WO2015188580A1 - 一种流量控制方法及装置 - Google Patents

一种流量控制方法及装置 Download PDF

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Publication number
WO2015188580A1
WO2015188580A1 PCT/CN2014/090474 CN2014090474W WO2015188580A1 WO 2015188580 A1 WO2015188580 A1 WO 2015188580A1 CN 2014090474 W CN2014090474 W CN 2014090474W WO 2015188580 A1 WO2015188580 A1 WO 2015188580A1
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Prior art keywords
traffic
card
mobile phone
phone number
flow
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PCT/CN2014/090474
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English (en)
French (fr)
Inventor
丁岩
郭磊
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中兴通讯股份有限公司
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Publication of WO2015188580A1 publication Critical patent/WO2015188580A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/24Accounting or billing

Definitions

  • the present invention relates to the field of mobile internet communication and telecommunication communication technologies, and in particular, to a flow control method and device.
  • the present invention provides a flow control method and device for solving the above technical problem.
  • a flow control method includes the following steps:
  • the data traffic in the traffic card is used as the traffic of the mobile phone number bound to the traffic card.
  • the step of binding the traffic card to one or more mobile phone numbers based on the traffic card subscription request sent by the e-commerce platform includes:
  • the method further includes:
  • All or part of the data traffic in the traffic card is dispatched to other mobile phone numbers except the mobile phone number bound to the traffic card.
  • the step of distributing some or all of the data traffic in the traffic card to other mobile phone numbers except the mobile phone number bound to the traffic card includes:
  • the data traffic distribution message is cached until the APP corresponding to the mobile phone number is sent online.
  • the method further includes:
  • the APP corresponding to the mobile phone number is to be distributed, and the data traffic is distributed when the following conditions are met: the data traffic that is distributed is not received, the data traffic collection time is not exceeded, and the mobile phone number to be distributed has been compared with the distributed data traffic. Bind.
  • distributing data traffic in the traffic card to other mobile phone numbers is implemented by at least one of the following methods:
  • SMS online information exchange platform.
  • the method further includes:
  • the receiving control gateway CGW sends a traffic usage notification of the traffic card through the e-commerce platform and the SDK.
  • a flow control device includes a flow card binding module and a flow control module, wherein:
  • the traffic card binding module is configured to: bind the traffic card to one or more mobile phone numbers based on a traffic card subscription request sent by the e-commerce platform;
  • the flow control module is configured to: use the data traffic in the traffic card as the Internet traffic of the mobile phone number bound to the traffic card.
  • the traffic card binding module includes a traffic card information acquiring unit and a binding unit, where:
  • the flow card information obtaining unit is configured to: subscribe the flow card through the e-commerce platform, and obtain a card number and a password;
  • the binding unit is configured to: bind the traffic card to the one or more mobile phone numbers by inputting the card number, password, and one or more mobile phone numbers through the e-commerce platform.
  • the device further includes a traffic distribution module, wherein:
  • the traffic distribution module is configured to: distribute some or all of the data traffic in the traffic card to other mobile phone numbers except the mobile phone number bound to the traffic card.
  • the traffic distribution module includes an APP determining unit, an online processing unit, and an offline processing unit, where:
  • the APP determining unit is configured to: determine whether the APP corresponding to the mobile phone number is to be sent online;
  • the online processing unit is configured to: when the judgment result of the APP determining unit is online, send a data traffic distribution message to the APP corresponding to the mobile phone number to be dispatched; after receiving the response message, the part of the traffic card is Or all data traffic, distributed to the mobile phone number to be dispatched;
  • the offline processing unit is configured to: when the judgment result of the APP determining unit is offline, buffer the data traffic distribution message until the APP corresponding to the mobile phone number is to be sent online.
  • the device further includes a traffic usage notification module, where:
  • the traffic usage notification module is configured to: receive, by the control gateway CGW, the traffic usage notification of the traffic card sent by the e-commerce platform and the SDK.
  • a computer program comprising program instructions that, when executed by a flow control device, cause the flow control device to perform any of the flow control methods described above.
  • a traffic card (for example, a traffic card of 300 cards) is a new form of prepaid card generated in response to the requirements of the LTE network.
  • the feature is that after the user binds this type of card, the user can select the traffic in the card after the Internet access. Within the traffic range, no additional charges are required, and the traffic can be split into multiple bundles for other people.
  • FIG. 1 is a flow chart of a flow control method according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a flow card ordering process according to an embodiment of the present invention.
  • FIG. 3 is a flowchart of traffic distribution according to an embodiment of the present invention.
  • FIG. 4 is a flow chart of receiving a traffic red envelope according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a flow card usage notification according to an embodiment of the present invention.
  • Figure 6 is a block diagram showing the structure of a flow control device according to an embodiment of the present invention.
  • the embodiment of the present invention provides a flow control method and device.
