Configuration method, configuration device and processor of multi-frequency wireless hotspot

By configuring different SSIDs according to encryption methods on the wireless router, the problem of poor user experience when roaming with client devices is solved, and automatic switching and more stable network connections are achieved.

CN115002758BActive Publication Date: 2025-05-13TP-LINK INT SHENZHEN CO LTD
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Patent Information

Application Number
CN202210583165.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-26
Publication Date
2025-05-13
Estimated Expiration
2042-05-26

AI Technical Summary

Technical Problem

In the prior art, when a client device roams from one BSS to another, the user experience is poor, and the user needs to manually reconnect to realize network switching.

Method used

By configuring different SSIDs on the wireless router, corresponding predetermined identifiers are generated according to different encryption methods (such as WPA2, WPA3, OPEN, OWE), thereby obtaining different target SSIDs. Client devices can automatically identify and connect these target SSIDs to achieve automatic switching.

Benefits of technology

Improves the user experience, reduces the possibility of client device connection being disconnected, and realizes the function of automatically roaming from one BSS to another.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application provides a configuration method, a configuration device and a processor for a multi-frequency wireless hotspot. The configuration method includes: when the encryption mode of the wireless router is a first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, and a configured target SSID is obtained, wherein the first encryption mode includes at least one of the following: WPA2, WPA3; when the encryption mode of the wireless router is a second encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the second encryption mode and in an enabled state, and a configured target SSID is obtained, wherein the second encryption mode includes at least one of the following: OPEN, OWE, thereby solving the problem of poor user experience when roaming from one BSS to another.
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Description

Technical Field

[0001] The present application relates to the field of wireless routers, and more specifically, to a configuration method, a configuration device, a computer-readable storage medium, and a processor for a multi-frequency wireless hotspot. Background Art

[0002] With the opening of the Wi-Fi 6GHz band, IEEE 802.11 has imposed many restrictions on the operation of wireless routers in the 6GHz network band, for example, it is no longer compatible with the WPA2 (WiFi Protected Access 2) encryption method. When a wireless router sets the same SSID (Service Set Identifier) ​​BSS (Basic Service Set) in both 5GHz and 6GHz, and uses WPA2 encryption in the 5GHz network band and WPA3 encryption in the 6GHz network band, it will be impossible for client devices to automatically roam from one BSS to another due to the different encryption methods.

[0003] The inventors learned that in a common processing method, the 5GHz BSS and the 6GHz BSS on a wireless router or multiple wireless routers use different SSIDs, that is, the corresponding network frequency band is added after the SSID, so that the client device can roam from the 5GHz BSS to the 6GHz BSS. However, this requires the user to enter and remember the passwords for multiple BSSs with different SSIDs and encryption methods respectively. In addition, during the specific switching process, if the client device connection is disconnected, the user is required to manually reconnect in order to successfully switch between multiple networks, which leads to a poor user experience.

[0004] The above information disclosed in the background technology section is only used to enhance the understanding of the background technology of the technology described in this article. Therefore, the background technology may contain certain information that does not form the prior art known in this country for those skilled in the art. Summary of the invention

[0005] The main purpose of the present application is to provide a configuration method, a configuration device, a computer-readable storage medium and a processor for a multi-frequency wireless hotspot to solve the problem of poor user experience when roaming from one BSS to another in the prior art.

[0006] According to one aspect of an embodiment of the present invention, a method for configuring a multi-frequency wireless hotspot is provided, comprising: when the encryption mode of the wireless router is a first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3; when the encryption mode of the wireless router is a second encryption mode, according to the predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the second encryption mode and in an enabled state, to obtain the configured target SSID, wherein the second encryption mode includes at least one of the following: OPEN, OWE.

[0007] Optionally, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption method and in an enabled state, and a configured target SSID is obtained, including: when the wireless router turns on the WPA2 encryption method, and the network frequency band in an enabled state is the first network frequency band and / or the second network frequency band, a first predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band, and a configured first target SSID is obtained; when the wireless router turns on the WPA3 encryption method, and the network frequency band in an enabled state is the first network frequency band, the second network frequency band and / or the third network frequency band, a first predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band, and a configured first target SSID is obtained. A second predetermined identifier is configured in the SSID corresponding to the network frequency band and / or the third network frequency band to obtain the configured second target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; when the encryption modes of WAP2 and WAP3 are simultaneously turned on in the wireless router, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, the first predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured first target SSID, and the second predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured second target SSID.

[0008] Optionally, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption method and in an turned-on state to obtain the configured target SSID, and also includes: when the wireless router turns on the third network frequency band and turns on the WPA2 encryption method, a third predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured third target SSID.

[0009] Optionally, according to predetermined rules, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption method and in an enabled state, and before obtaining the configured target SSID, the configuration method also includes: determining whether the wireless router has the WPA2 and / or WPA3 encryption methods enabled; and when the wireless router does not have the WPA2 and WPA3 encryption methods enabled, controlling the configuration interface of the wireless router to display a first prompt message.

[0010] Optionally, according to the predetermined rule, the SSID of the network frequency band corresponding to the second encryption method and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID, including: when the OPEN encryption method is turned on in the wireless router, and the network frequency band in the turned-on state is the first network frequency band and / or the second network frequency band, a fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured fourth target SSID; when the OWE encryption method is turned on in the wireless router, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, a fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured fourth target SSID. A fifth predetermined identifier is configured in the SSID corresponding to the second network frequency band and / or the third network frequency band to obtain a configured fifth target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; when the wireless router turns on the encryption modes of OPEN and OWE at the same time, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, the fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured fourth target SSID, and the fifth predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured fifth target SSID.

[0011] Optionally, according to the predetermined rule, the SSID of the network frequency band corresponding to the second encryption method and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID, and also includes: when the wireless router turns on the third network frequency band and does not turn on the OWE encryption method, a sixth predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured sixth target SSID.

[0012] Optionally, before configuring a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption method and in an enabled state in accordance with the predetermined rule, and obtaining the configured target SSID, the configuration method further includes: determining whether the wireless router turns on the OPEN and / or OWE encryption methods; and when the wireless router does not turn on the OPEN and OWE encryption methods, controlling the configuration interface of the wireless router to display a second prompt message.

[0013] According to another aspect of an embodiment of the present invention, a configuration device for a multi-frequency wireless hotspot is also provided, including: a first configuration unit, for, when the encryption mode of the wireless router is a first encryption mode, configuring a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state according to a predetermined rule, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3; a second configuration unit, for, when the encryption mode of the wireless router is a second encryption mode, configuring a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption mode and in an enabled state according to the predetermined rule, to obtain the configured target SSID, wherein the second encryption mode includes at least one of the following: OPEN, OWE.

[0014] According to another aspect of the embodiments of the present invention, a computer-readable storage medium is provided, wherein the computer-readable storage medium includes a stored program, wherein the program executes any one of the configuration methods.

[0015] According to yet another aspect of the embodiments of the present invention, a processor is provided, wherein the processor is used to run a program, wherein the program executes any one of the configuration methods when running.

