A hybrid wireless networking control system

CN114205922BActive Publication Date: 2025-08-01ZHONGSHAN YUXIN ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202111289084.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-02
Publication Date
2025-08-01
Estimated Expiration
2041-11-02

AI Technical Summary

Technical Problem

[0005]为实现上述目的,本发明提供如下技术方案:一种混合无线组网控制系统,包括:基站,所述基站上设置有一端与其相连接的光纤,所述光纤的另一端连接有设置于弱电箱中的光猫,所述光猫上设置有一端与其相连接的第一网线,所述第一网线的另一端连接有设置于客厅中的lora终端,所述第一网线与lora终端的WAN口相连接,所述lora终端LAN口上设置有一端与其相连接的第二网线,所述第二网线的另一端连接有交换机,所述交换机上设置有多组一端与其相连接的第三网线,所述第三网线的另一端连接分别连接有多个设置于各个房间中的路由器,解决了原本无线信号覆盖面积小、信号差的问题,也解决了原本多组信号源之间进行切换时,对用户使用产生影响,导致体验不佳的问题

Benefits of technology

[0017]The present invention solves the problems of small wireless signal coverage area and poor signal by setting up a set of hybrid wireless networking from outdoor to indoor. It also solves the problem that when switching between multiple signal sources, it affects the user's use and leads to poor experience. By applying LoRa technology and Bluetooth technology, the coverage range of wireless signals is improved, the overall security is enhanced, and the power consumption is reduced, effectively improving the overall practicability and user experience.

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Abstract

The present invention discloses a hybrid wireless networking control system, which includes a base station. One end of an optical fiber is connected to the base station, and the other end of the optical fiber is connected to an optical modem disposed in a weak current box. One end of a first network cable is connected to the optical modem, and the other end of the first network cable is connected to a LoRa terminal disposed in the living room. The first network cable is connected to the WAN port of the LoRa terminal. One end of a second network cable is connected to the LAN port of the LoRa terminal, and the other end of the second network cable is connected to a switch. This hybrid wireless networking control system solves the problems of small wireless signal coverage area and poor signal, and also solves the problem that when switching between multiple signal sources, it affects the user's use and results in a poor experience.
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Description

Technical Field

[0001] The present invention relates to the technical field of wireless networking, and in particular to a hybrid wireless networking control system. Background Art

[0002] A wireless networking module, also known as a wireless ad hoc networking module, is a module that uses wireless technology for wireless data transmission. It is a temporary multi-hop autonomous system composed of a group of mobile nodes with wireless transceivers. It does not rely on preset infrastructure and has the characteristics of temporary networking, rapid deployment, no control center, and strong anti-destruction capabilities. It has broad application prospects in military, civil, and civilian aspects, and is a hot issue in network research.

[0003] Currently, most households only have one router installed to connect to a wireless network. However, due to the router's limited coverage area, the signal deteriorates when moving to the edge of the router's coverage area, and internet access may even become unavailable. Some households, in order to achieve full wireless network coverage, install a second router in another room for bridging. Although the network names remain the same, they essentially represent multiple signal sources. When moving from one signal source to another, the mobile phone's wireless signal automatically switches, but the network remains disconnected during the switching process, resulting in a poor user experience. To address this issue, we propose a hybrid wireless networking control system. Summary of the Invention

[0004] The object of the present invention is to provide a hybrid wireless networking control system to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a hybrid wireless networking control system, comprising: a base station, an optical fiber connected to one end of the base station, the other end of the optical fiber connected to an optical modem arranged in a weak-current box, the optical modem provided with a first network cable connected to one end thereof, the other end of the first network cable connected to a lora terminal arranged in the living room, the first network cable connected to the WAN port of the lora terminal, a second network cable connected to one end of the LAN port of the lora terminal, the other end of the second network cable connected to a switch, the switch provided with multiple groups of third network cables connected to one end thereof, the other end of the third network cable connected to multiple routers arranged in each room, which solves the original problems of small wireless signal coverage area and poor signal, and also solves the original problem of switching between multiple groups of signal sources, which affects user use and leads to poor experience.

[0006] Preferably, the base station is a lora self-built base station, which is conducive to improving the coverage and security of wireless signals.

[0007] Preferably, the LoRa terminal includes multiple groups of nodes. Each node includes a data processing and control module, a data encryption and decryption module, and a data transceiver module. The multi-connected nodes of the LoRa terminal have advantages.

[0008] Preferably, the data processing and control module is used to parse data, convert it into a control signal for the device, and package and encapsulate the data packet to be sent; the data encryption and decryption module is used to encrypt and decrypt the data packet; the data transceiver module communicates with the router and exchanges data with adjacent nodes.

