WO2020238520A1 - 配网方法、配网装置、wifi智能设备,以及配网系统 - Google Patents

配网方法、配网装置、wifi智能设备,以及配网系统 Download PDF

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Publication number
WO2020238520A1
WO2020238520A1 PCT/CN2020/086940 CN2020086940W WO2020238520A1 WO 2020238520 A1 WO2020238520 A1 WO 2020238520A1 CN 2020086940 W CN2020086940 W CN 2020086940W WO 2020238520 A1 WO2020238520 A1 WO 2020238520A1
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Prior art keywords
network distribution
network
wifi smart
distribution device
router
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PCT/CN2020/086940
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English (en)
French (fr)
Inventor
罗顺
江磊
冯云龙
顾一闻
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Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
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Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
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Publication of WO2020238520A1 publication Critical patent/WO2020238520A1/zh
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • H04W48/10Access restriction or access information delivery, e.g. discovery data delivery using broadcasted information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup

Definitions

  • the invention belongs to the field of WIFI communication, and specifically relates to the field of WIFI distribution network.
  • WIFI chip manufacturers also provide many quick connection protocols to adapt.
  • Wi-Fi smart devices connected to routers in the home for example, smart lamps, refrigerators, washing machines, air conditioners, etc. can all be connected to the Internet.
  • Wi-Fi smart devices Every time users connect to Wi-Fi smart devices, they need to use their mobile phones to help Wi-Fi smart devices with On the Internet, the user’s mobile phone is connected to the router first, and the user scans the smart device on the APP corresponding to the WIFI smart device. In the scanned device list, click the WIFI smart device that needs to be connected to the Internet, and enter the router’s password according to the interface prompts. In the correct case, the WIFI smart device is connected to the router.
  • the purpose of the present invention is to solve the problem of low efficiency of smart device network distribution in the prior art, and to propose a new type of network distribution method.
  • a network distribution method including: a network distribution device is connected to a router to obtain network access rights; the network distribution device broadcasts its own SSID; the network distribution device verifies the received device information of the WIFI smart device;
  • the network distribution device After the verification is successful, the network distribution device sends a connection success message to the WIFI smart device; and sends the MAC address of the WIFI smart device to the router.
  • the network distribution device receives the network address assigned to the WIFI smart device sent by the router;
  • the network distribution device forwards the network address to the WIFI smart device.
  • connection of the network distribution device to a router includes: the network distribution device is connected to the router by wire.
  • connecting the network distribution device to a router to obtain network access authority includes: the network distribution device is connected to the router, and the network distribution device receives the network address assigned by the router to obtain the network access authority.
  • the device information of the WIFI smart device includes the MAC address of the WIFI smart device and the encrypted check code.
  • the verification of the device information of the received WIFI smart device by the network distribution device includes: the network distribution device decodes the encrypted check code in the device information to obtain the check code m; The device compares the check code m with the check code n stored in the network distribution device; if the comparison is consistent, the verification is successful; if the comparison is inconsistent, the verification fails.
  • the second technical solution of the present invention a network distribution method, including: the WIFI smart device receives the SSID broadcast by the network distribution device; the WIFI smart device sends its own device information to the network distribution device; the WIFI smart device receives the information sent by the network distribution device Connection success message; the WIFI smart device receives the network address message forwarded by the network distribution device; the device information includes the MAC address of the WIFI smart device and the encrypted check code.
  • the encrypted check code is preset in the WIFI smart device.
  • the third technical scheme of the present invention a network distribution device, including: an acquisition module, used to obtain network access rights when the network distribution device is connected to a router; a broadcast module, used to broadcast its own SSID; a verification module, used to verify The device information of the received WIFI smart device is verified; the sending module is used to send a connection success message to the WIFI smart device by the network distribution device when the verification is successful; and, used to send the MAC address of the WIFI smart device to the router.
