Network provisioning method and system

WO2026179918A1PCT designated stage Publication Date: 2026-09-03SHANGHAI SIGEYUAN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
PCT/CN2026/080185
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2025-02-26
Filing Date
2026-02-26
Publication Date
2026-09-03

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Abstract

The present application relates to the technical field of electricity, and discloses a network provisioning method and system applied to a photovoltaic energy storage system. The network provisioning comprises: in response to a first input of a user, a target device triggers a network provisioning process by means of a target application program; the target device is connected to a target intelligent wireless device by searching for an AP hotspot, and a target terminal receives a second input of the user by means of the target application program, and acquires configuration information of a target router; the target device sends the configuration information to the target intelligent wireless device; and a control unit acquires access information of the target intelligent wireless device, and establishes, on the basis of the access information, communication with the target intelligent wireless device by means of the target router, so as to complete network configuration of an optical storage system and the target intelligent wireless device.
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Description

Distribution network methods and systems

[0001] Cross-reference of related applications

[0002] This application is based on and claims priority to Chinese Patent Application No. 202510225169.5, filed on February 26, 2025, the entire contents of which are incorporated herein by reference. Technical Field

[0003] This application relates to the field of power technology, and more specifically, to a distribution network method and system. Background Technology

[0004] With the development of wireless communication technology, smart wireless devices have been widely used in the field of photovoltaic and energy storage management. This enables traditional electrical equipment to be remotely controlled and monitored via wireless networks, avoiding complex wiring, significantly reducing deployment costs, and promoting the efficient utilization of energy in photovoltaic and energy storage systems. However, integrating smart wireless devices into photovoltaic and energy storage systems still faces some challenges. For example, the interaction process is not standardized enough, and the user configuration process is cumbersome. Users need to manually switch to an app to complete the network configuration of the smart wireless devices, and the photovoltaic and energy storage system needs to wait for the smart wireless devices to connect to the home router before searching for and obtaining device information, ultimately achieving automatic network configuration between the photovoltaic and energy storage system and the smart wireless devices at startup. This limits the networking flexibility of the smart wireless devices and the photovoltaic and energy storage system, and also results in long startup times and a poor user experience.

[0005] Since smart wireless devices are often provided by third-party manufacturers, in order to integrate smart wireless devices into the optical storage system, the existing solution requires users to first use the third-party manufacturer's APP to configure each smart wireless device (SSID and password) during the initial network configuration process, so that it can connect to the home router, and then switch back to the optical storage system APP to search for devices, obtain device information and connect them. The initial configuration time is long and requires switching APPs, resulting in a poor user experience. Summary of the Invention

[0006] This application aims to address at least one of the technical problems existing in the prior art. To this end, this application proposes a distribution network method and system for photovoltaic energy storage systems, which can significantly improve the user experience when connecting smart wireless devices to the photovoltaic energy storage system.

[0007] In a first aspect, this application provides a distribution network method for a photovoltaic energy storage system, the method comprising:

[0008] The target device responds to the user's first input and triggers the network distribution process through the target application; the target device includes a target terminal or the control unit of the optical storage system.

[0009] The target device searches for AP hotspots, connects to the target smart wireless device, and the target terminal receives a second input from the user through the target application to obtain the configuration information of the target router; the target smart wireless device operates in AP hotspot mode.

[0010] The target device sends the configuration information to the target intelligent wireless device so that the target intelligent wireless device can complete the network configuration.

[0011] The control unit acquires the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.

[0012] According to the network distribution method for photovoltaic storage systems proposed in this application, by automatically performing network distribution between the photovoltaic storage system and smart wireless devices, the user experience when connecting smart wireless devices to the photovoltaic storage system can be significantly improved. The network distribution is more efficient, the steps are simpler, and the operation is more convenient.

[0013] According to one embodiment of this application, the target device connects to a target smart wireless device by searching for AP hotspots, and the target terminal receives a second input from the user through the target application to obtain configuration information of the target router, including:

[0014] When the target device is the control unit, the control unit searches for AP hotspots and returns the target information of the searched AP hotspots to the target terminal;

[0015] The target terminal displays the target information through the target application.

[0016] The target terminal receives a third input from the user through the target application, identifies the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input;

[0017] When the control unit is wirelessly connected to the target terminal, the control unit disconnects the wireless connection with the target terminal and connects to the AP hotspot established by the target smart wireless device.

[0018] According to one embodiment of this application, the target device connects to a target smart wireless device by searching for AP hotspots, and the target terminal receives a second input from the user through the target application to obtain configuration information of the target router, including:

[0019] When the target device is the target terminal, the target terminal searches for AP hotspots and displays the target information of the searched AP hotspots through the target application;

[0020] The target terminal receives a third input from the user through the target application, identifies the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input;

[0021] The target terminal establishes an AP hotspot connection with the target smart wireless device.

[0022] According to one embodiment of this application, after the target terminal receives a third input from a user through the target application, determines the target smart wireless device, receives the second input, and obtains the configuration information carried by the second input, the method further includes:

[0023] When the control unit is connected to the target router via a wired connection, the control unit establishes an AP hotspot connection with the target smart wireless device.

[0024] According to one embodiment of this application, the target device sends the configuration information to the target smart wireless device to enable the target smart wireless device to complete network configuration, including:

[0025] The target terminal sends the configuration information to the control unit through the target application.

[0026] The control unit sends the configuration information to the target smart wireless device so that the target smart wireless device can complete the network configuration.

[0027] According to one embodiment of this application, the control unit obtains the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through a target router to complete the network configuration of the optical storage system and the target intelligent wireless device, including:

[0028] The control unit obtains the access information based on the connection established with the AP hotspot of the target smart wireless device;

[0029] The control unit disconnects the AP hotspot established with the target smart wireless device, and based on the access information, establishes a communication connection with the target smart wireless device through the target router to complete the network configuration of the optical storage system and the target smart wireless device.

[0030] According to one embodiment of this application, the control unit obtains the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through a target router to complete the network configuration of the optical storage system and the target intelligent wireless device, including:

[0031] The target terminal obtains the access information based on the AP hotspot connection established with the target smart wireless device, and sends the access information to the control unit;

[0032] The control unit receives the access information and, based on the access information, establishes a communication connection with the target intelligent wireless device through the target router to complete the network configuration of the optical storage system and the target intelligent wireless device.

[0033] According to one embodiment of this application, the configuration information includes the service set identifier and password of the target router.

[0034] Secondly, this application provides a distribution network system for a photovoltaic energy storage system, the device comprising: a target terminal, a control unit of the photovoltaic energy storage system, a target intelligent wireless device, and a target router;

[0035] The target device is configured to respond to a user's first input by triggering a network configuration process via a target application; connect to a target smart wireless device by searching for an AP hotspot, and the target terminal receives a second input from the user via the target application to obtain configuration information of the target router; and send the configuration information to the target smart wireless device to enable the target smart wireless device to complete network configuration; the target device includes the control unit of the target terminal or the optical storage system; the target smart wireless device operates in AP hotspot mode;

[0036] The control unit is used to acquire the access information of the target intelligent wireless device, and based on the access information, establish communication with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.

