing device can be set to provide the wireless direct connection network by operating the designated function button.

[0042] As shown in FIG. 2, in an exemplary embodiment, the method for establishing a communication connection with the laser processing device includes S210-S230, which are described in detail as follows.

[0043] S210, display the device control interface of the host computer software.

[0044] The device control interface refers to the human-computer interaction interface provided by the host computer software. The user can control the laser processing device to perform laser processing on the processing object by triggering the device control interface.

[0045] S220, when the device connection entry in the device control interface is triggered, display the device connection interface, which corresponds to the wireless direct connection mode.

[0046] The device control interface is provided with a device connection entry. When the device connection entry is triggered, the host computer software jumps to the device connection interface. FIG. 3 is a schematic diagram of the process of jumping from the device control interface to the device connection interface. As shown in FIG. 3, the device connection entry provided in the device control interface is the "connect device" button. When the user triggers the button, the host computer software jumps to the device connection interface.

[0047] The device connection interface is used to guide the user to perform related operations for establishing a communication connection with the laser processing device, such as obtaining a list of laser processing devices to be connected, selecting a laser processing device to be connected, and the like.

[0048] The device connection interface is related to the wireless connection mode supported by the host computer software. For example, the wireless connection mode supported by the host computer software includes a WiFi connection mode, a wireless direct connection mode, a wireless IP (Internet Protocol) connection mode, and the like, without limitation. The wireless direct connection mode includes a wireless hotspot connection mode and a wireless Bluetooth connection mode.

[0049] The device connection interface can also be provided with an entry for switching the wireless connection mode, so as to switch the display of the device connection interface corresponding to different wireless connection modes. For example, as shown in FIG. 3, if the user triggers the “Hotspot” button on the device connection interface, it indicates that the wireless hotspot mode is switched, and then the device connection interface corresponding to the wireless hotspot mode is displayed.

[0050] In the embodiment, the device connection interface corresponds to the wireless direct connection mode, and it can be understood that the host computer software supports the communication connection with the laser processing device in the wireless direct connection mode. The device connection interface shown in FIG. 3, that is, the device connection interface corresponding to the wireless direct connection mode, is specifically the device connection interface corresponding to the wireless hotspot mode.

[0051] FIG. 3 also shows that the device connection interface can also be provided with a connection prompt area for displaying matters needing attention for the communication connection with the laser processing device. For example, in the wireless hotspot mode, before the connection with the laser processing device, it is necessary to ensure that the laser processing device to be controlled is turned on and in the AP mode. The user can perform the related operation for the communication connection with the laser processing device according to these matters needing attention, which can improve the success rate to a certain extent, and further improve the user experience to a certain extent.

[0052] For another example, the related control mode of the laser processing device to be controlled can also be reminded through the connection prompt area. As shown in FIG. 3, the user is reminded to long press the laser processing device to be controlled for 5 seconds through the connection prompt area, so as to switch the wireless connection mode, thereby providing more diversified connection mode switching modes and further improving the user experience. For example, if the laser processing device is provided with a WiFi module and a Bluetooth module at the same time, it indicates that the laser processing device can provide a wireless hotspot network and a wireless Bluetooth network to the outside, and the user can control the laser processing device to switch the specific type of the wireless direct connection network provided to the outside by long pressing the specified function button provided on the laser processing device.

[0053] S230, according to the device connection instruction triggered on the device connection interface, the wireless direct connection network provided by the laser processing device is connected in communication.

[0054] When the user triggers the related device connection operation on the device connection interface, such as the user triggers the switching of the wireless connection mode, the host computer software generates a device connection instruction accordingly, so as to connect the wireless direct connection network provided by the laser processing device in communication according to the device connection instruction.

[0055] Alternatively, the host computer software can also generate the device connection instruction after determining the wireless connection mode corresponding to the device connection interface. For example, if the device connection interface corresponds to a certain wireless connection mode by default, the device connection instruction can be generated even if the user does not trigger the switching of the wireless connection mode, so as to communicate with the laser processing device.

[0056] Furthermore, as an exemplary embodiment, after successfully establishing the communication connection with the laser processing device, the device connection information indicating that the communication connection with the laser processing device has been established can also be updated in the device control interface and / or the device connection interface, so as to indicate to the user that the relevant control operations can be performed on the laser processing device.

[0057] In the existing technical implementation, the communication connection between the mobile terminal and the laser processing device is performed through the wireless router as a relay, and the user operation path required is generally as follows: clicking the device connection entry in the host computer software - adding a device - selecting a model - finding the WiFi network of the laser processing device under the WiFi setting of the operating system - selecting connection - returning to the host computer software - inputting the WiFi password - transmitting the WiFi password to the laser processing device - connection success.