  • the network distribution device further includes a receiving module; the receiving module is used to receive the network address assigned by the router to the WIFI smart device from the router; the sending module is also used to forward the network address to the Describes WIFI smart devices.
  • connecting the network distribution device to a router includes: the network distribution device is connected to the router through a wired connection.
  • connecting the network distribution device to a router to obtain network access authority includes: the network distribution device is connected to the router, and the network distribution device receives the network address assigned by the router to obtain the network access authority.
  • the device information of the WIFI smart device includes the MAC address of the WIFI smart device and the encrypted check code.
  • the verification module is used to verify the received device information of the WIFI smart device, including: the verification module decodes the encrypted verification code in the device information to obtain the verification code m; compare the check code m with the check code n stored in the network distribution device; if the comparison is consistent, the verification is successful; if the comparison is inconsistent, the verification fails.
  • a WIFI smart device including: a receiving module for receiving the SSID broadcast by the network distribution device; a sending module for sending its own device information to the network distribution device; the receiving module, It is also used to receive the connection success message sent by the network distribution device; and to receive the network address message forwarded by the network distribution device; the device information includes the MAC address of the WIFI smart device and the encrypted check code.
  • the encrypted verification code is preset in the storage module of the WIFI smart device.
  • a network distribution system including a router, the aforementioned network distribution device, and the aforementioned WIFI smart device.
  • the network distribution method of the present invention greatly improves the efficiency of the distribution network by adding a network distribution device, and the network distribution process is simple and reliable, and the entire network distribution process does not require user APP. Participation does not require the user to input a password.
  • the network distribution method of the present invention has strong compatibility and can be adapted to most routers on the market.
  • Figure 1 is a structural diagram of a preferred WIFI distribution network system according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a preferred network distribution method for a network distribution device according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a second preferred network distribution method for a network distribution device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a network distribution method of a preferred network distribution system according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a preferred method for configuring a WIFI smart device in an embodiment of the present invention
  • Figure 6 is a schematic structural diagram of a preferred network distribution device according to an embodiment of the present invention.
  • Fig. 7 is a schematic structural diagram of a preferred WIFI smart device in an embodiment of the present invention.
  • FIG. 1 is a structural diagram of a preferred WIFI distribution network system according to an embodiment of the present invention.
  • the WIFI distribution system includes a router 11, a network distribution device 12, and a WIFI smart device 13.
  • the network distribution device 12 is connected to the router 11 by wire, the router 11 assigns a network address to the network distribution device 12, and the network distribution device 12 obtains network access authority.
  • Whether the network distribution device 12 obtains network access authority can be determined by observing the network distribution device 12
  • the indicator on the indicator shows that the indicator light is green to obtain network access permission, and the indicator light is off to indicate that the network access permission is not obtained.
  • Fig. 2 is a schematic diagram of a preferred network distribution method for a network distribution device according to an embodiment of the present invention.
  • the network distribution device 12 in step S21, the network distribution device 12 is connected to the router 11 by wire, and the router 11 assigns a network address to the network distribution device 12, The network device 12 obtains network access rights; step S22, the network distribution device 12 broadcasts its own SSID wirelessly; step S23, the network device 12 receives the device information sent by the WIFI smart device 13, and the network device 12 verifies the device information Step S24, when the network distribution device 12 succeeds in verifying the device information, the network distribution device 12 sends a connection success message to the WIFI smart device 13. So far, the WIFI smart device 13 is successfully connected to the network distribution device 12.
  • the network distribution device 12 verifies the equipment information, including that the equipment information carries an encrypted check code, the network distribution device 12 decodes the check code to obtain the check code m, and combines the check code m is paired with the check code n saved by itself. If the pairing is consistent, the check is successful; if the pairing is inconsistent, the check fails. Since the network distribution device 12 and the WIFI smart device 13 are usually produced by the same manufacturer, the encrypted check code is preset in the WIFI smart device 13, and the decoded check code and decoding method are preset in the network device Within 12. In addition to the encrypted check code, the device information sent by the WIFI smart device 13 also includes information such as the MAC address of the WIFI smart device 13.