  • the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
  • FIG. 1 is a flowchart of a flow control method according to an embodiment of the present invention. As shown in FIG. 1, the method includes the following steps (steps). S102-Step S104):
  • Step S102 binding the traffic card to one or more mobile phone numbers based on a traffic card subscription request sent by the user through the e-commerce platform.
  • This step can be implemented by the following optional implementation method: ordering the flow card through the e-commerce platform, obtaining the card number and password; inputting the card number, password and one or more mobile phone numbers through the e-commerce platform, and the flow card and one or more mobile phone numbers Bind.
  • Step S104 using the data traffic in the traffic card as the Internet traffic of the mobile phone number bound to the traffic card.
  • the problem that the traffic management is more important in the related art without the better implementation technical solution is solved.
  • the user end binds the traffic card, the user can select the traffic in the card in the traffic range. No additional fees are required, and traffic can be split into multiple bundles for other people.
  • FIG. 2 is a schematic diagram of a flow card ordering process according to an embodiment of the present invention. As shown in FIG. 2, the process includes the following steps:
  • Step 1 300 business management center card, and then issue a flow card to the e-commerce sales platform.
  • Step 2 The personal PORTAL (E-commerce portal)/APP applies to the 300 service management center for 300 card binding/unbinding/inquiring operations; 300 service management center applies for the binding number to the 300 service gateway to open/cancel 300 packages/balance Query and other operations; the 300 service gateway and the PCRF (Policy and Charging Rule Function)/SRP (Subscription Profile Repository) perform the success/failure message interaction, and through the 300 service gateway, 300 Business Management Center, displaying success/failure messages on the personal PDRTAL/APP.
  • PCRF Policy and Charging Rule Function
  • SRP Subscribescription Profile Repository
  • Step 3 The user accesses the Internet, and the GGSN (Gateway GPRS Support Node)/PGW (Packet Data Network Gateway) requests the user policy from the PCRF/SPR, and the PCRF/SPR indicates to the GGSW/PGW to use the 300 package.
  • Strategy including business ID, RG, etc.
  • the platform adopts APP/SDK mode.
  • APP/SDK mode During the cooperation between operators and OTT, the interaction between operators and OTT users is increased, and the mobile Internet channel is expanded.
  • the user After purchasing the card, the user obtains a card number and associated password.
  • the e-commerce platform after the user inputs the mobile phone number, card number, and password, the user can bind, and after binding, the user's traffic through the mobile phone will be deducted from this card.
  • the same card can be bound to multiple mobile phone numbers at the same time, thus providing these mobile phone users with the traffic required for Internet access. Different mobile phones can also bind multiple cards at the same time, but only use the traffic in one card at the same time. Users can also redistribute the traffic they have purchased to someone or a group of people. Red envelope channels include WeChat platform, SMS and so on.
  • the method further includes: distributing some or all data traffic in the traffic card to other mobile phone numbers.
  • the method further includes: distributing some or all data traffic in the traffic card to other mobile phone numbers.
  • Some data traffic in the card is distributed to the friend's mobile phone number (not previously bound) in the form of a red envelope. After sending it, the friend will be notified by SMS, and then his friend can log in to the APP to receive the traffic red envelope. When the user receives the mobile phone number of the user A, it will be bound to the red envelope. If the binding is successful, the friend can use the red envelope.
  • FIG. 3 is a flow distribution flowchart according to an embodiment of the present invention. As shown in FIG. 3, the flow includes the following steps:
  • step S302 the user selects a sending object (such as a friend) of the traffic red packet.
  • Step S304 it is determined whether the sending object is an APP user; if yes, step S306 is performed, and if no, step S314 is performed.
  • step S306 it is determined whether the sending target APP is online. If it is online, step S312 is performed. If it is offline, step S308 is performed.
  • Step S308 buffering a delivery notification message of the traffic red packet.
  • step S310 it is monitored whether the user is online. If the line is online, step S312 is performed. If the line is not online, step S308 is performed.
  • step S312 the app message is pushed. This message is used to notify the delivery traffic red envelope. The process ends.
  • Step S314 sending a red envelope page link short message to the sending object (such as a friend).
  • the process ends.
  • the traffic in the traffic card can be given to one or more objects, and the object can be a friend, or can be given to a non-friend by binding the mobile phone number. Thereby realizing the effective use of traffic and improving the user experience.
  • the embodiment provides an optional implementation manner, that is, the delivery of some or all of the data traffic in the traffic card to other mobile phone numbers may be implemented by the following steps: determining whether the APP corresponding to the mobile phone number is to be online; If online, send a data traffic distribution message to the APP corresponding to the mobile phone number to be dispatched; after receiving the response message, distribute some or all of the data traffic in the traffic card to the mobile phone number to be dispatched; if not online, cache the data The traffic is distributed until the APP corresponding to the mobile phone number is sent online.