[0009] Preferably, multiple routers all support Bluetooth Mesh and KVR roaming protocols, which is beneficial for mobile phone control and seamless network switching.

[0010] Preferably, multiple routers are all controlled by the mobile phone through the APP software, which is convenient for the mobile phone to control the home network.

[0011] Preferably, the first network cable, the second network cable, and the third network cable are all super category 6 ten-gigabit network cables, which is beneficial for improving the overall service life and making them more durable.

[0012] A hybrid wireless networking control system. The operation of the wireless networking specifically includes the following steps:

[0013] S1: The mobile phone terminal end nodes collect underlying data, send the data to the gateway (Gateway) base station through (RF radio frequency technology / LoRaWAN technology), and then send it to the NS (network server) through (3G / ethernet communication technology). The network server (NS) then sends the data to the application program end (APP), and the program end can control multiple routers separately.

[0014] S2: The base station transmits the signal to the optical modem through the optical fiber. The optical modem converts the optical signal into an electrical signal and transmits it to the LoRa terminal through the first network cable. The LoRa terminal has multiple groups of nodes. The nodes respectively pass through the data processing and control module, the data encryption module, and the data transceiver module, and then the LoRa terminal transmits the signal to the switch through the second network cable.

[0015] S3: After receiving the signal, the switch transmits the signal to each router through multiple groups of third network cables, so that each router can provide a strong wireless signal to cover the whole house. And the routers can achieve seamless docking through the KVR roaming protocol, so that the mobile phone terminal will not experience a short network interruption no matter which router it is connected to.

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] The present invention solves the problems of small wireless signal coverage area and poor signal by setting up a set of hybrid wireless networking from outdoor to indoor. It also solves the problem that when switching between multiple signal sources, it affects the user's use and leads to poor experience. By applying LoRa technology and Bluetooth technology, the coverage range of wireless signals is improved, the overall security is enhanced, and the power consumption is reduced, effectively improving the overall practicability and user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall composition structure of the present invention.

[0019] In the figure: 1 - base station; 2 - optical fiber; 3 - optical modem; 4 - first network cable; 5 - LoRa terminal; 6 - second network cable; 7 - switch; 8 - third network cable; 9 - router. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] Embodiment 1

[0022] Please refer to Figure 1 , the present invention provides a technical solution: a hybrid wireless networking control system, including: a base station 1, an optical fiber 2 with one end connected thereto is provided on the base station 1, the other end of the optical fiber 2 is connected to an optical modem 3 arranged in a weak current box, a first network cable 4 with one end connected thereto is provided on the optical modem 3, the other end of the first network cable 4 is connected to a LoRa terminal 5 arranged in the living room, the first network cable 4 is connected to the WAN port of the LoRa terminal 5, a second network cable 6 with one end connected thereto is provided on the LAN port of the LoRa terminal 5, the other end of the second network cable 6 is connected to a switch 7, multiple groups of third network cables 8 with one end connected thereto are provided on the switch 7, and the other ends of the third network cables 8 are respectively connected to multiple routers 9 arranged in each room. Among them, the base station 1 is a self-built LoRa base station 1.

[0023] The LoRa terminal 5 includes multiple groups of nodes. The nodes include a data processing and control module, a data encryption and decryption module, and a data transceiver module. Among them, the data processing and control module is used for parsing data, converting it into a control signal for the device, and packing and encapsulating the data packet to be sent; the data encryption and decryption module is used for encrypting and decrypting the data packet; the data transceiver module communicates with the router 9 and exchanges data with adjacent nodes.

[0024] Each of the multiple routers 9 is a router 9 that supports the mesh and KVR roaming protocols. The multiple routers 9 are all controlled by the mobile phone terminal through the APP software. The first network cable 4, the second network cable 6, and the third network cable 8 are all super 6 - category 10 - gigabit network cables.

[0025] The optical fiber 2 is connected to the base station 1 installed outdoors at one end and to the optical modem 3 at the other end. The optical modem 3 converts the optical signal into an electrical signal and simultaneously connects to the WAN interface on the lora terminal 5 through the first network cable 4. The second network cable 6 connects the LAN port on the lora terminal 5 to the switch 7, and the switch 7 is connected to multiple routers 9 indoors through multiple third network cables 8, thereby forming a wired backhaul mesh between multiple groups of routers 9 and the lora terminal 5, with a large coverage area and strong signals. The router 9 has Bluetooth mesh and can realize separate individual control by the mobile phone terminal. The function of the KVR roaming protocol can achieve seamless docking. When people walk from the current room with a group of routers 9 to another room with a router 9, the network switch is seamlessly docked and will not affect the current use.