  • Fig. 3 is a schematic diagram of a second preferred network distribution method for a network distribution device according to an embodiment of the present invention.
  • the network distribution device 12 sends WIFI to the router 11 The MAC address information of the smart device; step S26, the network distribution device 12 receives the network address assigned by the router 11 to the WIFI smart device 13; step S27, the network distribution device 12 forwards the received network address of the WIFI smart device 13 to the WIFI smart device 13. So far, the network distribution device 12 is successfully connected to the router 11, and the router 11 realizes the network connection.
  • FIG. 4 is a schematic diagram of a network distribution method of a preferred network distribution system according to an embodiment of the present invention.
  • the flow of the network distribution method is as follows: Step S41, the network distribution device 12 is connected to the router 11 through a wired connection to obtain network access rights; Step S42, the network distribution device 12 broadcasts its own SSID to the WIFI smart device 13; step S43, after the WIFI smart device 13 receives the SSID of the network distribution device 12, it sends its own device information to the network distribution device 12, and the WIFI smart device 13 sends itself
  • the device information includes the MAC address of the WIFI smart device 13, and the encrypted check code, etc.; in step S44, the network distribution device 12 verifies its own device information sent by the WIFI smart device 13, and the network distribution device 12 verifies the encrypted
  • the check code is decoded to obtain the check code m, and the check code m is compared with the check code n stored in the network distribution device 12.
  • step S45 the network distribution device 12 sends a connection success message to the WIFI smart device 13; step S46, the network distribution device 12 sends the MAC address information of the WIFI smart device 13 to the router 11; S47, the router 11 assigns a network address to the WIFI smart device 13 according to the MAC address of the WIFI smart device; step S48, the router 11 sends the network address allocated by the WIFI smart device 13 to the network distribution device 12; step S49, the network distribution device 12 The received network address of the WIFI smart device 13 is forwarded to the WIFI smart device 13.
  • Fig. 5 is a schematic diagram of a preferred method for distributing a network of a WIFI smart device according to an embodiment of the present invention.
  • the distributing process of the WIFI smart device is as follows: Step S51, the WIFI smart device 13 receives the network distribution broadcast by the network distribution device 12 The SSID of the device 12; step S52, when the WIFI smart device 13 recognizes that the SSID belongs to the network distribution device 12, it sends its own device information to the network distribution device 12.
  • the device information includes the MAC address of the WIFI smart device 13 and the encrypted school Verification code, etc.; the encrypted verification code is preset in the WIFI smart device 13 at the factory; step S53, the WIFI smart device 13 receives the connection success message sent by the network distribution device 12; step S54, the WIFI smart device 13 receives the configuration The network address message sent by the network device 12, so far, the WIFI smart device 13 can connect to the router 11 through the network address to realize networking.
  • FIG. 6 is a schematic diagram of the structure of a preferred network distribution device according to an embodiment of the present invention.
  • the network distribution device 12 includes an acquisition module 61, a broadcast module 62, a storage module 63, a verification module 64, a power supply module 65, and a receiving module 66, and sending module 67.
  • the obtaining module 61 is used to obtain network access rights when the network distribution device 12 is connected to the router 11 by wire, and the router 11 allocates a network address to the network distribution device 12;
  • the broadcasting module 62 is used to broadcast the configuration to the WIFI smart device 13
  • the SSID of the network distribution device 12 is stored in the storage module 63, and is retrieved from the storage module 63 by the broadcasting module 62 when broadcasting is required;
  • the verification module 64 is used for receiving data from the WIFI smart device 13
  • the received device information is verified;
  • the device information includes the MAC address of the WIFI smart device 13, the encrypted check code, etc.; specifically, the check module 64 decodes the encrypted check code to obtain the check code m, and
  • the check code m is compared with the check code n stored in the storage module 63.