  • SMS Distribute the data traffic in the traffic card to other mobile phone numbers by at least one of the following methods: SMS, online information exchange platform.
  • the online information exchange platform can be WeChat, Fetion, and Easy QQ.
  • FIG. 4 is a flow chart of receiving a traffic red envelope according to an embodiment of the present invention. As shown in FIG. 4, the process includes the following steps:
  • step S402 the user (ie, the recipient of the traffic red envelope) clicks on the short message message link.
  • Step S404 entering the receiving red envelope app interface.
  • step S406 it is determined whether the person has received the red envelope. If yes, step S408 is performed, and if no, step S410 is performed.
  • step S408 the user is prompted to receive a red envelope.
  • step S410 it is determined whether the red envelope has been received. If yes, step S412 is performed, and if no, step S414 is performed.
  • step S412 the red envelope has been received by others.
  • step S414 it is determined whether the red envelope has expired. If yes, step S416 is performed, and if no, step S418 is performed.
  • step S416 the red envelope is expired.
  • Step S420 binding the user number.
  • step S422 it is determined whether the binding is successful. If yes, step S424 is performed, and if no, step S426 is performed.
  • step S424 the user is prompted to successfully receive the red envelope.
  • step S426 the user is prompted not to receive the red envelope successfully.
  • the receiving object of the traffic red envelope can successfully and efficiently receive the traffic red envelope, which reduces the red packet receiving error and avoids the waste of the traffic red envelope.
  • this embodiment provides an optional implementation manner, that is, after all or part of the data traffic in the traffic card is distributed to other mobile phone numbers, the embodiment further includes: an APP corresponding to the mobile phone number to be distributed, which is satisfied.
  • Received the distributed data traffic under the following conditions: the distributed data traffic is not received, the data traffic collection time is not exceeded, and the mobile phone number to be dispatched has been bound to the distributed data traffic (bind when receiving the red envelope, and Not originally bound).
  • the present embodiment provides an optional implementation manner, that is, the user terminal can receive the control gateway CGW and send it through the e-commerce platform and the SDK. Traffic usage notification for the traffic card.
  • FIG. 5 is a schematic diagram of a flow card usage notification according to an embodiment of the present invention. As shown in FIG. 5, the method includes the following steps:
  • the CGW sends 80% notification to the e-commerce.
  • the e-commerce returns a notice to the CGW.
  • the e-commerce sends a usage notification to the SDK.
  • APP presents a notification message to the user.
  • the SDK will return the notification to the e-commerce provider.
  • the traffic usage notification can be sent to the user in real time or periodically, and the traffic query service can be provided to the user, thereby improving the user experience.
  • Step A The user completes the purchase, binding, and unbinding functions of the card on the e-commerce platform (the mobile phone client), and provides a user query function, wherein the binding can bind the traffic to other people, such as making the traffic red envelope.
  • the initiator can define the size of the red envelope in a number.
  • the red envelope recipient accepts the red envelope by clicking the gift link, and the traffic received by the receiver enters the red envelope receiver account in real time, and can be used in real time or can continue to send.
  • Step B.300 The service side receives the request sent by the e-commerce platform, completes the management of the data card, issues, uses the monitoring, and transparently transmits the message to the CGW.
  • the CGW is a control gateway, and is responsible for transferring 300 management requests to the SPR to implement service ordering, querying, and the like;
  • Step D The PCRF (Policy and Accounting Control Unit) is connected to the PGW and delivers traffic monitoring functions.
  • the SY expansion port is required to meet the traffic monitoring of 300 pairs of PGWs.
  • Step E SPR (user subscription database), a standard entity, provides storage functions for mobile packages, traffic monitoring programs, and the like.
  • Step F When the bound traffic includes the red packet traffic and is about to be used up, the mobile client will receive the remaining notification of the traffic.
  • the traffic 300 card in the technical solution of the present invention adopts the user package signing mode, does not need dynamic interaction, is simple to implement, has no special requirements on the terminal side, has better customer experience, and has no need for transformation on the BOSS side.
  • Traffic defines traffic based on dimensions such as customer, quota, content, QoS, time, location, etc. It can be used for both individual users and government-enterprise customers. It is used as a supplement to mainstream 3G/4G packages, and uses differentiated pricing and segmentation card types for traffic. Product marketing can form differentiated competition, and avoid the impact on the basic package and effectively drive the growth of 3G/4G network traffic.
  • FIG. 6 is a structural block diagram of a flow control apparatus according to an embodiment of the present invention. As shown in FIG. 6, the apparatus includes: a flow card binding module 10 and a flow control module 20. The structure is described in detail below.
