WO2018149054A1 - 一种通过指纹识别调节路由器信号的方法及系统 - Google Patents

一种通过指纹识别调节路由器信号的方法及系统 Download PDF

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Publication number
WO2018149054A1
WO2018149054A1 PCT/CN2017/087047 CN2017087047W WO2018149054A1 WO 2018149054 A1 WO2018149054 A1 WO 2018149054A1 CN 2017087047 W CN2017087047 W CN 2017087047W WO 2018149054 A1 WO2018149054 A1 WO 2018149054A1
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Prior art keywords
router
fingerprint
user
fingerprint information
signal
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PCT/CN2017/087047
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English (en)
French (fr)
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俞天荣
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上海斐讯数据通信技术有限公司
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Publication of WO2018149054A1 publication Critical patent/WO2018149054A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/04TPC
    • H04W52/18TPC being performed according to specific parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/60Router architectures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0861Network architectures or network communication protocols for network security for authentication of entities using biometrical features, e.g. fingerprint, retina-scan

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a method and system for adjusting a router signal by fingerprint recognition.
  • a router is a computer network device that transmits packets to a destination (selecting the transmission path of data) over a network. This process is called routing.
  • a router is a device that connects two or more separate networks. The routing works in the third layer of the OSI model—the network layer, such as the Internet Protocol layer.
  • a router is a device that connects to various local area networks and wide area networks in the Internet. It automatically selects and sets routes according to the channel conditions, and sends signals in order of optimal path. The router is the hub of the Internet "traffic police.” At present, routers have been widely used in various industries, and various grades of products have become the main force for realizing various internal backbone connections, backbone interconnections, and backbone networks and Internet interconnection services.
  • the main difference between a route and a switch is that the switch occurs at the second layer (data link layer) of the OSI reference model, and the route occurs at the third layer, the network layer. This difference determines that routing and switches need to use different control information in the process of moving information, so the way they implement their respective functions is different.
  • the signal of the router refers to the power of the wireless transmitter.
  • the wireless transmitter outputs a radio frequency signal, which is sent to the antenna through a feeder (cable), and is radiated by the antenna in the form of electromagnetic waves.
  • Transmit power refers to the power coming out of the radio unit, excluding the antenna gain.
  • the power of the wireless transmission determines the strength and distance of the transmitted wireless signal. The higher the transmission power, the stronger the signal strength and the relatively long transmission distance.
  • the router signal is getting stronger and stronger, from the original single antenna to the current multi-antenna.
  • the wireless signal transmission distance is long and the coverage area is wide.
  • the solution provides a method for adjusting a router signal, and more particularly to a method for adjusting a router signal by fingerprint identification.
  • the existing routers implement the adjustment of the router signals according to different time periods, but most of them need to set corresponding rules through the router configuration page or the mobile phone APP, which is not convenient to operate.
  • Patent No. CN104363638A provides a method and apparatus for adjusting signal strength of a router.
  • the method includes: monitoring a number of terminals wirelessly connected to the router in a preset time period; determining a signal strength level of the router according to the number of terminals wirelessly connected to the router in a preset time period; The intensity level adjusts the signal strength emitted by the router.
  • the invention needs to complete the adjustment of the signal strength of the router through the router configuration page, which is inconvenient to operate.
  • the technical problem to be solved by the present invention is to provide a method and system for identifying a router signal by using a fingerprint to solve the problem that the prior art needs to adjust a router signal through a router configuration page or a mobile phone APP.
  • a method for adjusting a router signal by fingerprint identification comprising the steps of:
  • the method further includes the steps of:
  • the color displayed by the router indicator is adjusted according to the signal strength.
  • the fingerprint information is identified by a fingerprint identification unit of the router, and specifically includes the following steps:
  • the fingerprint information is identified by the mobile terminal that controls the router, and specifically includes the following steps:
  • the fingerprint information is identified by binding to the router and the cloud database of the mobile terminal, and specifically includes the following steps:
  • a system for adjusting a router signal by fingerprint recognition comprising:
  • An identification module configured to identify fingerprint information of the user
  • the management module is configured to determine whether the fingerprint information is consistent with the pre-stored fingerprint sample, and if yes, adjust the router signal to a corresponding signal strength according to the fingerprint information.
  • the indicator module includes an indicator light for adjusting a color displayed by the router indicator according to the signal strength.
  • the identification module is disposed at the router end, and specifically includes:
  • a first fingerprint identification unit configured to acquire fingerprint information of the user at the router end
  • the first determining unit determines whether there is a pre-stored fingerprint sample, and if so, identifies the fingerprint information of the user; otherwise, prompts the user to enter the fingerprint information.
  • the identification module is disposed on the mobile terminal that controls the router, and specifically includes:
  • a second fingerprint identification unit configured to acquire fingerprint information of the user on the mobile terminal
  • a second determining unit configured to determine whether there is a preset fingerprint sample, and if yes, identify the user's finger Pattern information; otherwise, the user is prompted to enter fingerprint information.