  • the verification is successful, and if the verification is inconsistent, the verification fails; the sending module 67 is used to If the verification is successful, a connection success message is sent to the WIFI smart device 13, and the MAC address information of the WIFI smart device 13 is sent to the router 11.
  • the receiving module 66 is used to receive the device information sent by the WIFI smart device 13.
  • the device information includes the MAC address of the WIFI smart device 13, encrypted check code, etc.; it is also used to receive the network allocated by the router 11 to the WIFI smart device 13 address.
  • the sending module 67 is also used to forward the network address assigned by the router 11 to the WIFI smart device 13.
  • the distribution network device 12 further includes a power supply module 65, and the power supply module 65 is used to provide power supply for the modules in the distribution network device 12.
  • FIG. 7 is a schematic structural diagram of a preferred WIFI smart device according to an embodiment of the present invention.
  • the WIFI smart device 13 includes a receiving module 71, a sending module 72, a storage module 73, and a power supply module 74.
  • the receiving module 71 is used to receive the SSID broadcast by the network distribution device 12 and store the SSID in the storage module 73; the sending module 72 is used to obtain the device information of the WIFI smart device 13 from the storage module 73, and the device The information includes MAC address, encrypted check code, etc.; and sends the device information to the network distribution device 12; the receiving module 71 is also used to receive the connection success message sent by the network distribution device 12 and receive the network distribution device 12 The network address message sent to achieve successful networking.
  • the power module 74 in the WIFI smart device 13 is used to provide power supply for the modules in the WIFI smart device.
