WO2010127589A1 - 信息发送方法、装置及系统 - Google Patents

信息发送方法、装置及系统 Download PDF

Info

Publication number
WO2010127589A1
WO2010127589A1 PCT/CN2010/071962 CN2010071962W WO2010127589A1 WO 2010127589 A1 WO2010127589 A1 WO 2010127589A1 CN 2010071962 W CN2010071962 W CN 2010071962W WO 2010127589 A1 WO2010127589 A1 WO 2010127589A1
Authority
WO
WIPO (PCT)
Prior art keywords
mobile terminal
broadcast message
information
identifier
geographic area
Prior art date
Application number
PCT/CN2010/071962
Other languages
English (en)
French (fr)
Inventor
林兵
申薇
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2010127589A1 publication Critical patent/WO2010127589A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/30Resource management for broadcast services

Definitions

  • the present invention relates to the field of communications, and in particular to a method, an apparatus, and a system for transmitting information.
  • Mobile advertising here refers to: Paid information transmitted through mobile media, through which the business information is intended to influence the attitude, intention and behavior of the recipient.
  • the characteristics of the above mobile advertisements mainly include the following three characteristics: (1) Interactivity: Through the mobile medium, the sender and the receiver can influence each other. For example, for an advertisement, the consumer can use the mobile phone, text message, email, Respond to the advertiser in the form of a login site;
  • mobile ads can be divided into two categories: push (pull) ads and (pull) pull ads.
  • the push advertisement refers to an advertisement that is directly sent to the mobile phone by the system side, and the user is in a state of passive reception;
  • the pull advertisement refers to the content or service that the mobile phone user actively requests, for example, the user requests local weather information.
  • push advertisements operators and advertisers currently send objects to most users.
  • an information transmission method including: dividing a plurality of geographic regions into categories, each of which The category is mapped to a broadcast message; the broadcast message mapped by the category of the geographical area in which the mobile terminal is located is transmitted to the mobile terminal.
  • an information transmitting apparatus including: a classification module, configured to classify a plurality of geographical areas into categories, and map each category to a broadcast message; and a sending module, configured to send a mobile to the mobile terminal A broadcast message mapped by the category of the geographic area in which the terminal is located.
  • an information transmitting system is further provided, comprising: a terminal, a wireless network, and an information transmitting device.
  • the wireless network includes: a positioning module, configured to acquire an identifier of a mobile terminal located in a specific geographic area; a first sending module, configured to send, by the positioning module, an identifier of a terminal mobile terminal located in a specific geographic area to the information sending apparatus; a sending module, configured to: send an information broadcast message to the mobile terminal; the information sending apparatus includes: a receiving module, configured to receive a broadcast message, and an identifier of the mobile terminal located in the geographic area sent by the first sending module; Corresponding broadcast message is obtained according to the identifier of the mobile terminal according to the geographic area; and the sending module is configured to send the correspondence between the identifier of the mobile terminal of the geographic area and the broadcast message to the wireless network.
  • the present invention overcomes the problem of reducing user experience and waste of resources caused by transmitting a message to a majority of terminals in the prior art by transmitting a specific message to a terminal in a specific area, thereby improving The user experience and save resources.
  • FIG. 1 is a detailed flowchart of an information transmitting method according to an embodiment of the present invention
  • FIG. 2 is a block diagram of an information transmitting apparatus according to an embodiment of the present invention
  • 3 is a block diagram of an information transmitting apparatus according to a preferred embodiment of the present invention
  • FIG. 4 is a detailed block diagram of a wireless network and an information transmitting apparatus in an information transmitting apparatus according to a preferred embodiment of the present invention
  • FIG. 5 is an embodiment of the present invention.
  • the information sending method includes the following steps: Step S102, dividing a plurality of geographical areas into categories; Step S104, Each category is mapped to a broadcast message; Step S106, transmitting, to the mobile terminal, a broadcast message mapped by a category of a geographical area in which the mobile terminal is located.
  • Step S102 dividing a plurality of geographical areas into categories
  • Step S104 Each category is mapped to a broadcast message
  • Step S106 transmitting, to the mobile terminal, a broadcast message mapped by a category of a geographical area in which the mobile terminal is located.
  • Step S106 transmitting, to the mobile terminal, a broadcast message mapped by a category of a geographical area in which the mobile terminal is located.
  • the service operated by the geographical area determines the category to which the geographical area belongs.