  • the identification module is configured to be bound to the cloud database of the router and the mobile terminal, and specifically includes:
  • a binding unit configured to save the fingerprint information of the user to a cloud database that is bound to the router and the mobile terminal;
  • the third fingerprint identification unit is configured to acquire fingerprint information of the user at the router or the mobile terminal.
  • the invention has the following advantages:
  • FIG. 1 is a flow chart of a method for adjusting a router signal by fingerprint identification according to Embodiment 1.
  • FIG. 2 is a flow chart of a method for adjusting a router signal by fingerprint identification according to Embodiment 2.
  • FIG. 3 is a flow chart of a method for adjusting a router signal by fingerprint identification according to Embodiment 3.
  • FIG. 4 is a flow chart of a method for adjusting a router signal by fingerprint identification according to Embodiment 4.
  • FIG. 5 is a structural diagram of a system for adjusting a router signal by fingerprint identification according to an embodiment of the present invention.
  • This embodiment provides a method for adjusting a router signal by fingerprint identification. As shown in FIG. 1 , the method includes the following steps:
  • S12 Determine whether the fingerprint information of the user is consistent with the pre-stored fingerprint sample; if consistent, adjust the router signal to the corresponding signal strength according to the fingerprint information; otherwise, the signal strength of the router does not change.
  • This embodiment provides a method for adjusting a router signal, and more particularly to a method for adjusting a router signal by fingerprint identification.
  • the existing routers implement the adjustment of the router signals according to different time periods, but most of them need to set corresponding rules through the router configuration page or the mobile phone APP, which is not convenient to operate.
  • the router signal is adjusted by identifying different fingerprints.
  • the fingerprints of each person's fingers are unique. Fingerprints have become synonymous with biometrics because of their lifetime invariance, uniqueness and convenience.
  • the pre-stored fingerprint sample includes a plurality of finger fingerprint samples. Since the fingerprints of each finger are different, the signal strength of the router can be adjusted according to different finger fingerprints. Each fingerprint sample corresponds to a signal strength. If the fingerprint information matches any of the pre-stored fingerprint samples, the router signal is adjusted to a signal corresponding to the fingerprint sample.
  • the pre-stored fingerprint sample is a plurality of finger fingerprint samples, and the router can be adjusted to different signal strengths according to different fingerprint characteristics.
  • the signal strength of the router can be set according to this feature.
  • the signal strength corresponding to different fingerprints can be set according to user customization.
  • the router signal When the thumbprint of the user is recognized, the router signal is adjusted to 100%, that is, the signal is strongest; when the fingerprint of the user's index finger is recognized, the router signal is adjusted to 75%; when the fingerprint of the user's middle finger is recognized, the router signal is adjusted. Up to 50%, that is, medium signal strength; when the user's ring finger fingerprint is recognized, the router signal is adjusted to 25%; when the user's thumbprint fingerprint is recognized, the router signal is adjusted to 0%, that is, the signal is weakest.
  • the user only needs to touch the sensing area according to his own needs, and the router can adjust to the phase.
  • the signal strength should be.
  • the color of the router indicator light is adjusted according to the signal strength. Because the signal of the router is invisible, the indicator light is set on the router to facilitate the user to obtain the current signal strength prompt of the router through different colors of the indicator.
  • the color of the indicator light is the same color and the depth is different. The darker the color, the stronger the signal.
  • the current signal strength can be judged based on the color depth.
  • Users can adjust the signal strength of the router according to their needs. Take five fingerprint samples, the blue light is taken as an example. The lights are divided into: dark blue, sea blue, sky blue, light blue, and blue. Dark blue is the darkest color, the corresponding signal strength is 100%, that is, the signal is the strongest; the signal intensity corresponding to sea blue is 75%, the signal intensity corresponding to sky blue is 50%, and the signal intensity corresponding to light blue is 25%, corresponding to micro blue The signal strength is 0%. The user can judge whether to adjust the signal strength required by the color according to the depth of the color. It is more intuitive and aesthetically pleasing.
  • the embodiment of the invention further provides a system for adjusting a router signal by fingerprint identification, as shown in FIG. 5, comprising:
  • the identification module 51 is configured to identify fingerprint information of the user
  • the management module 52 is configured to determine whether the fingerprint information of the user is consistent with the pre-stored fingerprint sample, and if yes, adjust the router to the corresponding signal strength according to the fingerprint information;
  • the indicator module 53 includes an indicator light for adjusting the color displayed by the router indicator light according to the signal strength.
  • the identification module 51 includes a fingerprint identification unit.
  • the management module 52 includes a storage unit for storing a fingerprint sample of the user, and the pre-stored fingerprint sample includes a plurality of finger fingerprint samples. Since the fingerprints of each finger are different, the signal strength of the router can be adjusted according to different finger fingerprints. Each fingerprint sample stored by the storage unit corresponds to a signal strength. If the fingerprint information of the user matches any one of the fingerprint samples pre-stored by the storage unit, the router signal is adjusted to a signal corresponding to the fingerprint sample.