[0058] As can be seen, the user operation path is relatively long, the user understanding threshold is high, the ease of use is poor, and the problem of improper user operation is prone to occur, which makes it difficult to successfully configure the mobile terminal and the laser processing device under the same local area network, and the problem of communication connection failure with the laser processing device is prone to occur, thereby bringing poor user experience.

[0059] Compared with the existing technical implementation, the direct connection scheme provided in the embodiment has a shorter user operation path. Specifically, the mobile device accesses the wireless direct connection network provided by the laser processing device to realize the direct connection between the mobile device and the laser processing device, and the user only needs to trigger the operation of accessing the wireless direct connection network provided by the laser processing device in the device control interface provided by the host computer software, thereby eliminating the relevant user operation of needing the wireless router as a relay, and thus shortening the user operation path required for establishing the wireless communication connection between the mobile terminal and the laser processing device.

[0060] That is, the user only needs to trigger the access to the wireless direct connection network provided by the laser processing device in the device connection interface provided by the host computer software, so as to realize the communication connection between the mobile device and the laser processing device, and the user operation path is obviously shorter.

[0061] Therefore, the embodiment can reduce the possibility of improper user operation, and the user can more easily configure the mobile terminal and the laser processing device under the same local area network, thereby improving the connection success rate between the mobile terminal and the laser processing device.

[0062] Furthermore, since the mobile terminal is directly connected to the laser processing equipment, it eliminates the dependence on the WiFi environment in the existing technology, allowing the laser processing equipment to be used in offline scenarios, such as using some more portable laser processing equipment to achieve laser processing in the field.

[0063] Since it does not require a wireless router as a relay, the direct connection solution has higher connection stability. During the transmission of data from the host computer software to the laser processing equipment, it is less likely to experience sudden network disconnections, thereby further improving the user experience.

[0064] In another exemplary embodiment, as shown in FIG4, the method for establishing a communication connection with the laser processing equipment, based on the embodiment exemplified in FIG2, further includes S410-S420, which are described in detail below:

[0065] S410 performs a search for wireless direct-connect networks and obtains a list of wireless direct-connect networks, which contains the device identification information corresponding to the laser processing equipment.

[0066] First, it is important to understand that in this embodiment, the process of establishing a communication connection between the mobile terminal and the laser processing equipment through host computer software involves searching for wireless direct connection networks in the host computer software to obtain a list of wireless direct connection networks.

[0067] The search results for the wireless direct connection network list contain the device identification information corresponding to the laser processing equipment, indicating that the mobile terminal is within the coverage area of ​​the wireless direct connection network provided by the laser processing equipment.

[0068] The list of directly connected wireless networks contains a set of network names corresponding to the directly connected wireless networks searched by the mobile terminal. For example, the name of the directly connected wireless network corresponding to the laser processing equipment includes the equipment's identification information, such as model, version number, and name. Alternatively, the equipment identification information corresponding to the laser processing equipment can also be directly used as the name of the directly connected wireless network. This embodiment does not restrict the naming method of the directly connected wireless networks enabled by the laser processing equipment.

[0069] For example, in the schematic diagram of the host computer software interface in Figure 5, the wireless direct connection network provided by the laser processing equipment is a wireless hotspot network, and the searched list of wireless direct connection networks is a wireless hotspot list. This wireless hotspot list contains hotspot names corresponding to multiple laser processing equipment. Among them, "xTool" represents the laser processing equipment, "P2" and "F1" represent the model, "V2" represents the equipment version number, and "feed", "abcde", and "aabbcc" represent the name of the laser equipment.

[0070] As an exemplary embodiment, the host computer software applies for the location permission and the network permission of the operating system of the mobile terminal, and establishes a communication connection with the control system according to the obtained location permission and network permission, and then calls a specified interface of the control system, so as to search for the wireless direct connection network and obtain the wireless direct connection network list.

[0071] The exemplary embodiment can also be understood as that the host computer software calls the operating system of the mobile terminal to realize the search for the wireless direct connection network and the acquisition of the wireless direct connection network list. Based on this, the user only needs to simply operate on the interface provided by the host computer software to obtain the wireless direct connection network list, without the need for the user to search for the wireless direct connection network in the system setting page of the mobile terminal, so that the user operation is more convenient, the user operation path is shortened, and the success rate of the communication connection between the mobile terminal and the laser processing equipment is improved.

