Intelligent control terminal, intelligent device, local network system and network distribution method thereof
Through the intelligent control terminal, the infrared trigger signal is sent to the intelligent device, and the rapid networking and grouping of intelligent devices in large public places is realized, which solves the problem that users need to find and select lamps one by one in the existing technology, and improves the accuracy and flexibility of control.
Patent Information
- Application Number
- CN202510192856.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-27
AI Technical Summary
In large public places, due to the large number of lamps, users need to search and select lamps one by one when custom grouping on intelligent control terminals, resulting in cumbersome process and prone to missed selection, affecting the control effect and energy-saving effect of the lighting system.
Through the intelligent control terminal, the infrared trigger signal is sent to the designated smart devices, so that the devices enter the distribution mode. Users can network and/or group multiple smart devices without searching and selecting lamps one by one.
It realizes rapid networking and grouping of multiple smart devices, and is easy to operate, improves the accuracy and flexibility of control, and avoids the limitations of manual search and selection.
Smart Images

Figure CN120050174A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of the Internet of Things, and particularly relates to an intelligent control terminal, an intelligent device, a local network system, and a network configuration method. Background Art
[0002] With the continuous progress of lamp intelligent control technology, the lighting systems in large public places such as large factories, warehouses, shopping malls, and parking lots are gradually realizing intelligent and refined management. Due to the vast area and numerous lamps in these places, the control requirements for the lighting system are particularly complex. In order to improve lighting efficiency and save energy, it is usually necessary to group and centrally control the lamps remotely to achieve refined regulation of the entire lighting system. In the existing lamp intelligent control technology, a common approach is to connect all lamps to one or more control terminals through wireless or wired means to form a lighting control system. Through these control terminals, users can group and manage the lamps in the lighting system, thereby achieving individual control or linkage control of the lamps in different areas or functional areas. This way of grouped control greatly improves the flexibility and controllability of the lighting system.
[0003] However, since there are a large number of lighting lamps wirelessly accessing the control terminal simultaneously in large places, when customizing groups for some lamps on-site, users need to search for and select the corresponding lamps one by one on the control terminal. Due to the huge number and wide distribution of lamps in large places, this process is often very cumbersome and time-consuming. In addition, due to the limitations of manual search and selection, it is easy to make mis-selections or omissions, resulting in inaccurate grouping, which in turn affects the control effect and energy-saving effect of the lighting system. Summary of the Invention
[0004] In view of this, the present invention provides an intelligent control terminal, an intelligent device, a local network system, and a network configuration method, which can improve the flexibility and controllability during network configuration.
[0005] To solve at least one of the above technical problems, the present invention adopts the following technical solutions:
[0006] A first aspect of the present invention provides an intelligent control terminal, including:
[0007] An infrared signal emission module, which is used to send a set infrared trigger signal to the intelligent device to enable the intelligent device to enter the network configuration mode;
[0008] A terminal network configuration module, which is used to listen for the network configuration request signal from the intelligent device, and based on the network configuration request signal, perform networking and / or grouping on the intelligent device.
[0009] In one embodiment of the present invention, the set infrared trigger signal is sent by the intelligent control terminal at a predetermined emission angle and / or emission power to specify the intelligent device.
[0010] In one embodiment of the present invention, the infrared trigger signal is a switch infrared signal for controlling the switch of the intelligent device. The infrared trigger signal includes any one of a networking signal and a grouping signal. The infrared signal transmitting module sends infrared trigger signals with different preset numbers of times at a preset frequency to correspond to the networking signal and the grouping signal.
[0011] The second aspect of the present invention provides an intelligent device, including:
[0012] An infrared signal receiving module, which is used to receive the infrared trigger signal sent by the intelligent control terminal;
[0013] A signal sending module, which is used to send a network configuration request signal to the intelligent control terminal when receiving the infrared trigger signal sent by the intelligent control terminal, so that the intelligent control terminal performs networking and / or grouping on the intelligent device based on the network configuration request signal;
[0014] A device network configuration module, which is used to accept the networking and / or grouping performed by the intelligent control terminal.
[0015] In one embodiment of the present invention, the network configuration request signal includes the networking status information and grouping status information of the intelligent device.
[0016] The third aspect of the present invention provides a local network system, including:
[0017] An intelligent control terminal, where the intelligent control terminal is the intelligent control terminal described in any one of the above embodiments;
[0018] At least one intelligent device, where the intelligent device is the intelligent device described in any one of the above embodiments.