  • the signal strength corresponding to different fingerprints can be set according to user customization.
  • the router signal is adjusted to 100%, that is, the signal is strongest; when the fingerprint of the user's index finger is recognized, the router signal is adjusted to 75%; when the fingerprint of the user's middle finger is recognized, the router signal is adjusted.
  • the router signal Up to 50%, that is, medium signal strength; when the user's ring finger fingerprint is recognized, the router signal is adjusted to 25%; when the user's thumbprint fingerprint is recognized, the router signal is adjusted to 0%, that is, the signal is weakest. Users only need to touch the sensing area according to their needs, and the router can adjust to the corresponding signal strength.
  • the indication module 53 includes an indicator light. Because the signal of the router is invisible, the indicator light is set on the router to facilitate the user to obtain the current signal strength prompt of the router through different colors of the indicator.
  • the indicator light of the indication module 53 is connected to the management module 52.
  • the adjusted signal strength of the router by the management module 52 can be displayed by the indicator light of the indication module 53.
  • the color of the indicator light is the same color and the depth is different. The darker the color, the stronger the signal.
  • the current signal strength can be judged based on the color depth. Users can adjust the signal strength of the router according to their needs.
  • the management module 52 is provided with five fingerprint samples, and the indicator module 53 is in the blue color as an example.
  • the indicator lights include colors: dark blue, sea blue, sky blue, light blue, and micro blue.
  • the corresponding signal strength is 100%, that is, the signal is the strongest; the signal intensity corresponding to sea blue is 75%, the signal intensity corresponding to sky blue is 50%, and the signal intensity corresponding to light blue is 25%, corresponding to micro blue
  • the signal strength is 0%. The user can judge whether to adjust the signal strength required by the color according to the depth of the color.
  • This embodiment provides a method for adjusting a router signal by fingerprint identification. As shown in FIG. 2, the method includes the following steps:
  • S22 determining whether there is a pre-stored fingerprint sample, and if so, identifying the fingerprint information of the user; otherwise, prompting the user to enter the fingerprint information;
  • S23 Determine whether the fingerprint information is consistent with the pre-stored fingerprint sample; if consistent, adjust the router signal to the corresponding signal strength according to the fingerprint information; otherwise, the signal strength of the router does not change.
  • the router end has a fingerprint identification unit, which does not need to be operated by the mobile terminal.
  • the fingerprint information of the user is identified by the fingerprint identification unit of the router. After obtaining the fingerprint information of the user at the router end, it is determined whether there is a pre-stored fingerprint sample. If yes, the fingerprint information of the user is recognized; otherwise, the signal cannot be adjusted, and the user is prompted to enter the fingerprint information.
  • the fingerprint information is directly recognized by the router, and no other device is needed, and the use is quick and convenient.
  • the embodiment further provides a system for identifying a router signal by using a fingerprint.
  • the identification module 51 is disposed at the router end, and specifically includes:
  • a first fingerprint identification unit configured to acquire fingerprint information of the user at the router end
  • the first determining unit determines whether there is a pre-stored fingerprint sample, and if so, identifies the fingerprint information of the user; otherwise, prompts the user to enter the fingerprint information.
  • the identification module 51 is disposed at the router end, and directly recognizes the fingerprint information on the router end, which facilitates the operation of the user. After the first fingerprint identification unit acquires the fingerprint information of the user at the router end, the first determining unit determines whether there is a pre-stored fingerprint sample. If there is no pre-stored fingerprint sample, the user is prompted to enter the fingerprint information and the first fingerprint identification unit re-acquires the user in the router. Fingerprint information.
  • This embodiment provides a method for adjusting a router signal by fingerprint identification. As shown in FIG. 3, the method includes the following steps:
  • S31 Acquire fingerprint information of the user on the mobile terminal
  • S32 determining whether there is a preset fingerprint sample, and if yes, identifying the fingerprint information of the user; otherwise, prompting the user to enter the fingerprint information;
  • S33 determining whether the fingerprint information is consistent with the preset fingerprint sample. If the fingerprint information is consistent, the instruction corresponding to the fingerprint information is sent to the router end, otherwise, the fingerprint identification is invalid;
  • the router is an ordinary router, does not support fingerprint recognition, and the mobile terminal that controls the router has the function of fingerprint recognition. The router is adjusted by the application of the mobile terminal.
  • the mobile terminal having the fingerprint recognition function acquires the fingerprint information of the user, determines whether there is a preset fingerprint sample, and if so, identifies the fingerprint information of the user; otherwise, prompts the user to enter the fingerprint information, and re-acquires the fingerprint information of the user on the mobile terminal.
  • the instruction corresponding to the fingerprint information is sent to the router end; otherwise, the fingerprint identification is invalid.
  • Each fingerprint sample of the intelligent terminal corresponds to an instruction.