[0072] In addition, considering that the calling interfaces provided may be different for different operating system versions, the host computer software can also identify the version identifier of the operating system and determine a specified interface adapted to the version identifier, so as to call the specified interface to search for the wireless direct connection network and obtain the wireless direct connection network list. Thus, it can be further ensured that the interface calling of the host computer software for the operating system will not be wrong, and the success rate of the communication connection between the mobile terminal and the laser processing equipment can also be improved to some extent, thereby improving the user experience.

[0073] As another exemplary embodiment, the display manner of the wireless direct connection network list on the interface of the host computer software is specially set. For example, the host computer software takes the searched wireless direct connection network as a candidate wireless direct connection network, filters these candidate wireless direct connection networks according to a preset direct connection network naming rule, and generates the wireless direct connection network list according to the filtered wireless direct connection networks.

[0074] It needs to be understood that the specific manner of filtering the wireless direct connection network according to the direct connection network naming rule is not limited in the embodiment. For example, the network names of the wireless direct connection networks that do not meet the direct connection network naming rule will not be displayed in the wireless direct connection network list. For example, one or more naming parameters contained in the direct connection network naming rule can be used to specifically execute the filtering of the wireless direct connection network. For example, if the direct connection network naming rule contains a model parameter and a version number parameter, the wireless direct connection network names containing certain models can be filtered, or the wireless direct connection network names containing certain version numbers under certain models can be filtered.

[0075] In some network complex application scenarios, such as in a small range, there are more laser processing devices and other devices that open wireless direct connection networks, the filtering method can quickly and accurately obtain the direct connection network name of the laser processing device to be controlled, and then quickly and accurately establish a communication connection with the corresponding laser processing device.

[0076] For example, if the establishment of the communication connection is particularly focused on certain naming parameters, such as the model, the wireless direct connection network list can be enhanced for this naming parameter, for example, as shown in FIG. 5, the model parameter contained in each wireless direct connection network name can be highlighted, which can enable the user to more quickly obtain the direct connection network name corresponding to the laser processing device to be controlled from the wireless direct connection network list, and further improve the user experience.

[0077] S420, when detecting that the device identification information corresponding to the laser processing device is triggered, a communication connection is established with the wireless direct connection network provided by the laser processing device.

[0078] When the host computer software detects that the device identification information corresponding to the laser processing device in the wireless direct connection network list is triggered, it indicates that the user selects to be configured to the same local area network as the laser processing device, and therefore establishes a communication connection with the wireless direct connection network provided by the laser processing device.

[0079] As an exemplary embodiment, the host computer software obtains the connection password required to access the wireless direct connection network provided by the laser processing device, and thereby establishes a communication connection with the wireless direct connection network provided by the laser processing device according to the obtained connection password. It can be understood that the host computer software can support the privacy protection of the laser processing device.

[0080] For example, the host computer software can determine whether the communication connection to be established with the laser processing device is the first connection according to the historical communication connection record of the mobile terminal, that is, determine whether the current communication connection to be established is the first connection. If yes, it indicates that the laser processing device is a new device for the host computer software, and therefore the host computer software displays a password configuration page and obtains the connection password according to the configuration instruction triggered in the password configuration page. This can also be understood as that the host computer software also supports the function of setting the connection password of the wireless direct connection network provided by the laser processing device. If no, it indicates that the laser processing device has a historical connection with the host computer software, and therefore a password input interface is displayed and the connection password is obtained according to the input instruction triggered in the password input interface.

[0081] Alternatively, in the case of determining that the communication connection to be established with the laser processing device is not the first connection, the host computer software can directly connect with the wireless direct network provided by the laser processing device according to the saved connection password, without the need for the user to input the password. In this way, the user is not aware of the process of establishing the communication connection, and the privacy process of establishing the communication connection between the host computer software and the laser processing device is more reasonable.

[0082] Alternatively, in the case of the laser processing device having the ability to provide multiple wireless direct networks, according to the historical communication connection record of the mobile terminal, the type of the wireless direct network currently provided by the laser processing device is further identified, and the target type of the communication connection to be established with the laser processing device is determined according to the identified type of the wireless direct network, and then it is judged whether the communication connection of the target type is the first connection. For ease of understanding, for example, if the laser processing device has the ability to provide wireless hotspot networks and wireless Bluetooth networks, the host computer software needs to determine whether the target type of the communication connection to be established is a wireless hotspot connection or a wireless Bluetooth connection when judging whether the communication connection to be established is the first connection, and then judging whether the communication connection of the target type is the first connection. Thus, the host computer software can provide more refined privacy protection to the laser processing device. Thus, based on the method provided in the present embodiment, the wireless direct network list is obtained by searching for the wireless direct network in the host computer software, and the communication connection is established with the corresponding laser processing device according to the trigger operation in the wireless direct network list. This process only needs simple operation of the user, such as triggering a simple function button on the device connection interface, to achieve the establishment of the communication connection between the host computer software and the laser processing device in a direct connection manner.

