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IoT device networking system and networking method

A device group and device technology, applied in transmission systems, digital transmission systems, network topology, etc., can solve problems such as inability to communicate with IoT devices, and achieve the effect of ensuring security, ensuring security, and ensuring transmission security.

Pending Publication Date: 2022-06-17
CHENGDU DBAPP SECURITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] 2. Traditional IoT devices are independent and only communicate with the platform. No

Method used

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  • IoT device networking system and networking method
  • IoT device networking system and networking method

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0046]实施例1:

[0047]本实施例提出了本发明提出了一种IoT设备组网系统,如图1、图2所示,包括控制器、IoT设备A、IoT设备B;

[0048]所述控制器内设置有认证组件、网关组件、第一TAP虚拟网络接口组件和第一IoT设备初始化网络接口组件I / F;

[0049]所述网关组件分别与认证组件、第一TAP虚拟网络接口组件和第一IoT设备初始化网络接口组件I / F连接

[0050]所述IoT设备A和IoT设备B结构相同,均包括第二IoT设备初始化网络接口组件I / F、驱动组件、第二TAP虚拟网络接口组件和应用程序APP;

[0051]所述驱动组件分别与第二IoT设备初始化网络接口组件I / F、驱动组件、第二TAP虚拟网络接口组件连接;所述应用程序APP与所述第二TAP虚拟网络接口组件连接;

[0052]所述第一IoT设备初始化网络接口组件I / F与所述第二IoT设备初始化网络接口组件I / F连接。

Example Embodiment

[0053]实施例2:

[0054]本实施例还提出了一种IoT设备组网系统的组网方法,基于上述的一种IoT设备组网系统,包括两个阶段:初始化阶段和数据传输阶段;首先在初始化阶段使用控制器分别将IoT设备A和IoT设备B进行虚拟网络的接入,并对IoT设备A和IoT设备B进行设备证书License的颁发;然后再数据传输阶段通过控制器进行IoT设备A和IoT设备B的网络通信。

[0055]本实施例的其他部分与上述实施例1相同,故不再赘述。

Example Embodiment

[0056]实施例3:

[0057]本实施例在上述实施例2的基础上,为了更好地实现本发明,如图1所示,进一步地,所述初始化阶段包括以下步骤:

[0058]步骤1:对控制器进行启动;

[0059]步骤2:在IoT设备A和IoT设备B出厂前,管理员预定义策略;控制器根据管理员预定义的策略颁发设备证书License给IoT设备A和IoT设备B;

[0060]步骤3:在IoT设备A和IoT设备B出厂安装启动后,配置控制器互联网地址,对IoT设备A和IoT设备B的第二IoT设备初始化网络接口组件I / F、驱动组件、第二TAP虚拟网络接口组件进行初始化;

[0061]步骤4:第二IoT设备初始化网络接口组件I / F、驱动组件、第二TAP虚拟网络接口组件根据配置的控制器互联网地址,携带设备证书License,通过第二IoT设备初始化网络接口组件I / F和第一IoT设备初始化网络接口组件I / F,进行设备认证和网络接入;控制器的认证组件对认证通过的IoT设备返回认证信息和预定义的策略信息到网关组件;

[0062]步骤5:网关组件根据返回的认证信息和预定义的策略信息,生成对应IoT设备的虚拟IP地址,并记录对应的IoT设备的实时信息;然后将虚拟IP地址信息、虚拟网关地址、路由信息、可以访问的网络资源信息返回到对应的IoT设备上;

[0063]步骤6:当对应的IoT设备的驱动组件接收到返回的信息后,在第二TAP虚拟网络接口组件上配置虚拟IP地址信息、虚拟网关地址,并且将默认路由指向虚拟网关,完成IoT设备的认证和虚拟网络的接入。

[0064]工作原理:

[0065]1.首先控制器将自己的各项模块启动,包括网络接口组件(I / F)、TAP虚拟网络接口组件(TAP)、网关组件、认证组件,网关组件启动的时候会在网络接口组件处进行监听,监听一个可用端口;同时网关组件可以访问认证组件和TAP组件;

[0066]2.控制器根据管理员预定义的策略,分配证书(license)给IoT设备,这个证书本质上是一个非对称加密秘钥,公钥颁发给IoT设备,将私钥信息、对应的IoT策略信息保存到认证组件中,这一步需要在IoT设备出厂前完成;

[0067]3.IoT设备出厂安装启动后,配置互联网地址,IoT设备初始化网络接口组件(I / F)、TAP虚拟网络接口组件(TAP)和IoT驱动;

[0068]4.IoT驱动根据配置的控制器网关地址,携带...

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Abstract

The invention provides an IoT (Internet of Things) equipment networking system and a networking method, the IoT equipment networking system mainly comprises two entities, namely IoT equipment and a controller, and the implementation of the IoT equipment networking system is mainly divided into two stages, namely an initialization stage and a normal data transmission stage. The initialization stage describes the issuing of a device certificate and a device access controller; the normal data transmission phase describes how the applications of the two IoT devices are in network communication. According to the invention, communication between the IoT devices can be realized through one VLAN, the complexity of network communication between the devices is reduced, and applications in the devices can communicate by using the VLAN without perception; and meanwhile, all network communication of the IoT equipment can be audited and filtered in real time, so that the safety of network communication of the equipment is ensured, and the network utilization of one IoT equipment can be prevented from being propagated into the whole virtual network.

Description

technical field [0001] The invention belongs to the technical field of computer information communication, and in particular relates to an IoT device networking system and a networking method. Background technique [0002] The full name of the IoT device is the Internet of Things device, which is a system that calculates the relationship between equipment, machinery, and digital machines, and has the ability to transmit data through the network. The network connection methods of IoT devices are generally bluetooth and wifi. It is generally divided into two parts: [0003] 1. Provide basic components, including network connection capabilities, computing capabilities, etc.; [0004] 2. Specific business functions, mainly various application modules; [0005] In the present era of the Internet of Everything, a single IoT device that cannot interact with other devices can no longer meet the needs, or the interaction between a single platform and devices can no longer flexibly...

Claims

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Application Information

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IPC IPC(8): H04W84/18H04L9/32H04L9/40H04L47/10H04W12/06H04W84/12
CPCH04W84/18H04W84/12H04W12/06H04L9/32H04L63/1408H04L63/1441
Inventor 蔺宪武范渊吴永越何恐兰星
Owner CHENGDU DBAPP SECURITY