Intelligent equipment control system

Through the control system of the mobile terminal's wide area network and local area network, the control stability problem of smart devices when the Internet connection is unstable is solved, and stable control in abnormal situations is achieved.

CN223274123UActive Publication Date: 2025-08-26SUZHOU OPPLE LIGHTING
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Patent Information

Application Number
CN202422494618.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-08-26
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

The intelligent device control system cannot work properly when the Internet connection is unstable or abnormal, resulting in control stability problems.

Method used

The first communication module using a mobile terminal is connected to the server through a wide area network, and the second communication module is connected to the target intelligent device through a local area network, and controls the intelligent device in parallel through a multiple data transmission channel, including a combination of the wide area network and the local area network.

Benefits of technology

Improves the stability of smart device control and ensures that smart devices can still be controlled normally in the event of unstable or abnormal Internet connection.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an intelligent device control system, which comprises a mobile terminal, a server, a router and a target intelligent device, and is characterized in that the mobile terminal comprises a first communication module and a second communication module, the first communication module is connected with a wide area network, and the second communication module is connected with a local area network; the first communication module is connected with the server through a wide area network and transmits a control instruction to the server through a first data transmission channel; the second communication module is connected with target intelligent equipment through a local area network and transmits a control instruction to the target intelligent equipment through a second data transmission channel; the server is connected with the router through a wide area network, and the control instruction is transmitted to the router through the first data transmission channel; and the router is connected with the target intelligent equipment, and transmits the received control instruction to the target intelligent equipment through the first data transmission channel. The control stability of the intelligent equipment can be improved.
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Description

Technical Field

[0001] The present application relates to the technical field of intelligent devices, and in particular to an intelligent device control system. Background Art

[0002] Currently, mobile terminals control smart devices bound to smart systems, such as smart lamps, smart curtains, smart refrigerators, and air conditioners, through the internet. If the internet connection becomes unstable or any link in the internet control path fails, the smart devices will not be able to be controlled normally.

[0003] How to overcome network anomalies in smart device control and improve the stability of smart device control is a technical problem that needs to be solved at present. Utility Model Content

[0004] The purpose of the embodiments of the present application is to provide an intelligent device control system to solve the problem of network anomalies in intelligent device control.

[0005] In order to solve the above technical problems, this specification is implemented as follows:

[0006] In a first aspect, a smart device control system is provided, comprising a mobile terminal, a server, a router and a target smart device, wherein the mobile terminal comprises a first communication module and a second communication module, the first communication module being connected to a wide area network, and the second communication module being connected to a local area network; the first communication module being connected to the server via a wide area network, and transmitting control instructions to the server via a first data transmission channel; the second communication module being connected to the target smart device via a local area network, and transmitting control instructions to the target smart device via a second data transmission channel; the server being connected to the router via a wide area network, and transmitting the control instructions to the router via the first data transmission channel; the router being connected to the target smart device, and transmitting the received control instructions to the target smart device via the first data transmission channel.

[0007] Optionally, the target smart device transmits the feedback data to the second communication module through the second data transmission channel.

[0008] Optionally, the target smart device transmits the feedback data to the router through the first data transmission channel;

[0009] The router transmits the received feedback data to the server through the first data transmission channel;

[0010] The server transmits the received feedback data to the second communication module through the first data transmission channel.

[0011] Optionally, the local area network is a WiFi network, and the target smart device is a WiFi access device.

[0012] Optionally, the WiFi access device includes a smart lamp, a smart curtain, a smart home appliance or a smart sensor.

[0013] Optionally, the local area network is a Bluetooth network, and the target smart device is a Bluetooth device.

[0014] Optionally, the local area network includes a WiFi network and a Bluetooth network, and the target smart device is a Bluetooth device.

[0015] Optionally, it also includes an intelligent gateway;

[0016] The second communication module is connected to the smart gateway via a WiFi network;

[0017] The smart gateway is connected to the target smart device via a Bluetooth network, and the second communication module transmits the control instruction to the target smart device via the smart gateway through the second data transmission channel.

[0018] Optionally, the Bluetooth device includes a rail lamp holder controller, which is connected to the rail lamp holder and controls the rail lamp holder according to the received control instruction.

[0019] In an embodiment of the present application, through the smart device control system, the mobile terminal can send control instructions to the target smart device through the wide area network and the local area network respectively, thereby controlling the target smart device in parallel through multiple data transmission channels, overcoming the problem of unstable Internet connection or abnormalities in any other link causing the smart device to be unable to be controlled normally, thereby improving the stability of smart device control. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0021] Figure 1 It is a structural block diagram of the intelligent device control system of an embodiment of the present application. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application. The figure numbers in this application are only used to distinguish the various steps in the scheme and are not used to limit the execution order of the various steps. The specific execution order is subject to the description in the specification.