[0016] In an embodiment of the present invention, in the configuration method of the multi-frequency wireless hotspot, when the wireless router encrypts in the first encryption mode, according to the predetermined rule, the SSID of the network frequency band encrypted in the first encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID; when the wireless router encrypts in the second encryption mode, according to the predetermined rule, the SSID of the network frequency band encrypted in the second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID. In this scheme, according to the encryption mode enabled by the wireless router, the SSID of the network frequency band in the turned-on state is configured with a predetermined identifier corresponding to the encryption mode to obtain the configured target SSID corresponding to the encryption mode. This ensures that the client device can easily distinguish different target SSIDs and that the client device can choose to connect to different target SSIDs as required. When the user enters the password in the corresponding target SSID, the client device can automatically store the password. Subsequently, the client device can automatically switch to different target SSIDs, that is, there is no need for the user to switch manually, which ensures a better user experience. Due to different encryption modes, different target SSIDs correspond to different BSSs. Since the client device can automatically switch different target SSIDs, it can also achieve automatic roaming from one BSS to another. Compared with the prior art in which the same SSID corresponds to two BSSs, which causes the client device to be easily disconnected and requires the user to manually reconnect, the configuration method of the present application reduces the possibility of the device client connection being disconnected, ensuring that better network services can be provided to users. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The drawings constituting part of the present application are used to provide a further understanding of the present application. The illustrative embodiments and descriptions of the present application are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0018] Figure 1 A schematic diagram showing a method for configuring a multi-frequency wireless hotspot according to an embodiment of the present application is shown;

[0019] Figure 2 A schematic structural diagram of a multi-frequency wireless hotspot configuration device according to an embodiment of the present application is shown;

[0020] Figure 3 A schematic diagram showing a configuration interface of a wireless router according to an embodiment of the present application is shown;

[0021] Figure 4 A flowchart of configuring SSID with encryption enabled according to an embodiment of the present application is shown;

[0022] Figure 5 A flow chart of configuring an SSID without enabling encryption according to an embodiment of the present application is shown. DETAILED DESCRIPTION

[0023] It should be noted that, in the absence of conflict, the embodiments and features in the embodiments of the present application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0024] In order to enable those skilled in the art to better understand the solution of the present application, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of the present application.

[0025] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present application described here. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0026] As mentioned in the background technology, in the prior art, when roaming from one BSS to another, the user experience is poor. In order to solve the above problem, in a typical implementation of the present application, a configuration method, a configuration device, a computer-readable storage medium and a processor for a multi-frequency wireless hotspot are provided.

[0027] According to an embodiment of the present application, a method for configuring a multi-frequency wireless hotspot is provided.

[0028] Figure 1 FIG. 1 is a flow chart of a method for configuring a multi-frequency wireless hotspot according to an embodiment of the present application. Figure 1 As shown, the method comprises the following steps:

[0029] Step S101, when the encryption mode of the wireless router is the first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID (Service Set Identifier) ​​of the network frequency band corresponding to the first encryption mode and in the enabled state, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3;

[0030] Step S102, when the encryption mode of the above-mentioned wireless router is the second encryption mode, according to the above-mentioned predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured above-mentioned target SSID, wherein the above-mentioned second encryption mode includes at least one of the following: OPEN, OWE (random wireless encryption).

[0031] In the above-mentioned configuration method of the multi-frequency wireless hotspot, when the wireless router encrypts in the first encryption mode, according to the predetermined rules, the SSID of the network frequency band encrypted in the first encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID; when the wireless router encrypts in the second encryption mode, according to the predetermined rules, the SSID of the network frequency band encrypted in the second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID. In this scheme, according to the encryption mode enabled by the wireless router, the SSID of the network frequency band in the turned-on state is configured with a predetermined identifier corresponding to the encryption mode to obtain the configured target SSID corresponding to the encryption mode. This ensures that the client device can easily distinguish different target SSIDs and that the client device can choose to connect to different target SSIDs as required. When the user enters the password in the corresponding target SSID, the client device can automatically store the password. Subsequently, the client device can automatically switch to different target SSIDs, that is, there is no need for the user to switch manually, which ensures a better user experience. Due to different encryption modes, different target SSIDs correspond to different BSSs. Since the client device can automatically switch different target SSIDs, it can also achieve automatic roaming from one BSS to another. Compared with the prior art in which the same SSID corresponds to two BSSs, which causes the client device to be easily disconnected and requires the user to manually reconnect, the configuration method of the present application reduces the possibility of the device client connection being disconnected, ensuring that better network services can be provided to users.

[0032] Specifically, in actual application, IEEE802.11 imposes many restrictions on wireless routers in the 6GHz band. For example, the 6GHz band is no longer compatible with the WPA2 encryption method. If the same wireless router turns on two network bands at the same time, for example, the wireless router turns on the 5GHz band and the 6GHz band at the same time, the 5GHz band can be encrypted using the WPA2 encryption method, while the 6GHz band needs to be encrypted using the WPA3 encryption method. The wireless router has different encryption methods, and the 5GHz band and the 6GHz band use the same SSID, which results in the user entering the same password on the client device and being unable to automatically roam from the BSS corresponding to the 5GHz band to the BSS corresponding to the 6GHz band.

[0033] As described above, there is a problem in the prior art that incompatible BSSs may be configured under the same SSID, which results in the client device being unable to smoothly switch to different BSSs in the same SSID. The configuration method of the multi-frequency wireless hotspot of the present application configures corresponding predetermined identifiers for corresponding network frequency bands in an on state according to the encryption method corresponding to the wireless router, and obtains different target SSIDs. When the client device connects to the target SSID to access the Internet, it can enter the corresponding password in the corresponding target SSID and remember the password. Thereafter, the client device can automatically switch among all BSSs under the target SSID. Therefore, the configuration method of the present application reduces the possibility that the client device cannot automatically switch BSSs in the same SSID. On this basis, the configuration process of the present application is configured in the configuration interface of the same wireless router, which also ensures that the user has fewer configuration operations on the client device, ensures a better user experience and a lower implementation cost.

[0034] In a specific embodiment of the present application, when two wireless routers are set in the wireless network, one main wireless router is encrypted by WPA2, and the other auxiliary wireless router is encrypted by WPA3. Due to the different encryption methods of the main wireless router and the auxiliary wireless router, two BSSs correspond to the same target SSID. Through the configuration method of the present application, according to different encryption methods, the target SSID corresponding to the encryption method is configured, so that users can easily distinguish and connect to different target SSIDs, and client devices can automatically switch to different target SSIDs.

[0035] Specifically, in actual application, the BSS corresponding to the 5GHz network frequency band has better roaming performance, while the BSS corresponding to the 6GHz frequency band has a higher Internet access rate. In this solution, according to different encryption methods, the target SSID corresponding to the 5GHz network frequency band and the target SSID corresponding to the 6GHz frequency band can also be distinguished. When the user's client device is surfing the Internet later, if the user needs a network with better roaming performance, the user can select the target SSID corresponding to the 5GHz network frequency band. If the user needs a network with a higher Internet access rate, the user can select the target SSID corresponding to the 6GHz network frequency band.

[0036] Specifically, the first encryption method includes at least one of the following: WPA2, WPA3; the second encryption method includes at least one of the following: OPEN, OWE. For wireless routers encrypted by WPA2 and WPA3, when the user's client device is in the process of connecting to the target SSID, the user is required to enter a password to access the Internet. For wireless networks encrypted by OPEN and OWE, when the user's client device is in the process of connecting to the target SSID, the user is not required to enter a password to access the Internet. The above-mentioned network frequency band can be the working frequency band of the wireless router, and the above-mentioned network frequency band can be a 2.4GHz frequency band, a 5GHz frequency band and / or a 6GHz frequency band.