  • the traffic card binding module 10 is configured to: based on the user's traffic card sent through the e-commerce platform, please order Soliciting, binding the flow card to one or more mobile phone numbers;
  • the flow control module 20 is connected to the flow card binding module 10 and configured to: use the data traffic in the traffic card as the Internet traffic of the mobile phone number bound to the traffic card.
  • the problem that the traffic management is more important in the related art without the better implementation technical solution is solved.
  • the user end After the user end binds the traffic card, the user can select the traffic in the card in the traffic range, and within the traffic range, Additional charges are required, and the traffic can be split into multiple bundles for other people.
  • the foregoing traffic card binding module 10 includes:
  • the flow card information obtaining unit is configured to: subscribe the flow card through the e-commerce platform, and obtain the card number and password;
  • the binding unit is configured to: bind the traffic card to one or more mobile phone numbers by inputting a card number, a password, and one or more mobile phone numbers through the e-commerce platform.
  • the traffic card can be used by one or more mobile phone numbers, the traffic in the traffic card can also be given to other mobile phone numbers, so that the use of the traffic card is more flexible and user-friendly.
  • the embodiment provides An optional implementation manner, that is, the foregoing apparatus further includes: a traffic distribution module, configured to: distribute some or all data traffic in the traffic card to other mobile phone numbers.
  • the traffic distribution module includes: an APP determining unit, configured to: determine whether the APP corresponding to the mobile phone number is to be online; and the online processing unit is configured to: when the judgment result of the APP determining unit is online, to the mobile phone number to be distributed.
  • the APP sends a data traffic distribution message; after receiving the response message, all or part of the data traffic in the traffic card is distributed to the mobile phone number to be dispatched; the offline processing unit is set to: the case where the judgment result of the APP judgment unit is offline
  • the cache data traffic is distributed until the APP corresponding to the mobile phone number is sent online.
  • the device may further include: a traffic usage notification module, configured to: receive a traffic usage notification of the traffic card sent by the control gateway CGW through the e-commerce platform and the SDK.
  • a traffic usage notification module configured to: receive a traffic usage notification of the traffic card sent by the control gateway CGW through the e-commerce platform and the SDK.