  • the WIFI smart device 13 in the present invention is preferably smart home devices such as smart lamps, smart air conditioners, and smart refrigerators.

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  • Computer Networks & Wireless Communication (AREA)
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Abstract

本发明中涉及一种配网方法,该配网方法,包括:配网装置连接到路由器,获取网络访问权限;配网装置广播自身SSID;配网装置对接收到的WIFI智能设备的设备信息进行验证;验证成功后,配网装置向WIFI智能设备发送连接成功消息;并向路由器发送WIFI智能设备的MAC地址。本发明中的配网方法,通过增加一个配网设备,使得配网的效率得到了很大的提高,且配网的过程简单可靠,整个配网过程无需用户APP的参与,也无需用户输入密码,另外,本发明的配网方法兼容性强,可适配大多数市面上的路由器。

Description

配网方法、配网装置、WIFI智能设备,以及配网系统 技术领域
本发明属于WIFI通信领域,具体涉及WIFI配网领域。
背景技术
目前市面上已知的路由器种类较多,对WIFI协议的裁剪不同因此导致很多WIFI设备配网异常困难。各个WIFI芯片厂家也都提供了很多快联协议来适配。
随着家庭中连接路由器的WIFI智能设备的增多,例如,智能灯具、冰箱、洗衣机、空调等都可以连接到互联网,用户每次进行WIFI智能设备联网时,都需要通过手机来帮助WIFI智能设备配网,用户的手机先连接上路由器,用户在WIFI智能设备对应的APP上扫描智能设备,在扫描出的设备列表中,点击需要联网的WIFI智能设备,根据界面提示,输入路由器的密码,在密码正确的情况下,WIFI智能设备连接至路由器。
很显然,每次进行WIFI智能设备联网时都需要手动输入路由器的密码,这无疑增加了用户的工作量,配网效率较低。
发明内容
本发明的目的,就是解决现有技术中存在的智能设备配网效率低下的问题,提出了一种新型的配网方法。
本发明的技术方案一:一种配网方法,包括:配网装置连接到路由器,获取网络访问权限;配网装置广播自身SSID;配网装置对接收到的WIFI智能设备的设备信息进行验证;
验证成功后,配网装置向WIFI智能设备发送连接成功消息;并向路由器发送WIFI智能设备的MAC地址。
进一步的,在所述向所述路由器发送所述WIFI智能设备的设备信息之后,所述配网装置接收路由器发送的为WIFI智能设备分配的网络地址;
所述配网装置将所述网络地址转发给所述WIFI智能设备。
进一步的,所述配网装置连接到路由器,包括:所述配网装置通过有线连接到路由器。
进一步的,所述配网装置连接到路由器,获取网络访问权限,包括:所述配网装置连接到路由器,所述配网装置接收所述路由器分配的网络地址,获得网络访问权限。
进一步的,所述WIFI智能设备的设备信息包括,WIFI智能设备的MAC地址,以及经加密的校验码。
进一步的,所述配网装置对接收到的WIFI智能设备的设备信息进行验证,包括:所述配网装置对设备信息中的经加密的校验码进行解码,得到校验码m;配网装置将校验码m和保存在配网装置内的校验码n进行比对;如果比对一致,则验证成功;如果比对不一致,则验证失败。
本发明的技术方案二:一种配网方法,包括:WIFI智能设备接收配网装置广播的SSID;WIFI智能设备向所述配网装置发送自身的设备信息;WIFI智能设备接收配网装置发送的连接成功消息;WIFI智能设备接收配网装置转发的网络地址消息;所述设备信息,包括WIFI智能设备的MAC地址,以及经加密的校验码。
进一步的,所述经加密的校验码预先设置在WIFI智能设备中。
本发明的技术方案三:一种配网装置,包括:获取模块,用于当配网装置连接到路由器时,获取网络访问权限;广播模块,用于广播自身SSID;校验模块,用于对接收到的WIFI智能设备的设备信息进行验证;发送模块,用于在验证成功的情况下,配网装置向WIFI智能设备发送连接成功消息;以及,用于向路由器发送WIFI智能设备的MAC地址。
进一步的,所述配网装置还包括接收模块;所述接收模块,用于接收路由器发送的路由器为WIFI智能设备分配的网络地址;所述发送模块,还用于将 所述网络地址转发给所述WIFI智能设备。