  • the service operated by the geographical area determines a category-mapped broadcast message.
  • the positioning center acquires the identifier of the mobile terminal, and sends the acquired identifier to the information sending device.
  • the information sending device determines the geographic region corresponding to the identifier, determines the category of the corresponding geographic region, and obtains the broadcast of the category mapping.
  • the message, the broadcast message and the identifier are notified to the short message/MMS center; the short message/MMS center sends the mapped broadcast message to the mobile terminal corresponding to the identifier through the base station.
  • the geographic area in which the mobile terminal is located is transmitted to the mobile terminal according to the identity of the mobile terminal
  • the broadcast message mapped by the category includes: classifying the broadcast message, and determining a type of the geographical area in which the mobile terminal corresponding to the identifier of the mobile terminal is located; and obtaining a corresponding broadcast message by the type of the geographical area of the mobile terminal;
  • the broadcast message is sent to the mobile terminal, by which it is guaranteed to send the broadcast message to the user interested in it.
  • the broadcast message includes advertisement information, and the user is notified of the message of interest by playing the broadcast message to the mobile terminal.
  • the identifier of the mobile terminal is a number of the mobile terminal, and the mobile terminal can be conveniently and quickly identified by the number of the mobile terminal.
  • the apparatus includes: a classification module 10, a mapping module 20, and a sending module 30, wherein the classification module 10 is configured to The plurality of geographic regions are divided into categories; the mapping module 20 maps each category to a broadcast message; and the sending module 30 is configured to send, to the mobile terminal, a broadcast message mapped by a category of a geographical area in which the mobile terminal is located.
  • the classification module classifies and maps a plurality of geographical areas to a broadcast message
  • the classification module transmits a broadcast message mapped to the geographical area to the mobile terminal, so that the information in the prior art is sent to the majority.
  • 3 is a structural block diagram of an information sending apparatus according to a preferred embodiment of the present invention.
  • the method further includes: a memory 40, configured to store a broadcast message, a mapping relationship between the broadcast message and the plurality of geographic areas, and an identifier of the mobile terminal located in the geographic area.
  • 4 is a detailed block diagram of a wireless network and an information transmitting apparatus in an information transmitting apparatus according to a preferred embodiment of the present invention, as shown in FIG.
  • the wireless network includes: a positioning center 1 and a short message/MMS center 2, wherein the positioning center 1 for implementing the functions of the positioning module 20 and the first sending module 22, the short message/MMS center 2 is used to implement the functions of the second sending module 24 and the receiving module;
  • the information sending device comprises: a transmitting unit 3, a control unit 4, a storage unit 5, a receiving unit 6, wherein the control unit 4 is centered, and the control unit 4 is respectively connected to the receiving unit 6, the storage unit 5, and The transmission units 3 are connected.
  • Each module is described in detail below.
  • the transmitting unit 3 is configured to receive the mobile terminal number located in the geographic area acquired from the wireless network, and send the bound information to be sent and the mobile terminal number in the geographic area to the wireless network, where the transmitting unit 3 is configured to complete the foregoing apparatus.
  • the receiving module 1 in the embodiment receives the identifier of the terminal located in the specific area and the function of the sending module 4;
  • the storage unit 4 is configured to store the information to be sent and the mobile terminal number information in the geographical area, and the storage unit 4 is used to complete
  • the control unit 5 is configured to control the transmission unit 3, the storage unit 5 and the receiving unit 6, and manage and control the information in the storage unit 3 and the mobile terminal number in the geographical area.
  • the control unit 5 is configured to complete the function of the control module 3 in the foregoing apparatus embodiment; the receiving unit 6 is configured to receive information to be sent or receive information uploaded by the client through a network, and the receiving unit 6 is configured to complete the implementation of the foregoing apparatus.
  • the execution flow of each module is: the receiving unit receives the information to be sent, the control unit classifies the information to be sent and stores the information into the storage unit; the information sending device controls the transmission unit to send a request message to the positioning center of the wireless network, and obtains the request message from the positioning center.
  • Terminal information (including a terminal number) of one or more specific areas and stored in the storage unit; the control unit binds the to-be-sent information stored in advance by the storage unit to the terminal number of one or more specific areas;
  • the fixed information and the terminal number are sent to the short message/MMS center of the wireless network, and the short message/MMS center transmits the information to be sent to the terminal of one or more specific areas through the base station.