[0037] According to the distribution network system applied to the photovoltaic storage system of this application, by automatically performing distribution network between the photovoltaic storage system and the smart wireless device, the user experience when connecting the smart wireless device to the photovoltaic storage system can be significantly improved. The distribution network is more efficient, the steps are simpler, and the operation is more convenient.

[0038] According to one embodiment of this application, when the target device is the control unit, the control unit is configured to search for AP hotspots and return the target information of the searched AP hotspots to the target terminal;

[0039] The target terminal is used to display the target information through the target application; receive a third input from the user through the target application, determine the target smart wireless device, and receive the second input to obtain the configuration information carried by the second input;

[0040] When the control unit is wirelessly connected to the target router, the control unit is also used to disconnect the wireless connection with the target router and connect to the AP hotspot established by the target smart wireless device.

[0041] According to one embodiment of this application, when the target device is the target terminal, the target terminal is configured to search for AP hotspots, display the target information of the searched AP hotspots through the target application; receive a third input from the user through the target application, determine the target smart wireless device, and receive a second input to obtain the configuration information carried by the second input; and establish an AP hotspot connection with the target smart wireless device.

[0042] According to one embodiment of this application, when the control unit is connected to the target router via a wired connection, the control unit is used to establish an AP hotspot connection with the target smart wireless device.

[0043] According to one embodiment of this application, the target terminal is configured to send the configuration information to the control unit through the target application;

[0044] The control unit is used to send the configuration information to the target smart wireless device so that the target smart wireless device can complete the network configuration.

[0045] According to one embodiment of this application, the control unit is configured to obtain the access information based on the connection established with the AP hotspot of the target smart wireless device; and to disconnect the connection established with the AP hotspot of the target smart wireless device, and based on the access information, to complete the network distribution of the optical storage system and the target smart wireless device through the target router.

[0046] According to one embodiment of this application, the target terminal is configured to obtain the access information based on the connection established with the AP hotspot of the target smart wireless device, and to send the access information to the control unit;

[0047] The control unit is used to receive the access information and, based on the access information, communicate with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.

[0048] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0049] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0050] Figure 1 is one of the flowcharts of a power distribution method for a photovoltaic energy storage system provided in an embodiment of this application;

[0051] Figure 2 is one of the structural schematic diagrams of the photovoltaic energy storage system provided in the embodiments of this application;

[0052] Figure 3 is a second schematic diagram of the structure of the photovoltaic energy storage system provided in the embodiment of this application;

[0053] Figure 4 is a third schematic diagram of the structure of the photovoltaic energy storage system provided in the embodiment of this application;

[0054] Figure 5 is one of the schematic diagrams of the communication network structure of the optical energy storage system provided in the embodiment of this application;

[0055] Figure 6 is a second schematic diagram of the communication network structure of the optical storage system provided in the embodiment of this application;

[0056] Figure 7 is a third schematic diagram of the communication network structure of the optical energy storage system provided in the embodiment of this application;

[0057] Figure 8 is a fourth schematic diagram of the communication network structure of the optical storage system provided in the embodiments of this application;

[0058] Figure 9 is a second schematic flowchart of a power distribution method for a photovoltaic energy storage system provided in an embodiment of this application;

[0059] Figure 10 is a third schematic flowchart of the power distribution method for a photovoltaic energy storage system provided in the embodiments of this application;

[0060] Figure 11 is a fourth flowchart illustrating the distribution network method for a photovoltaic energy storage system provided in an embodiment of this application.

[0061] Figure 12 is a schematic diagram of the distribution network system applied to the photovoltaic energy storage system provided in the embodiment of this application. Detailed Implementation

[0062] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0063] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0064] The following description, in conjunction with the accompanying drawings, details the network distribution method and system, electronic equipment, and readable storage medium provided in this application for photovoltaic energy storage systems through specific embodiments and application scenarios.

[0065] Among them, the distribution network method applied to the photovoltaic storage system can be applied to the terminal, and can be executed by the hardware or software in the terminal.

[0066] The terminal includes, but is not limited to, portable communication devices such as mobile phones or tablets with touch-sensitive surfaces (e.g., touchscreen displays and / or touchpads). It should also be understood that, in some embodiments, the terminal may not be a portable communication device, but rather a desktop computer with touch-sensitive surfaces (e.g., touchscreen displays and / or touchpads).

[0067] The following embodiments describe a terminal including a display and a touch-sensitive surface. However, it should be understood that the terminal may include one or more other physical user interface devices such as a physical keyboard, mouse, and joystick.

[0068] The network distribution method for photovoltaic storage systems provided in this application embodiment can be executed by an electronic device or a functional module or entity in an electronic device that can implement the network distribution method for photovoltaic storage systems. The electronic devices mentioned in this application embodiment include, but are not limited to, mobile phones, tablets, computers, cameras and wearable devices. The following uses an electronic device as the execution subject to illustrate the network distribution method for photovoltaic storage systems provided in this application embodiment.

[0069] As shown in Figure 1, the distribution network method applied to the photovoltaic energy storage system includes steps 110, 120, 130 and 140.

[0070] In actual implementation, the power distribution method for the photovoltaic-storage system provided in this application embodiment can be used to distribute power to a photovoltaic-storage system that includes user loads. As shown in Figures 2, 3 and 4, the photovoltaic-storage system may include a photovoltaic-storage power supply unit 210, a control unit 220 for the photovoltaic-storage system, user loads 230, a power distribution cabinet 240 and a power grid 250.

[0071] The photovoltaic-storage power supply unit 210 can be used to store and supply electrical energy. The photovoltaic-storage power supply unit 210 can be connected to the distribution cabinet 240 via power lines. The power grid 250 can be connected to the distribution cabinet 240 via power lines. User loads 230 can connect to the distribution cabinet 240 to obtain electrical energy.

[0072] In some embodiments, the user load 230 can be different types of load depending on the user. For example, if the user is a home user, the user load 230 can be a home load; or if the user is a business user, the user load 230 can be a business load.

[0073] In some embodiments, the number of user loads 230 can be at least one.

[0074] The control unit 220 of the optical-energy storage system can be used to control the optical-energy storage system. In some embodiments, the control unit 220 can specifically be used to control other components in the optical-energy storage system besides itself. In some embodiments, the control unit 220 can be used to control the optical-energy storage power supply unit 210. For example, the control unit 220 can control the output power of the optical-energy storage power supply unit 210.