[0023] In order to solve the problems existing in the prior art, an embodiment of the present application provides an intelligent device control system, including a mobile terminal, a server, a router and a target intelligent device, the mobile terminal including a first communication module and a second communication module, the first communication module being connected to a wide area network, and the second communication module being connected to a local area network; the first communication module is connected to the server through a wide area network, and transmits control instructions to the server through a first data transmission channel; the second communication module is connected to the target intelligent device through a local area network, and transmits control instructions to the target intelligent device through a second data transmission channel; the server is connected to the router through a wide area network, and the control instructions are transmitted to the router through the first data transmission channel; the router is connected to the target intelligent device, and transmits the received control instructions to the target intelligent device through the first data transmission channel.

[0024] Figure 1 This is a block diagram of the structure of the intelligent device control system of the embodiment of the present application, combined with Figure 1 The system includes a mobile terminal 10, a server 20, a router 30 and a target smart device.

[0025] The mobile terminal 10, for example, can be a mobile phone, a tablet computer, a laptop computer, a PDA, an in-vehicle electronic device, a mobile Internet device (MID), a wearable device, an ultra-mobile personal computer (UMPC), a netbook, or a personal digital assistant (PDA), etc., and is not specifically limited in the embodiments of the present application.

[0026] The target smart device is a device that the user can control through the mobile terminal 10, such as a smart lamp, smart curtain, smart appliance, smart sensor installed in the user's home, or a smart controller connected to and used to control the smart lamp or smart curtain, or other smart devices that the user needs to control. These smart devices can communicate with the mobile terminal via a wide area network, or via a local area network, or a combination of a wide area network and a local area network.

[0027] In the embodiment of the present application, the user can provide input to control the target smart device by operating the mobile terminal 10. In response to the user's input on the mobile terminal 10, the mobile terminal 10 sends a control instruction to the target smart device corresponding to the input via the wide area network and the local area network respectively.

[0028] A wide area network (WAN), also known as an extranet or public network, is a remote network that connects computers in local area networks (LANs) or metropolitan area networks (MANs) in different regions. Communication is achieved using the HTTP protocol. When a mobile terminal sends control commands via the WAN, the HTTP protocol is used. Similarly, when mobile terminal 10 sends control commands via the LAN, the protocol used is used.

[0029] The mobile terminal 10 may be provided with a first communication module and a second communication module, wherein the first communication module is connected to a wide area network (WAN) and the second communication module is connected to a local area network (LAN). Thus, the first communication module of the mobile terminal 10 is connected to a server via the WAN and transmits control instructions to the server via a first data transmission channel corresponding to the WAN. The second communication module of the mobile terminal 10 is connected to a target smart device via a local area network and transmits control instructions to the target smart device via a second data transmission channel corresponding to the local area network.

[0030] Combine Figure 1 In the embodiment, the first communication module of the mobile terminal 10 can first send the control instruction to the server 20 through the first data transmission channel corresponding to the wide area network 1. The server 20 determines the destination address of the target smart device corresponding to the control instruction and sends the HTTP control instruction to the destination address through the first data transmission channel.

[0031] Server 20 can forward the control command via router 30 via the first data transmission channel to the target smart device at the corresponding destination address, such as smart gateway 22 or WiFi access device 24, to control the target smart device. Here, smart gateway 22 has WiFi communication capabilities. Thus, mobile terminal 10 controls the target smart device via the communication path of the first data transmission channel corresponding to wide area network 1.

[0032] As described above, the second communication module of the mobile terminal 10 also controls the target smart device through the second data transmission channel corresponding to the local area network.

[0033] In one embodiment of the present application, the local area network is a WiFi network, and the target smart device is a WiFi access device. The WiFi access device includes a smart lamp, a smart curtain, a smart appliance, or a smart sensor.

[0034] Combine Figure 1 When the local area network is a WiFi network and the target smart device is a WiFi access device, the second communication module of the mobile terminal 10 can send WiFi control instructions directly to the local area network IP address of the target smart device, such as a smart gateway 22 with WiFi communication function, or a WiFi access device 24 including smart lamps, smart curtains, smart appliances or smart sensors, through the WiFi network 2 via the second data transmission channel.

[0035] In another embodiment of the present application, the local area network is a Bluetooth network, and the target smart device is a Bluetooth device.

[0036] Combine Figure 1 If the local area network is a Bluetooth network and the target smart device is a Bluetooth device, the second communication module of the mobile terminal 10 can directly send a Bluetooth control instruction to the target smart device, such as the Bluetooth address of the smart curtain 26 or the rail-type lamp controller 28, via the Bluetooth network 3 and the second data transmission channel. Here, the rail-type lamp controller 28 can further control the corresponding connected rail-type lamp 29 according to the control instruction.

[0037] In another embodiment of the present application, the local area network includes a WiFi network and a Bluetooth network, and the target smart device is a Bluetooth device.