[0026] A hybrid wireless networking control system. The operation of the wireless networking specifically includes the following steps:

[0027] S1: The mobile terminal end nodes collect the underlying data and send the data to the gateway (Gateway) base station through (RF radio frequency technology / LoRaWAN technology), and then send it to the NS (network server) through (3g / ethernet communication technology). The network server (NS) then sends the data to the application program end (APP), and the program end can control each of the multiple routers 9 separately.

[0028] S2: The base station 1 transmits the signal to the optical modem 3 through the optical fiber 2. The optical modem 3 converts the optical signal into an electrical signal and conveys it to the lora terminal 5 through the first network cable 4. The lora terminal 5 has multiple groups of nodes, and the nodes respectively pass through the data processing control module, the data encryption module, and the data transceiver module. The lora terminal 5 then conveys the signal to the switch 7 through the second network cable 6.

[0029] S3: After receiving the signal, the switch 7 conveys the signal to each router 9 through multiple groups of third network cables 8, so that each router 9 can provide a wireless signal with strong strength to cover the whole house. The routers 9 can achieve seamless docking through the KVR roaming protocol, so that the mobile phone terminal will not experience a short - term network disconnection regardless of which router 9 it is connected to.

[0030] Embodiment 2

[0031] A hybrid wireless networking control system. The operation of the wireless networking specifically further includes the following steps:

[0032] S1: The mobile terminal end nodes collect the underlying data and send the data to the platform through (RF radio frequency technology / LoRaWAN technology). The platform transmits the signal to the main gateway through optical fiber or 5G.

[0033] S2: After receiving the signal, the main gateway transmits the signal to the routing gateway through LoRa technology or wifi, and multiple groups of routing gateways communicate with each other.

[0034] S3: After receiving the signal, multiple groups of routing gateways transmit the signal to multiple groups of routing nodes in the home rooms. The multiple groups of routing nodes are all mesh networks and communicate with each other. The routing nodes also communicate with the routing gateways at the same time to form seamless handover.

[0035] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0036] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A hybrid wireless networking control system, characterized in that, Including: A base station (1), on which there is an optical fiber (2) connected to one end thereof, the other end of the optical fiber (2) is connected to an optical modem (3) disposed in a weak current box, on the optical modem (3) there is a first network cable (4) connected to one end thereof, the other end of the first network cable (4) is connected to a LoRa terminal (5) disposed in the living room, the first network cable (4) is connected to the WAN port of the LoRa terminal (5), on the LAN port of the LoRa terminal (5) there is a second network cable (6) connected to one end thereof, the other end of the second network cable (6) is connected to a switch (7), on the switch (7) there are multiple groups of third network cables (8) connected to one end thereof, and the other ends of the third network cables (8) are respectively connected to multiple routers (9) disposed in each room; The base station (1) is a self-built LoRa base station (1); The LoRa terminal (5) includes multiple groups of nodes, and each node includes a data processing and control module, a data encryption and decryption module, and a data transceiver module; The data processing and control module is used for parsing data, converting it into a control signal for the device, and packing and encapsulating the data packet to be sent; the data encryption and decryption module is used for encrypting and decrypting the data packet; the data transceiver module communicates with the router (9) and exchanges data with adjacent nodes.

2. The hybrid wireless networking control system according to claim 1, characterized in that: Each of the multiple routers (9) is a router (9) that supports Bluetooth mesh and KVR roaming protocols.

3. The hybrid wireless networking control system according to claim 1, characterized in that: Each of the multiple routers (9) is controlled by a mobile phone through an APP software.

4. A hybrid wireless networking control system according to claim 1, characterized in that: The first network cable (4), the second network cable (6), and the third network cable (8) are all super category 6 ten-gigabit network cables.

5. A hybrid wireless networking control system according to claim 1, wherein The operation of the wireless networking specifically includes the following steps: S1: The mobile terminal collects underlying data, sends the data to the gateway (Gateway) base station through RF radio frequency technology or LoRaWAN technology, and then sends it to the network server (NS) through 3G or Ethernet communication technology. The network server (NS) then sends the data to the application program end (APP), and the program end can control each of the multiple routers (9) separately; S2: The base station (1) transmits the signal to the optical modem (3) through the optical fiber (2), the optical modem (3) converts the optical signal into an electrical signal, and transports it to the LoRa terminal (5) through the first network cable (4). The LoRa terminal (5) has multiple groups of nodes, and each node respectively passes through the data processing and control module, the data encryption module, and the data transceiver module. The LoRa terminal (5) then transports the signal to the switch (7) through the second network cable (6); S3: After receiving the signal, the switch (7) transports the signal to each router (9) through multiple groups of third network cables (8), so that each router (

Citation Information

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