  • the information sending apparatus may periodically acquire terminal information of one or more specific areas from the positioning center of the wireless network, and compare with the existing terminal numbers in the storage unit, and for the terminal newly added to the specific area, the control unit Binding the to-be-sent information stored in advance by the storage unit to the terminal number of one or more specific areas; the transmission unit of the information transmitting device transmits the bound information and the terminal number to the short message/MMS center of the wireless network
  • the information to be sent by the short message/MMS center is sent by the base station to the terminal of one or more specific areas.
  • FIG. 5 is a structural block diagram of an information sending system according to an embodiment of the present invention.
  • the information sending module includes: a mobile terminal 50, a wireless network 52, and an information sending device 54.
  • the wireless network 52 includes: a positioning module 520, configured to acquire Geographical area mobile terminal
  • the first sending module 522 is configured to send the identifier of the terminal mobile terminal that is located in the geographic area to the information sending device
  • the second sending module is configured to send the broadcast message to the mobile terminal.
  • the information sending device 54 includes: The receiving module 540 is configured to receive a broadcast message, and an identifier of the mobile terminal located in the geographic area sent by the first sending module, where the control module 542 is configured to obtain a corresponding broadcast message according to the identifier of the mobile terminal in the geographic area; And transmitting, to the wireless network, a correspondence between the identifier of the mobile terminal of the geographic area and the broadcast message.
  • the wireless network and the information transmitting apparatus can acquire the broadcast message, the mapping relationship between the broadcast message and the geographical area, and the geographical area where the mobile terminal is located, thereby being able to send the broadcast message to the mobile terminal in the corresponding geographical area.
  • the terminal is a mobile phone.
  • the GSM mobile communication system mainly includes: a mobile terminal, a base station subsystem (abbreviated as a BSS, or simply a base station, a base station) and a network subsystem.
  • the base station subsystem is composed of a base transceiver transceiver (Base Transceiver Station, BTS for short) and a base station controller (BSC); a network subsystem (NSS) is used by the mobile switching center.
  • BTS Base Transceiver Station
  • BSC base station controller
  • NSS network subsystem
  • MSC Mobile Switch Center
  • OMC Operation Management Center
  • HLR Home Local Register
  • VLR Visitor Local Register
  • AUC Authentication Center
  • EIR Device Identity Register
  • the GSM mobile communication network can realize the positioning of the terminal by adding the following network nodes: a positioning measurement unit (LMU), a mobile positioning center (SMLC) and a mobile positioning center gateway (GMLC), which can implement the above-mentioned method embodiments.
  • the relevant interfaces introduced by the GSM system include: an interface between the SMLC and the BSC (lb), an interface between the GMLC and the GSM network service control function (lc), an interface between the GMLC and the HLR (lh), and an interface between the GMLC and the MSC or the VLR.
  • the LMU can support multiple positioning methods. Among them, the methods of wireless measurement can be divided into two categories: (1) positioning measurement for one mobile terminal; (2) auxiliary measurement for all mobile terminals in a specific geographical area. Other information such as the initial value of the LMU, time instructions, etc. can be preset, or provided by the SMLC, and the LMU provides all the positioning and auxiliary information obtained to the relevant SMLC. And, the LMU can be divided into the following two types: (1) The LMU accessed by the standard GSM air interface maintains a signaling connection with the SMLC that controls the LMU via the BTS and the BSC.
  • the MSC and the VLR provide services for the LMU, and store the information registered by the LMU on the HLR; (2) have a unique IMSI (International Mobile Subscriber Identity, International Mobile Subscriber Identity, ie, , the internationally unique LMU that uniquely identifies the number assigned by a mobile subscriber, and supports all GSM radio resources and mobility management functions.
  • the network manager can assign a specific IMSI range to the LMU and assign a specific number in the IMSI to indicate the relevant SMLC.
  • Several numbers in IMSI can be used as local code for an LMU in an SMLC.
  • the LMUs may be located in cells belonging to the same BSC or MSC.
  • the LMU of the above (1) has registration information in the HLR.
  • the registration information in the HLR can distinguish between an MS with an LMU function and a normal MS.
  • the data of all relevant LMUs is managed by the LMU and the associated SMLC.
  • the LMU can be accessed from the ABS interface of the BSC (referred to as the A interface for short).
  • the LMU can be a single network element, and some pseudo cell identifier (id) numbers can be used.