[0038] In the above embodiment, the smart device control system also includes a smart gateway; the second communication module is connected to the smart gateway via a WiFi network; the smart gateway is connected to the target smart device via a Bluetooth network, and the second communication module transmits the control instruction to the target smart device via the second data transmission channel via the smart gateway.

[0039] The various devices configured in a local area network have a certain topological structure, which represents the hierarchical connection relationship between the devices in the local area network. The devices in the local area network may include both Bluetooth devices and WiFi access devices. The second communication module of the mobile terminal 10 can directly send control instructions to the Bluetooth device or WiFi access device, which are smart devices, respectively, or forward the instructions to the subordinate smart device via the superior device with a superior-subordinate connection relationship. Typically, the subordinate device is a Bluetooth device, and the superior device can be a Bluetooth device or a WiFi access device. A device with both Bluetooth and WiFi functions can act as a superior device to transfer control instructions, transmitting control instructions received via the WiFi network to the subordinate smart device with Bluetooth function.

[0040] In the embodiment of the present application, the smart gateway 22 has both Bluetooth and WiFi functions. The Bluetooth device includes a rail lamp head controller 28, which is connected to the rail lamp head 29 and controls the rail lamp head 29 according to the received control instructions.

[0041] Combine Figure 1 The target smart device is a rail-type lamp controller 28 with Bluetooth function, which is connected to multiple rail-type lamps 29 and is used to control the rail-type lamps 29 according to the received control instructions. Figure 1 As shown in the dotted box.

[0042] For example, the hierarchical relationship from the second communication module of the mobile terminal 10 to the rail-type lamp head 29 is: second communication module-smart gateway 22-rail-type lamp head controller 28-rail-type lamp head 29, where the smart gateway 22 has Bluetooth and WiFi functions, and the rail-type lamp head controller 28 has Bluetooth function.

[0043] The second communication module of the mobile terminal 10 can determine the destination address of the rail-mounted lamp controller 28 and, through the topology structure, locate the smart gateway 22 with Bluetooth and WiFi capabilities, which is the upper-level device of the rail-mounted lamp controller 28. Therefore, the second communication module of the mobile terminal 10 first transmits control instructions to the smart gateway 22 via the WiFi network via the second data transmission channel. The smart gateway 22 then transmits the control instructions to the rail-mounted lamp controller 28 via the second data transmission channel. The rail-mounted lamp controller 28 can then control the corresponding rail-mounted lamp 29 to perform control operations. Thus, the mobile terminal 10 controls the target smart device via the communication path including the second data transmission channel of the WiFi network 2 and the Bluetooth network 3.

[0044] After receiving control instructions sent by the first and second communication modules of the mobile terminal 10 via the corresponding data transmission channels of the wide area network 1 and the local area network, respectively, the target smart device will execute the corresponding control operation in accordance with the control instructions and send corresponding feedback data in response. The feedback data of the target smart device can be returned to the corresponding first and second communication modules of the mobile terminal 10 via the wide area network or local area network corresponding to the data transmission channel that received the control instructions.

[0045] Optionally, the target smart device transmits the feedback data to the second communication module through the second data transmission channel.

[0046] Combine Figure 1 The second communication module of the mobile terminal 10 directly transmits the control instruction to the WiFi access device 24 via the second data transmission channel through the WiFi network 2, and the feedback data generated by the WiFi access device 24 in response to the control instruction is transmitted to the second communication module of the mobile terminal 10 via the second data transmission channel corresponding to the WiFi network 2.

[0047] Similarly, the second communication module of the mobile terminal 10 directly transmits the control instruction to the smart curtain 26 via the second data transmission channel through the Bluetooth network 3, and the feedback data generated by the WiFi access device 24 in response to the control instruction is transmitted to the second communication module of the mobile terminal 10 via the second data transmission channel corresponding to the WiFi network 2.

[0048] The second communication module of the mobile terminal 10 transmits the control instruction to the smart gateway 22 via the WiFi network 2 via the second data transmission channel. The smart gateway 22 then transmits the control instruction to the rail lamp controller 28 via the second data transmission channel via the Bluetooth network to control the rail lamp 29. The rail lamp controller 28 then transmits the feedback data generated in response to the control instruction based on the operation of the rail lamp 29 to the smart gateway 22 via the Bluetooth network via the second data transmission channel. The smart gateway 22 then transmits the feedback data to the second communication module of the mobile terminal 10 via the WiFi network 2 via the second data transmission channel.

[0049] Optionally, the target smart device transmits the feedback data to the router through the first data transmission channel; the router transmits the received feedback data to the server through the first data transmission channel; and the server transmits the received feedback data to the second communication module through the first data transmission channel.