进一步的,所述配网装置连接到路由器,包括:所述配网装置通过有线连接到所述路由器。
进一步的,所述配网装置连接到路由器,获取网络访问权限,包括:所述配网装置连接到路由器,所述配网装置接收所述路由器分配的网络地址,获得网络访问权限。
进一步的,所述WIFI智能设备的设备信息包括,WIFI智能设备的MAC地址,以及经加密的校验码。
进一步的,所述校验模块,用于对接收到的WIFI智能设备的设备信息进行验证,包括:所述校验模块,对设备信息中的经加密的校验码进行解码,得到校验码m;并将校验码m和保存在配网装置内的校验码n进行比对;如果比对一致,则验证成功;如果比对不一致,则验证失败。
本发明的技术方案四:一种WIFI智能设备,包括:接收模块,用于接收配网装置广播的SSID;发送模块,用于向所述配网装置发送自身的设备信息;所述接收模块,还用于接收配网装置发送的连接成功消息;以及,接收配网装置转发的网络地址消息;所述设备信息,包括WIFI智能设备的MAC地址,以及经加密的校验码。
进一步的,所述经加密的校验码预先设置在WIFI智能设备中的存储模块中。
本发明的技术方案五:一种配网系统,包括路由器,前述的配网装置,以及前述的WIFI智能设备。
本发明的有益效果为:本发明中的配网方法,通过增加一个配网设备,使得配网的效率得到了很大的提高,且配网的过程简单可靠,整个配网过程无需用户APP的参与,也无需用户输入密码,另外,本发明的配网方法兼容性强,可适配大多数市面上的路由器。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例优选的WIFI配网系统结构图;
图2为本发明实施例优选的配网装置配网方法一示意图;
图3为本发明实施例优选的配网装置配网方法二示意图;
图4为本发明实施例优选的配网系统的配网方法示意图;
图5为本发明实施例优选的WIFI智能设备的配网方法示意图;
图6为本发明实施例优选的配网装置的结构示意图;
图7为本发明实施例优选的WIFI智能设备的结构示意图。
具体实施方式
为了使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明作进一步地详细描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。
下面结合附图对本发明作进一步说明。
实施例一
图1为本发明实施例优选的WIFI配网系统结构图,如图1所示,WIFI配网系统包括路由器11、配网装置12,以及WIFI智能设备13。其中,配网装置12通过有线连接到路由器11,路由器11为配网装置12分配网络地址,配网装置12获得网络访问权限,配网装置12是否获得网络访问权限,可通过观察配网装置12上的指示灯得知,指示灯为绿色则为获得网络访问权限,指示灯不亮则指示未获得网络访问权限。
图2为本发明实施例优选的配网装置配网方法一示意图,如图2所示,步骤S21,配网装置12通过有线连接到路由器11,路由器11为配网装置12分配网络地址,配网装置12获取网络访问权限;步骤S22,配网装置12通过无线的方式广播自身SSID;步骤S23,配网装置12接收WIFI智能设备13发送的设备信息,配网装置12对该设备信息进行验证;步骤S24,当配网装置12对该设备信息验证成功后,配网装置12向WIFI智能设备13发送连接成功消息,至此,WIFI智能设备13成功连接上配网装置12。
其中,配网装置12对该设备信息进行验证,包括,设备信息中携带有经过加密的校验码,配网装置12对校验码进行解码得到校验码m,并将所述校验码m和自身保存的校验码n进行配对,如果配对一致,则校验成功;如果配对不一致,则校验失败。由于配网装置12和WIFI智能设备13通常为同一厂家生产,因此,经过加密的校验码被预置在WIFI智能设备13内,解码后的校验码和解码方式被预置在配网装置12内。WIFI智能设备13发送的设备信息中,除了包括经过加密的校验码,还包括WIFI智能设备13的MAC地址等信息。
图3为本发明实施例优选的配网装置配网方法二示意图,如图3所示,当WIFI智能设备13成功连接上配网装置12之后,步骤S25,配网装置12向路由器11发送WIFI智能设备的MAC地址信息;步骤S26,配网装置12接收路由器11为WIFI智能设备13分配的网络地址;步骤S27,配网装置12将接收到的WIFI智能设备13的网络地址转发给WIFI智能设备13,至此,配网装置12成功连接上路由器11,并通过路由器11实现连网。
实施例二