[0019] The fourth aspect of the present invention provides a network configuration method for a local network system. The local network system includes an intelligent control terminal and at least one intelligent device. The method is applied to the intelligent control terminal and includes:
[0020] The intelligent control terminal sends an infrared trigger signal to the specified intelligent device to make the intelligent device enter the network configuration mode;
[0021] The intelligent control terminal listens for the network configuration request signal from the intelligent device;
[0022] The intelligent control terminal performs networking and / or grouping on the intelligent device based on the network configuration request signal;
[0023] Among them, the infrared trigger signal is sent by the intelligent control terminal at a predetermined emission angle and / or emission power to specify the intelligent device.
[0024] In an embodiment of the present invention, the infrared trigger signal is a switch infrared signal for controlling the switch of the intelligent device;
[0025] Or,
[0026] The infrared trigger signal includes any one of a networking signal and a grouping signal, and the intelligent control terminal sends infrared trigger signals of different preset numbers at a preset frequency to correspond to the networking signal and the grouping signal.
[0027] In an embodiment of the present invention, the intelligent control terminal networks and / or groups the intelligent devices based on the network configuration request signal, including:
[0028] The intelligent control terminal obtains the network configuration status information of the intelligent device based on the network configuration request signal, where the network configuration status information includes networking status information and grouping status information;
[0029] The intelligent control terminal networks and / or groups the intelligent devices based on the network configuration status information.
[0030] In an embodiment of the present invention, the intelligent control terminal networks and / or groups the intelligent devices based on the network configuration status information, including:
[0031] When the networking status information shows that the intelligent device is not networked, the intelligent control terminal sends a networking instruction to the intelligent device;
[0032] When receiving the networking confirmation information sent by the intelligent device, the intelligent control terminal interacts with the intelligent device for the networking protocol to realize the networking of the intelligent device;
[0033] The intelligent control terminal divides the networked intelligent devices into a predetermined group;
[0034] Among them, the networking confirmation information is the information generated by the intelligent device after receiving the networking instruction.
[0035] In an embodiment of the present invention, the intelligent control terminal networks and / or groups the intelligent devices based on the network configuration status information, including:
[0036] When the networking status information shows that the intelligent device is networked and the grouping status information shows that the intelligent device is not grouped, the intelligent control terminal divides the networked intelligent devices into a predetermined group.
[0037] In an embodiment of the present invention, the intelligent control terminal divides the networked intelligent devices into a predetermined group, including:
[0038] The intelligent control terminal sends a grouping instruction to the networked intelligent devices;
[0039] In the case of receiving the grouping confirmation information sent by the intelligent device, the intelligent control terminal interacts with the intelligent device through the grouping protocol to implement the grouping of the intelligent device;
[0040] Among them, the grouping confirmation information is the information generated by the intelligent device after receiving the grouping instruction.
[0041] The fifth aspect of the present invention provides a network configuration method for a local network system. The local network system includes an intelligent control terminal and at least one intelligent device. The method is applied to the intelligent device and includes:
[0042] In the case of receiving the infrared trigger signal sent by the intelligent control terminal, the intelligent device sends a network configuration request signal to the intelligent control terminal;
[0043] The intelligent device accepts the networking and / or grouping performed by the intelligent control terminal based on the network configuration request signal.
[0044] In an embodiment of the present invention, the network configuration request signal includes network configuration status information, and the network configuration status information includes networking status information and grouping status information;
[0045] The intelligent device accepts the networking and / or grouping performed by the intelligent control terminal based on the network configuration request signal, including:
[0046] The intelligent device accepts the networking and / or grouping performed by the intelligent control terminal based on the network configuration status information.
[0047] In an embodiment of the present invention, the intelligent device accepting the networking performed by the intelligent control terminal based on the network configuration status information includes:
[0048] In the case of receiving the networking instruction sent by the intelligent control terminal, the intelligent device sends a networking confirmation information to the intelligent control terminal;
[0049] The intelligent device interacts with the intelligent control terminal through the networking protocol to accept the networking of the intelligent control terminal;
[0050] Among them, the networking confirmation information is the information generated by the intelligent device after receiving the networking instruction.
[0051] In an embodiment of the present invention, the intelligent device accepting the grouping performed by the intelligent control terminal based on the network configuration status information includes:
[0052] In the case of receiving the grouping instruction sent by the intelligent control terminal, the device sends a grouping confirmation information to the intelligent control terminal;
[0053] The intelligent device interacts with the intelligent control terminal for the grouping protocol to receive the grouping from the intelligent control terminal;
[0054] Among them, the grouping confirmation information is the information generated by the intelligent device after receiving the grouping instruction.