  • the user can customize the instructions corresponding to the pre-stored fingerprint information, and the operation of the mobile terminal can reduce the pressure on the router.
  • the embodiment further provides a system for adjusting a router signal by fingerprint identification. As shown in FIG. 5, the difference from the first embodiment and the second embodiment is that
  • the identification module 51 is disposed on the mobile terminal of the control router, and specifically includes:
  • a second fingerprint identification unit configured to acquire fingerprint information of the user on the mobile terminal
  • the second determining unit is configured to determine whether there is a preset fingerprint sample, and if yes, identify the fingerprint information of the user; otherwise, prompt the user to enter the fingerprint information.
  • the router does not support fingerprint recognition
  • the mobile terminal that controls the router has the function of fingerprint recognition.
  • the second fingerprint identifying unit acquires the fingerprint information of the user in the mobile terminal, and the second determining unit determines whether there is a preset fingerprint sample, and if yes, identifies the fingerprint information of the user; otherwise, prompts the user to enter the fingerprint information, and reacquires the user in the mobile terminal. Fingerprint information.
  • the management module 52 further includes a sending unit, configured to send an instruction corresponding to the fingerprint information to the router end. Determine whether the fingerprint information is consistent with the fingerprint sample preset by the smart terminal. If they are consistent, send a fingerprint letter. The instruction corresponding to the information is sent to the router. Otherwise, the fingerprint recognition is invalid.
  • a sending unit configured to send an instruction corresponding to the fingerprint information to the router end. Determine whether the fingerprint information is consistent with the fingerprint sample preset by the smart terminal. If they are consistent, send a fingerprint letter. The instruction corresponding to the information is sent to the router. Otherwise, the fingerprint recognition is invalid.
  • Each fingerprint sample of the intelligent terminal corresponds to an instruction. The user can customize the instructions corresponding to the pre-stored fingerprint information.
  • This embodiment provides a method for adjusting a router signal by fingerprint identification. As shown in FIG. 4, the method includes the following steps:
  • S42 Acquire fingerprint information of the user on the router or the mobile terminal
  • S43 determining whether the fingerprint information matches the cloud database information. If the matching is successful, adjusting the router to the corresponding signal strength according to the fingerprint information; otherwise, the signal strength of the router is unchanged;
  • a cloud database is a database that is optimized or deployed into a virtual computing environment. Benefits such as pay-as-you-go, on-demand scaling, high availability, and storage consolidation.
  • the cloud database has a large capacity, binds the router end and the mobile terminal, and saves the user's fingerprint information to the cloud database of the binding router and the mobile terminal, thereby reducing the pressure on the router end and the mobile terminal.
  • the fingerprint information is stored in the cloud database, and the router and the mobile terminal can obtain the fingerprint information of the user, which is not limited to one type of device.
  • This embodiment further provides a system for adjusting a router signal by fingerprint identification. As shown in FIG. 5, the difference from Embodiments 1, 2, and 3 is that
  • the identification module 51 is disposed in the cloud database of the binding router and the mobile terminal, and specifically includes:
  • a binding unit configured to save the fingerprint information of the user to a cloud database binding the router and the mobile terminal;
  • the third fingerprint identification unit is configured to acquire fingerprint information of the user on the router or the mobile terminal.
  • the router end and the mobile terminal are bound and the fingerprint information of the user is saved to the cloud database of the binding router and the mobile terminal, thereby reducing the pressure on the router end and the mobile terminal. And the fingerprint information of the user can be obtained at the router end, and the fingerprint information of the user can be obtained at the mobile terminal. Not only Limited to one device.
  • the management module 52 is configured to determine whether the fingerprint information matches the cloud database information. If the matching is successful, the router adjusts the corresponding signal strength according to the fingerprint information; otherwise, the signal strength of the router does not change.