[0050] Combine Figure 1The first communication module of the mobile terminal 10 transmits the control instruction to the WiFi access device 24 through the first data transmission channel corresponding to the wide area network 1, in sequence through the server and the router 30. Then, the feedback data generated by the WiFi access device 24 in response to the control instruction is transmitted to the first communication module of the mobile terminal 10 through the first data transmission channel corresponding to the wide area network and in sequence through the router 30 and the server.

[0051] In the above embodiment, the mobile terminal 10 sends the same control instruction to the target smart device from the wide area network and the local area network simultaneously through the first communication module and the second communication module, but the feedback data of the control instruction returned by the target smart device through the wide area network and the local area network may be different.

[0052] The target smart device can receive the same control instruction through the wide area network and the local area network respectively. The control instruction carries a transaction number. The transaction number can be used by the target smart device to identify the same control instruction received successively within a preset time period, and discard the control instruction of the wide area network or the local area network received later that carries the same transaction number.

[0053] When the same control command is sent to the same target smart device via both a wide area network and a local area network, the target smart device will only execute the control operation for the control command received first, and the returned feedback data will carry information indicating successful control of the target smart device. For any subsequent control command received within the same preset time period, the target smart device will discard the later received control command. Failure of the mobile terminal 10 to receive a response to the control command within the predetermined waiting period is also a form of feedback data, indicating a failure to control the target smart device. The feedback data may carry information indicating this failure.

[0054] The first communication module and the second communication module of the mobile terminal 10 receive feedback data in response to the same control instruction via the wide area network and the local area network, respectively. If the feedback data carries information indicating successful control of the target smart device, i.e., indicating that the control operation on the target smart device has been successfully executed, the control result of the target smart device is determined based on the feedback data. Of course, if the other feedback data carries information indicating failure to control the target smart device, i.e., indicating that the control operation on the target smart device has not been successfully executed, the feedback data is ignored.

[0055] Generally, mobile terminals send control instructions through a local area network and receive feedback data corresponding to the control instructions through a local area network at a faster speed. Therefore, compared with a wide area network, the control speed of smart devices can be further improved while ensuring the control stability of smart devices.

[0056] After the mobile terminal first receives feedback data through any one of the wide area network or local area network, if the feedback data indicates that the control operation on the target smart device was not successfully executed, it can continue to wait for the feedback data of the target smart device fed back by another network, and after the subsequent feedback data received indicates that the control operation on the target smart device has been successfully executed, the subsequently received feedback data will be used as the response of the target smart device to the control instruction.

[0057] In an embodiment of the present application, through the smart device control system, the mobile terminal can send control instructions to the target smart device through the wide area network and the local area network respectively, thereby controlling the target smart device in parallel through multiple data transmission channels, overcoming the problem of unstable Internet connection or abnormalities in any other link causing the smart device to be unable to be controlled normally, thereby improving the stability of smart device control.

[0058] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms without departing from the purpose of this application and the scope of protection of the claims, all of which are within the protection of this application.

Claims

1. An intelligent device control system, characterized in that: Including mobile terminals, servers, routers and target smart devices, The mobile terminal includes a first communication module and a second communication module, the first communication module is connected to a wide area network, and the second communication module is connected to a local area network; the first communication module is connected to the server via the wide area network, and transmits control instructions to the server via a first data transmission channel; The second communication module is connected to the target smart device via a local area network and transmits the control instruction to the target smart device via a second data transmission channel; The server is connected to the router via a wide area network, and the control instruction is transmitted to the router via the first data transmission channel; The router is connected to the target smart device and transmits the received control instruction to the target smart device through the first data transmission channel.

2. The system according to claim 1, wherein: The target smart device transmits the feedback data to the second communication module through the second data transmission channel.

3. The system according to claim 1, wherein: The target smart device transmits the feedback data to the router through the first data transmission channel; The router transmits the received feedback data to the server through the first data transmission channel; The server transmits the received feedback data to the second communication module through the first data transmission channel.

4. The system according to claim 1, wherein: The local area network is a WiFi network, and the target smart device is a WiFi access device.

5. The system according to claim 4, characterized in that The WiFi access device includes a smart lamp, a smart curtain, a smart home appliance or a smart sensor.

6. The system according to claim 1, wherein: The local area network is a Bluetooth network, and the target smart device is a Bluetooth device.

7. The system according to claim 1, wherein: The local area network includes a WiFi network and a Bluetooth network, and the target smart device is a Bluetooth device.

8. The system according to claim 7, characterized in that It also includes a smart gateway; The second communication module is connected to the smart gateway via a WiFi network; The smart gateway is connected to the target smart device via a Bluetooth network, and the second communication module transmits the control instruction to the target smart device via the smart gateway through the second data transmission channel.

9. The system according to claim 6 or 8, characterized in that The Bluetooth device includes a rail lamp holder controller, which is connected to the rail lamp holder and controls the rail lamp holder according to the received control instructions.