[0037] It should be noted that the steps shown in the flowcharts of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and that, although a logical order is shown in the flowcharts, in some cases, the steps shown or described can be executed in an order different from that shown here.

[0038] In order to ensure that users can easily distinguish different target SSIDs according to different encryption methods, and further ensure that the user's client device can automatically switch from one target SSID to another target SSID, in an embodiment of the present application, according to a predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned first encryption method and in an enabled state is configured with a corresponding predetermined identifier to obtain the configured target SSID, including: when the above-mentioned wireless router turns on the WPA2 encryption method, and the above-mentioned network frequency band in an enabled state is the first network frequency band and / or the second network frequency band, a first predetermined identifier is configured in the SSID corresponding to the above-mentioned first network frequency band and / or the above-mentioned second network frequency band to obtain the configured first target SSID; when the above-mentioned wireless router turns on the WPA3 encryption method, and the above-mentioned network frequency band in an enabled state is the above-mentioned In the case of the first network frequency band, the second network frequency band and / or the third network frequency band, a second predetermined identifier is configured in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band to obtain the configured second target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; in the case that the encryption methods of WPA2 and WPA3 are simultaneously turned on in the above-mentioned wireless router, and the above-mentioned network frequency band in the turned-on state is the above-mentioned first network frequency, the second network frequency band and / or the third network frequency band, the above-mentioned first predetermined identifier is configured in the SSID corresponding to the above-mentioned first network frequency band and / or the second network frequency band to obtain the configured first target SSID, and the above-mentioned second predetermined identifier is configured in the SSID corresponding to the above-mentioned third network frequency band to obtain the configured second target SSID.

[0039] In the actual application process, when the above-mentioned wireless router turns on the encryption mode of WPA2, the first predetermined identifier can be "WPA2", and the first target SSID is the target SSID obtained by adding "WPA2" to the SSID. For example, the SSID is "WIFI_SSID" and the first target SSID is "WIFI_SSID_WPA2". When the above-mentioned wireless router turns on the encryption mode of WPA3, the second predetermined identifier can be "WPA3", and the second target SSID is the target SSID obtained by adding "WPA3" to the SSID. For example, the SSID is "WIFI_SSID" and the second target SSID is "WIFI_SSID_WPA3". Of course, the above-mentioned first predetermined identifier and the above-mentioned second predetermined identifier are not limited to "WPA2" and "WPA3", and can also be other predetermined identifiers. Therefore, this application does not limit the above-mentioned first predetermined identifier and the above-mentioned second predetermined identifier, and it is only necessary to be able to clearly distinguish different encryption methods.

[0040] Specifically, the first network frequency band may be a 2.4 GHz frequency band, the second network frequency band may be a 5 GHz frequency band, and the third network frequency band may be a 6 GHz frequency band.

[0041] In addition, when the wireless router turns on the encryption methods of WPA2 and WPA3 at the same time, and turns on the first network frequency band, the second network frequency band and the third network frequency band at the same time, since the third network frequency band (i.e., the 6GHz frequency band) does not support the encryption method of WPA2, this solution configures the first predetermined identifier in the SSID corresponding to the first network frequency band and the second network frequency band, and configures the second predetermined identifier in the SSID corresponding to the third network frequency band. Therefore, this solution implements that according to different encryption methods, the first network frequency band and the second network frequency band correspond to the same first target SSID, that is, the first network frequency band and the second network frequency band correspond to the same BSS; the third network frequency band corresponds to the second target SSID, that is, the third network frequency band corresponds to another BSS. This ensures that the user can more clearly distinguish the target SSIDs corresponding to different encryption methods. After the user's client device connects to different target SSIDs, the client device can automatically switch to different target SSIDs, and can also automatically roam from one BSS to another BSS.

[0042] In another embodiment of the present application, according to a predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned first encryption method and in an enabled state is configured with a corresponding predetermined identifier to obtain a configured target SSID, and further includes: when the above-mentioned wireless router turns on the above-mentioned third network frequency band and turns on the WPA2 encryption method, a third predetermined identifier is configured in the above-mentioned third network frequency band to obtain a configured third target SSID. In this embodiment, the third network frequency band does not support the WPA2 encryption method, so when the wireless router turns on the third network frequency band and turns on the WPA2 encryption method, the third predetermined identifier is configured in the SSID corresponding to the third network frequency band. This further ensures that the user can clearly distinguish the target SSID corresponding to different network frequency bands, further ensures that the user can make a choice according to the actual Internet access needs, and further ensures that the user has a better user experience.

[0043] In a specific embodiment of the present application, the third predetermined identifier may be the word "6G", and the third target SSID is the target SSID obtained by adding the word "6G" to the SSID. For example, the SSID is "WIFI_SSID", and the third target SSID is "WIFI_SSID_6G". Of course, in the present application, the third predetermined identifier is not limited to "6G", and may also be other identifiers. It is only necessary to distinguish the SSID corresponding to the third network frequency band from the target SSID corresponding to other network frequency bands (i.e., the first network frequency band, the second network frequency band, the first network frequency band and the second network band) under the same encryption method.

[0044] In order to ensure that users can configure the wireless router more simply and efficiently, in another embodiment of the present application, according to a predetermined rule, a predetermined identifier corresponding to the SSID of the above-mentioned network frequency band corresponding to the above-mentioned first encryption method and in an enabled state is configured, and before obtaining the configured target SSID, the above-mentioned configuration method also includes: determining whether the above-mentioned wireless router has the encryption method of WPA2 and / or WPA3 enabled; when the above-mentioned wireless router does not have the encryption method of WPA2 and WPA3 enabled, controlling the configuration interface of the above-mentioned wireless router to display a first prompt message.

[0045] Specifically, in the present application, the first prompt information may be "error, one must be enabled", or "select at least one of WPA2 and WPA3". Of course, the first prompt information may also be other prompt information, as long as it can prompt the user to select at least one of WPA2 and WPA3 during the process of configuring the wireless router.

[0046] In addition, when the wireless router does not enable the WPA2 encryption mode and does not enable the WPA3 encryption mode, the configuration interface of the wireless router is controlled to display the first prompt information.

[0047] In another embodiment of the present application, according to the above-mentioned predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption method and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured above-mentioned target SSID, including: when the above-mentioned wireless router turns on the OPEN encryption method, and the above-mentioned network frequency band in the turned-on state is the first network frequency band and / or the second network frequency band, a fourth predetermined identifier is configured in the SSID corresponding to the above-mentioned first network frequency band and / or the above-mentioned second network frequency band to obtain the configured fourth target SSID; when the above-mentioned wireless router turns on the OWE encryption method, and the above-mentioned network frequency band in the turned-on state is the above-mentioned first network frequency band, the above-mentioned second network frequency band and / or the third network frequency band, in the above-mentioned first network frequency band The encryption method is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band, and the configured fourth target SSID is obtained. The fifth predetermined identifier is configured in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band, and the fifth target SSID after configuration is obtained. The first network frequency band, the second network frequency band and the third network frequency band are different from each other; when the encryption modes of OPEN and OWE are turned on at the same time in the wireless router, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, the fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band, and the fourth target SSID after configuration is obtained. The fifth predetermined identifier is configured in the SSID corresponding to the third network frequency band, and the fifth target SSID after configuration is obtained. Specifically, this scheme realizes obtaining different target SSIDs according to different encryption modes. For example, when the encryption mode of OPEN is turned on, the fourth target SSID is obtained; when the encryption mode of OWE is turned on, the fifth target SSID is obtained. This ensures that users can clearly distinguish the target SSIDs corresponding to different encryption modes, and ensures that users can choose to connect to different target SSIDs according to actual Internet access needs. When the user enters the corresponding passwords for different target SSIDs on the client device and remembers the passwords, the client device can also automatically switch between different target SSIDs, ensuring that better network services can be provided to the user, further ensuring a better user experience.