[0055] One of the beneficial effects of the above technical solution of the present invention is at least as follows:
[0056] The network configuration method of the local network system of the present invention sends an infrared trigger signal to a specified intelligent device in a targeted manner through the intelligent control terminal to enable the intelligent device to enter the network configuration mode. By controlling the infrared trigger signal, such as controlling its emission angle and power, the intelligent device can be specified. Users can network and / or group multiple intelligent devices without searching and selecting the corresponding intelligent devices one by one on the control terminal. It not only overcomes the limitations of manual search and selection, but also can intuitively and efficiently perform rapid networking on the specified multiple intelligent devices and divide them into a unified group, with simple and rapid operation, effectively improving the accuracy and flexibility of control. Description of the Drawings
[0057] Figure 1 It is a schematic diagram of the implementation environment provided by an embodiment of the present invention;
[0058] Figure 2 It is a flowchart of the network configuration method of the intelligent control terminal in the local network system provided by an embodiment of the present invention;
[0059] Figure 3 For Figure 2 It is a flowchart of the networking / grouping step in the network configuration method shown;
[0060] Figure 4 For Figure 2 It is a flowchart of the networking / grouping step in the network configuration method shown when the networking status information indicates that the intelligent device is not networked;
[0061] Figure 5 For Figure 2 It is a flowchart of the networking / grouping step in the network configuration method shown when the networking status information indicates that the intelligent device is networked and the grouping status information indicates that the intelligent device is not grouped;
[0062] Figure 6 It is a flowchart of the network configuration method of the intelligent device in the local network system provided by an embodiment of the present invention;
[0063] Figure 7 For Figure 6 It is a flowchart of the intelligent device networking step in the network configuration method shown;
[0064] Figure 8 For Figure 6Flowchart of the intelligent device grouping step in the described power distribution method
[0065] Figure 9 Structural schematic diagram of an intelligent control terminal provided by an embodiment of the present invention
[0066] Figure 10 Structural schematic diagram of an intelligent device provided by an embodiment of the present invention Detailed implementation manners
[0067] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention fall within the scope of protection of the present invention.
[0068] First, a power distribution method, terminal, device, and system according to an embodiment of the present invention will be specifically described below with reference to the accompanying drawings.
[0069] Figure 1 The schematic diagram of the implementation environment provided by an embodiment of the present invention is shown. As Figure 1 shown, the implementation environment may include an intelligent control terminal 110 ( Figure 1 in which, as an example, the case where the intelligent control terminal 110 is a remote control is shown) and at least one intelligent device 120 ( Figure 1 in which, as an example, the case where the intelligent device 120 is an intelligent lamp is shown). The intelligent control terminal 110 and each intelligent device 120 can be connected through a wireless communication method. The intelligent control terminal 110 can be but is not limited to various gateways, personal computers, laptop computers, smart phones, tablet computers, and portable wearable devices, etc. In addition to being an intelligent lamp, the intelligent device 120 can also be various local intelligent devices, such as televisions, air conditioners, refrigerators, floor sweepers, water heaters, etc. The embodiments of the present invention do not limit this.
[0070] In the embodiments of the present invention, first, multiple smart devices 120 can be powered on all at once. After being powered on, the smart devices 120 can standby based on their own settings or form a network with the smart control terminal 110 on their own. Then, the smart control terminal 110 can send a set infrared trigger signal to a specified smart device 120 at a predetermined emission angle and / or emission power to enable the smart device 120 to enter the network configuration mode. Specifically, the infrared trigger signal can include either a network formation signal or a grouping signal. The infrared signal emission module sends infrared trigger signals with different preset numbers of times at a preset frequency to correspond to the network formation signal and the grouping signal. When the smart device 120 stands by based on its own settings after being powered on, the smart control terminal 110 can send a network formation signal to the smart device 120. When the smart device 120 forms a network with the smart control terminal 110 on its own based on its own settings after being powered on, the smart control terminal 110 can send a grouping signal to the smart device 120. When the smart device 120 receives the infrared trigger signal sent by the smart control terminal 110, it can send a network configuration request signal to the smart control terminal 110 to enable the smart control terminal 110 to form a network and / or group multiple smart devices 120 based on the network configuration request signal. In the embodiments of the present invention, since the smart control terminal 110 can send an infrared trigger signal at a predetermined emission angle and / or emission power to instruct a specific smart device 120 to enter the network configuration mode, the user can form a network and / or group specified multiple smart devices 120 without having to search for and select the corresponding smart devices 120 one by one on the control terminal, and can quickly form a network for the specified multiple smart devices 120 and divide them into a unified group intuitively and efficiently. The operation is simple and rapid, effectively improving the accuracy and flexibility of control.