  • the technical solution of the present invention is a method and device for managing mobile Internet traffic in a mobile phone 4G network.
  • the user package signing mode is adopted, no dynamic interaction is required, the implementation is simple, there is no special requirement on the terminal side, the customer experience is better, and there is no need for transformation on the BOSS side.
  • Traffic based on customer, quota, and internal Dimensions, QoS, time, location and other dimensions define traffic, which can be used for individual users as well as for government and enterprise customers.
  • traffic marketing can be formed through differentiated pricing and segmentation card types. Differentiating competition can avoid the impact on the basic package and effectively drive the growth of 3G/4G network traffic. Helps operators achieve efficient business benefits.
  • the traffic card (for example, the traffic 300 card) of the technical solution of the present invention is a new form of prepaid card generated in response to the requirements of the LTE network, and is characterized in that after the user binds the card of this type, the user can select the card on the Internet.

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Abstract

一种流量控制方法及装置。其中,该方法包括以下步骤:基于用户通过电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定;使用所述流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。通过本发明,解决了相关技术中流量经营愈加重要而无实施效果较佳技术方案的问题,通过差异化定价、细分卡类型进行流量产品营销,即可以形成差异化竞争,又能避免对基本套餐形成冲击并有效拉动3G/4G网络流量的增长。有助于运营商的高效商业收益。

Description

一种流量控制方法及装置 技术领域
本发明涉及移动互联网通信及电信通讯技术领域,特别是涉及一种流量控制方法及装置。
背景技术
移动互联网的飞速发展掀起了一场前所未有的数据风暴,运营商话音业务的逐步萎缩和数据流量的暴增引发了其收入转向的必要性,随着终端和无线网络的发展,越来越多的用户选择手机上网,特别是在4G网络商用的今天,上网流量成为用户关注的焦点,三大电信运营商都将流量经营作为未来业务发展的重点,当成新利润增长点的核心,都寄望于通过流量经营的发展推动公司的二次创业。因而流量经营成为三家电信运营商现在和未来重中之重的工作。如何做好移动上网的流量经营,是对各家运营商的最大考验,是决定未来市场格局的关键。流量经营的核心就是以客户为中心,要将电信管道中的流量和客户的消费需求进行最高效、最精确的匹配,然后给最终用户带来最好的业务体验,同时让运营商实现一个高效的商业收益。
针对相关技术中流量经营愈加重要而无实施效果较佳技术方案的问题,目前尚未提出有效的解决方案。
发明内容
针对相关技术中流量经营愈加重要而无实施效果较佳技术方案的问题,本发明提供了一种流量控制方法及装置,用以解决上述技术问题。
为解决上述技术问题,采用如下技术方案:
一种流量控制方法,包括以下步骤:
基于电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定;
使用所述流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
可选地,所述基于电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定的步骤包括:
通过所述电商平台订购所述流量卡,获取卡号及密码;
通过所述电商平台输入所述卡号、密码及一个或多个手机号,将所述流量卡与所述一个或多个手机号进行绑定。
可选地,所述将该流量卡与一个或多个手机号绑定的步骤之后,所述方法还包括:
将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号。
可选地,所述将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号的步骤包括:
判断待派发手机号对应的APP是否在线;
如果在线,则向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;
如果不在线,则缓存所述数据流量派发消息,直至待派发手机号对应的APP上线。
可选地,所述将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号的步骤之后,所述方法还包括:
待派发手机号对应的APP,在满足如下条件的情况下领取派发的数据流量:派发的数据流量未被领取完,数据流量的领取时间未超期,以及待派发手机号已与派发的数据流量相绑定。
可选地,将所述流量卡中的数据流量派发至其他手机号通过以下方式至少之一实现:
短信、网上信息交互平台。
可选地,所述方法还包括:
接收控制网关CGW通过所述电商平台、SDK发送所述流量卡的流量使用情况通知。
一种流量控制装置,包括流量卡绑定模块和流量控制模块,其中:
所述流量卡绑定模块设置成:基于通过电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定;
所述流量控制模块设置成:将所述流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
可选地,所述流量卡绑定模块包括流量卡信息获取单元和绑定单元,其中:
所述流量卡信息获取单元设置成:通过所述电商平台订购所述流量卡,获取卡号及密码;
所述绑定单元设置成:通过所述电商平台输入所述卡号、密码及一个或多个手机号,将所述流量卡与所述一个或多个手机号进行绑定。
可选地,所述装置还包括流量派发模块,其中:
所述流量派发模块设置成:将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号。
可选地,所述流量派发模块包括APP判断单元、在线处理单元和离线处理单元,其中:
所述APP判断单元设置成:判断待派发手机号对应的APP是否在线;
所述在线处理单元设置成:在所述APP判断单元的判断结果为在线的情况下,向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;
所述离线处理单元设置成:在所述APP判断单元的判断结果为离线的情况下,则缓存所述数据流量派发消息,直至待派发手机号对应的APP上线。
可选地,所述装置还包括流量使用通知模块,其中:
所述流量使用通知模块设置成:接收控制网关CGW通过所述电商平台、SDK发送的所述流量卡的流量使用情况通知。
一种计算机程序,包括程序指令,当该程序指令被流量控制装置执行时,使得该流量控制装置可执行上述任意的流量控制方法。
一种载有上述计算机程序的载体。
本发明技术方案的有益效果如下:
流量卡(例如流量300卡)就是顺应LTE网络要求所生成的一种新形式的预付费卡,其特点为用户在绑定这种类型的卡后,用户上网可以选择这个卡内的流量,在流量范围内,不再需要额外付费,并且可以把流量分成多份绑定赠送给其他人。
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段,而可依照说明书的内容予以实施,并且为了让本发明的上述和其它目的、特征和优点能够更明显易懂,以下特举本发明的具体实施方式。
附图概述
图1是根据本发明实施例的流量控制方法的流程图;
图2是根据本发明实施例的流量卡订购流程示意图;
图3是根据本发明实施例的流量派发流程图;
图4是根据本发明实施例的流量红包领取流程图;
图5是根据本发明实施例的流量卡使用通知示意图;
图6是根据本发明实施例的流量控制装置的结构框图。
本发明的较佳实施方式
为了解决相关技术流量经营愈加重要而无实施效果较佳技术方案的问题,本发明实施例提供了一种流量控制方法及装置,以下结合附图以及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不限定本发明。
本实施例提供了一种流量控制方法,该方法可以在用户端的APP侧实现,图1是根据本发明实施例的流量控制方法的流程图,如图1所示,该方法包括以下步骤(步骤S102-步骤S104):
步骤S102,基于用户通过电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定。
该步骤可以通过以下可选实施方式实现:通过电商平台订购流量卡,获取卡号及密码;通过电商平台输入卡号、密码及一个或多个手机号,将流量卡与一个或多个手机号进行绑定。
步骤S104,使用流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
通过本实施例,解决了相关技术中流量经营愈加重要而无实施效果较佳技术方案的问题,用户端在绑定上述流量卡之后,用户上网可以选择这个卡内的流量,在流量范围内,不再需要额外付费,并且可以把流量分成多份绑定赠送给其他人。
图2是根据本发明实施例的流量卡订购流程示意图,如图2所示,该流程包括以下步骤:
步骤1,300业务管理中心制卡,之后向电商售卖平台发行流量卡。
步骤2,个人PORTAL(电商门户)/APP向300业务管理中心,申请300卡绑定/解绑/查询等操作;300业务管理中心向300业务网关申请绑定号码开通/取消300套餐/余额查询等操作;300业务网关与PCRF(Policy and Charging Rule Function,策略及计费控制单元)/SRP(Subscription Profile Repository,用户签约数据库)之间进行成功/失败消息的交互,并经由300业务网关、300业务管理中心,在个人PDRTAL/APP上显示成功/失败消息。
步骤3,用户上网,GGSN(Gateway GPRS Support Node,网关GPRS支持节点)/PGW(Packet Data Network Gateway,分组数据网网关)向PCRF/SPR请求用户策略,PCRF/SPR向GGSW/PGW指示使用300套餐策略,含业务ID、RG等。
用户可以通过电商平台购买上述流量卡,平台采用APP/SDK模式,在 运营商和OTT合作过程中,增加运营商和OTT用户的交互,拓展了移动互联网渠道。卡有多种类型,如不同的有效期,QOS(业务质量),流量等,不同卡费用也不同。用户在购买卡后,获取一个卡号及相关的密码。通过电商平台,用户输入手机号码,卡号,密码后,可以进行绑定,绑定后,用户通过手机上网的流量,将从这张卡的扣取。同一张卡可以同时绑定多个手机号码,从而为这些手机用户提供上网所需的流量。不同的手机也可以同时绑定多张这类卡,但同时只能使用一张卡中的流量,用户还可以将自己购买的流量做成红包派发给某个人或者某群人。红包赠送渠道包括微信平台、短信等。
基于上述介绍,本实施例提供了以下可选实施方式,即将流量卡与一个或多个手机号绑定之后,上述方法还包括:将流量卡中的部分或全部数据流量,派发至其他手机号。举例而言,用户A买卡后,除了自己用,也可以把这张卡绑定其他手机号码,相当于所有绑定的用户共用这张卡,,除此之外,用户A也可以把这张卡中部分数据流量,以红包的形式派发至朋友的手机号(之前未绑定),发送后会以短信的的形式告诉他的朋友,然后他的朋友就可以登录APP领取这个流量红包,领取的时候用户A的手机号码就会和这个红包绑定了,绑定成功就其朋友就可以使用这个红包了。