[0048] Specifically, when the above-mentioned wireless router turns on the encryption mode of OPEN, the fourth predetermined identifier can be "OPEN", and the fourth target SSID is the target SSID obtained by adding "OPEN" to the SSID. For example, the SSID is "WIFI_SSID" and the fourth target SSID is "WIFI_SSID_OPEN". When the above-mentioned wireless router turns on the encryption mode of OWE, the fifth predetermined identifier can be "OWE", and the fifth target SSID is the target SSID obtained by adding "OWE" to the SSID. For example, the SSID is "WIFI_SSID" and the fifth target SSID is "WIFI_SSID_OWE". Of course, the above-mentioned fourth predetermined identifier and the above-mentioned fifth predetermined identifier are not limited to "OPEN" and "OWE", and can also be other identifiers. Therefore, the present application does not limit the above-mentioned fourth predetermined identifier and the above-mentioned fifth predetermined identifier, and it is only necessary to be able to clearly distinguish different encryption methods.

[0049] In addition, when the wireless router turns on the encryption modes of OPEN and OWE at the same time, and turns on the first network frequency band, the second network frequency band and the third network frequency band at the same time, since the third network frequency band (i.e. 6GHz) does not support the encryption mode of OPEN, in this solution, the fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and the second network frequency band, and the fifth predetermined identifier is configured in the SSID corresponding to the third network frequency band. This solution implements that according to different encryption methods, the first network frequency band and the second network frequency band correspond to the same fourth target SSID, that is, the first network frequency band and the second network frequency band correspond to the same BSS; the third network frequency band corresponds to the fifth target SSID, that is, the third network frequency band corresponds to another BSS. This ensures that the user can more clearly distinguish the target SSIDs corresponding to different encryption methods. After the user's client device connects to different target SSIDs, the client device can automatically switch to different target SSIDs, and can also automatically roam from one BSS to another.

[0050] Since the third network frequency band does not support the OPEN encryption method, in order to ensure that users can more clearly distinguish the target SSIDs corresponding to different network frequency bands and further ensure a better user experience, in an embodiment of the present application, according to the above-mentioned predetermined rules, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption method and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID, and also includes: when the above-mentioned wireless router turns on the above-mentioned third network frequency band and does not turn on the OWE encryption method, a sixth predetermined identifier is configured in the above-mentioned third network frequency band to obtain the configured sixth target SSID.

[0051] In actual application, the sixth predetermined identifier can be the word "6G_OWE", and the sixth target SSID is the target SSID obtained by adding the word "6G_OWE" to the SSID. For example, the SSID is "WIFI_SSID", and the sixth target SSID is "WIFI_SSID_6G_OWE". Of course, in the present application, the sixth predetermined identifier is not limited to "6G_OWE", but can also be other predetermined identifiers. It is only necessary to distinguish the SSID corresponding to the third network frequency band from the SSIDs corresponding to other network frequency bands (ie, the first network frequency band, the second network frequency band, the first network frequency band and the second network frequency band) under the same encryption method.

[0052] In order to ensure that users can configure the wireless router more simply and efficiently, in another embodiment of the present application, before configuring the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption method and in the turned-on state according to the above-mentioned predetermined rule and obtaining the configured above-mentioned target SSID, the above-mentioned configuration method also includes: determining whether the above-mentioned wireless router turns on the encryption method of OPEN and / or OWE; when the above-mentioned wireless router does not turn on the encryption method of OPEN and OWE, controlling the configuration interface of the above-mentioned wireless router to display a second prompt message.

[0053] Specifically, in the present application, the second prompt information may be "error, one must be enabled", or "select at least one of OPEN and OWE". Of course, the second prompt information may also be other prompt information, as long as it can prompt the user to select at least one of OPEN and OWE during the configuration of the wireless router.

[0054] In addition, when the wireless router does not open the OPEN mode and does not open the OWE encryption mode, the configuration interface of the wireless router is controlled to display the second prompt information.

[0055] The embodiment of the present application also provides a configuration device for a multi-frequency wireless hotspot. It should be noted that the configuration device for a multi-frequency wireless hotspot in the embodiment of the present application can be used to execute the configuration method for a multi-frequency wireless hotspot provided in the embodiment of the present application. The configuration device for a multi-frequency wireless hotspot provided in the embodiment of the present application is introduced below.

[0056] Figure 2 is a schematic diagram of the structure of a multi-frequency wireless hotspot configuration device according to an embodiment of the present application. Figure 2 As shown, the configuration device includes:

[0057] The first configuration unit 10 is used to configure a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the first encryption mode and in the enabled state according to a predetermined rule when the encryption mode of the wireless router is the first encryption mode, so as to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3;

[0058] The second configuration unit 20 is used to configure a corresponding predetermined identifier for the SSID of the above-mentioned network frequency band that corresponds to the above-mentioned second encryption method and is in an open state according to the above-mentioned predetermined rule when the encryption method of the above-mentioned wireless router is the second encryption method, so as to obtain the configured above-mentioned target SSID, wherein the above-mentioned second encryption method includes at least one of the following: OPEN, OWE.

[0059] In the above-mentioned multi-frequency wireless hotspot configuration device, the first configuration unit is used to configure the corresponding predetermined identifier for the SSID of the network frequency band corresponding to the first encryption method and in the enabled state according to the predetermined rules when the encryption method of the wireless router is the first encryption method, and obtain the configured target SSID, wherein the first encryption method includes at least one of the following: WPA2, WPA3; the second configuration unit is used to configure the corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption method and in the enabled state according to the predetermined rules when the encryption method of the wireless router is the second encryption method, and obtain the configured target SSID, wherein the second encryption method includes at least one of the following: OPEN, OWE. In this solution, according to the encryption method enabled by the wireless router, the SSID of the network frequency band in the enabled state is configured with the predetermined identifier corresponding to the encryption method, and the configured target SSID corresponding to the encryption method is obtained. This ensures that the client device can easily distinguish different target SSIDs, and ensures that the client device can choose to connect to different target SSIDs according to needs. When the user enters the password in the corresponding target SSID, the client device can automatically store the password. The client device can then automatically switch between different target SSIDs, without the need for manual switching by the user, thus ensuring a better user experience. Due to different encryption methods, different target SSIDs correspond to different BSSs. Since the client device can automatically switch between different target SSIDs, it can also achieve automatic roaming from one BSS to another. Compared with the prior art in which the same SSID corresponds to two BSSs, causing the client device to easily disconnect and requiring the user to manually reconnect, the configuration method of the present application reduces the possibility of the device client connection being disconnected, ensuring that better network services can be provided to users.