[0083] In another exemplary embodiment, as shown in FIG. 6, the method for establishing a communication connection with a laser processing device further includes S610-S630 based on the embodiment shown in FIG. 4, which is described in detail as follows:

[0084] S610, identifying the operating system of the mobile terminal.

[0085] The present embodiment considers that the communication connection between the mobile terminal and the laser processing device needs to be completed based on the operating system of the mobile terminal, and some types of operating systems allow other software programs to obtain relevant permissions, but some types of operating systems do not allow other software programs to obtain relevant permissions. Therefore, the present embodiment provides a step of identifying the operating system of the mobile terminal to determine the type of the operating system of the mobile system.

[0086] In the embodiment, the type of the operating system of the mobile terminal includes a first type and a second type, the first type indicating that the operating system allows other software programs to acquire relevant permissions, and the second type indicating that the operating system does not allow other software programs to acquire relevant permissions.

[0087] If it is identified that the operating system of the mobile terminal is of the first type, the corresponding procedures of S410-S420 are performed, and the user directly triggers, on the host software, the acquisition of the wireless direct connection network list and the selection of the laser processing device.

[0088] If it is identified that the operating system of the mobile terminal is of the second type, the corresponding procedures of S620-S630 are performed, and the mobile terminal jumps from the interface of the host software to the system setting interface, so that the user triggers, through the system setting interface, the establishment of a communication connection with the wireless direct connection network provided by the laser processing device.

[0089] S620, jump to the system setting interface of the mobile terminal to trigger, through the system setting interface, the establishment of a communication connection with the wireless direct connection network provided by the laser processing device.

[0090] Since the operating system of the mobile terminal does not allow the host software to acquire relevant permissions, the system setting interface of the mobile terminal is jumped to. The user establishes a communication connection with the wireless direct connection network provided by the laser processing device on the system setting interface, that is, triggers the search of the wireless direct connection network, acquires the wireless direct connection network list, and selects a direct connection network name to be connected from the wireless direct connection network list, and establishes a communication connection with the wireless direct connection network corresponding to the selected direct connection network name.

[0091] S630, display, on the device connection interface, a device list of which the laser processing device corresponds to the device identification information.

[0092] After the wireless direct connection network list is acquired through the system setting interface, a device list of which the laser processing device corresponds to the device identification information is displayed on the device connection interface of the host software.

[0093] This process can also be understood as follows: after a communication connection is established with the laser processing device to be controlled through the system setting interface, the host software displays the device identification information of the laser processing device, and then facilitates subsequent control of the laser processing device through the host software.

[0094] Thus, the host computer software identifies the operating system of the mobile terminal, and then performs the relevant processing of establishing a communication connection with the laser processing device according to the different types of the identified operating system, which makes the host computer software applicable to mobile terminals installed with various types of operating systems, and thus makes the host computer software have higher versatility.

[0095] Of course, as an exemplary embodiment, the user can also go to the system setting page of the mobile terminal to establish a communication connection with the laser processing device. When the device connection interface of the host computer software triggers the connection instruction, the device list of the established communication connection is directly displayed. Alternatively, when the device operation interface of the host computer software is displayed, the device list of the established communication connection is directly displayed on the device operation interface to remind the user that the laser processing device of the established communication connection can be directly operated. Thus, the user operation has greater flexibility.

[0096] In another exemplary embodiment, when the operating system of the mobile terminal is of the second type, although it is necessary to jump to the system setting interface, the user performs the operation of establishing a communication connection with the laser processing device in the system setting interface, but the connection password configuration function of the laser processing device provided by the host computer software can still be provided, thereby ensuring the privacy of the wireless direct connection network provided by the laser processing device.

[0097] For example, when the network configuration instruction triggered in the device operation interface is detected, the host computer software displays the password configuration page, and according to the configuration instruction triggered in the password configuration page, the connection password required to access the wireless direct connection network provided by the laser processing device is obtained.

[0098] It should be noted that the triggering mode of the network configuration instruction can be direct triggering or indirect triggering. The direct triggering mode is understood as that the device operation interface is provided with a function button for quickly configuring the password, and the user triggers the function button to generate the network configuration instruction.