图3是根据本发明实施例的流量派发流程图,如图3所示,该流程包括以下步骤:
步骤S302,用户选择流量红包的发送对象(如好友)。
步骤S304,判断该发送对象是否是APP用户;如果是,则执行步骤S306,如果否,则执行步骤S314。
步骤S306,判断发送对象APP是否在线,如果在线,则执行步骤S312。如果离线,则执行步骤S308。
步骤S308,缓存流量红包的派送通知消息。
步骤S310,监测用户是否上线,如果上线,则执行步骤S312,如果未上线,则执行步骤S308。
步骤S312,推送app消息。该消息用于通知派送流量红包。该流程结束。
步骤S314,给发送对象(如好友)发送红包页面链接短信。该流程结束。
通过上述方法,可以将流量卡中的流量赠送给一个或多个对象,该对象可以是好友,也可以通过绑定手机号的方式,赠送给非好友。从而实现流量的有效使用,提高用户体验。
基于上述介绍,本实施例提供了一种可选实施方式,即将流量卡中的部分或全部数据流量,派发至其他手机号,可以通过以下步骤实现:判断待派发手机号对应的APP是否在线;如果在线,则向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;如果不在线,则缓存数据流量派发消息,直至待派发手机号对应的APP上线。
将流量卡中的数据流量派发至其他手机号通过以下方式至少之一实现:短信、网上信息交互平台。其中,网上信息交互平台可以是微信、飞信、易信QQ等。
下面对用户领取流量红包的过程进行介绍。图4是根据本发明实施例的流量红包领取流程图,如图4所示,该流程包括以下步骤:
步骤S402,用户(即流量红包的领取对象)点击短信消息链接。
步骤S404,进入领取红包app界面。
步骤S406,判断本人是否已领取红包,如果是,则执行步骤S408,如果否,则执行步骤S410。
步骤S408,提示本人已领红包。
步骤S410,判断红包是否已领完,如果是,则执行步骤S412,如果否,则执行步骤S414。
步骤S412,提示红包已被别人领完。
步骤S414,判断红包是否已过期,如果是,则执行步骤S416,如果否,则执行步骤S418。
步骤S416,提示红包已过期。
步骤S418,到BOSS修改用户签约信息。
步骤S420,绑定用户号码。
步骤S422,判断是否绑定成功,如果是,则执行步骤S424,如果否,则执行步骤S426。
步骤S424,提示用户成功领取红包。
步骤S426,提示用户未成功领取红包。
步骤S428,进入人工处理操作。
通过上述方法,流量红包的领取对象可以成功有效的领取流量红包,降低了红包领取失误,避免流量红包的浪费。
基于上述介绍,本实施例提供了一种可选实施方式,即将流量卡中的部分或全部数据流量,派发至其他手机号之后,本实施例还包括:待派发手机号对应的APP,在满足如下条件的情况下领取派发的数据流量:派发的数据流量未被领取完,数据流量的领取时间未超期,以及待派发手机号已与派发的数据流量相绑定(领取红包时绑定,并不是最初绑定)。
鉴于本发明技术方案中的流量卡可以多人使用,为了明确流量卡的流量使用情况,本实施例提供了一种可选实施方式,即用户端可以接收控制网关CGW通过电商平台、SDK发送的流量卡的流量使用情况通知。
图5是根据本发明实施例的流量卡使用通知示意图,如图5所示,包括以下步骤:
1.CGW向电商发送流量用到80%通知。
2.电商向CGW返回通知。
3.电商将用量通知发送给SDK。
4.SDK通知APP。
5.APP向用户展示通知消息。
6.APP向SDK返回通知。
7.SDK将通知返回给电商。
通过上述方法,可以实时或定期向用户发送流量使用通知,也可以向用户提供流量查询业务,提高了用户体验。
下面通过具体实施例,详细介绍300预付流量卡的管理方法,该方法步骤如下:
步骤A.用户在电商平台(手机客户端)完成卡的购买,绑定,解绑定等功能,提供用户查询功能,其中绑定可以把流量绑定给其他人,如把流量做成红包,发起人可以定义红包的大小以个数。红包发出后,红包接收人通过点击赠送链接,接受红包,接收人收到的流量实时进入红包接收人账户,并可以实时使用也可以继续发。
步骤B.300业务侧接收电商平台发送的请求,完成数据卡的管理,发行,使用监控,并透传消息到CGW。
步骤C.CGW为控制网关,负责把300来的管理请求转给SPR实现业务订购,查询等功能;
步骤D.PCRF(策略及计费控制单元)向下和PGW连接,下发流量监控等功能;向上需要提供SY扩展口,满足300对PGW的流量监控。
步骤E.SPR(用户签约数据库),标准实体,提供移动用套餐、流量监控方案等的存贮功能。
步骤F.绑定的流量包括红包流量再快要使用完的时候,手机客户端会收到流量剩余通知。
本发明技术方案中的流量300卡,采用用户套餐签约模式,无需动态交互,实现简单,对终端侧没有特殊要求,客户体验更好,对BOSS侧无改造需求。流量基于客户、额度、内容、Qos、时间、位置等维度定义流量,既可面向个人用户也可面向政企客户,作为主流3G/4G套餐的补充,通过差异化定价、细分卡类型进行流量产品营销,即可以形成差异化竞争,又能避免对基本套餐形成冲击并有效拉动3G/4G网络流量的增长。
对应于上述实施例介绍的流量控制方法,本实施例提供了一种流量控制装置,该装置用以实现上述实施例。图6是根据本发明实施例的流量控制装置的结构框图,如图6所示,该装置包括:流量卡绑定模块10和流量控制模块20。下面对该结构进行详细介绍。
流量卡绑定模块10设置成:基于用户通过电商平台发送的流量卡订购请 求,将该流量卡与一个或多个手机号绑定;
流量控制模块20,连接至流量卡绑定模块10,设置成:使用流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
通过上述装置,解决了相关技术中流量经营愈加重要而无实施效果较佳技术方案的问题,用户端在绑定上述流量卡之后,用户上网可以选择这个卡内的流量,在流量范围内,不再需要额外付费,并且可以把流量分成多份绑定赠送给其他人。
可选地,上述流量卡绑定模块10包括:
流量卡信息获取单元,设置成:通过电商平台订购流量卡,获取卡号及密码;
绑定单元,设置成:通过电商平台输入卡号、密码及一个或多个手机号,将流量卡与一个或多个手机号进行绑定。