[0075] This application does not limit the location of the control unit 220 of the photovoltaic energy storage system. The control unit 220 can be located inside the photovoltaic energy storage power supply unit 210, independently outside the photovoltaic energy storage power supply unit 210, or inside the power distribution cabinet 240. For example, Figure 2 shows the case where the control unit 220 is located inside the photovoltaic energy storage power supply unit 210, Figure 3 shows the case where the control unit 220 is independently outside the photovoltaic energy storage power supply unit 210, and Figure 4 shows the case where the control unit 220 is located inside the power distribution cabinet 240. When the control unit 220 is not located inside the photovoltaic energy storage power supply unit 210, it can be wired to communicate with the photovoltaic energy storage power supply unit 210 via a communication cable.

[0076] It should be noted that the photovoltaic power supply unit 210 can be controlled remotely through the control unit 220 of the photovoltaic power storage system. In some embodiments, the remote control method described above can be implemented based on the target terminal 260.

[0077] In some embodiments, the target terminal 260 may have an application (APP) installed, which may be called the optical storage system APP. By operating the target terminal 260 and using the optical storage system APP, the control unit 220 of the optical storage system can control the optical storage power supply unit 210.

[0078] In some embodiments, the above-described remote control method can also be implemented based on the target terminal 260 and the management system 280. The management system 280 can be located remotely, such as in the cloud or in the backend.

[0079] Each user load 230 can access a communication network through a smart wireless device 290. That is, the smart wireless device 290 can be used to connect at least one user load 230 to the network. The specific type of the smart wireless device 290 is not limited in this application embodiment. For example, the smart wireless device 290 may include a wireless smart switch with networking capabilities. In the various embodiments of this application, the goal of network distribution for the optical storage system is to achieve network connection between the control unit 220 of the optical storage system and the smart wireless device 290, i.e., both access the aforementioned communication network. The aforementioned communication network can be a router local area network. The target smart wireless device may include one or more of the aforementioned smart wireless devices 290.

[0080] This application embodiment does not limit the location of the intelligent wireless device 290. The intelligent wireless device 290 can be located inside or outside the power distribution cabinet 240. The intelligent wireless device can connect wirelessly to the target router 270 and has accessed the aforementioned communication network.

[0081] The target router 270 can be a router used on the user side. For example, if the user is a home user, the target router 270 can be located in the home, and if the user is a business user, the target router 270 can be located in the business's office or production site.

[0082] It should be noted that the control unit 220 of the optical storage system can be connected to the target router 270 wirelessly (e.g., Wi-Fi) or wiredly (e.g., various network cables, such as Fast Ethernet (FE) cables), and access the management system 280 through the target router 270.

[0083] In some embodiments, the target terminal 260 can communicate with the control unit 220 of the optical storage system remotely through the management system 280, or the target terminal 260 can communicate directly with the control unit 220 of the optical storage system wirelessly (including at least one of Wi-Fi and Bluetooth) near the device.

[0084] The following describes the communication network structure of a photovoltaic-storage system, taking the case where the control unit 220 of the photovoltaic-storage system is located inside the photovoltaic-storage power supply unit 210 as an example. Figures 5 to 8 show examples of the communication network structure of the control unit 220, target router 270, intelligent wireless device 290, target terminal 260, and management system 280 of the photovoltaic-storage system. Figure 5 shows one example of the communication network structure in which the target terminal 260 connects to the control unit 220 of the photovoltaic-storage system through the management system 280, and in this example, the intelligent wireless device 290 is located inside the distribution cabinet 240. Figure 6 shows another example of the communication network structure in which the target terminal 260 connects to the control unit 220 of the photovoltaic-storage system through the management system 280, and in this example, the intelligent wireless device 290 is located outside the distribution cabinet 240. Figure 7 shows one example of the communication network structure in which the target terminal 260 connects to the control unit 220 of the photovoltaic-storage system via near-end wireless, and in this example, the intelligent wireless device 290 is located inside the distribution cabinet 240. Figure 8 shows a second example of a communication network structure in which the target terminal 260 connects to the control unit 220 of the photovoltaic energy storage system via near-end wireless connection. In this example, the intelligent wireless device 290 is located outside the power distribution cabinet 240.

[0085] It is understood that although Figures 5 to 8 show the communication network structure of the photovoltaic energy storage system when the control unit 220 of the photovoltaic energy storage system is located inside the photovoltaic energy storage power supply unit 210, those skilled in the art can understand the communication network structure of the photovoltaic energy storage system when the control unit 220 of the photovoltaic energy storage system is located in other positions based on the above embodiments.

[0086] Step 110: The target device responds to the user's first input and triggers the network distribution process through the target application; the target device 260 includes the control unit 220 of the target terminal or the optical storage system.

[0087] In actual execution, the target device can trigger the network configuration process through the target application after receiving the user's first input, and begin network configuration. The specific form of the first input is not limited in this embodiment. For example, the first input can be a button press, input based on a keyboard and / or mouse peripheral, or an operation based on a touchscreen, etc.

[0088] In some embodiments, the target device may be the target terminal 260 or the control unit 220 of the optical storage system.

[0089] In some embodiments, when the target device is target terminal 260, target terminal 260 can receive the user's first input through the aforementioned optical storage system APP. The aforementioned optical storage system APP is the target application. Target terminal 260 can respond to the first input and trigger the network distribution process through the target application to begin network distribution.

[0090] In some embodiments, when the target device is the control unit 220 of the optical storage system, after receiving the user's first input, the control unit 220 of the optical storage system can trigger the network distribution process through the aforementioned optical storage system APP via communication with the target terminal 260 to start the network distribution.

[0091] Step 120: The target device searches for AP hotspots, connects to the target smart wireless device, and the target terminal 260 receives the user's second input through the target application to obtain the configuration information of the target router 270; the target smart wireless device operates in AP hotspot mode.

[0092] In actual execution, the target smart wireless device can first operate in AP (Access Point) hotspot mode to establish an AP hotspot. After triggering the network configuration process, the target device can search for AP hotspots; after finding the AP hotspot of the target smart wireless device, it can connect to that AP hotspot, thus enabling the target device to connect to the target smart wireless device.

[0093] It should be noted that the Service Set Identifier (SSID) of the AP hotspot established by the target smart wireless device must conform to the naming rules of the smart wireless device to ensure that the AP hotspot can be correctly identified as the AP hotspot established by the target smart wireless device.

[0094] After the target device connects to the target smart wireless device, the target terminal 260 can receive the user's second input through the aforementioned optical storage system APP. This second input can be used to input configuration information for the target router 270. This configuration information can be used by other devices to access the router local area network established by the target router 270.

[0095] It should be noted that the specific form of the second input is not limited in the embodiments of this application. For example, the second input may be a button press operation, input based on keyboard and / or mouse peripherals, or operation based on touch screen, etc.

[0096] It should be noted that the target router 270 can be a router that can be accessed by both the target smart wireless device and the control unit 220 of the optical storage system.

[0097] In some embodiments, the target terminal 260 or the control unit 220 of the optical storage system can both serve as target devices to perform the steps of searching for AP hotspots and connecting to the target smart wireless device.