[0099] The indirect triggering mode is understood as that the user needs to perform multiple-step operations through the device operation interface to trigger the generation of the network configuration instruction. For example, as shown in FIG. 7, FIG. 7 is a schematic diagram of the display interface jump process of an exemplary host computer software, the wireless direct connection network provided by the laser processing device is a wireless hotspot network, and the device operation interface is provided with a system setting function button. When the user triggers the button, the device information display interface is displayed, and the user further triggers the hotspot password configuration function button provided in the device information display interface, the network configuration instruction is generated, and then the password configuration interface is displayed.

[0100] In another exemplary embodiment, the host computer software can also support the communication connection establishment function of multiple wireless connection modes, such as WiFi, IP and other modes of wireless communication connection in addition to the wireless direct connection mode described in the above embodiment.

[0101] In this application scenario, the device connection interface provided by the host computer software includes sub-interfaces corresponding to different wireless connection modes. Therefore, the host computer software also triggers the device connection instruction in the sub-interface corresponding to the connection mode other than the wireless direct connection mode to communicate with the corresponding laser processing equipment.

[0102] If the wireless direct connection mode specifically includes multiple modes, such as wireless hotspot mode and wireless Bluetooth mode, the device connection interface provided by the host computer software also includes sub-interfaces corresponding to different wireless direct connection modes.

[0103] As shown in FIG. 8, it illustrates the sub-interface of the device connection interface corresponding to the WiFi mode. In the WiFi mode, the communication connection establishment process is the same as the process of establishing communication connection between the mobile terminal and the laser processing equipment in the prior art implementation, which needs to go through a long operation path of adding devices, selecting models, finding the WiFi network of the laser processing equipment in the operating system WiFi settings, etc. to obtain the WiFi list. The user selects the WiFi device to be connected from the WiFi list, thereby triggering the establishment of WiFi connection with the WiFi device.

[0104] As an exemplary embodiment, the host computer software can also provide new functions of wireless connection modes, so that the host computer software can establish communication connection with more types of laser processing equipment, thereby controlling these laser processing equipment.

[0105] Therefore, in this embodiment, through the host computer software, the mixed use of direct connection mode and other wireless communication connection modes can be realized, and in the scene of multiple laser processing equipment, multiple laser processing equipment can be controlled respectively, which can greatly improve the processing efficiency.

[0106] For example, the host computer software not only triggers the device connection instruction in the sub-interface corresponding to the wireless hotspot mode to communicate with the laser processing equipment A, but also triggers the device connection instruction in the sub-interface corresponding to the wireless Bluetooth mode to communicate with the laser processing equipment B, and triggers the device connection instruction in the sub-interface corresponding to the WiFi mode to communicate with the laser processing equipment C and D, and triggers the device connection instruction in the sub-interface corresponding to the IP mode to communicate with the laser processing equipment E, thereby enabling the user to control the laser processing equipment A-E through the host computer software, thereby improving the processing efficiency.

[0107] It should be noted that in the WiFi mode, the mobile terminal is connected with the laser processing device to be controlled in a way of being relayed by the wireless router. Based on the relay capability provided by the wireless router, the device connection instruction connected with different laser processing devices can be triggered in the sub-interface corresponding to the WiFi mode, so as to realize the communication connection with multiple laser processing devices in the WiFi mode.

[0108] FIG. 9 is a block diagram of an implementation device for communication connection with a laser processing device according to an example embodiment of the present application. The laser processing device provides a wireless direct connection network. The device is configured in a mobile terminal in which the host computer software is installed. The device includes:

[0109] A first display module 910 configured to display a device control interface of the host computer software;

[0110] A second display module 920 configured to display a device connection interface when a device connection entry in the device control interface is triggered, the device connection interface corresponding to the wireless direct connection mode;

[0111] A connection module 930 configured to establish a communication connection with the wireless direct connection network provided by the laser processing device according to a device connection instruction triggered on the device connection interface.

[0112] In another example embodiment, the connection module 930 includes:

[0113] A searching unit configured to search for the wireless direct connection network to obtain a wireless direct connection network list containing device identification information corresponding to the laser processing device;

[0114] A connection unit configured to establish a communication connection with the wireless direct connection network provided by the laser processing device when the device identification information corresponding to the laser processing device is detected.

[0115] In another example embodiment, the searching unit is further configured to perform the following steps:

[0116] Apply for a location permission and a network permission of an operating system of the mobile terminal;

[0117] Establish a communication connection with the operating system according to the obtained location permission and network permission;

[0118] Call a specified interface of the operating system to search for the wireless direct connection network to obtain the wireless direct connection network list.