[0071] Figure 2 The figure shows a network configuration method for a local network system provided by an embodiment of the present invention. The local network system includes a smart control terminal and at least one smart device. This method can be applied to Figure 1 the smart control terminal 110 therein. Specifically, as Figure 2 shown, this method can include the following steps:
[0072] S210. The smart control terminal sends an infrared trigger signal to a specified smart device to enable the smart device to enter the network configuration mode.
[0073] In an embodiment of the present invention, the intelligent control terminal can send a preset infrared trigger signal to a specified intelligent device at a preset emission angle and / or emission power, so that the specified intelligent device enters the network configuration mode. Among them, the infrared trigger signal includes any one of a network formation signal and a grouping signal, and the network formation signal and the grouping signal can be the same signal or different signals. Specifically, when the network formation signal and the grouping signal are the same signal, the infrared trigger signal can be a switch infrared signal for controlling the switch of the intelligent device. When it is necessary to make the intelligent device enter the network configuration mode, the intelligent control terminal can quickly send switch infrared signals with different preset numbers of times within a preset time to correspond to the network formation signal and the grouping signal. For example, when it is necessary to send a network formation signal, the intelligent control terminal can quickly send the switch infrared signal twice within a preset time to correspond to the network formation signal. When it is necessary to send a grouping signal, the intelligent control terminal can quickly send the switch infrared signal three times within a preset time to correspond to the grouping signal. In some other embodiments, the network formation signal and the grouping signal can also be different infrared signals, that is, the network formation signal and the grouping signal are trigger signals with different coding methods or modulation methods, and thus can respectively make the intelligent device enter the corresponding network configuration mode.
[0074] S220. The intelligent control terminal listens for a network configuration request signal from the intelligent device.
[0075] In an embodiment of the present invention, after receiving the infrared trigger signal sent by the intelligent control terminal, the intelligent device generates a network configuration request signal based on its own information and periodically broadcasts the network configuration request signal. The network configuration request signal can include information such as the device identifier, device type, and network configuration status information of the intelligent device. At this time, the intelligent control terminal can listen for the network configuration request signals periodically broadcast by multiple intelligent devices on the channel to prepare for subsequent network configuration.
[0076] S230. The intelligent control terminal forms a network and / or groups the intelligent devices based on the network configuration request signal.
[0077] In an embodiment of the present invention, after the intelligent control terminal listens for the network configuration request signals sent by multiple intelligent devices, the intelligent control terminal can communicate with the multiple intelligent devices in sequence according to the signal strength of the multiple network configuration request signals from high to low, so as to form a network and / or group the intelligent devices. The local network system composed of the intelligent control terminal and the intelligent devices can communicate based on communication technologies such as Bluetooth, zigbee, or WiFi, which is not limited here.
[0078] In a possible embodiment, referring to Figure 3 , the step S230 may include:
[0079] S231. The intelligent control terminal obtains the network configuration status information of the intelligent device based on the distribution network request signal. Among them, the network configuration status information includes the network formation status information and the grouping status information.
[0080] In this embodiment, the network formation status information can be used to indicate whether the intelligent device is networked, and the grouping status information can be used to indicate whether the intelligent device is grouped. By obtaining the network formation status information and the grouping status information, the intelligent control terminal can prepare for subsequent networking and / or grouping of the intelligent device.
[0081] S232. The intelligent control terminal networks and / or groups the intelligent device based on the network configuration status information.
[0082] In this embodiment, the intelligent control terminal can network and group the intelligent devices whose network formation status information shows that they are not networked based on the network configuration status information; it can also group the intelligent devices whose network formation status information shows that they are networked and the grouping status information shows that they are not grouped based on the network configuration status information; or it can also regroup the intelligent devices whose network formation status information shows that they are networked and the grouping status information shows that they are grouped based on the network configuration status information.
[0083] In a possible embodiment, referring to Figure 4 , the step S232 may include:
[0084] S2321. When the network formation status information shows that the intelligent device is not networked, the intelligent control terminal sends a network formation instruction to the intelligent device.