  • the Public Land Mobile-communication Network can contain multiple GMLCs.
  • the GMLC is the first node for users to enter the GSM network.
  • the GMLC obtains routing information from the HLR through the lh interface. After the authentication is passed, the GMLC sends a positioning request to the MSC or the VLR through the lg interface, and receives the final positioning result.
  • a PLMN may include multiple SMLCs, where the SMLC manages all resources for mobile phone location, and calculates final positioning results and accuracy.
  • the SMLC positioning methods include the following two methods: time of arrival (TOA) positioning method and enhanced measurement time difference (E-ODD) positioning method.
  • TOA time of arrival
  • E-ODD enhanced measurement time difference
  • the two methods are described in detail below.
  • TOA Time of Arrival
  • the method includes: (1) The located mobile phone sends a known signal, and three or more than three LMUs simultaneously receive the known signal, and the known signal is sent when the mobile phone performs an asynchronous switching. Access burst signal; (2) After each LMU obtains the absolute GPS time when the access burst signal arrives, the relative time difference (RTD) can be obtained; (3) according to the information of the first two steps, the SMLC performs the pairwise comparison. Calculate the burst signal arrival time difference (TDOA) to get the exact position.
  • TOA time of arrival
  • E-ODD enhanced measurement time difference
  • the exact position of the handset is calculated by triangulation, and the other two parameters must be known: the geographic location of the LMU and the time offset between the LMUs.
  • each LMU must provide absolute GPS time, or place the reference LMU at a known location to obtain the actual time difference (RTD) parameter.
  • the LMU determines the TOA by accessing the burst signal.
  • the LMU is selected and the correct frequency is configured to receive the access burst signal.
  • the mobile phone transmits about 70 access pulses (320ms duration) at a specific power on the traffic channel (which may be in the frequency hopping mode).
  • Each LMU implements and improves TOA measurements in a variety of ways.
  • the use of the received burst signal can improve the probability of measurement success and measurement accuracy.
  • Using diversity techniques eg, antenna diversity and frequency hopping
  • the service sends a request to the SMLC to inform the mobile number and location accuracy requirements.
  • the measured TOA parameters and their error values are collected together and sent to the SMLC. Based on this data, the SMLC can calculate the location of the mobile phone required by the application, and then return the location information and error range to the service.
  • the TOA positioning method also requires additional hardware (LMU) to accurately calculate the arrival time of the burst signal.
  • the LMU can be integrated into the BTS or as a standalone device. When the LMU is used as a separate device, it can have a separate antenna or share the antenna with the BTS to implement inter-network communication over the air interface.
  • E-ODD Enhanced measurement time difference
  • the mobile phone receives the signal sent by each base station to obtain the TOA parameter; the LMU obtains the RTD parameter; (2) the mobile phone transmits the TOA and RTD parameters to the GSM network;
  • OTD measurements require synchronized, standard, and analog pulses.
  • the network needs to measure the RTD between the BTSs.
  • 3 BTSs are required for both OTD measurements and RTD measurements (when asynchronous BTS is used).
  • the location of the mobile phone can be calculated in the network (called mobile phone assisted mode;), or it can be calculated in the terminal (requires the mobile phone to have all kinds of necessary information, called mobile phone autonomous mode).
  • the position calculation is realized by the position calculation function module of the SMLC in the mobile phone or the network.
  • the present invention is capable of transmitting specific information for a specific user group of a specific area and a specific time as compared with the prior art.
  • the present invention transmits information in a targeted manner to users who are closely related to the information. For example, passengers waiting at the airport can often receive discounted ticket information.
  • appropriate advertising for specific groups of people can enhance and ensure the effectiveness of advertising, saving resources and saving costs.
  • the cell-based positioning broadcast of the present invention is also a business mode of mobile advertising, and the cell broadcast transmits real-time information related to the location, which provides a possibility for the user to consume immediately.
  • the invention is not limited to any specific combination of hardware and software.