[0060] Specifically, in actual application, IEEE802.11 imposes many restrictions on wireless routers in the 6GHz band. For example, the 6GHz band is no longer compatible with the WPA2 encryption method. If the same wireless router turns on two network bands at the same time, for example, the wireless router turns on the 5GHz band and the 6GHz band at the same time, the 5GHz band can be encrypted using the WPA2 encryption method, while the 6GHz band needs to be encrypted using the WPA3 encryption method. The wireless router has different encryption methods, and the 5GHz band and the 6GHz band use the same SSID, which results in the user entering the same password on the client device and being unable to automatically roam from the BSS corresponding to the 5GHz band to the BSS corresponding to the 6GHz band.

[0061] As described above, there is a problem in the prior art that incompatible BSSs may be configured under the same SSID, which results in the client device being unable to smoothly switch to different BSSs in the same SSID. The configuration method of the multi-frequency wireless hotspot of the present application configures corresponding predetermined identifiers for corresponding network frequency bands in an on state according to the encryption method corresponding to the wireless router, and obtains different target SSIDs. When the client device connects to the target SSID to access the Internet, it can enter the corresponding password in the corresponding target SSID and remember the password. Thereafter, the client device can automatically switch among all BSSs under the target SSID. Therefore, the configuration method of the present application reduces the possibility that the client device cannot automatically switch BSSs in the same SSID. On this basis, the configuration process of the present application is configured in the configuration interface of the same wireless router, which also ensures that the user has fewer configuration operations on the client device, ensures a better user experience and a lower implementation cost.

[0062] In a specific embodiment of the present application, when two wireless routers are set in the wireless network, one main wireless router is encrypted by WPA2, and the other auxiliary wireless router is encrypted by WPA3. Due to the different encryption methods of the main wireless router and the auxiliary wireless router, two BSSs correspond to the same target SSID. Through the configuration method of the present application, according to different encryption methods, the target SSID corresponding to the encryption method is configured, so that users can easily distinguish and connect to different target SSIDs, and client devices can automatically switch to different target SSIDs.

[0063] Specifically, the first encryption method includes at least one of the following: WPA2, WPA3, and the second encryption method includes at least one of the following: OPEN, OWE. For wireless routers encrypted by WPA2 and WPA3, when the user's client device is in the process of connecting to the target SSID (i.e. connecting to the wireless router), the user needs to enter a password to access the Internet. For wireless networks encrypted by OPEN and OWE, when the user's client device is in the process of connecting to the target SSID (i.e. connecting to the wireless router), the user does not need to enter a password to access the Internet. The above-mentioned network frequency band can be the working frequency band of the wireless router, and the above-mentioned network frequency band can be a 2.4GHz frequency band, a 5GHz frequency band and / or a 6GHz frequency band.

[0064] In order to ensure that users can easily distinguish different target SSIDs according to different encryption methods, and further ensure that the user's client device can automatically switch from one target SSID to another target SSID, in one embodiment of the present application, the above-mentioned first configuration unit includes a first configuration module, a second configuration module and a third configuration module, wherein the above-mentioned first configuration module is used to enable the WPA2 encryption method on the above-mentioned wireless router, and the above-mentioned network frequency band in the enabled state is the first network frequency band and / or the second network frequency band. In the case, configure a first predetermined identifier in the SSID corresponding to the above-mentioned first network frequency band and / or the above-mentioned second network frequency band to obtain the configured first target SSID, and the above-mentioned first network frequency band is smaller than the above-mentioned second network frequency band; the above-mentioned second configuration module is used to enable the WPA3 encryption method on the above-mentioned wireless router, and the above-mentioned network frequency band in the enabled state is the above-mentioned In the case of the first network frequency band, the second network frequency band and / or the third network frequency band, a second predetermined identifier is configured in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band to obtain the configured second target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; the third configuration module is used for simultaneously turning on the encryption methods of WPA2 and WPA3 in the above-mentioned wireless router, and the above-mentioned network frequency band in the turned-on state is the first network frequency, the second network frequency band and / or the third network frequency band, configuring the first predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured first target SSID, configuring the second predetermined identifier in the SSID corresponding to the third network frequency band to obtain the configured second target SSID.

[0065] In the actual application process, when the above-mentioned wireless router turns on the encryption mode of WPA2, the first predetermined identifier can be "WPA2", and the first target SSID is the target SSID obtained by adding "WPA2" to the target SSID. For example, the target SSID is "WIFI_SSID" and the first target SSID is "WIFI_SSID_WPA2"; when the above-mentioned wireless router turns on the encryption mode of WPA3, the second predetermined identifier can be "WPA3". And the second target SSID is the target SSID obtained by adding "WPA3" to the target SSID. For example, the SSID is "WIFI_SSID" and the second target SSID is "WIFI_SSID_WPA3". Of course, the above-mentioned first predetermined identifier and the above-mentioned second predetermined identifier are not limited to "WPA2" and "WPA3", and can also be other predetermined identifiers. Therefore, the above-mentioned first predetermined identifier and the above-mentioned second predetermined identifier are not limited in this application, and it is only necessary to be able to clearly distinguish different encryption methods.

[0066] Specifically, the first network frequency band may be a 2.4 GHz frequency band, the second network frequency band may be a 5 GHz frequency band, and the third network frequency band may be a 6 GHz frequency band.

[0067] In addition, when the wireless router simultaneously enables the encryption methods of WPA2 and WPA3, and simultaneously enables the first network frequency band, the second network frequency band, and the third network frequency band, since the third network frequency band (i.e., the 6GHz frequency band) does not support the encryption method of WPA2, this solution configures the first predetermined identifier in the SSID corresponding to the first network frequency band and the second network frequency band, and configures the second predetermined identifier in the SSID corresponding to the third network frequency band. Therefore, this solution implements that according to different encryption methods, the first network frequency band and the second network frequency band correspond to the same first target SSID, that is, the first network frequency band and the second network frequency band correspond to the same BSS; the third network frequency band corresponds to the second target SSID, that is, the third network frequency band corresponds to another BSS. This ensures that the user can more clearly distinguish the target SSIDs corresponding to different encryption methods. After the user's client device connects to different target SSIDs, the client device can automatically switch to different target SSIDs, and can also automatically roam from one BSS to another.

[0068] In another embodiment of the present application, the first configuration unit further includes a fourth configuration module, which is used to configure a third predetermined identifier in the SSID corresponding to the third network frequency band when the wireless router turns on the third network frequency band and the WPA2 encryption mode, so as to obtain the configured third target SSID. In this embodiment, the third network frequency band does not support the WPA2 encryption mode, so when the wireless router turns on the third network frequency band and the WPA2 encryption mode, the third predetermined identifier is configured in the SSID corresponding to the third network frequency band. This further ensures that the user can clearly distinguish the target SSID corresponding to different network frequency bands, further ensures that the user can make a choice according to the actual Internet access needs, and further ensures that the user has a better user experience.

[0069] In a specific embodiment of the present application, the third predetermined identifier may be the word "6G", and the third target SSID is the target SSID obtained by adding the word "6G" to the target SSID. For example, the target SSID is "WIFI_SSID", and the third target SSID is "WIFI_SSID_6G". Of course, the third predetermined identifier of the present application is not limited to "6G", and may also be other predetermined identifiers. It is only necessary to distinguish the SSID corresponding to the third network frequency band from the target SSIDs corresponding to other network frequency bands (i.e., the first network frequency band, the second network frequency band, the first network frequency band, and the second network band) under the same encryption method.