[0119] In another example embodiment, the searching unit is further configured to perform the following steps:

[0120] Identify a version identifier of the operating system;

[0121] determining a specified interface adapted to the version identifier, and obtaining a list of wireless direct connection networks by invoking the specified interface to perform a search for wireless direct connection networks.

[0122] In another exemplary embodiment, the searching unit is configured to perform the following steps:

[0123] filtering the searched wireless direct connection networks as candidate wireless direct connection networks according to a preset direct connection network naming rule;

[0124] generating a list of wireless direct connection networks according to the filtered wireless direct connection networks.

[0125] In another exemplary embodiment, the connecting unit is further configured to perform the following steps:

[0126] obtaining a connection password required for accessing the wireless direct connection network provided by the laser processing device;

[0127] establishing a communication connection with the wireless direct connection network provided by the laser processing device based on the obtained connection password.

[0128] In another exemplary embodiment, the connecting unit is further configured to perform the following steps:

[0129] determining whether the communication connection to be established with the laser processing device is a first connection according to a historical communication connection record of the mobile terminal;

[0130] if yes, displaying a password configuration page and obtaining the connection password according to a configuration instruction triggered in the password configuration page;

[0131] if no, displaying a password input interface and obtaining the connection password according to an input instruction triggered in the password input interface.

[0132] In another exemplary embodiment, the apparatus further comprises an identifying unit configured to perform the following steps:

[0133] identifying an operating system of the mobile terminal;

[0134] if the operating system is of a first type, performing the relevant steps by the searching unit;

[0135] if the operating system is of a second type, jumping to a system setting interface of the mobile terminal to trigger the establishment of the communication connection with the wireless direct connection network provided by the laser processing device through the system setting interface;

[0136] displaying a list of devices that have established the communication connection in a device connection interface, the list of devices including device identifier information corresponding to the laser processing device.

[0137] In another exemplary embodiment, the identifying unit is further configured to perform the following steps:

[0138] displaying a password configuration page when detecting a triggered network configuration instruction in the device control interface;

[0139] obtaining a connection password required for accessing the wireless direct connection network provided by the laser processing device according to a triggered configuration instruction in the password configuration page.

[0140] In another exemplary embodiment, the device connection interface includes sub-interfaces corresponding to different wireless connection modes, and the wireless connection modes include other connection modes in addition to the wireless direct connection mode; the connection module 930 is further configured to perform communication connection with the corresponding laser processing device according to a triggered device connection instruction in the sub-interface corresponding to the other connection mode.

[0141] It should be noted that the implementation device for performing communication connection with the laser processing device provided in the above embodiments and the implementation method for performing communication connection with the laser processing device provided in the above embodiments belong to the same concept, and the specific manner in which each module and unit performs operations has been described in detail in the method embodiments, which will not be described here. The implementation device for performing communication connection with the laser processing device provided in the above embodiments can allocate the above functions to different functional modules as needed in actual application, that is, divide the internal structure of the device into different functional modules to complete all or part of the functions described above, and this is not limited herein.

[0142] The implementation device for performing communication connection with the laser processing device provided in the above embodiments provides a connection mode of direct connection between the mobile terminal and the laser processing device. Specifically, since the laser processing device provides a wireless direct connection network outwardly, the mobile terminal can achieve direct communication with the laser processing device by accessing the direct connection network, without the need for transshipment through a wireless router.

[0143] Since transshipment through a wireless router is not required, the user only needs to trigger an operation of accessing the wireless direct connection network provided by the laser processing device in the device control interface provided by the host computer software, which saves the user operation related to the need for a wireless router as a transshipment, thereby shortening the user operation path required for establishing a wireless communication connection between the mobile terminal and the laser processing device, reducing the possibility of improper user operation, and enabling the user to more easily configure the mobile terminal and the laser processing device under the same local area network, thereby improving the connection success rate between the mobile terminal and the laser processing device.

[0144] Embodiments of the present application also provide an electronic device, comprising: one or more processors; a memory for storing one or more programs, which, when executed by the one or more processors, cause the electronic device to implement the implementation method for communicating with a laser processing device provided in each of the above embodiments.

[0145] FIG. 10 shows a structural schematic diagram of a computer system of an electronic device suitable for implementing embodiments of the present application. It should be noted that the computer system 1000 of the electronic device shown in FIG. 10 is only an example and should not impose any limitation on the functions and use range of embodiments of the present application.