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Abstract

本发明公开了一种通过指纹识别调节路由器信号的方法及系统,用以解决现有技术需要通过路由器配置页或者手机APP来调节路由器信号的问题。该方法包括:识别用户的指纹信息;判断所述指纹信息是否与预存的指纹样本一致;若一致,根据所述指纹信息将路由器信号调节到相应的信号强度。采用本发明,充分利用已有的成熟指纹技术,使用方便实用性高;将路由器与指纹结合更增加了路由器的安全性。

Description

一种通过指纹识别调节路由器信号的方法及系统 技术领域
本发明涉及无线通信技术领域,尤其涉及一种通过指纹识别调节路由器信号的方法及系统。
背景技术
路由器是一种计算机网络设备,它能将数据包通过一个个网络传送至目的地(选择数据的传输路径),这个过程称为路由。路由器就是连接两个以上各别网络的设备,路由工作在OSI模型的第三层——即网络层,例如网际协议层。路由器是连接因特网中各局域网、广域网的设备,它会根据信道的情况自动选择和设定路由,以最佳路径,按前后顺序发送信号。路由器是互联网络的枢纽“交通警察”。目前路由器已经广泛应用于各行各业,各种不同档次的产品已成为实现各种骨干网内部连接、骨干网间互联和骨干网与互联网互联互通业务的主力军。路由和交换机之间的主要区别就是交换机发生在OSI参考模型第二层(数据链路层),而路由发生在第三层,即网络层。这一区别决定了路由和交换机在移动信息的过程中需使用不同的控制信息,所以两者实现各自功能的方式是不同的。
路由器的信号即路由器的发射功率指的是无线发射机的功率。无线发射机输出射频信号,通过馈线(电缆)输送到天线,由天线以电磁波形式辐射出去。发射功率指的是射频单元出来的功率,不包括天线增益。无线发射的功率决定着发射出去的无线信号的强度和距离。发射功率越大,信号强度越强,同时发射距离也相对较远。
随着技术的发展,路由器信号越做越强,从原来的单天线到现在的多天线, 实现了无线信号传输距离远,覆盖面积广的性能。但是,这也给一部分人带来了困扰。有人觉得无线信号越强,辐射越大,对人体健康不好,有人觉得信号太强,在家的范围外也能被人搜到,增加了被蹭网的风险。有人觉得晚上休息时,不需要这么强的信号,徒增功耗。针对以上种种问题,本方案提供了一种可调节路由器信号的方法,尤其涉及一种通过指纹识别调节路由器信号的方法。现有的路由器实现了根据不同时间段来调节路由器信号,但是大都是需要通过路由器配置页或者手机APP来设置相应规则,操作起来不太方便。
专利号为CN104363638A的专利提供了一种路由器信号强度调节方法及装置。所述方法包括:监测预设时间段内与所述路由器无线连接的终端数量;根据预设时间段内与所述路由器无线连接的终端数量,确定所述路由器的信号强度等级;根据所述信号强度等级调节所述路由器发射的信号强度。该发明需要通过路由器配置页来完成路由器信号强度的调节,操作不便利。
发明内容
本发明要解决的技术问题目的在于提供一种通过指纹识别路由器信号的方法及系统,用以解决现有技术需要通过路由器配置页或者手机APP来调节路由器信号的问题。
为了实现上述目的,本发明采用的技术方案为:
一种通过指纹识别调节路由器信号的方法,包括步骤:
识别用户的指纹信息;
判断所述指纹信息是否与预存的指纹样本一致;若一致,根据所述指纹信息将路由器信号调节到相应的信号强度。
进一步地,还包括步骤:
根据所述信号强度调节所述路由器指示灯显示的颜色。
进一步地,所述指纹信息通过路由器的指纹识别单元识别,具体包括步骤:
获取用户在所述路由器端的指纹信息;
判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
进一步地,所述指纹信息通过控制所述路由器的移动终端识别,具体包括步骤:
获取用户在所述移动终端的指纹信息;
判断是否存在预设的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
进一步地,所述指纹信息通过绑定所述路由器与所述移动终端的云端数据库识别,具体包括步骤:
将用户的指纹信息保存至绑定所述路由器与所述的移动终端的云端数据库;
获取用户在所述路由器或所述移动终端的指纹信息。
一种通过指纹识别调节路由器信号的系统,包括:
识别模块,用于识别用户的指纹信息;
管理模块,用于判断所述指纹信息是否与预存的指纹样本一致,若一致,根据所述指纹信息将路由器信号调节到相应的信号强度。
进一步地,还包括:
指示模块,包括指示灯,用于根据所述信号强度调节所述路由器指示灯显示的颜色。
进一步地,所述识别模块设于路由器端,具体包括:
第一指纹识别单元,用于获取用户在所述路由器端的指纹信息;
第一判断单元,判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
进一步地,所述识别模块设于控制所述路由器的移动终端,具体包括:
第二指纹识别单元,用于获取用户在所述移动终端的指纹信息;
第二判断单元,用于判断是否存在预设的指纹样本,若是,识别用户的指 纹信息;否则,提示用户录入指纹信息。