[0070] In order to ensure that users can configure the wireless router more simply and efficiently, in another embodiment of the present application, the above-mentioned configuration device also includes a first determination unit and a first control unit, wherein the above-mentioned first determination unit is used to configure a corresponding predetermined identifier for the SSID of the above-mentioned network frequency band that corresponds to the above-mentioned first encryption method and is in an enabled state according to a predetermined rule, and before obtaining the configured target SSID, determine whether the above-mentioned wireless router has enabled the WPA2 and / or WPA3 encryption methods; the above-mentioned first control unit is used to control the configuration interface of the above-mentioned wireless router to display a first prompt message when the above-mentioned wireless router does not enable the WPA2 and WPA3 encryption methods.

[0071] Specifically, in the present application, the first prompt information may be "error, one must be enabled", or "select at least one of WPA2 and WPA3". Of course, the first prompt information may also be other prompt information, as long as it can prompt the user to select at least one of WPA2 and WPA3 during the process of configuring the wireless router.

[0072] In addition, when the wireless router does not enable the WPA2 encryption mode and does not enable the WPA3 encryption mode, the configuration interface of the wireless router is controlled to display the first prompt information.

[0073] In another embodiment of the present application, the second configuration unit includes a fifth configuration module, a sixth configuration module and a seventh configuration module, wherein the fifth configuration module is used to enable the OPEN encryption mode on the wireless router, and when the network frequency band in the enabled state is the first network frequency band and / or the second network frequency band, configure a fourth predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain a configured fourth target SSID; the sixth configuration module is used to enable the OWE encryption mode on the wireless router, and when the network frequency band in the enabled state is the first network frequency band, the second network frequency band and / or the third network frequency band, configure a fourth predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain a configured fourth target SSID. / or configure the fifth predetermined identifier in the SSID corresponding to the third network frequency band, and obtain the configured fifth target SSID, the first network frequency band, the second network frequency band and the third network frequency band are different; the seventh configuration module is used to configure the fourth predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band when the encryption methods of OPEN and OWE are turned on at the same time on the wireless router, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, and obtain the configured fourth target SSID, and configure the fifth predetermined identifier in the SSID corresponding to the third network frequency band, and obtain the configured fifth target SSID. Specifically, this scheme realizes obtaining different target SSIDs according to different encryption methods. For example, when the encryption method of OPEN is turned on, the fourth target SSID is obtained; when the encryption method of OWE is turned on, the fifth target SSID is obtained. This ensures that users can clearly distinguish the target SSIDs corresponding to different encryption methods, and ensures that users can choose to connect to different target SSIDs according to actual Internet access needs. When the user enters the corresponding passwords for different target SSIDs on the client device and remembers the passwords, the client device can also automatically switch between different target SSIDs, ensuring that better network services can be provided to the user, further ensuring a better user experience.

[0074] Specifically, when the above-mentioned wireless router turns on the encryption mode of OPEN, the fourth predetermined identifier can be "OPEN", and the fourth target SSID is the target SSID obtained by adding "OPEN" to the SSID. For example, the SSID is "WIFI_SSID" and the fourth target SSID is "WIFI_SSID_OPEN". When the above-mentioned wireless router turns on the encryption mode of OWE, the fifth predetermined identifier can be "OWE", and the fifth target SSID is the target SSID obtained by adding "OWE" to the SSID. For example, the SSID is "WIFI_SSID" and the fifth target SSID is "WIFI_SSID_OWE". Of course, the above-mentioned fourth predetermined identifier and the above-mentioned fifth predetermined identifier are not limited to "OPEN" and "OWE", and can also be other identifiers. Therefore, the present application does not limit the above-mentioned fourth predetermined identifier and the above-mentioned fifth predetermined identifier, and it is only necessary to be able to clearly distinguish different encryption methods.

[0075] In addition, when the wireless router turns on the encryption modes of OPEN and OWE at the same time, and turns on the first network frequency band, the second network frequency band and the third network frequency band at the same time, since the third network frequency band (i.e. 6GHz) does not support the encryption mode of OPEN, in this solution, the fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and the second network frequency band, and the fifth predetermined identifier is configured in the SSID corresponding to the third network frequency band. This solution implements that according to different encryption modes, the first network frequency band and the second network frequency band correspond to the same fourth target SSID, that is, the first network frequency band and the second network frequency band correspond to the same BSS, and the third network frequency band corresponds to the fifth target SSID, that is, the third network frequency band corresponds to another BSS, so that the user can more clearly distinguish the target SSIDs corresponding to different encryption modes. After the user's client device connects to different target SSIDs, the client device can automatically switch to different target SSIDs, and can also automatically roam from one BSS to another BSS.

[0076] Since the third network frequency band does not support the OPEN encryption method, in order to ensure that users can more clearly distinguish the target SSIDs corresponding to different network frequency bands and further ensure a better user experience, in one embodiment of the present application, the second configuration unit also includes an eighth configuration module, which is used to configure a sixth predetermined identifier in the SSID corresponding to the third network frequency band when the wireless router turns on the third network frequency band and does not turn on the OWE encryption method, so as to obtain the configured sixth target SSID.

[0077] In actual application, the sixth predetermined identifier can be the word "6G_OWE", and the sixth target SSID is the target SSID obtained by adding the word "6G_OWE" to the SSID. For example, the SSID is "WIFI_SSID", and the sixth target SSID is "WIFI_SSID_6G_OWE". Of course, the sixth predetermined identifier of the present application is not limited to "6G_OWE", but can also be other predetermined identifiers. It is only necessary to distinguish the SSID corresponding to the third network frequency band from the SSIDs corresponding to other network frequency bands (ie, the first network frequency band, the second network frequency band, the first network frequency band and the second network band) under the same encryption method.

[0078] In order to ensure that users can configure the wireless router more simply and efficiently, in another embodiment of the present application, the above-mentioned configuration device also includes a second determination unit and a second control unit, wherein the above-mentioned second determination unit is used to configure the corresponding predetermined identifier for the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption method and in the turned-on state according to the above-mentioned predetermined rule, and before obtaining the configured above-mentioned target SSID, determine whether the above-mentioned wireless router turns on the OPEN and / or OWE encryption methods; the above-mentioned second control unit is used to control the configuration interface of the above-mentioned wireless router to display a second prompt message when the above-mentioned wireless router does not turn on the OPEN and OWE encryption methods.

[0079] Specifically, in the present application, the second prompt information may be "error, one must be enabled", or "select at least one of OPEN and OWE". Of course, the second prompt information may also be other prompt information, as long as it can prompt the user to select at least one of OPEN and OWE during the configuration of the wireless router.

[0080] In addition, when the wireless router does not open the OPEN mode and does not open the OWE encryption mode, the configuration interface of the wireless router is controlled to display the second prompt information.

[0081] In order to enable those skilled in the art to more clearly understand the technical solution of the present application, the following will be described in conjunction with specific embodiments:

[0082] Example

[0083] This solution can automatically generate a configuration solution that takes into account both compatibility and experience based on the frequency band support and encryption protocol support selected by the user. Specifically, multiple wireless hotspots are automatically configured in each frequency band supported by the wireless router based on the encryption method supported by the user.