  • the above is only the preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes can be made to the present invention. Any modification, equivalent substitution, improvement, etc. made within the "God and Principles" of the present invention shall be included in the protection of the present invention. Within the scope.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Description

信息发送方法、 装置及系统 技术领域 本发明涉及通信领域,具体而言, 涉及一种信息发送方法、装置及系统。 背景技术 随着 3G手机的逐渐普及, 手机媒体将成为获取信息的重要手段之一, 例如, 移动广告的出现, 为手机用户提供了丰富的信息。 这里的移动广告是 指: 通过移动媒体传播的付费信息, 旨在通过这些商业信息影响受传者的态 度、 意图和行为。 上述移动广告的特点主要有以下三个特点: ( 1 ) 互动性: 通过移动媒介, 发送方和接收方可以相互实施影响, 例 如, 对于一则广告, 消费者可以使用移动电话、 短信、 邮件、 登录网站等形 式向广告商作回应;
( 2 ) 便利性: 用户在需要的时候可以随时随地获取信息, 并且, 移动 广告还可以存储在手机上, 方便用户的读取; ( 3 ) 低成本。 目前, 移动广告可以分为两类: 推 (push ) 广告和 (pull )拉广告。 其 中,推广告是指由系统侧直接发送到手机的广告, 用户处于被动接收的状态; 拉广告是指手机用户主动请求的内容或服务,例如, 用户请求当地气象信息。 针对上述推广告, 目前运营商和广告商的发送对象为大部分用户。 如果 有的用户不需要某类型的信息、 但是却频繁地收到此类信息, 就会导致用户 的反感心理, 影响用户的体-险感, 并且, 运营商和广告商向这些用户发送信 息也浪费了资源。 综上所述,准确地将移动广告发送给潜在用户或有需求的用户是目前亟 待需要解决的问题。 发明内容 本发明旨在提供一种改进的信息发送方案, 以解决上述问题至少之一 根据本发明的一方面, 提供了一种信息发送方法, 包括: 将多个地理区 域分成类别, 将每个类别映射到广播消息; 向移动终端发送移动终端所处的 地理区域的类别所映射的广播消息。 根据本发明的另一方面, 提供了一种信息发送装置, 包括: 分类模块, 用于将多个地理区域分成类别, 将每个类别映射到广播消息; 发送模块, 用 于向移动终端发送移动终端所处的地理区域的类别所映射的广播消息。 根据本发明的又一方面, 还提供了一种信息发送系统, 包括: 终端、 无 线网络和信息发送装置。 其中, 无线网络包括: 定位模块, 用于获取位于地理特定区域的移动终端的标 识; 第一发送模块, 用于将定位模块获取的位于特定地理区域的终移动端的 标识发送给信息发送装置; 第二发送模块, 用于发送信息广播消息到移动终 端; 信息发送装置包括: 接收模块, 用于接收广播消息、 以及所述第一发送 模块发送的位于地理区域的移动终端的标识; 控制模块, 用于根据地理区域 的移动终端的标识获得对应的广播消息; 发送模块, 用于将地理区域的移动 终端的标识与广播消息的对应关系发送给无线网络。 借助于上述技术方案的至少之一 ,本发明通过向特定区域的终端发送特 定消息, 克服了现有技术中的将消息发送给多数终端而导致的用户体验感降 低和资源浪费的问题, 进而提高了用户的体验感, 并节省了资源。 附图说明 此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部 分, 本发明的示意性实施例及其说明用于解释本发明, 并不构成对本发明的 不当限定。 在附图中: 图 1是才艮据本发明实施例的信息发送方法的详细流程图; 图 2是 居本发明实施例的信息发送装置的框图; 图 3是 居本发明优选实施例的信息发送装置的框图; 图 4 是 居本发明优选实施例的信息发送装置中的无线网络和信息发 送装置的详细框图; 图 5是 居本发明实施例的信息发送系统的结构框图。 具体实施方式 下面将参考附图并结合实施例, 来详细说明本发明。 需要说明的是, 如 果不冲突, 本申请中的实施例以及实施例中的特征可以相互组合。 