进一步地,所述识别模块设于绑定所述路由器与所述移动终端的云端数据库,具体包括:
绑定单元,用于将用户的指纹信息保存至绑定所述路由器与所述的移动终端的云端数据库;
第三指纹识别单元,用于获取用户在所述路由器或所述移动终端的指纹信息。
本发明与现有技术相比,有如下优点:
1.易于部署,充分利用已有的成熟指纹技术;
2.易于使用,用户使用方便实用性高;
3.增加安全性,将路由器与指纹结合起来更增加了路由器的安全性。
附图说明
图1是实施例一提供的一种通过指纹识别调节路由器信号的方法流程图。
图2是实施例二提供的一种通过指纹识别调节路由器信号的方法流程图。
图3是实施例三提供的一种通过指纹识别调节路由器信号的方法流程图。
图4是实施例四提供的一种通过指纹识别调节路由器信号的方法流程图。
图5是本发明实施例提供的一种通过指纹识别调节路由器信号的系统结构图。
具体实施方式
以下是本发明的具体实施例并结合附图,对本发明的技术方案作进一步的描述,但本发明并不限于这些实施例。
实施例一
本实施例提供了一种通过指纹识别调节路由器信号的方法,如图1所示,包括步骤:
S11:识别用户的指纹信息;
S12:判断用户的指纹信息是否与预存的指纹样本一致;若一致,根据指纹信息将路由器信号调节到相应的信号强度;否则,路由器的信号强度不变。
S13:根据信号强度调节路由器指示灯显示的颜色。
本实施例提供了一种可调节路由器信号的方法,尤其涉及一种通过指纹识别调节路由器信号的方法。现有的路由器实现了根据不同时间段来调节路由器信号,但是大都是需要通过路由器配置页或者手机APP来设置相应规则,操作起来不太方便。
本实施例中,通过识别不同的指纹来调节路由器信号。每个人手指的指纹都是独一无二的,指纹,由于其具有终身不变性、唯一性和方便性,已几乎成为生物特征识别的代名词。
本实施例中,预存的指纹样本包括多个手指指纹样本。由于每个手指的指纹不相同,可以根据不同的手指指纹调节路由器的信号强度。每个指纹样本对应一个信号强度,若所述指纹信息与所述预存的任意一个指纹样本匹配,则路由器信号调节到该指纹样本对应的信号。预存的指纹样本为多个手指指纹样本,根据不同的指纹特征可将路由器调节到不同的信号强度。
每个人都有十根手指,而且指纹各不相同。可以根据该特征设置路由器的信号强度。可以根据使用的指纹识别数量来确定指纹样本的数量,但样本数量大于一且小于等于十。以设置五个指纹样本为例,如:定义大拇指=100%(信号最强),食指=75%,中指=50%,无名指=25%,小拇指=0%(信号最弱)。除此之外,还可以根据用户自定义,设置不同的指纹对应的信号强度。当识别到用户的大拇指指纹时,路由器信号调节到100%,即信号最强;当识别到用户的食指指纹时,路由器信号调节到75%;当识别到用户的中指指纹时,路由器信号调节到50%,即中等信号强度;当识别到用户的无名指指纹时,路由器信号调节到25%;当识别到用户的小拇指指纹时,路由器信号调节到0%,即信号最弱。用户只需根据自己需求将相应的手指触摸感应区域,路由器可调节到相 应的信号强度。
本实施例中,根据信号强度调节路由器指示灯的颜色。因为路由器的信号是看不见摸不着的东西,在路由器上设置指示灯,方便用户通过指示灯的不同颜色获取路由器当前的信号强度提示。
指示灯的颜色为同一色系且深浅不同,颜色越深代表信号越强。根据颜色深浅可以判断出当前信号强度的大小。用户可根据自己的需求调节路由器的信号强度。以五个指纹样本,蓝色系指示灯为例,指示灯分为:深蓝,海蓝,天蓝,淡蓝,微蓝。深蓝为颜色最深,对应的信号强度为100%,即信号最强;海蓝对应的信号强度为75%,天蓝对应的信号强度为50%,淡蓝对应的信号强度为25%,微蓝对应的信号强度为0%。用户可以根据颜色的深浅来判断是否调节到自己需要的信号强度。更加直观明了,并且富于美感。
本发明实施例还提供了一种通过指纹识别调节路由器信号的系统,如图5所示,包括:
识别模块51,用于识别用户的指纹信息;
管理模块52,用于判断用户的指纹信息是否与预存的指纹样本一致,若一致,根据指纹信息将路由器调节到相应的信号强度;
指示模块53,包括指示灯,用于根据信号强度调节路由器指示灯显示的颜色。
本实施例中,识别模块51包括指纹识别单元,
本实施例中,管理模块52包括存储单元,用于存储用户的指纹样本,所述预存的指纹样本包括多个手指指纹样本。由于每个手指的指纹不相同,可以根据不同的手指指纹调节路由器的信号强度。存储单元存储的每个指纹样本对应一个信号强度,若所述用户的指纹信息与所述存储单元预存的任意一个指纹样本匹配,则路由器信号调节到该指纹样本对应的信号。
以存储单元预存五个样本为例,如:存储单元设置为大拇指=100%(信号最强),食指=75%,中指=50%,无名指=25%,小拇指=0%(信号最弱)。除此 之外,还可以根据用户自定义,设置不同的指纹对应的信号强度。当识别到用户的大拇指指纹时,路由器信号调节到100%,即信号最强;当识别到用户的食指指纹时,路由器信号调节到75%;当识别到用户的中指指纹时,路由器信号调节到50%,即中等信号强度;当识别到用户的无名指指纹时,路由器信号调节到25%;当识别到用户的小拇指指纹时,路由器信号调节到0%,即信号最弱。用户只需根据自己需求将相应的手指触摸感应区域,路由器可调节到相应的信号强度。