[0098] Step 130: The target device sends configuration information to the target smart wireless device so that the target smart wireless device can complete the network configuration.

[0099] In actual operation, after the target terminal 260 obtains the configuration information of the target router 270, the target device can send the configuration information of the target router 270 to the target smart wireless device. Based on the configuration information of the target router 270, the target smart wireless device can complete the network configuration (which can be simply referred to as "network configuration") and access the router local area network established by the target router 270.

[0100] In some embodiments, when the target device is the target terminal 260, the target device can directly send the configuration information of the target router 270 to the target smart wireless device. However, when the target device is the control unit 220 of the optical storage system, the target terminal 260 can relay the configuration information of the target router 270 to the target smart wireless device through the control unit 220 of the optical storage system.

[0101] In some embodiments, the configuration information of the target router 270 may include the SSID and password of the target router 270.

[0102] Step 140: The control unit 220 obtains the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through the target router 270 to complete the network distribution of the optical storage system and the target intelligent wireless device.

[0103] In actual operation, the control unit 220 of the optical storage system can obtain access information of the target intelligent wireless device sent by the target intelligent wireless device or the target terminal 260.

[0104] In some embodiments, when the target device is the target terminal 260, the target terminal 260 can send the acquired access information of the target smart wireless device to the control unit 220 of the optical storage system. When the target device is the control unit 220 of the optical storage system, the target smart wireless device can directly send its own access information to the control unit 220 of the optical storage system.

[0105] After the control unit 220 of the optical storage system obtains the access information of the target intelligent wireless device, it can establish a communication connection with the target intelligent wireless device through the target router 270 based on the access information, so that both the control unit 220 of the optical storage system and the target intelligent wireless device can access the router local area network established by the target router 270, thus completing the network configuration of the optical storage system and the target intelligent wireless device.

[0106] It should be noted that in step 140, when the control unit 220 of the optical storage system obtains the access information of the target intelligent wireless device, the target intelligent wireless device is still operating in AP hotspot mode. After the control unit 220 of the optical storage system obtains the access information of the target intelligent wireless device, the target intelligent wireless device may not operate in AP hotspot mode, but may operate in relay mode, routing mode, or bridging mode, etc.

[0107] It should be noted that during the above network configuration process, users only need to complete the network configuration once (i.e., enter the configuration information of the target router 270). Subsequent configuration processes can be completed automatically. The entire process requires only the target application; there is no need to switch to other apps for secondary operations, which helps improve network configuration efficiency and enhances the user experience.

[0108] According to the network configuration method for photovoltaic storage systems provided in the embodiments of this application, by automatically configuring the network between the photovoltaic storage system and the smart wireless devices, the user experience when connecting the smart wireless devices to the photovoltaic storage system can be significantly improved. The network configuration is more efficient, the steps are simpler, and the operation is more convenient.

[0109] In some embodiments, the target device connects to the target smart wireless device by searching for AP hotspots, and the target terminal 260 receives a second input from the user through the target application to obtain the configuration information of the target router 270, which may include the following steps.

[0110] In actual implementation, the control unit 220 of the photovoltaic storage system can be used as the target device. The following describes the specific implementation process of steps 120 and 130 when the target terminal 260 is used as the target device.

[0111] When the target device is control unit 220, control unit 220 searches for AP hotspots and returns the target information of the searched AP hotspots to target terminal 260; target terminal 260 displays the target information through the target application; target terminal 260 receives the user's third input through the target application, determines the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input; when control unit 220 is wirelessly connected to target router 270, control unit 220 disconnects the wireless connection with target router 270 and connects to the AP hotspot established by the target smart wireless device.

[0112] In actual operation, the control unit 220 of the optical storage system can search for access point (AP) hotspots and return the target information of the searched AP hotspots to the target application running on the target terminal 260. The target information of the searched AP hotspots may include the SSID of each searched AP hotspot. In addition to the SSID, the target information of the AP hotspots may also include signal strength, etc.

[0113] In some embodiments, the target application may display the target information in a list format. The user can enter a third input regarding the target information. This third input is used to determine the AP hotspot established by the target smart wireless device.

[0114] The target terminal 260 can determine the AP hotspot established by the target smart wireless device in response to the third input. Since there is a one-to-one correspondence between the AP hotspot and the established device, the target smart wireless device can be identified.

[0115] The user can also input a second input through the target application to input the configuration information of the target router 270, enabling the target terminal 260 to obtain the configuration information of the target router 270. It is understood that the second input can carry the configuration information of the target router 270.

[0116] When the control unit 220 of the optical storage system is wirelessly connected to the target router 270, the control unit 220 of the optical storage system can disconnect from the wireless connection with the target router 270 and instead connect wirelessly to the target smart wireless device. That is, the control unit 220 of the optical storage system accesses the AP hotspot established by the target smart wireless device, thereby connecting wirelessly to the target smart wireless device.

[0117] According to the network configuration method for optical storage systems provided in this application embodiment, the control unit of the optical storage system searches for AP hotspots, receives a third input from the user based on the target application, determines the target smart wireless device, and obtains the configuration information of the target router carried by the second input. The control unit of the optical storage system establishes an AP hotspot connection with the target smart wireless device, and automatically performs network configuration between the optical storage system and the smart wireless device. This can significantly improve the user experience when connecting smart wireless devices to the optical storage system, with higher network configuration efficiency, simpler steps, and more convenient operation.

[0118] In some embodiments, after the target terminal 260 receives a third input from the user through the target application, determines the target smart wireless device, and receives a second input to obtain the configuration information carried by the second input, the method further includes: when the control unit and the target router 270 are connected via a wired connection, establishing an AP hotspot connection between the control unit and the target smart wireless device.

[0119] In actual operation, when the control unit 220 of the optical storage system is connected to the target router 270 via a wired connection, after the target terminal 260 obtains the configuration information of the target router 270, the control unit 220 of the optical storage system can wirelessly connect with the target smart wireless device. That is, the control unit 220 of the optical storage system accesses the AP hotspot established by the target smart wireless device, thereby wirelessly connecting with the target smart wireless device.

[0120] According to the network configuration method for optical storage systems provided in this application embodiment, the control unit of the optical storage system searches for AP hotspots, receives a third input from the user based on the target application, determines the target smart wireless device, and obtains the configuration information of the target router carried by the second input. The control unit of the optical storage system establishes an AP hotspot connection with the target smart wireless device, and automatically performs network configuration between the optical storage system and the smart wireless device. This can significantly improve the user experience when connecting smart wireless devices to the optical storage system, with higher network configuration efficiency, simpler steps, and more convenient operation.

[0121] In some embodiments, the target device sends configuration information to the target smart wireless device to enable the target smart wireless device to complete network configuration, including: the target terminal sending configuration information to the control unit through the target application; and the control unit sending configuration information to the target smart wireless device to enable the target smart wireless device to complete network configuration.