[0146] As shown in FIG. 10, the computer system 1000 includes a central processing unit (CPU) 1001, which can perform various appropriate actions and processes according to programs stored in a read-only memory (ROM) 1002 or programs loaded from a storage portion 1008 into a random access memory (RAM) 1003, such as performing the methods described in the above embodiments. Various programs and data required for system operation are also stored in the RAM 1003. The CPU 1001, the ROM 1002, and the RAM 1003 are connected to each other through a bus 1004. An input / output (I / O) interface 1005 is also connected to the bus 1004.

[0147] The following components are connected to the I / O interface 1005: an input portion 1006 including a keyboard, a mouse, and the like; an output portion 1007 including a display such as a cathode ray tube (CRT), a liquid crystal display (LCD), and the like, and a speaker, and the like; a storage portion 1008 including a hard disk, and the like; and a communication portion 1009 including a network interface card such as a LAN (Local Area Network) card, a modem, and the like. The communication portion 1009 performs communication processing via a network such as the Internet. A drive 1010 is also connected to the I / O interface 1005 as necessary. A removable recording medium 1011 such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, and the like is attached to the drive 1010 as necessary, so that a computer program read therefrom is installed in the storage portion 1008 as necessary.

[0148] In particular, according to embodiments of the present application, the processes described above with reference to the flowcharts can be implemented as a computer software program. For example, embodiments of the present application include a computer program product comprising a computer program carried on a computer readable medium, the computer program containing computer programs for executing the methods illustrated by the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network by the communication section 1009, and / or installed from the detachable medium 1011. When the computer program is executed by the central processing unit (CPU) 1001, various functions defined in the system of the present application are executed.

[0149] It should be noted that the computer readable medium shown in the embodiments of the present application can be a computer readable signal medium or a computer readable storage medium or any combination of the two. More specific examples of the computer readable storage medium can include, but are not limited to, an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM), a flash memory, an optical fiber, a portable compact disk read-only memory (Compact Disc Read-Only Memory, CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. The computer program contained on the computer readable medium can be transmitted by any suitable medium, including but not limited to wireless, wired, or the like, or any suitable combination of the above.

[0150] The flowcharts and block diagrams in the drawings illustrate the possible implementation architecture, function and operation of the system, method and computer program product according to various embodiments of the present application. Each block in the flowchart or block diagram can represent a module, a program segment, or a part of code containing one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions noted in the blocks can occur in different order than that shown in the drawings. For example, two blocks that are shown in succession can actually be executed substantially in parallel, and sometimes they can be executed in reverse order, depending on the involved functions. It should also be noted that each block in the block diagram or flowchart, and the combination of blocks in the block diagram or flowchart, can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions.

[0151] The units described in the embodiments of the present application can be implemented in the form of software, or can be implemented in the form of hardware, and the described units can also be arranged in a processor. In some cases, the names of the units do not constitute a limitation on the units themselves.

[0152] Another aspect of the present application also provides a computer readable storage medium having a computer program stored thereon, the computer program being executed by a processor to implement the implementation method of the communication connection with the laser processing device as described above. The computer readable storage medium can be included in the electronic device described in the above embodiments, or can exist separately and not be assembled into the electronic device.

[0153] Another aspect of the present application also provides a computer program product or computer program, which includes computer instructions stored in a computer readable storage medium. The processor of the computer device reads the computer instructions from the computer readable storage medium, and the processor executes the computer instructions to make the computer device execute the implementation method of the communication connection with the laser processing device provided in each of the above embodiments.

[0154] The above is only a preferred exemplary embodiment of the present application, and is not intended to limit the implementation of the present application. Those skilled in the art can easily make corresponding modifications or variations according to the main concept and spirit of the present application, and the protection scope of the present application should be subject to the protection scope required by the claims.

[0155] It can be understood that in the specific embodiments of the present application, data related to device identification information, version identification of the operating system, location permission, network permission, etc. are involved. When the above embodiments of the present application are applied to specific products or technologies, the user's permission or consent is required, and the collection, use and processing of related data need to comply with relevant laws, regulations and standards of relevant countries and regions.

Claims

1. A method of implementing a communication connection with a laser processing device, wherein, The laser processing equipment provides a wireless direct connection network, the method is applied to a mobile terminal installed with host computer software, and the method comprises the following steps: displaying a device control interface of the host computer software; when a device connection entry in the device control interface is triggered, a device connection interface is displayed, and the device connection interface corresponds to a wireless direct connection mode; according to a device connection instruction triggered on the device connection interface, a communication connection is established with the wireless direct connection network provided by the laser processing equipment.