由于流量卡可以由一个或多个手机号使用,因此,也可以将流量卡中的流量赠送给其他手机号使用,从而使得流量卡的使用更加灵活和人性化,基于此,本实施例提供了一种可选实施方式,即上述装置还包括:流量派发模块,设置成:将流量卡中的部分或全部数据流量,派发至其他手机号。
流量派发模块包括:APP判断单元,设置成:判断待派发手机号对应的APP是否在线;在线处理单元,设置成:在APP判断单元的判断结果为在线的情况下,向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;离线处理单元,设置成:在APP判断单元的判断结果为离线的情况下,则缓存数据流量派发消息,直至待派发手机号对应的APP上线。
为了便于用户实时掌控流量卡中的流量使用情况,上述装置还可以包括:流量使用通知模块,设置成:接收控制网关CGW通过电商平台、SDK发送的流量卡的流量使用情况通知。
本发明技术方案是在手机4G网络中,管理手机上网流量的一种方法及装置。采用用户套餐签约模式,无需动态交互,实现简单,对终端侧没有特殊要求,客户体验更好,对BOSS侧无改造需求。流量基于客户、额度、内 容、Qos、时间、位置等维度定义流量,既可面向个人用户也可面向政企客户,作为主流3G/4G套餐的补充,通过差异化定价、细分卡类型进行流量产品营销,即可以形成差异化竞争,又能避免对基本套餐形成冲击并有效拉动3G/4G网络流量的增长。有助于运营商的高效商业收益。
尽管为示例目的,已经公开了本发明的可选实施例,本领域的技术人员将意识到各种改进、增加和取代也是可能的,因此,本发明的范围应当不限于上述实施例。
工业实用性
本发明技术方案的流量卡(例如流量300卡)就是顺应LTE网络要求所生成的一种新形式的预付费卡,其特点为用户在绑定这种类型的卡后,用户上网可以选择这个卡内的流量,在流量范围内,不再需要额外付费,并且可以把流量分成多份绑定赠送给其他人。因此本发明具有很强的工业实用性。

Claims (14)

  1. 一种流量控制方法,包括以下步骤:
    基于电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定;
    使用所述流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
  2. 如权利要求1所述的流量控制方法,其中,所述基于电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定的步骤包括:
    通过所述电商平台订购所述流量卡,获取卡号及密码;
    通过所述电商平台输入所述卡号、密码及一个或多个手机号,将所述流量卡与所述一个或多个手机号进行绑定。
  3. 如权利要求1所述的流量控制方法,其中,所述将该流量卡与一个或多个手机号绑定的步骤之后,所述方法还包括:
    将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号。
  4. 如权利要求3所述的流量控制方法,其中,所述将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号的步骤包括:
    判断待派发手机号对应的APP是否在线;
    如果在线,则向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;
    如果不在线,则缓存所述数据流量派发消息,直至待派发手机号对应的APP上线。
  5. 如权利要求3所述的流量控制方法,其中,所述将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号的步骤之后,所述方法还包括:
    待派发手机号对应的APP,在满足如下条件的情况下领取派发的数据流量:派发的数据流量未被领取完,数据流量的领取时间未超期,以及待派发手机号已与派发的数据流量相绑定。
  6. 如权利要求3所述的流量控制方法,其中,将所述流量卡中的数据流量派发至其他手机号通过以下方式至少之一实现:
    短信、网上信息交互平台。
  7. 如权利要求1至3中任一项所述的流量控制方法,所述方法还包括:
    接收控制网关CGW通过所述电商平台、SDK发送所述流量卡的流量使用情况通知。
  8. 一种流量控制装置,包括流量卡绑定模块和流量控制模块,其中:
    所述流量卡绑定模块设置成:基于通过电商平台发送的流量卡订购请求,将该流量卡与一个或多个手机号绑定;
    所述流量控制模块设置成:将所述流量卡中的数据流量,作为该流量卡绑定的手机号的上网流量。
  9. 如权利要求8所述的流量控制装置,其中,所述流量卡绑定模块包括流量卡信息获取单元和绑定单元,其中:
    所述流量卡信息获取单元设置成:通过所述电商平台订购所述流量卡,获取卡号及密码;
    所述绑定单元设置成:通过所述电商平台输入所述卡号、密码及一个或多个手机号,将所述流量卡与所述一个或多个手机号进行绑定。
  10. 如权利要求8所述的流量控制装置,其中,所述装置还包括流量派发模块,其中:
    所述流量派发模块设置成:将所述流量卡中的部分或全部数据流量,派发至除与该流量卡绑定的手机号外的其他手机号。
  11. 如权利要求10所述的流量控制装置,其中,所述流量派发模块包括 APP判断单元、在线处理单元和离线处理单元,其中:
    所述APP判断单元设置成:判断待派发手机号对应的APP是否在线;
    所述在线处理单元设置成:在所述APP判断单元的判断结果为在线的情况下,向待派发手机号对应的APP发送数据流量派发消息;在收到响应消息后,将流量卡中的部分或全部数据流量,派发至待派发手机号;
    所述离线处理单元设置成:在所述APP判断单元的判断结果为离线的情况下,则缓存所述数据流量派发消息,直至待派发手机号对应的APP上线。
  12. 如权利要求8至10中任一项所述的流量控制装置,所述装置还包括流量使用通知模块,其中:
    所述流量使用通知模块设置成:接收控制网关CGW通过所述电商平台、SDK发送的所述流量卡的流量使用情况通知。
  13. 一种计算机程序,包括程序指令,当该程序指令被流量控制装置执行时,使得该流量控制装置可执行权利要求1-7中任一项所述的流量控制方法。
  14. 一种载有权利要求13所述计算机程序的载体。
PCT/CN2014/090474 2014-06-11 2014-11-06 一种流量控制方法及装置 WO2015188580A1 (zh)

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