[0085] In this embodiment, when the network formation status information shows that the intelligent device is not networked, the intelligent control terminal can generate a network key based on its own unique information. For example, the intelligent control terminal can generate a network key through an encryption algorithm according to its own unique information such as MAC address and globally unique identifier UUID, and then send the network formation instruction and the network key to the intelligent device together.
[0086] S2322. When receiving the network formation confirmation information sent by the intelligent device, the intelligent control terminal interacts with the intelligent device through a network formation protocol to realize the networking of the intelligent device.
[0087] In this embodiment, the intelligent device can generate network formation confirmation information in response to a network formation instruction and send the network formation confirmation information to the intelligent control terminal. After receiving the network formation confirmation information sent by the intelligent device, the intelligent control terminal can encrypt the network formation protocol using the network key and send the encrypted network formation protocol to the intelligent device. Then, the intelligent device can decrypt the encrypted network formation protocol using the pre-stored network key, execute the network formation protocol to configure its own network, and at the same time generate network formation response data and send the network formation response data to the intelligent control terminal. After receiving the network formation response data sent by the intelligent device, the intelligent control terminal can complete the network formation of the intelligent device. Thus, by encrypting and transmitting the network formation protocol using the network key, the possibility of the local network system being breached is reduced, effectively improving the security of the local network system.
[0088] S2323. The intelligent control terminal divides the networked intelligent devices into a predetermined group.
[0089] In a possible embodiment, referring to Figure 5 , the step S232 may include:
[0090] S2324. When the network formation status information shows that the intelligent device is networked and the grouping status information shows that the intelligent device is not grouped, the intelligent control terminal divides the networked intelligent device into a predetermined group.
[0091] That is to say, when the network formation status information shows that the intelligent device is networked and the grouping status information shows that the intelligent device is not grouped, the intelligent control terminal can divide the networked intelligent device into a predetermined group.
[0092] In other embodiments of the present invention, when it is necessary to re-group the grouped intelligent terminals, the intelligent control terminal can send a grouping signal to the intelligent device again and execute the above grouping steps to divide the intelligent device into another predetermined group, which will not be elaborated here.
[0093] In a possible embodiment, the intelligent control terminal dividing the networked intelligent devices into a predetermined group may include:
[0094] The intelligent control terminal sends a grouping instruction to the networked intelligent device.
[0095] When receiving the grouping confirmation information sent by the intelligent device, the intelligent control terminal interacts with the intelligent device for the grouping protocol to achieve the grouping of the intelligent device.
[0096] In this embodiment, the intelligent device can generate packet confirmation information in response to a grouping instruction and send the packet confirmation information to the intelligent control terminal. After receiving the packet confirmation information sent by the intelligent device, the intelligent control terminal can encrypt the packet protocol using the network key and send the encrypted packet protocol to the intelligent device. Then, the intelligent device can decrypt the encrypted packet protocol using the pre-stored network key, execute the packet protocol to group itself, generate packet response data at the same time, and send the packet response data to the intelligent control terminal. When the intelligent control terminal receives the packet response data sent by the intelligent device, the grouping of the intelligent device is completed.
[0097] Figure 6 The figure shows a network configuration method for a local network system provided by an embodiment of the present invention. The local network system includes an intelligent control terminal and at least one intelligent device. This method can be applied to Figure 1 the intelligent device 120 in. Specifically, as Figure 6 shown, this method can include the following steps:
[0098] S310. When receiving an infrared trigger signal sent by the intelligent control terminal, the intelligent device sends a network configuration request signal to the intelligent control terminal.
[0099] In an embodiment of the present invention, after receiving a preset infrared trigger signal sent by the intelligent control terminal at a predetermined emission angle and / or emission power, the intelligent device can enter the network configuration mode, generate a network configuration request signal based on its own information, and broadcast the network configuration request signal periodically. The network configuration request signal can include information such as the device identifier, device type, and network configuration status information of the intelligent device. At this time, the intelligent control terminal can monitor the network configuration request signals periodically broadcast by multiple intelligent devices on the channel to prepare for subsequent network configuration.
[0100] S320. The intelligent device accepts the networking and / or grouping performed by the intelligent control terminal based on the network configuration request signal.
[0101] In an embodiment of the present invention, after the intelligent control terminal monitors the network configuration request signal sent by the intelligent device, the intelligent control terminal can communicate with the intelligent device to network and / or group the intelligent device. The local network system composed of the intelligent device and the intelligent control terminal can communicate based on communication technologies such as Bluetooth, zigbee, or WiFi, which is not limited here.