2. The method of claim 1, wherein, The communication connection with the wireless direct connection network provided by the laser processing equipment comprises the following steps: searching for a wireless direct connection network to obtain a wireless direct connection network list, wherein the wireless direct connection network list contains device identification information corresponding to the laser processing equipment; when it is detected that the device identification information corresponding to the laser processing equipment is triggered, a communication connection is established with the wireless direct connection network provided by the laser processing equipment.

3. The method of claim 2, wherein, The searching for a wireless direct connection network to obtain a wireless direct connection network list comprises the following steps: applying for a location permission and a network permission of an operating system of the mobile terminal; establishing a communication connection with the operating system according to the obtained location permission and network permission; calling a specified interface of the operating system to search for a wireless direct connection network and obtain a wireless direct connection network list.

4. The method of claim 3, wherein, The calling of the specified interface of the operating system of the mobile terminal to search for a wireless direct connection network and obtain a wireless direct connection network list comprises the following steps: identifying a version identifier of the operating system; determining a specified interface adapted to the version identifier, and searching for a wireless direct connection network and obtaining a wireless direct connection network list by calling the specified interface.

5. The method of claim 2, wherein, The searching for a wireless direct connection network to obtain a wireless direct connection network list comprises the following steps: filtering a candidate wireless direct connection network according to a preset direct connection network naming rule, wherein the candidate wireless direct connection network is searched; generating the wireless direct connection network list according to the filtered wireless direct connection network.

6. The method of claim 2, wherein, The establishment of the communication connection with the wireless direct connection network provided by the laser processing equipment comprises the following steps: obtaining a connection password required for accessing the wireless direct connection network provided by the laser processing equipment; based on the obtained connection password, establishing a communication connection with the wireless direct connection network provided by the laser processing equipment.

7. The method of claim 6, wherein, The obtaining of the connection password required for accessing the wireless direct connection network provided by the laser processing equipment comprises the following steps: determining, according to historical communication connection records of the mobile terminal, whether the communication connection to be established with the laser processing equipment is a first connection; if yes, displaying a password configuration page and obtaining the connection password according to a configuration instruction triggered in the password configuration page; if no, displaying a password input interface and obtaining the connection password according to an input instruction triggered in the password input interface.

8. The method of claim 2, wherein, The method further comprises the following steps: identifying an operating system of the mobile terminal; if the operating system is of a first type, performing the step of searching for a wireless direct connection network to obtain a wireless direct connection network list; If the operating system is of the second type, jump to the system setting interface of the mobile terminal to trigger the establishment of a communication connection with the wireless direct network provided by the laser processing device through the system setting interface; Display a device list in which the device identification information corresponding to the laser processing device is included in the device connection interface, the device list showing the establishment of a communication connection.

9. The method of claim 8, wherein, The method further comprises: When detecting the network configuration instruction triggered in the device operation interface, display a password configuration page; According to the configuration instruction triggered in the password configuration page, obtain the connection password required for accessing the wireless direct network provided by the laser processing device.

10. The method of implementing a communication connection with the laser processing apparatus according to claim 1, wherein, The device connection interface comprises sub-interfaces corresponding to different wireless connection modes, and the wireless connection modes include other connection modes in addition to the wireless direct mode; the method further comprises: According to the device connection instruction triggered in the sub-interface corresponding to the other connection mode, perform a communication connection with the corresponding laser processing device.

11. An implementation device in communicative connection with a laser processing apparatus, wherein, The laser processing device provides a wireless direct network, and the device is configured in a mobile terminal in which host computer software is installed, and the device comprises: A first display module configured to display a device operation interface of the host computer software; A second display module configured to display a device connection interface when a device connection entry in the device operation interface is triggered, the device connection interface corresponding to a wireless direct mode; A connection module configured to perform a communication connection with the wireless direct network provided by the laser processing device according to a device connection instruction triggered on the device connection interface. 12.An electronic device comprising: one or more processors; memory storing one or more programs, when the one or more programs are executed by the one or more processors, cause the electronic device to implement the implementation method for performing a communication connection with the laser processing device according to any one of claims 1-10. 13.A computer-readable storage medium having computer-readable instructions stored thereon, when the computer-readable instructions are executed by a processor of a computer, cause the computer to perform the implementation method for performing a communication connection with the laser processing device according to any one of claims 1-10.

14. A computer program product comprising a computer program, wherein, The computer program is executed by the processor to implement the implementation method for performing a communication connection with the laser processing device according to any one of claims 1-10.

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