[0084] like Figure 3As shown in the figure, both the configuration interface for enabling encryption and the configuration interface for not enabling encryption are interfaces for users to configure. Both interfaces include fields such as SSID, password, enabled frequency band, encryption method, and save configuration for users to select. For example, users can enter "WIFI_SSID" after the "SSID" field; enter the corresponding password in the "Password" field ( Figure 3 The "*" in the field represents the password entered by the user). For the "Enable frequency band" field, the user can select "2.4GHz", "5GHz", or "6GHz". For the "Enable encryption" field, the user can select "WPA2 / Personal" or "WPA3 / Personal". When the user selects "Encryption (i.e., the first encryption method)", the user can select the encryption method of "WPA2 / Personal", the encryption method of "WPA3 / Personal", or the encryption method of "WPA2 / Personal" and "WPA3 / Personal" at the same time. When the user does not select "Encryption (i.e., the second encryption method)", the user can select the encryption method of OPEN, the encryption method of OWE, or the encryption method of OPEN and OWE at the same time. After the user selects the configuration, click "Save Configuration", and the wireless router can use this solution to generate a configuration solution that combines compatibility and optimal experience based on the configuration. The specific implementation method is to open the corresponding virtual AP (wireless access point) access point according to the encryption method selected by the user, and automatically add a suffix to the SSID according to the encryption method for identification. It is equivalent to developing multiple interfaces with different configurations for users to choose from, but eliminating the tedious configuration process. They are introduced as follows:

[0085] like Figure 4As shown, if the user selects the option of "enable encryption", the configuration begins. First, it is determined whether at least one encryption method is enabled (i.e., at least one of WPA2 and WPA3 is enabled). If the user does not enable WPA2 and does not enable WPA3, the user is prompted "Error, one must be enabled". If the user only enables the encryption method of WPA2 and starts the network bands of 2.4GHz and 5GHz at the same time, a first predetermined identifier is configured in the SSID corresponding to the network bands of 2.4GHz and 5GHz, and a first target SSID, i.e., "WIFI_SSID_WPA2" is obtained. If the user only enables the encryption method of WPA3 and starts the network bands of 2.4GHz, 5GHz and 6GHz at the same time, a second predetermined identifier is configured in the SSID corresponding to the network bands of 2.4GHz, 5GHz and 6GHz, and a second target SSID, i.e., "WIFI_SSID_WPA3" is obtained. If the user enables 6GHz and enables WPA2, a third predetermined identifier is configured in the SSID corresponding to the network band of 6GHz, and a third target SSID, i.e., "WIFI_SSID_6G" is obtained.

[0086] like Figure 5 As shown, if the user does not select the option of "enable encryption", the configuration begins, and first determines whether at least one encryption method is enabled (that is, at least one of OPEN and OWE is enabled). If the user does not enable OPEN and OWE, the user is prompted "Error, one must be enabled". If the user only enables the encryption method of OPEN and starts the network bands of 2.4GHz and 5GHz at the same time, the fourth predetermined identifier is configured in the SSID corresponding to the network bands of 2.4GHz and 5GHz, and the fourth target SSID, namely "WIFI_SSID_OPEN", is obtained. If the user only enables the encryption method of OWE and starts the network bands of 2.4GHz, 5GHz and 6GHz at the same time, the fifth predetermined identifier is configured in the SSID corresponding to the network bands of 2.4GHz, 5GHz and 6GHz, and the fifth target SSID, namely "WIFI_SSID_OWE", is obtained. If the user enables 6GHz and does not enable OWE, the sixth predetermined identifier is configured in the SSID corresponding to the network band of 6GHz, and the sixth target SSID, namely "WIFI_SSID_6G_OWE", is obtained.

[0087] The configuration device of the multi-frequency wireless hotspot includes a processor and a memory. The first configuration unit and the second configuration unit are stored in the memory as program units. The processor executes the program units stored in the memory to implement corresponding functions.

[0088] The processor includes a kernel, which retrieves the corresponding program unit from the memory. One or more kernels can be set to solve the problem of poor user experience when roaming from one BSS to another in the prior art by adjusting kernel parameters.

[0089] The memory may include non-permanent memory in a computer-readable medium, random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM, and the memory includes at least one memory chip.

[0090] An embodiment of the present invention provides a computer-readable storage medium having a program stored thereon, and when the program is executed by a processor, the method for configuring the multi-frequency wireless hotspot is implemented.

[0091] An embodiment of the present invention provides a processor, and the processor is used to run a program, wherein the program executes the configuration method of the multi-frequency wireless hotspot when running.

[0092] An embodiment of the present invention provides a device, the device including a processor, a memory, and a program stored in the memory and executable on the processor, and when the processor executes the program, at least the following steps are implemented:

[0093] Step S101, when the encryption mode of the wireless router is a first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3;

[0094] Step S102, when the encryption mode of the above-mentioned wireless router is the second encryption mode, according to the above-mentioned predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured above-mentioned target SSID, wherein the above-mentioned second encryption mode includes at least one of the following: OPEN, OWE.

[0095] The devices in this article can be servers, PCs, PADs, mobile phones, etc.

[0096] The present application also provides a computer program product, which, when executed on a data processing device, is suitable for executing a program for initializing at least the following method steps:

[0097] Step S101, when the encryption mode of the wireless router is a first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3;

[0098] Step S102, when the encryption mode of the above-mentioned wireless router is the second encryption mode, according to the above-mentioned predetermined rule, the SSID of the above-mentioned network frequency band corresponding to the above-mentioned second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured above-mentioned target SSID, wherein the above-mentioned second encryption mode includes at least one of the following: OPEN, OWE.

[0099] In the above embodiments of the present invention, the description of each embodiment has its own emphasis. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0100] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. Among them, the device embodiments described above are only schematic. For example, the division of the above-mentioned units can be a logical function division. There may be other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of units or modules, which can be electrical or other forms.

[0101] The units described above as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple units. Some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.

[0102] In addition, each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.

[0103] If the above-mentioned integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a number of instructions for a computer device (which can be a personal computer, a server or a network device, etc.) to perform all or part of the steps of the above-mentioned methods of each embodiment of the present invention. The aforementioned storage medium includes: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk and other media that can store program codes.

[0104] From the above description, it can be seen that the above embodiments of the present application achieve the following technical effects:

[0105] 1) In the configuration method of the multi-frequency wireless hotspot of the present application, when the wireless router encrypts in the first encryption mode, according to the predetermined rules, the SSID of the network frequency band encrypted in the first encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID; when the wireless router encrypts in the second encryption mode, according to the predetermined rules, the SSID of the network frequency band encrypted in the second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID. In this scheme, according to the encryption mode enabled by the wireless router, the SSID of the network frequency band in the turned-on state is configured with a predetermined identifier corresponding to the encryption mode to obtain the configured target SSID corresponding to the encryption mode. This ensures that the client device can easily distinguish different target SSIDs and that the client device can choose to connect to different target SSIDs as required. When the user enters the password in the corresponding target SSID, the client device can automatically store the password. The client device can then automatically switch to different target SSIDs, i.e., there is no need for the user to switch manually, which ensures a better user experience. Due to the different encryption modes, different target SSIDs correspond to different BSSs. Since the client device can automatically switch different target SSIDs, it can also achieve automatic roaming from one BSS to another. Compared with the prior art in which the same SSID corresponds to two BSSs, which causes the client device to be easily disconnected and requires the user to manually reconnect, the configuration method of the present application reduces the possibility of the device client connection being disconnected, ensuring that better network services can be provided to users.