图4为本发明实施例优选的配网系统的配网方法示意图,如图4所示,配网方法的流程如下:步骤S41,配网装置12通过有线连接到路由器11,获取网络访问权限;步骤S42,配网装置12向WIFI智能设备13广播自身SSID;步 骤S43,WIFI智能设备13接收到配网装置12的SSID后,向配网装置12发送自身设备信息,WIFI智能设备13发送的自身设备信息包括WIFI智能设备13的MAC地址,以及经过加密的校验码等;步骤S44,配网装置12对WIFI智能设备13发送的自身设备信息进行验证,配网装置12对其中的经过加密的校验码进行解码获得校验码m,并将校验码m和配网装置12中保存的校验码n进行比对,如果相同则验证成功,如果不同,则验证失败;如果验证失败,则配网流程终止,如果验证成功,则进入步骤S45,配网装置12向WIFI智能设备13发送连接成功消息;步骤S46,配网装置12向路由器11发送WIFI智能设备13的MAC地址信息;步骤S47,路由器11根据WIFI智能设备的MAC地址为WIFI智能设备13分配网络地址;步骤S48,路由器11将为WIFI智能设备13分配的网络地址发送给配网装置12;步骤S49,配网装置12将接收到的WIFI智能设备13的网络地址转发给WIFI智能设备13。
实施例三
图5为本发明实施例优选的WIFI智能设备的配网方法示意图,如图5所示,WIFI智能设备的配网流程如下:步骤S51,WIFI智能设备13接收到配网装置12广播的配网装置12自身的SSID;步骤S52,WIFI智能设备13识别出SSID属于配网装置12时,向配网装置12发送自身的设备信息,该设备信息包括WIFI智能设备13的MAC地址、经过加密的校验码,等;经过加密的校验码在出厂时预先设置在WIFI智能设备13内;步骤S53,WIFI智能设备13接收配网装置12发送的连接成功消息;步骤S54,WIFI智能设备13接收配网装置12发送的网络地址消息,至此WIFI智能设备13能够通过该网络地址连接到路由器11,实现联网。
实施例四
图6为本发明实施例优选的配网装置的结构示意图,如图6所示,配网装置12包括获取模块61、广播模块62、存储模块63、校验模块64、电源模块 65、接收模块66,以及发送模块67。
其中,获取模块61,用于当配网装置12通过有线连接到路由器11,路由器11为配网装置12分配网络地址时,获取网络访问权限;广播模块62,用于向WIFI智能设备13广播配网装置12的SSID;配网装置12的SSID保存在存储模块63中,在需要广播时,由广播模块62从存储模块63中调取;校验模块64,用于对从WIFI智能设备13接收到的设备信息进行验证;该设备信息包括WIFI智能设备13的MAC地址、经加密的校验码等;具体的,校验模块64对经加密的校验码进行解码得到校验码m,并将校验码m和保存在存储模块63内的校验码n进行比对,如果两个校验码比对一致则验证成功,如果比对不一致,则验证失败;发送模块67,用于在验证成功的情况下,向WIFI智能设备13发送连接成功消息,以及向路由器11发送WIFI智能设备13的MAC地址信息。
接收模块66,用于接收WIFI智能设备13发送的设备信息,该设备信息包括WIFI智能设备13的MAC地址、经加密的校验码等;还用于接收路由器11为WIFI智能设备13分配的网络地址。
发送模块67,还用于转发路由器11为WIFI智能设备13分配的网络地址。
配网装置12还包括电源模块65,电源模块65用于为配网装置12内的模块提供电力供应。
实施例五
图7为本发明实施例优选的WIFI智能设备的结构示意图,如图7所示,WIFI智能设备13包括,接收模块71、发送模块72、存储模块73,以及电源模块74。
其中,接收模块71,用于接收配网装置12广播的SSID,并将该SSID存储到存储模块73中;发送模块72,用于从存储模块73中获取WIFI智能设备13的设备信息,该设备信息包括MAC地址、经过加密的校验码,等;并将该 设备信息发送给配网装置12;接收模块71,还用于接收配网装置12发送的连接成功消息,以及接收配网装置12发送的网络地址消息,实现成功联网。WIFI智能设备13中的电源模块74,用于为WIFI智能设备内的模块提供电力供应。本发明中的WIFI智能设备13优选为智能灯具、智能空调、智能冰箱等智能家居设备。
尽管已描述了本发明的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例作出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。
显然,本领域的技术人员可以对本发明进行各种改动和变型而不脱离本发明的精神和范围。这样,倘若本发明的这些修改和变型属于本发明权利要求及其等同技术的范围之内,则本发明也意图包含这些改动和变型在内。

Claims (17)