[0122] In actual operation, when the target device is the control unit 220 of the optical storage system, the target terminal 260 can send the configuration information of the target router 270 to the control unit 220 of the optical storage system through the target application. After receiving the configuration information of the target router 270 sent by the target terminal 260 through the target application, the control unit 220 of the optical storage system can send the configuration information of the target router 270 to the target smart wireless device based on the AP hotspot connection established with the target smart wireless device. After receiving the configuration information of the target router 270, the target smart wireless device can complete the network configuration based on the configuration information of the target router 270 and access the router local area network established by the target router 270.

[0123] According to the network configuration method for optical storage systems provided in this application embodiment, the target application sends the configuration information of the target router to the control unit of the optical storage system, and the control unit of the optical storage system then sends the configuration information of the target router to the target smart wireless device, so that the target smart wireless device completes the network configuration and automatically performs network configuration between the optical storage system and the smart wireless device. This can significantly improve the user experience when connecting the smart wireless device to the optical storage system, with higher network configuration efficiency, simpler steps, and more convenient operation.

[0124] In some embodiments, the control unit obtains access information of the target intelligent wireless device and establishes communication with the target intelligent wireless device through the target router based on the access information to complete the network distribution of the optical storage system and the target intelligent wireless device. This includes: the control unit 220 obtaining access information based on the AP hotspot connection established with the target intelligent wireless device; the control unit 220 disconnecting the AP hotspot connection established with the target intelligent wireless device and establishing a communication connection with the target intelligent wireless device through the target router 270 based on the access information to complete the network distribution of the optical storage system and the target intelligent wireless device.

[0125] In actual execution, after the target intelligent wireless device completes network configuration, if the target device is the control unit 220 of the optical storage system, the control unit 220 of the optical storage system can obtain the access information of the target intelligent wireless device based on the AP hotspot connection established with the target intelligent wireless device.

[0126] After the control unit 220 of the optical storage system obtains the access information of the target intelligent wireless device, it can disconnect the AP hotspot established with the target intelligent wireless device and reconnect to the target router 270 based on the access information. Then, it can establish a communication connection with the target intelligent wireless device through the target router 270, so that both the control unit 220 of the optical storage system and the target intelligent wireless device can access the router local area network established by the target router 270, thus completing the network configuration of the optical storage system and the target intelligent wireless device.

[0127] It should be noted that when the control unit 220 of the optical storage system is connected to the target router 270 via a wired connection, the control unit 220 of the optical storage system can continue to disconnect the AP hotspot established with the target smart wireless device after obtaining the access information of the target smart wireless device.

[0128] According to the network configuration method for a photovoltaic storage system provided in this application embodiment, the control unit of the photovoltaic storage system obtains the access information of the target intelligent wireless device based on the connection established with the AP hotspot of the target intelligent wireless device, and completes the network configuration between the photovoltaic storage system and the target intelligent wireless device through the communication connection between the target router and the target intelligent wireless device based on the access information of the target intelligent wireless device. The automatic network configuration between the photovoltaic storage system and the intelligent wireless device can significantly improve the user experience when connecting the intelligent wireless device to the photovoltaic storage system, with higher network configuration efficiency, simpler steps, and more convenient operation.

[0129] In some embodiments, when the control unit 220 of the photovoltaic storage system is the target device, the implementation process of the distribution network method applied to the photovoltaic storage system may mainly include the following key points.

[0130] (1) The control unit 220 of the photovoltaic-storage system has the function of automatically searching for AP hotspot information of smart wireless devices. In some embodiments, the control unit 220 of the photovoltaic-storage system can be integrated inside the photovoltaic-storage converter, or deployed as an independent controller outside the photovoltaic-storage converter. In some embodiments, the aforementioned photovoltaic-storage power supply unit 210 can be the photovoltaic-storage converter, etc.

[0131] (2) The control unit 220 of the optical storage system can search for hotspot information of smart wireless devices according to certain matching rules (e.g., the SSID of the AP hotspot must conform to the naming rules of smart devices). Users can select the corresponding smart wireless device as the target smart wireless device through the target application (e.g., the optical storage system APP) and enter the configuration information of the target router 270. The subsequent network configuration process can be completed automatically by the optical storage system.

[0132] (3) The target application (e.g., a photoelectric storage system APP) sends the AP hotspot information of the target smart wireless device to the control unit 220 of the photoelectric storage system. The control unit 220 of the photoelectric storage system connects to the AP hotspot of the target smart wireless device, and the control unit 220 of the photoelectric storage system sends the configuration information of the target router 270 to the target smart wireless device. In some embodiments, the configuration information of the target router 270 may include the SSID and password of the target router 270.

[0133] (4) After the target smart wireless device is configured with the network, the control unit 220 of the optical storage system obtains the access information of the target smart wireless device, automatically disconnects the connection with the AP hotspot of the target smart wireless device (taking the wireless connection between the control unit 220 of the optical storage system and the target router 270 as an example), and establishes communication with the target smart wireless device through the target router 270 according to the access information of the target smart wireless device, and finally completes the automatic network configuration action between the optical storage system and the target smart wireless device. The whole process does not require the user to switch the APP to perform multiple operations.

[0134] The aforementioned network configuration method applied to photovoltaic-storage systems is an automatic network configuration solution for the initial setup of photovoltaic-storage systems and intelligent wireless devices. This solution eliminates the need for users to perform multiple network configuration operations. Users only need to complete the network configuration once; subsequent configuration processes are completed automatically without requiring switching apps for secondary or additional operations. This improves initial setup efficiency and enhances the user experience.

[0135] In some embodiments, when the control unit 220 of the photovoltaic storage system is the target device, the implementation process of the distribution network method applied to the photovoltaic storage system may mainly include the following steps.

[0136] (1) When the user triggers the network configuration process of the smart wireless device in the APP of the optical storage system, the APP of the optical storage system sends the instruction to the control unit 220 of the optical storage system. The control unit 220 of the optical storage system searches for the AP hotspot information of the smart wireless device according to the matching rules (such as the SSID of the AP hotspot must conform to the naming rules of the smart device).

[0137] (2) Users select the target smart wireless device through the optical storage system APP and enter the configuration information of the target router 270.

[0138] (3) The APP of the optical storage system sends the hotspot information of the target smart wireless device to the control unit 220 of the optical storage system. The control unit 220 of the optical storage system connects to the AP hotspot of the target smart wireless device and sends the configuration information of the target router 270 to the target smart wireless device.

[0139] (4) After the target smart wireless device is configured with the network, the control unit 220 of the optical storage system obtains the access information of the target smart wireless device, automatically disconnects the connection with the AP hotspot of the target smart wireless device, and establishes communication with the target smart wireless device according to the access information of the target smart wireless device, and finally completes the automatic configuration of the optical storage system and the target smart wireless device at the start of the network. The whole process does not require the user to switch the APP.

[0140] It should be noted that the control unit 220 of the optical storage system establishes communication with the target intelligent wireless device within the local area network where the target router 270 is located, based on the access information of the target intelligent wireless device.