[0106] 2) In the configuration device of the multi-frequency wireless hotspot of the present application, the first configuration unit is used to configure the corresponding predetermined identifier for the SSID of the network frequency band corresponding to the first encryption method and in the enabled state according to the predetermined rules when the encryption method of the wireless router is the first encryption method, and obtain the configured target SSID, wherein the first encryption method includes at least one of the following: WPA2, WPA3; the second configuration unit is used to configure the corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption method and in the enabled state according to the predetermined rules when the encryption method of the wireless router is the second encryption method, and obtain the configured target SSID, wherein the second encryption method includes at least one of the following: OPEN, OWE. In this scheme, according to the encryption method enabled by the wireless router, the SSID of the network frequency band in the enabled state is configured with the predetermined identifier corresponding to the encryption method, and the configured target SSID corresponding to the encryption method is obtained. This ensures that the client device can easily distinguish different target SSIDs, and ensures that the client device can choose to connect to different target SSIDs according to needs. When the user enters the password in the corresponding target SSID, the client device can automatically store the password. The client device can then automatically switch between different target SSIDs, without the need for manual switching by the user, thus ensuring a better user experience. Due to different encryption methods, different target SSIDs correspond to different BSSs. Since the client device can automatically switch between different target SSIDs, it can also achieve automatic roaming from one BSS to another. Compared with the prior art in which the same SSID corresponds to two BSSs, causing the client device to easily disconnect and requiring the user to manually reconnect, the configuration method of the present application reduces the possibility of the device client connection being disconnected, ensuring that better network services can be provided to users.

[0107] The above description is only the preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A method for configuring a multi-frequency wireless hotspot, characterized in that: include: When the encryption mode of the wireless router is a first encryption mode, according to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2, WPA3; In the case where the encryption mode of the wireless router is the second encryption mode, according to the predetermined rule, the SSID of the network frequency band corresponding to the second encryption mode and in the turned-on state is configured with a corresponding predetermined identifier to obtain the configured target SSID, wherein the second encryption mode includes at least one of the following: OPEN, OWE; According to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, and a configured target SSID is obtained, including: When the wireless router turns on the WPA2 encryption mode and the network frequency band in the turned-on state is the first network frequency band and / or the second network frequency band, a first predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured first target SSID; When the wireless router turns on the WPA3 encryption mode, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, a second predetermined identifier is configured in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band to obtain a configured second target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; When the encryption modes of WAP2 and WAP3 are simultaneously turned on in the wireless router, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, the first predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured first target SSID, and the second predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured second target SSID.

2. The configuration method according to claim 1, characterized in that: According to a predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state, to obtain a configured target SSID, further comprising: When the wireless router turns on the third network frequency band and the WPA2 encryption mode, a third predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain a configured third target SSID.

3. The configuration method according to claim 1 or 2, characterized in that: According to a predetermined rule, the SSID of the network frequency band corresponding to the first encryption mode and in an enabled state is configured with a corresponding predetermined identifier, and before obtaining the configured target SSID, the configuration method further includes: Determine whether the wireless router has enabled WPA2 and / or WPA3 encryption; When the wireless router does not enable the WPA2 encryption mode and does not enable the WPA3 encryption mode, the configuration interface of the wireless router is controlled to display the first prompt information.

4. The configuration method according to claim 1, characterized in that: According to the predetermined rule, configuring a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption mode and in an enabled state, and obtaining the configured target SSID, including: When the wireless router turns on the OPEN encryption mode and the network frequency band in the turned-on state is the first network frequency band and / or the second network frequency band, a fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain a configured fourth target SSID; When the wireless router turns on the encryption mode of OWE, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, a fifth predetermined identifier is configured in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band to obtain a configured fifth target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; When the wireless router turns on the encryption modes of OPEN and OWE at the same time, and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, the fourth predetermined identifier is configured in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured fourth target SSID, and the fifth predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain the configured fifth target SSID.

5. The configuration method according to claim 4, characterized in that: According to the predetermined rule, a corresponding predetermined identifier is configured for the SSID of the network frequency band corresponding to the second encryption mode and in an enabled state to obtain the configured target SSID, further comprising: When the wireless router turns on the third network frequency band and does not turn on the encryption mode of OWE, a sixth predetermined identifier is configured in the SSID corresponding to the third network frequency band to obtain a configured sixth target SSID.

6. The configuration method according to claim 4 or 5, characterized in that: Before configuring the SSID of the network frequency band corresponding to the second encryption mode and in the enabled state with a corresponding predetermined identifier according to the predetermined rule and obtaining the configured target SSID, the configuration method further includes: Determine whether the wireless router has enabled the encryption mode of OPEN and / or OWE; When the wireless router does not enable the OPEN encryption mode and does not enable the OWE encryption mode, the configuration interface of the wireless router is controlled to display the second prompt information.

7. A multi-frequency wireless hotspot configuration device, characterized in that: include: A first configuration unit is used to configure a corresponding predetermined identifier for an SSID of a network frequency band corresponding to the first encryption mode and in an enabled state according to a predetermined rule when the encryption mode of the wireless router is a first encryption mode, so as to obtain a configured target SSID, wherein the first encryption mode includes at least one of the following: WPA2 and WPA3; A second configuration unit is used for, when the encryption mode of the wireless router is a second encryption mode, configuring a corresponding predetermined identifier for the SSID of the network frequency band corresponding to the second encryption mode and in an open state according to the predetermined rule, to obtain the configured target SSID, wherein the second encryption mode includes at least one of the following: OPEN, OWE; The first configuration unit includes a first configuration module, a second configuration module and a third configuration module, wherein the first configuration module is used to configure a first predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band when the wireless router turns on the WPA2 encryption mode and the network frequency band in the turned-on state is the first network frequency band and / or the second network frequency band, and obtain the configured first target SSID, and the first network frequency band is smaller than the second network frequency band; The second configuration module is used to configure a second predetermined identifier in the SSID corresponding to the first network frequency band, the second network frequency band and / or the third network frequency band when the WPA3 encryption mode is turned on in the wireless router and the network frequency band in the turned-on state is the first network frequency band, the second network frequency band and / or the third network frequency band, to obtain a configured second target SSID, and the first network frequency band, the second network frequency band and the third network frequency band are different from each other; The third configuration module is used to configure the first predetermined identifier in the SSID corresponding to the first network frequency band and / or the second network frequency band to obtain the configured first target SSID, and configure the second predetermined identifier in the SSID corresponding to the third network frequency band to obtain the configured second target SSID when the WPA2 and WPA3 encryption modes are simultaneously enabled on the wireless router and the network frequency band in the enabled state is the first network frequency, the second network frequency band and / or the third network frequency band.

8. A computer-readable storage medium, characterized in that: The computer-readable storage medium includes a stored program, wherein the program executes the configuration method according to any one of claims 1 to 6.

9. A processor, characterized in that: The processor is used to run a program, wherein the program executes the configuration method described in any one of claims 1 to 6 when running.

Citation Information

Patent Citations

  • Multi-frequency WiFi hotspot opening method and device, storage medium and electronic equipment

    CN111356209A