  1. 一种配网方法,包括:
    配网装置连接到路由器,获取网络访问权限;
    配网装置广播自身SSID;
    配网装置对接收到的WIFI智能设备的设备信息进行验证;
    验证成功后,配网装置向WIFI智能设备发送连接成功消息;
    并向路由器发送WIFI智能设备的MAC地址。
  2. 根据权利要求1所述的配网方法,其中:
    在所述向所述路由器发送所述WIFI智能设备的设备信息之后,
    所述配网装置接收路由器发送的为WIFI智能设备分配的网络地址;
    所述配网装置将所述网络地址转发给所述WIFI智能设备。
  3. 根据权利要求2所述的配网方法,其中:
    所述配网装置连接到路由器,包括:
    所述配网装置通过有线连接到路由器。
  4. 根据权利要求3所述的配网方法,其中:
    所述配网装置连接到路由器,获取网络访问权限,包括:
    所述配网装置连接到路由器,所述配网装置接收所述路由器分配的网络地址,获得网络访问权限。
  5. 根据权利要求1所述的配网方法,其中:
    所述WIFI智能设备的设备信息包括,WIFI智能设备的MAC地址,以及经加密的校验码。
  6. 根据权利要求5所述的配网方法,其中:
    所述配网装置对接收到的WIFI智能设备的设备信息进行验证,包括:
    所述配网装置对设备信息中的经加密的校验码进行解码,得到校验码m;
    配网装置将校验码m和保存在配网装置内的校验码n进行比对;
    如果比对一致,则验证成功;
    如果比对不一致,则验证失败。
  7. 一种配网方法,包括:
    WIFI智能设备接收配网装置广播的SSID;
    WIFI智能设备向所述配网装置发送自身的设备信息;
    WIFI智能设备接收配网装置发送的连接成功消息;
    WIFI智能设备接收配网装置转发的网络地址消息;
    所述设备信息,包括WIFI智能设备的MAC地址,以及经加密的校验码。
  8. 根据权利要求7所述的配网方法,其中:
    所述经加密的校验码预先设置在WIFI智能设备中。
  9. 一种配网装置,包括:
    获取模块,用于当配网装置连接到路由器时,获取网络访问权限;
    广播模块,用于广播自身SSID;
    校验模块,用于对接收到的WIFI智能设备的设备信息进行验证;
    发送模块,用于在验证成功的情况下,配网装置向WIFI智能设备发送连接成功消息;
    以及,用于向路由器发送WIFI智能设备的MAC地址。
  10. 根据权利要求9所述的配网装置,其中:
    所述配网装置还包括接收模块;
    所述接收模块,用于接收路由器发送的路由器为WIFI智能设备分配的网络地址;
    所述发送模块,还用于将所述网络地址转发给所述WIFI智能设备。
  11. 根据权利要求10所述的配网装置,其中:
    所述配网装置连接到路由器,包括:
    所述配网装置通过有线连接到所述路由器。
  12. 根据权利要求11所述的配网装置,其中:
    所述配网装置连接到路由器,获取网络访问权限,包括:
    所述配网装置连接到路由器,所述配网装置接收所述路由器分配的网络地址,获得网络访问权限。
  13. 根据权利要求9所述的配网装置,其中:
    所述WIFI智能设备的设备信息包括,WIFI智能设备的MAC地址,以及经加密的校验码。
  14. 根据权利要求13所述的配网装置,其中:
    所述校验模块,用于对接收到的WIFI智能设备的设备信息进行验证,包括:
    所述校验模块,对设备信息中的经加密的校验码进行解码,得到校验码m;
    并将校验码m和保存在配网装置内的校验码n进行比对;
    如果比对一致,则验证成功;
    如果比对不一致,则验证失败。
  15. 一种WIFI智能设备,包括:
    接收模块,用于接收配网装置广播的SSID;
    发送模块,用于向所述配网装置发送自身的设备信息;
    所述接收模块,还用于接收配网装置发送的连接成功消息;
    以及,接收配网装置转发的网络地址消息;
    所述设备信息,包括WIFI智能设备的MAC地址,以及经加密的校验码。
  16. 根据权利要求15所述的WIFI智能设备,其中:
    所述经加密的校验码预先设置在WIFI智能设备中的存储模块中。
  17. 一种配网系统,包括路由器,权利要求9-14中任一项所述的配网装置,以及权利要求15-16中任一项所述的WIFI智能设备。
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