本实施例中,指示模块53包括指示灯。因为路由器的信号是看不见摸不着的东西,在路由器上设置指示灯,方便用户通过指示灯的不同颜色获取路由器当前的信号强度提示。
指示模块53的指示灯与管理模块52连接,管理模块52调节后的路由器信号强度可以由指示模块53的指示灯显示。其中,指示灯的颜色为同一色系且深浅不同,颜色越深代表信号越强。根据颜色深浅可以判断出当前信号强度的大小。用户可根据自己的需求调节路由器的信号强度。以管理模块52设有五个指纹样本,指示模块53指示灯为蓝色系为例,指示灯包括颜色:深蓝,海蓝,天蓝,淡蓝,微蓝。深蓝为颜色最深,对应的信号强度为100%,即信号最强;海蓝对应的信号强度为75%,天蓝对应的信号强度为50%,淡蓝对应的信号强度为25%,微蓝对应的信号强度为0%。用户可以根据颜色的深浅来判断是否调节到自己需要的信号强度。
实施例二
本实施例提供了一种通过指纹识别调节路由器信号的方法,如图2所示,包括步骤:
S21:获取用户在路由器端的指纹信息;
S22:判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息;
S23:判断指纹信息是否与预存的指纹样本一致;若一致,根据指纹信息将路由器信号调节到相应的信号强度;否则,路由器的信号强度不变。
S24:根据信号强度调节路由器指示灯显示的颜色。
本实施例中,路由器端具有指纹识别单元,无需通过移动终端操作。
用户的指纹信息通过路由器的指纹识别单元识别,获取用户在路由器端的指纹信息后,判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,无法调节信号,提示用户录入指纹信息。直接通过路由器识别指纹信息,无需其他设备,使用快捷方便。
本实施例还提供了一种通过指纹识别路由器信号的系统,如图5所示,与实施例一不同之处在于,识别模块51设于路由器端,具体包括:
第一指纹识别单元,用于获取用户在路由器端的指纹信息;
第一判断单元,判断是否存在预存的指纹样本,若是,识别用户的指纹信息,否则,提示用户录入指纹信息。
本实施例中,识别模块51设于路由器端,直接在路由器端识别指纹信息,方便了用户的操作。第一指纹识别单元获取用户在路由器端的指纹信息后,第一判断单元判断是否存在预存的指纹样本,若没有预存的指纹样本,则提示用户录入指纹信息并且第一指纹识别单元重新获取用户在路由器端的指纹信息。
实施例三
本实施例提供了一种通过指纹识别调节路由器信号的方法,如图3所示,包括步骤:
S31:获取用户在移动终端的指纹信息;
S32:判断是否存在预设的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息;
S33:判断指纹信息是否与预设的指纹样本一致,若一致,发送指纹信息对应的指令至路由器端,否则,指纹识别无效;
S34:根据移动终端发送的指纹信息将路由器调节到相应的信号强度;
S35:根据信号强度调节路由器指示灯显示的颜色。
本实施例中,路由器为普通路由器,不支持指纹识别,控制路由器的移动终端具有指纹识别的功能。通过移动终端的应用程序对路由器进行调节。
具有指纹识别功能的移动终端获取用户的指纹信息,判断是否存在预设的指纹样本,若存在,识别用户的指纹信息;否则,提示用户录入指纹信息,重新获取用户在移动终端的指纹信息。
本实施例中,判断指纹信息与智能终端预设的指纹样本是否一致,若一致,发送指纹信息对应的指令至路由器端,否则,指纹识别无效。智能终端的每一个指纹样本对应一个指令。如:设置大拇指=100%(信号最强),食指=75%,中指=50%,无名指=25%,小拇指=0%(信号最弱),当智能终端识别到食指指纹信息,对应的指令为调节路由器信号至75%,将调节至75%的指令发送至路由器端。用户可自定义预存的指纹信息对应的指令,在移动终端操作,可减轻路由器的压力。
本实施例还提供了一种通过指纹识别调节路由器信号的系统,如图5所示,与实施例一、二不同之处在于,
识别模块51设于控制路由器的移动终端,具体包括:
第二指纹识别单元,用于获取用户在移动终端的指纹信息;
第二判断单元,用于判断是否存在预设的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
本实施例中,路由器不支持指纹识别,控制路由器的移动终端具有指纹识别的功能。第二指纹识别单元获取用户在移动终端的指纹信息,第二判断单元判断是否存在预设的指纹样本,若存在,识别用户的指纹信息;否则,提示用户录入指纹信息,重新获取用户在移动终端的指纹信息。
管理模块52还包括发送单元,用于将指纹信息对应的指令发送至路由器端。判断指纹信息与智能终端预设的指纹样本是否一致,若一致,发送指纹信 息对应的指令至路由器端,否则,指纹识别无效。智能终端的每一个指纹样本对应一个指令。用户可自定义预存的指纹信息对应的指令。
实施例四
本实施例提供了一种通过指纹识别调节路由器信号的方法,如图4所示,包括步骤:
S41:将用户的指纹信息保存至绑定路由器与移动终端的云端数据库;
S42:获取用户在路由器或移动终端的指纹信息;
S43:判断指纹信息与云端数据库信息是否匹配,若匹配成功,根据指纹信息将路由器调节到相应的信号强度;否则,路由器的信号强度不变;
S44:根据信号强度调节路由器指示灯显示的颜色。
云端数据库是指被优化或部署到一个虚拟计算环境中的数据库。可以实现按需付费、按需扩展、高可用性以及存储整合等优势。云端数据库容量大,将路由器端及移动终端绑定并且将用户的指纹信息保存至绑定路由器与移动终端的云端数据库中,减少了路由器端及移动终端的压力。将指纹信息保存在云端数据库中,路由器端及移动终端都可以获取用户的指纹信息,不局限于一种设备。
本实施例还提供了一种通过指纹识别调节路由器信号的系统,如图5所示,与实施例一、二、三不同之处在于,
识别模块51设于绑定路由器与移动终端的云端数据库,具体包括:
绑定单元,用于将用户的指纹信息保存至绑定路由器与移动终端的云端数据库;
第三指纹识别单元,用于获取用户在路由器或移动终端的指纹信息。
将路由器端及移动终端绑定并且将用户的指纹信息保存至绑定路由器与移动终端的云端数据库中,减少了路由器端及移动终端的压力。并且既可以在路由器端获取用户的指纹信息,又可以在移动终端获取用户的指纹信息。不仅 仅局限于一种设备。
管理模块52用于判断判断指纹信息与云端数据库信息是否匹配,若匹配成功,根据指纹信息将路由器调节到相应的信号强度;否则,路由器的信号强度不变。
本文中所描述的具体实施例仅仅是对本发明精神作举例说明。本发明所属技术领域的技术人员可以对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,但并不会偏离本发明的精神或者超越所附权利要求书所定义的范围。

Claims (10)

  1. 一种通过指纹识别调节路由器信号的方法,其特征在于,包括步骤:
    识别用户的指纹信息;
    判断所述指纹信息是否与预存的指纹样本一致;若一致,根据所述指纹信息将路由器信号调节到相应的信号强度。
  2. 根据权利要求1所述的一种通过指纹识别调节路由器信号的方法,其特征在于,还包括步骤:
    根据所述信号强度调节所述路由器指示灯显示的颜色。
  3. 根据权利要求1所述的一种通过指纹识别调节路由器信号的方法,其特征在于,所述指纹信息通过路由器的指纹识别单元识别,具体包括步骤:
    获取用户在所述路由器端的指纹信息;
    判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
  4. 根据权利要求1所述的一种通过指纹识别路由器信号的方法,其特征在于,所述指纹信息通过控制所述路由器的移动终端识别,具体包括步骤:
    获取用户在所述移动终端的指纹信息;
    判断是否存在预设的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
  5. 根据权利要求1所述的一种通过指纹识别路由器信号的方法,其特征在于,所述指纹信息通过绑定所述路由器与所述移动终端的云端数据库识别,具体包括步骤:
    将用户的指纹信息保存至绑定所述路由器与所述的移动终端的云端数据库;
    获取用户在所述路由器或所述移动终端的指纹信息。
  6. 一种通过指纹识别调节路由器信号的系统,其特征在于,包括:
    识别模块,用于识别用户的指纹信息;
    管理模块,用于判断所述指纹信息是否与预存的指纹样本一致,若一致,根据所述指纹信息将路由器信号调节到相应的信号强度。
  7. 根据权利要求6所述的一种通过指纹识别调节路由器信号的系统,其特征在于,还包括:
    指示模块,包括指示灯,用于根据所述信号强度调节所述路由器指示灯显示的颜色。
  8. 根据权利要求6所述的一种通过指纹识别调节路由器信号的系统,其特征在于,所述识别模块设于路由器端,具体包括:
    第一指纹识别单元,用于获取用户在所述路由器端的指纹信息;
    第一判断单元,判断是否存在预存的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
  9. 根据权利要求6所述的一种通过指纹识别调节路由器信号的系统,其特征在于,所述识别模块设于控制所述路由器的移动终端,具体包括:
    第二指纹识别单元,用于获取用户在所述移动终端的指纹信息;
    第二判断单元,用于判断是否存在预设的指纹样本,若是,识别用户的指纹信息;否则,提示用户录入指纹信息。
  10. 根据权利要求6所述的一种通过指纹识别调节路由器信号的系统,其特征在于,所述识别模块设于绑定所述路由器与所述移动终端的云端数据库,具体包括:
    绑定单元,用于将用户的指纹信息保存至绑定所述路由器与所述的移动终端的云端数据库;
    第三指纹识别单元,用于获取用户在所述路由器或所述移动终端的指纹信息。
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