[0141] Figures 9 and 10 illustrate the process of configuring a target smart wireless device via the control unit 220 of the optical storage system. Figure 9 shows the case where the control unit 220 of the optical storage system connects to the management system 280 located in a remote location such as the cloud via wireless means such as Wi-Fi. In this case, the control unit 220 of the optical storage system needs to disconnect from the target router 270 when configuring the AP hotspot of the target smart wireless device. Figure 10 shows the case where the control unit 220 of the optical storage system connects to the management system 280 located in a remote location such as the cloud via wired means such as FE network cable. In this case, the control unit 220 of the optical storage system does not need to disconnect from the target router 270 when configuring the AP hotspot of the target smart wireless device.

[0142] The above-mentioned automatic network configuration scheme for photovoltaic storage systems and smart wireless devices can significantly improve the user experience when connecting smart wireless devices to the photovoltaic storage system.

[0143] In some embodiments, the target device connects to the target smart wireless device by searching for AP hotspots, and the target terminal 260 receives a second input from the user through the target application to obtain the configuration information of the target router 270, which may include the following steps.

[0144] In actual execution, target terminal 260 can be used as target device. The following describes the specific implementation process of steps 120 and 130 when target terminal 260 is used as target device.

[0145] When the target device is target terminal 260, target terminal 260 searches for AP hotspots and displays the target information of the searched AP hotspots through the target application; target terminal 260 receives the user's third input through the target application to identify the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input; target terminal 260 establishes an AP hotspot connection with the target smart wireless device.

[0146] In actual execution, the target terminal 260 can search for access points (APs) and return the target information of the searched APs to the target application running on the target terminal 260. The target information of the searched APs may include the SSID of each searched AP. Besides the SSID, the target information may also include signal strength, etc.

[0147] In some embodiments, the target application may display the target information in a list format. The user can enter a third input regarding the target information. This third input is used to determine the AP hotspot established by the target smart wireless device.

[0148] The target terminal 260 can determine the AP hotspot established by the target smart wireless device in response to the third input. Since there is a one-to-one correspondence between the AP hotspot and the established device, the target smart wireless device can be identified.

[0149] The user can also input a second input through the target application to input the configuration information of the target router 270, enabling the target terminal 260 to obtain the configuration information of the target router 270. It is understood that the second input can carry the configuration information of the target router 270.

[0150] After identifying the target smart wireless device, the target terminal 260 can wirelessly connect to the target smart wireless device, that is, the target terminal 260 accesses the AP hotspot established by the target smart wireless device, thereby wirelessly connecting to the target smart wireless device.

[0151] According to the network configuration method for optical storage systems provided in this application embodiment, the target terminal searches for AP hotspots, receives a third input from the user based on the target application, determines the target smart wireless device, and obtains the configuration information of the target router carried by the second input. The target terminal and the target smart wireless device establish an AP hotspot connection, and automatically configure the network between the optical storage system and the smart wireless device. This can significantly improve the user experience when connecting the smart wireless device to the optical storage system, with higher network configuration efficiency, simpler steps, and more convenient operation.

[0152] In some embodiments, the control unit 220 obtains access information of the target smart wireless device and establishes communication with the target smart wireless device through the target router 270 based on the access information to complete the network configuration of the optical storage system and the target smart wireless device. This includes: the target terminal 260 obtaining access information based on the AP hotspot connection established with the target smart wireless device and sending the access information to the control unit 220; the control unit 220 receiving the access information and establishing a communication connection with the target smart wireless device through the target router 270 based on the access information to complete the network configuration of the optical storage system and the target smart wireless device.

[0153] In actual execution, when the target device is the target terminal 260, the target terminal 260 can obtain the access information of the target smart wireless device through the target application based on the AP hotspot connection established with the target smart wireless device.

[0154] After obtaining the access information of the target smart wireless device, the target terminal 260 can send the access information of the target smart wireless device to the control unit 220 of the optical storage system via remote or near-end methods.

[0155] In some embodiments, remote distribution may include distribution via a remote management system 280.

[0156] In some embodiments, delivery via a near-end method may include delivery via a wireless method (which may include at least one of Wi-Fi and Bluetooth).

[0157] After the control unit 220 of the optical storage system obtains the access information of the target intelligent wireless device, it can establish a communication connection with the target intelligent wireless device through the target router 270 based on the access information, so that both the control unit 220 of the optical storage system and the target intelligent wireless device can access the router local area network established by the target router 270, thus completing the network configuration of the optical storage system and the target intelligent wireless device.

[0158] According to the network configuration method for a photovoltaic storage system provided in this application embodiment, the target terminal obtains the access information of the target smart wireless device based on the connection established with the AP hotspot of the target smart wireless device, and sends the access information of the target smart wireless device to the control unit of the photovoltaic storage system. Based on the access information of the target smart wireless device, the control unit of the photovoltaic storage system communicates with the target smart wireless device through the target router to complete the network configuration of the photovoltaic storage system and the target smart wireless device. The automatic network configuration of the photovoltaic storage system and the smart wireless device can significantly improve the user experience when connecting the smart wireless device to the photovoltaic storage system. The network configuration is more efficient, the steps are simpler, and the operation is more convenient.

[0159] It should be noted that, considering the influence of environmental complexity on the strength of wireless signals and the fact that the installation location of the optical storage system is usually fixed, this invention also proposes a solution that does not require switching apps to address situations where the optical storage system control unit may be unable to search for intelligent wireless devices during the networking process. In some embodiments, when the target terminal 260 is used as the target device, the implementation process of the network distribution method applied to the optical storage system may mainly include the following key points.

[0160] (1) Search for hotspot information of smart wireless devices in the AP hotspot search interface integrated in the target application (e.g., the optical storage system APP) or in the system search interface that is redirected from the target application (considering the permission restrictions of different devices, such as the target terminal 260 operating on iOS). Search for hotspot information of smart wireless devices in accordance with certain matching rules (e.g., the SSID of the AP hotspot must conform to the naming rules of smart devices).

[0161] (2) Users select the corresponding smart wireless device as the target smart wireless device through the target application and enter the configuration information of the target router 270. The subsequent network configuration process can be completed automatically by the optical storage system.

[0162] (3) Connect to the AP hotspot of the target smart wireless device through the target application, and send the configuration information of the target router 270 to the target smart wireless device. In some embodiments, the configuration information of the target router 270 may include the SSID and password of the target router 270.

[0163] (4) After the target smart wireless device is configured with the network, the target application obtains the access information of the target smart wireless device, automatically disconnects from the AP hotspot of the wireless smart device, and sends the access information of the target smart wireless device to the control unit 220 of the optical storage system (it can be sent via a near-end or a remote-end method). Based on the access information of the target smart wireless device, the control unit 220 of the optical storage system establishes communication with the target smart wireless device through the local area network established by the target router 270, and finally completes the automatic network configuration action between the optical storage system and the target smart wireless device at the start of the system.