图 1是 居本发明实施例的信息发送方法的详细流程图, 如图 1所示, 该信息发送方法包括以下步 4聚: 步骤 S 102, 将多个地理区域分成类别; 步骤 S 104, 将每个类别映射到广播消息; 步骤 S 106, 向移动终端发送移动终端所处的地理区域的类别所映射的 广播消息。 通过该实施例,仅向移动终端发送与其所处地理区域类别向对应的广播 消息, 从而使得信息就可以准确地发送给有需求的用户或者潜在的用户, 提 高了用户的体验感。 优选地, 在步骤 S 102中, 居地理区域运营的业务确定地理区域所属 的类别。 优选地, 在步骤 S 104中, 居地理区域运营的业务确定类别映射的广 播消息。 优选地, 在步骤 S 106中, 定位中心获取移动终端的标识, 将获取的标 识发送给信息发送装置; 信息发送装置判断标识对应的地理区域, 确定对应 的地理区域的类别, 获取类别映射的广播消息, 将广播消息及标识通知给短 消息 /彩信中心; 短消息 /彩信中心通过基站将映射的广播消息发送给标识对 应的移动终端。 优选地 , -据移动终端的标识向移动终端发送移动终端所处的地理区域 的类别所映射的广播消息包括: 对广播消息进行分类, 并确定与移动终端的 标识对应的移动终端所处的地理区域的类型; 居移动终端的地理区域的类 型获得相应的广播消息; 以及, 向移动终端发送所述广播消息, 通过该方法, 能够保证将广播消息发送给对其感兴趣的用户。 优选地, 广播消息包括广告信息, 通过向移动终端播放该广播消息, 使 得用户得到其感兴趣的消息。 优选地, 上述移动终端的标识为移动终端的号码, 通过移动终端的号码 可以方便快捷地识别移动终端。 图 2是本发明实施例的信息发送装置的框图,上述的信息发送方法可应 用在该装置上该装置包括: 分类模块 10、 映射模块 20和发送模块 30, 其中, 分类模块 10 , 用于将多个地理区域分成类别; 映射模块 20 , 将每个类别映射到广播消息; 发送模块 30 , 用于向移动终端发送移动终端所处的地理区域的类别所 映射的广播消息。 通过上述实施例, 在分类模块将多个地理区域分类并映射到广播消息 后, 向移动终端发送其所处地理区域映射的广播消息, 从而克月艮了现有技术 中的信息会发送给多数用户而导致的用户体-险感降氐和资源浪费的问题。 图 3是本发明优选实施例的信息发送装置的结构框图, 还包括: 存储器 40 , 用于存储广播消息、 广播消息与多个地理区域的映射关系, 以及位于地 理区域的移动终端的标识。 图 4 是 居本发明优选实施例的信息发送装置中的无线网络和信息发 送装置的详细框图, 如图 4所示: 无线网络包括: 定位中心 1 和短消息 /彩信中心 2 , 其中, 定位中心 1 用于实现上述定位模块 20、 第一发送模块 22的功能, 短消息 /彩信中心 2用 于实现上述第二发送模块 24和接收模块功能; 信息发送装置包括: 传输单元 3、控制单元 4、存储单元 5、接收单元 6 , 其中, 以控制单元 4为中心, 控制单元 4分别与接收单元 6、 存储单元 5和 传输单元 3相连接。 以下对各模块进行详细的描述。 传输单元 3 , 用于接收从无线网络获取的位于地理区域内的移动终端号 码, 将绑定的需要发送的信息与地理区域内移动终端号码发送给无线网络, 该传输单元 3用于完成上述装置实施例中的接收模块 1的接收位于特定区域 的终端的标识和发送模块 4的功能; 存储单元 4 , 用于存储需要发送的信息和地理区域内移动终端号码信 息, 该存储单元 4用于完成上述装置实施例中的存储器 2的功能; 控制单元 5 , 用于对传输单元 3、 存储单元 5和接收单元 6进行控制, 对存储单元 3内的信息和地理区域内移动终端号码进行管理和控制, 该控制 单元 5用于完成上述装置实施例中的控制模块 3的功能; 接收单元 6 , 用于接收待发送的信息或通过网络接收客户上传的信息, 该接收单元 6用于完成上述装置实施例中的接收模块 1的接收待发送信息的 功能。 上述各模块的执行流程为: 接收单元接收待发送信息, 控制单元将该待 发送信息进行分类并存入存储单元; 信息发送装置控制传输单元向无线网络 的定位中心发送请求消息, 从定位中心获取一个或多个特定区域的终端信息 (包括终端号码) 并存入存储单元; 控制单元将存储单元预先存储的待发送 信息与一个或多个特定区域的终端号码进行绑定; 传输单元将该绑定后的信 息与终端号码发送给无线网络的短消息 /彩信中心, 由短消息 /彩信中心将需 要发送的信息通过基站发送给某一个或多个特定区域的终端。 