[0102] In a possible embodiment, the step S320 may include:
[0103] The intelligent device accepts the networking and / or grouping performed by the intelligent control terminal based on the network configuration status information, where the network configuration status information includes networking status information and grouping status information.
[0104] In this embodiment, the networking status information can be used to indicate whether the intelligent device is networked, and the grouping status information can be used to indicate whether the intelligent device is grouped. The intelligent control terminal can network and group the intelligent devices whose networking status information indicates un-networked based on the network configuration status information; it can also group the intelligent devices whose networking status information indicates networked and whose grouping status information indicates un-grouped based on the network configuration status information; or it can re-group the intelligent devices whose networking status information indicates networked and whose grouping status information indicates grouped based on the network configuration status information.
[0105] In a possible embodiment, referring to Figure 7 , the networking of the intelligent device accepting the networking by the intelligent control terminal based on the network configuration status information may include:
[0106] S3211. When receiving the networking instruction sent by the intelligent control terminal, the intelligent device sends a networking confirmation message to the intelligent control terminal.
[0107] In this embodiment, the intelligent device can generate a networking confirmation message in response to the networking instruction sent by the intelligent control terminal and send the networking confirmation message to the intelligent control terminal.
[0108] S3212. The intelligent device and the intelligent control terminal perform interaction of the networking protocol to accept the networking by the intelligent control terminal.
[0109] In this embodiment, after receiving the networking confirmation message sent by the intelligent device, the intelligent control terminal can encrypt the networking protocol using the network key and send the encrypted networking protocol to the intelligent device. After receiving the encrypted networking protocol, the intelligent device can decrypt the encrypted networking protocol using the pre-stored network key, execute the networking protocol to configure its own network, and simultaneously generate networking response data and send the networking response data to the intelligent control terminal, thereby completing the networking of the intelligent device.
[0110] In a possible embodiment, referring to Figure 8 , the grouping of the intelligent device accepting the grouping by the intelligent control terminal based on the network configuration status information includes:
[0111] S3213. When receiving the grouping instruction sent by the intelligent control terminal, the device sends a grouping confirmation message to the intelligent control terminal.
[0112] S3214. The intelligent device and the intelligent control terminal perform interaction of the grouping protocol to accept the grouping by the intelligent control terminal.
[0113] In this embodiment, the intelligent device can generate grouping confirmation information in response to a grouping instruction, and send the grouping confirmation information to the intelligent control terminal to interact with the intelligent control terminal for the grouping protocol. After receiving the grouping confirmation information sent by the intelligent device, the intelligent control terminal can encrypt the grouping protocol using the network key, and send the encrypted grouping protocol to the intelligent device. The intelligent device can decrypt the encrypted grouping protocol using the pre-stored network key, execute the grouping protocol to configure its own network, and at the same time generate grouping response data and send the grouping response data to the intelligent control terminal, thus completing the grouping of the intelligent device. Then the intelligent control terminal can sequentially execute the above steps for each intelligent device to group multiple specified intelligent devices into the same predetermined group. Thus, the grouping protocol is encrypted and transmitted through the network key, thereby reducing the possibility of the local network system being breached and effectively improving the security of the local network system.
[0114] Further, steps S3211 - S3212 are embodiments where the intelligent device of the present invention only performs networking when receiving a networking instruction, and steps S3213 - S3214 are embodiments where the already networked intelligent device of the present invention only performs grouping when receiving a grouping instruction. In some other embodiments of the present invention, when the intelligent device receives a networking instruction, it can automatically perform networking and grouping operations in sequence, and there is no limitation here.
[0115] In some other embodiments of the present invention, when the intelligent device needs to be grouped again after grouping, the intelligent device can respond to the grouping signal sent by the intelligent control terminal and execute the above grouping steps again to be grouped into another predetermined group, which will not be elaborated here.
[0116] Figure 9 Shows the structure of the intelligent control terminal 110 provided by an embodiment of the present invention, as Figure 9 shown, the intelligent control terminal 110 may include:
[0117] An infrared signal emission module 111, which is used to send a set infrared trigger signal to the intelligent device to make the intelligent device enter the network configuration mode;
[0118] A terminal network configuration module 112, which is used to listen for the network configuration request signal from the intelligent device, and based on the network configuration request signal, perform networking and / or grouping on the intelligent device. In an embodiment of the present invention, the set infrared trigger signal is sent by the intelligent control terminal at a predetermined emission angle and / or emission power to specify the intelligent device.