[0164] It should be noted that, considering the influence of environmental complexity on wireless signal strength and the fact that the installation location of the photovoltaic storage system is usually fixed, the above-mentioned automatic network configuration scheme for the photovoltaic storage system and smart wireless devices can address situations where the control unit 220 of the photovoltaic storage system may be unable to detect the smart wireless devices during the network configuration process. This scheme ensures that even in environments where the wireless signal strength of the control unit 220 of the photovoltaic storage system is limited, users can complete the automatic network configuration of the photovoltaic storage system and smart wireless devices through a consistent interactive process without switching apps.

[0165] In some embodiments, when the target terminal 260 is the target device, the implementation process of the distribution network method applied to the optical storage system may mainly include the following steps.

[0166] (1) Users search for AP hotspots on the AP hotspot search interface integrated in the optical storage system APP or are redirected to the system's AP hotspot search interface by the optical storage system APP. The search is performed using certain matching rules (e.g., the SSID of the AP hotspot must conform to the naming rules of smart devices).

[0167] In some embodiments, if the operating system of the target terminal 260 is Android or similar, the user can select the corresponding smart wireless device in the optical storage system APP interface; or, if the operating system of the target terminal 260 is iOS or similar, the user can jump to the system's AP hotspot search interface and select the corresponding smart wireless device.

[0168] Users can select the corresponding smart device on the photovoltaic storage system APP interface (Android system) or by being redirected to the AP hotspot search interface on the mobile system (iOS system), and enter the home router configuration information.

[0169] For example, the photovoltaic storage system APP can be directly connected to the control unit 220 of the photovoltaic storage system either remotely (management system 280) or locally via wireless means (Wi-Fi or Bluetooth, etc.).

[0170] (2) Users select the target smart wireless device through the optical storage system APP and enter the configuration information of the target router 270. The subsequent network configuration process is automatically completed by the optical storage system.

[0171] (3) The optical storage system APP connects to the AP hotspot of the target smart wireless device and sends the configuration information of the target router 270 to the target smart wireless device.

[0172] (4) After the target smart wireless device is configured with the network, the optical storage system APP obtains the access information of the target smart wireless device, automatically disconnects the connection with the AP hotspot of the target smart wireless device, and sends the access information of the target smart wireless device to the control unit 220 of the optical storage system (for example, it can be sent remotely or locally). According to the access information of the target smart wireless device, the control unit 220 of the optical storage system establishes communication with the target smart wireless device through the local area network established by the target router 270, and finally completes the automatic network configuration action between the optical storage system and the smart wireless device at the start.

[0173] Figure 11 illustrates the process of directly configuring target smart wireless devices via the photovoltaic-storage system's APP. The APP connects to the control unit 220 of the photovoltaic-storage system remotely (e.g., through the management system 280) or wirelessly (e.g., via Wi-Fi or Bluetooth). In this case, the APP sends access information for the target smart wireless devices to the control unit 220, thus completing the network configuration process.

[0174] The distribution network method for photovoltaic-storage systems provided in this application can be executed by a distribution network system for photovoltaic-storage systems. This application uses an example of a distribution network system for photovoltaic-storage systems executing the distribution network method for photovoltaic-storage systems to illustrate the distribution network system for photovoltaic-storage systems provided in this application.

[0175] This application also provides a distribution network system for a photovoltaic energy storage system. As shown in Figure 12, the distribution network system for the photovoltaic energy storage system includes: a target terminal 260, a control unit 220 of the photovoltaic energy storage system, a target intelligent wireless device 1200, and a target router 270.

[0176] The target device is used to respond to the user's first input, trigger the network configuration process through the target application; connect to the target smart wireless device 1200 by searching for AP hotspots, and the target terminal 260 receives the user's second input through the target application to obtain the configuration information of the target router 270; and sends configuration information to the target smart wireless device 1200 so that the target smart wireless device 1200 can complete the network configuration; the target device includes the target terminal 260 or the control unit 220 of the optical storage system; the target smart wireless device 1200 operates in AP hotspot mode;

[0177] The control unit 220 is used to obtain the access information of the target intelligent wireless device 1200, and based on the access information, establish communication with the target intelligent wireless device 1200 through the target router 270 to complete the network distribution between the optical storage system and the target intelligent wireless device 1200.

[0178] According to the network distribution system for photovoltaic storage systems provided in the embodiments of this application, by automatically performing network distribution between the photovoltaic storage system and smart wireless devices, the user experience when connecting smart wireless devices to the photovoltaic storage system can be significantly improved. The network distribution is more efficient, the steps are simpler, and the operation is more convenient.

[0179] In some embodiments, when the target device is the control unit 220, the control unit 220 is used to search for AP hotspots and return the target information of the searched AP hotspots to the target terminal 260.

[0180] The target terminal 260 is used to display target information through a target application; to receive a third input from the user through the target application, to identify the target smart wireless device 1200, and to receive a second input to obtain the configuration information carried by the second input;

[0181] When the control unit 220 is wirelessly connected to the target router 270, the control unit 220 is also used to disconnect the wireless connection with the target router 270 and connect to the AP hotspot established by the target smart wireless device 1200.

[0182] In some embodiments, when the target device is the target terminal 260, the target terminal 260 is used to search for AP hotspots, display the target information of the searched AP hotspots through the target application; receive a third input from the user through the target application, determine the target smart wireless device 1200, and receive a second input to obtain the configuration information carried by the second input; and establish an AP hotspot connection with the target smart wireless device 1200.

[0183] In some embodiments, when the control unit 220 is connected to the target router 270 via a wired connection, the control unit 220 is used to establish an AP hotspot connection with the target smart wireless device 1200.

[0184] In some embodiments, the target terminal 260 is used to send configuration information to the control unit 220 through a target application;

[0185] The control unit 220 is used to send configuration information to the target smart wireless device 1200 so that the target smart wireless device 1200 can complete the network configuration.

[0186] In some embodiments, the control unit 220 is configured to obtain access information based on the connection established with the AP hotspot of the target smart wireless device 1200; and to disconnect the connection established with the AP hotspot of the target smart wireless device 1200, and based on the access information, to complete the network distribution of the optical storage system and the target smart wireless device 1200 through the communication connection of the target router 270.

[0187] In some embodiments, the target terminal 260 is used to obtain access information based on the connection established with the AP hotspot of the target smart wireless device 1200, and to send the access information to the control unit 220.

[0188] The control unit 220 is used to receive access information and, based on the access information, communicate with the target intelligent wireless device 1200 through the target router 270 to complete the network distribution of the optical storage system and the target intelligent wireless device 1200.

[0189] The distribution network system for photovoltaic energy storage systems provided in this application can realize the various processes implemented in the method embodiments of Figures 1 to 11. To avoid repetition, these processes will not be described again here.

[0190] It should be noted that, in this document, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element. Furthermore, it should be noted that the scope of the methods and apparatuses in the embodiments of this application is not limited to performing functions in the order shown or discussed, but may also include performing functions substantially simultaneously or in the reverse order, depending on the functions involved. For example, the described methods may be performed in a different order than described, and various steps may be added, omitted, or combined. Additionally, features described with reference to certain examples may be combined in other examples.

[0191] Through the above description of the embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of software plus necessary general-purpose hardware platforms. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation method. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, can be embodied in the form of a computer software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) and includes several instructions to cause a terminal (which may be a mobile phone, computer, server, or network device, etc.) to execute the methods described in the various embodiments of this application.

[0192] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

[0193] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0194] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.

Claims

1. A distribution network method applied to a photovoltaic-storage system, characterized in that, include: The target device responds to the user's first input and triggers the network configuration process through the target application. The target device includes a target terminal or a control unit of the optical storage system; The target device searches for AP hotspots, connects to the target smart wireless device, and the target terminal receives a second input from the user through the target application to obtain the configuration information of the target router; The target intelligent wireless device operates in AP hotspot mode; The target device sends the configuration information to the target intelligent wireless device so that the target intelligent wireless device can complete the network configuration. The control unit acquires the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.

2. The power distribution method for a photovoltaic-storage system according to claim 1, characterized in that, The target device searches for access points (APs) and connects to the target smart wireless device. The target terminal receives a second input from the user through the target application to obtain the target router's configuration information, including: When the target device is the control unit, the control unit searches for AP hotspots and returns the target information of the searched AP hotspots to the target terminal; The target terminal displays the target information through the target application. The target terminal receives a third input from the user through the target application, identifies the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input; When the control unit is wirelessly connected to the target router, the control unit disconnects from the wireless connection with the target router and connects to the AP hotspot established by the target smart wireless device.

3. The power distribution method for a photovoltaic-storage system according to claim 1, characterized in that, The target device searches for access points (APs) and connects to the target smart wireless device. The target terminal receives a second input from the user through the target application to obtain the target router's configuration information, including: When the target device is the target terminal, the target terminal searches for AP hotspots and displays the target information of the searched AP hotspots through the target application; The target terminal receives a third input from the user through the target application, identifies the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input; The target terminal establishes an AP hotspot connection with the target smart wireless device.

4. The distribution network method for a photovoltaic-storage system according to claim 2, characterized in that, After the target terminal receives a third input from the user through the target application, determines the target smart wireless device, receives the second input, and obtains the configuration information carried by the second input, the method further includes: When the control unit is connected to the target router via a wired connection, the control unit establishes an AP hotspot connection with the target smart wireless device.

5. The distribution network method for a photovoltaic-storage system according to claim 2 or 4, characterized in that, The target device sends the configuration information to the target intelligent wireless device to enable the target intelligent wireless device to complete network configuration, including: The target terminal sends the configuration information to the control unit through the target application. The control unit sends the configuration information to the target smart wireless device so that the target smart wireless device can complete the network configuration.

6. The distribution network method for a photovoltaic-storage system according to claim 2, 4, or 5, characterized in that, The control unit acquires the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through the target router to complete the network configuration of the optical storage system and the target intelligent wireless device, including: The control unit obtains the access information based on the connection established with the AP hotspot of the target smart wireless device; The control unit disconnects the AP hotspot established with the target smart wireless device, and based on the access information, establishes a communication connection with the target smart wireless device through the target router to complete the network configuration of the optical storage system and the target smart wireless device.

7. The power distribution method for a photovoltaic-storage system according to claim 3, characterized in that, The control unit acquires the access information of the target intelligent wireless device, and based on the access information, establishes communication with the target intelligent wireless device through the target router to complete the network configuration of the optical storage system and the target intelligent wireless device, including: The target terminal obtains the access information based on the AP hotspot connection established with the target smart wireless device, and sends the access information to the control unit; The control unit receives the access information and, based on the access information, establishes a communication connection with the target intelligent wireless device through the target router to complete the network configuration of the optical storage system and the target intelligent wireless device.

8. The distribution network method for a photovoltaic-storage system according to any one of claims 1 to 7, characterized in that, The configuration information includes the service set identifier and password of the target router.

9. A distribution network system applied to a photovoltaic-storage system, characterized in that, include: The target terminal, the control unit of the optical storage system, the target intelligent wireless device, and the target router; The target device is used to trigger the network distribution process through the target application in response to the user's first input. By searching for AP hotspots, connecting to the target smart wireless device, and the target terminal receiving the user's second input through the target application to obtain the configuration information of the target router; and sending the configuration information to the target smart wireless device so that the target smart wireless device can complete network configuration; the target device includes the target terminal or the control unit of the optical storage system; The target intelligent wireless device operates in AP hotspot mode; The control unit is used to acquire the access information of the target intelligent wireless device, and based on the access information, establish communication with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.

10. The distribution network system applied to a photovoltaic-storage system according to claim 9, characterized in that, When the target device is the control unit, the control unit is used to search for AP hotspots and return the target information of the searched AP hotspots to the target terminal; The target terminal is used to display the target information through the target application; The target application receives a third input from the user to determine the target smart wireless device, and receives the second input to obtain the configuration information carried by the second input. When the control unit is wirelessly connected to the target router, the control unit is also used to disconnect the wireless connection with the target router and connect to the AP hotspot established by the target smart wireless device.

11. The distribution network system applied to a photovoltaic-storage system according to claim 9, characterized in that, When the target device is the target terminal, the target terminal is used to search for AP hotspots, display the target information of the searched AP hotspots through the target application; receive a third input from the user through the target application, determine the target smart wireless device, and receive a second input to obtain the configuration information carried by the second input; and establish an AP hotspot connection with the target smart wireless device.

12. The distribution network system applied to a photovoltaic-storage system according to claim 10, characterized in that, When the control unit is connected to the target router via a wired connection, the control unit is used to establish an AP hotspot connection with the target smart wireless device.

13. The distribution network system applied to a photovoltaic-storage system according to claim 10 or 12, characterized in that, The target terminal is used to send the configuration information to the control unit through the target application. The control unit is used to send the configuration information to the target smart wireless device so that the target smart wireless device can complete the network configuration.

14. The distribution network system applied to a photovoltaic-storage system according to claim 10, 12, or 13, characterized in that, The control unit is used to obtain the access information based on the connection established with the AP hotspot of the target smart wireless device; And disconnect the AP hotspot established with the target smart wireless device, and based on the access information, communicate with the target smart wireless device through the target router to complete the network distribution of the optical storage system and the target smart wireless device.

15. The distribution network system applied to a photovoltaic-storage system according to claim 11, characterized in that, The target terminal is used to obtain the access information based on the connection established with the AP hotspot of the target smart wireless device, and to send the access information to the control unit; The control unit is used to receive the access information and, based on the access information, communicate with the target intelligent wireless device through the target router to complete the network distribution of the optical storage system and the target intelligent wireless device.