[0119] In an embodiment of the present invention, the infrared trigger signal is a switch infrared signal, which is used to control the switch of the intelligent device.
[0120] In an embodiment of the present invention, the infrared trigger signal includes any one of a networking signal and a grouping signal, and the infrared signal transmitting module transmits infrared trigger signals with different preset numbers of times at a preset frequency to correspond to the networking signal and the grouping signal.
[0121] For the specific functions of each module and the specific operations for implementing these functions, reference may be made to the above description of the method part, and no further detailed description will be given here.
[0122] In some other embodiments of the present invention, the intelligent control terminal 110 may include a first intelligent control terminal and a second control terminal. The first intelligent control terminal and the second control terminal may be remote controllers. Among them, the infrared signal transmitting module 111 is disposed in the first intelligent control terminal, and the first control terminal may send a set infrared trigger signal to the intelligent device to enable the intelligent device to enter the network configuration mode. The terminal network configuration module 112 is disposed in the second intelligent control terminal. The second control terminal listens for the network configuration request signal from the intelligent device, and based on the network configuration request signal, networks and / or groups the intelligent device.
[0123] Figure 10 An intelligent device provided by an embodiment of the present invention is shown, such as Figure 10 As shown, the intelligent device 120 may include:
[0124] An infrared signal receiving module 121, which is used to receive the infrared trigger signal sent by the intelligent control terminal;
[0125] A signal sending module 122, which is used to send a network configuration request signal to the intelligent control terminal when receiving the infrared trigger signal sent by the intelligent control terminal, so that the intelligent control terminal networks and / or groups the intelligent device based on the network configuration request signal;
[0126] A device network configuration module 123, which is used to configure the network for the intelligent control terminal.
[0127] In an embodiment of the present invention, the network configuration request signal includes the network configuration status information and the grouping status information of the intelligent device.
[0128] Similarly, for the specific functions of each module and the specific operations for implementing these functions, reference may be made to the above description of the method part, and no further detailed description will be given here.
[0129] On the other hand, the present invention also provides a local network system, including:
[0130] An intelligent control terminal, which is the intelligent control terminal in any one of the above embodiments;
[0131] At least one intelligent device, which is the intelligent device in any of the above embodiments.
[0132] It should be noted that when the device provided in the above embodiments realizes its functions, only the division of the above functional modules is used for illustration. In actual applications, the above functions can be allocated to different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above. In addition, the device provided in the above embodiments and the corresponding method embodiments belong to the same concept, and the specific implementation process can be seen in the corresponding method embodiments, which will not be elaborated here.
[0133] Unless otherwise defined, the technical terms or scientific terms used in the present invention should be the general meanings understood by those with ordinary skills in the field to which the present invention belongs. The "first", "second" and similar words used in the present invention do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, words such as "a" or "one" do not indicate a quantity limitation, but indicate that there is at least one. The "connection" or "connection" and similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The "upper", "lower", "left", "right", etc. are only used to represent relative position relationships. When the absolute position of the object being described changes, the relative position relationship also changes accordingly.
[0134] The above are the preferred embodiments of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. An intelligent control terminal, characterized in that: include: An infrared signal transmitting module, the infrared signal transmitting module is used to send a set infrared trigger signal to the smart device to enable the smart device to enter a network distribution mode; The terminal network configuration module is used to monitor the network configuration request signal from the smart device, and to network and / or group the smart device based on the network configuration request signal.
2. The intelligent control terminal according to claim 1, characterized in that: The set infrared trigger signal is sent by the intelligent control terminal at a predetermined emission angle and / or emission power to specify the intelligent device.
3. The intelligent control terminal according to claim 2, characterized in that: The infrared trigger signal is a switch infrared signal, which is used to control the switch of the smart device. The infrared trigger signal includes any one of a networking signal and a grouping signal. The infrared signal transmitting module sends the infrared trigger signal at a preset frequency for different preset times to correspond to the networking signal and the grouping signal.
4. A smart device, characterized in that: include: An infrared signal receiving module, which is used to receive an infrared trigger signal sent by the intelligent control terminal; A signal sending module, wherein the signal sending module is used to send a network configuration request signal to the intelligent control terminal when receiving an infrared trigger signal sent by the intelligent control terminal so that the intelligent control terminal can network and / or group the intelligent devices based on the network configuration request signal; A device network configuration module, wherein the device network configuration module is used to accept networking and / or grouping performed by the intelligent control terminal.
5. The smart device according to claim 4, characterized in that: The network configuration request signal includes the networking status information and grouping status information of the smart device.
6. A local network system, characterized in that: include: An intelligent control terminal, wherein the intelligent control terminal is the intelligent control terminal according to any one of claims 1 to 3; At least one smart device, wherein the smart device is the smart device according to claim 4 or 5.
7. A network distribution method for a local network system, characterized in that: The local network system includes an intelligent control terminal and at least one intelligent device, and the method is applied to the intelligent control terminal, and the method includes: The intelligent control terminal sends an infrared trigger signal to the designated intelligent device to enable the intelligent device to enter a network distribution mode; The intelligent control terminal monitors the network configuration request signal from the intelligent device; The intelligent control terminal networks and / or groups the intelligent devices based on the network configuration request signal; Wherein, the infrared trigger signal is sent by the intelligent control terminal at a predetermined emission angle and / or emission power to specify the intelligent device.
8. The method according to claim 7, characterized in that The infrared trigger signal is a switch infrared signal used to control the switch of the smart device; or, The infrared trigger signal includes any one of a networking signal and a grouping signal. The infrared trigger signal is sent by the intelligent control terminal at a preset frequency for different preset times to correspond to the networking signal and the grouping signal.
9. The method according to claim 7, characterized in that: The intelligent control terminal networks and / or groups the intelligent devices based on the network configuration request signal, including: The intelligent control terminal obtains the network configuration status information of the intelligent device based on the network configuration request signal, wherein the network configuration status information includes networking status information and grouping status information; The intelligent control terminal networks and / or groups the intelligent devices based on the network distribution status information.
10. The method according to claim 9, characterized in that The intelligent control terminal networks and / or groups the intelligent devices based on the network distribution status information, including: When the networking status information shows that the smart device is not networked, the smart control terminal sends a networking instruction to the smart device; Upon receiving the networking confirmation information sent by the smart device, the smart control terminal interacts with the smart device through a networking protocol to implement the networking of the smart device; The intelligent control terminal divides the networked intelligent devices into predetermined groups; The networking confirmation information is information generated after the smart device receives the networking instruction.
11. The method according to claim 10, characterized in that The intelligent control terminal networks and / or groups the intelligent devices based on the network distribution status information, including: When the networking status information shows that the smart device is networked, and the grouping status information shows that the smart device is not grouped, the intelligent control terminal groups the networked smart device into a predetermined group.
12. The method according to claim 10 or 11, characterized in that: The intelligent control terminal divides the networked intelligent devices into predetermined groups, including: The intelligent control terminal sends a grouping instruction to the networked intelligent devices; Upon receiving the grouping confirmation information sent by the smart device, the smart control terminal interacts with the smart device through a grouping protocol to implement grouping of the smart device; The grouping confirmation information is information generated after the smart device receives the grouping instruction.
13. A network distribution method for a local network system, characterized in that: The local network system includes an intelligent control terminal and at least one intelligent device, and the method is applied to the intelligent device, and the method includes: Upon receiving the infrared trigger signal sent by the intelligent control terminal, the intelligent device sends a network configuration request signal to the intelligent control terminal; The smart device accepts the networking and / or grouping performed by the smart control terminal based on the network configuration request signal.
14. The method according to claim 13, characterized in that The network configuration request signal includes network configuration status information, and the network configuration status information includes networking status information and grouping status information; The smart device accepts the networking and / or grouping performed by the smart control terminal based on the network configuration request signal, including: The smart device accepts the networking and / or grouping performed by the smart control terminal based on the network distribution status information.
15. The method according to claim 14, characterized in that The smart device accepts the networking performed by the smart control terminal based on the network distribution status information, including: Upon receiving the networking instruction sent by the intelligent control terminal, the intelligent device sends networking confirmation information to the intelligent control terminal; The smart device interacts with the smart control terminal through a networking protocol to accept the networking of the smart control terminal; The networking confirmation information is information generated after the smart device receives the networking instruction.
16. The method according to claim 14, characterized in that The intelligent device accepts the grouping performed by the intelligent control terminal based on the network distribution status information, including: Upon receiving the grouping instruction sent by the intelligent control terminal, the device sends grouping confirmation information to the intelligent control terminal; The smart device interacts with the smart control terminal through a packet protocol to accept packets from the smart control terminal; The grouping confirmation information is information generated after the smart device receives the grouping instruction.