在实际操作中,信息发送装置可以定期从无线网络的定位中心获取一个 或多个特定区域的终端信息, 与存储单元内已有的终端号码进行比较, 对于 新加入该特定区域的终端, 控制单元将存储单元预先存储的待发送信息与某 一个或多个特定区域的终端号码进行绑定; 信息发送装置的传输单元将该绑 定后的信息与终端号码传送给无线网络的短消息 /彩信中心, 由短消息 /彩信 中心将需要发送的信息通过基站发送给一个或多个特定区域的终端。 图 5是 居本发明实施例的信息发送系统的结构框图,该信息发送模块 包括: 移动终端 50、 无线网络 52和信息发送装置 54 , 其中, 无线网络 52 包括: 定位模块 520, 用于获取位于地理区域的移动终端 的标识; 第一发送模块 522 , 用于将定位模块获取的位于地理区域的终移动 端的标识发送给信息发送装置; 第二发送模块, 用于发送广播消息到移动终 端; 信息发送装置 54 包括: 接收模块 540 , 用于接收广播消息、 以及第一 发送模块发送的位于地理区域的移动终端的标识; 控制模块 542 , 用于根据 地理区域的移动终端的标识获得对应的广播消息; 发送模块 544 , 用于将地 理区域的移动终端的标识与广播消息的对应关系发送给无线网络。 通过上述实施例, 通过无线无网络和信息发送装置能够获取广播消息、 广播消息与地理区域的映射关系以及移动终端所处的地理区域, 进而能够将 广播消息发送给相应的地理区域内的移动终端, 从而克服了现有技术中的信 息会发送给多数用户而导致的用户体验感降低和资源浪费的问题。 为了更好地理解本发明, 以下以 GSM系统为例, 进一步描述本发明实 施例。 在本实例中, 终端为手机。 目前, GSM移动通信系统主要包括:移动终端、基站子系统( Base Station Subsystem, 简称为 BSS , 也可以简称为基站, Base Station ) 和网络子系统。 其中, 基站子系统由基站收发台 (Base Transceiver Station , 简称为 BTS ) 和 基站控制器( Base Station Controller,简称为 BSC )组成;网络子系统( Network Sub-System, 简称为 NSS ) 由移动交换中心 ( Mobile Switch Center, 简称为 MSC )和操作维护中心 ( Operation Management Center, 简称为 OMC ) 以及 原地位置寄存器( Home Local Register,简称为 HLR )、访问位置寄存器( Visitor Local Register,简称为 VLR ),鉴权中心( Authentication Center,简称为 AUC ) 和设备标志寄存器 ( Equipment Identity Register, 简称为 EIR ), 短消息中心 等组成。
GSM移动通信网可以通过增加以下网络节点来实现终端的定位: 定位 测量单元 ( LMU )、 移动定位中心 ( SMLC )和移动定位中心网关( GMLC ), 这三个设备可以实现上述方法实施例中的定位中心、 或上述定位模块 20 的 功能。相应地, GSM系统引入的相关接口包括: SMLC与 BSC之间接口(lb )、 GMLC与 GSM网业务控制功能间接口 ( lc ) , GMLC与 HLR间接口 ( lh ) , GMLC与 MSC或 VLR间接口( lg ), SMLC与同等 SMLC间接口( lp ), SMLC 分别与 MSC或 VLR间接口 (ls )、 以及 LMU空中接口 ( um )。 以下对上述增加的网络节点进行详细的描述。
(一) 定位测量单元 ( LMU ) 通过无线测量, LMU可支持多种定位方式。 其中, 无线测量的方式可 分为两类: ( 1 )针对一个移动终端的定位测量; (2 ) 针对特定地理区域中所 有移动终端的辅助测量。 LMU的初始值、 时间指令等其它信息可预先设置, 或通过 SMLC 提供, LMU 将得到的所有定位和辅助信息提供给相关的 SMLC。 以及, LMU可以分为以下两种: ( 1 ) 以标准的 GSM 空中接口接入的 LMU, 经 BTS、 BSC与控制该 LMU的 SMLC保持信令连接。 当连接基于网 络子系统的 SMLC时, MSC和 VLR为该 LMU提供服务, 并在 HLR上存储 该 LMU登记的信息; ( 2 ) 具有唯一的 IMSI ( International Mobile Subscriber Identity, 国际移动用户识别码, 即, 国际上为唯一识别一个移动用户所分配 的号码) 的 LMU, 并支持所有 GSM无线资源和移动管理功能。 网络管理者 可为 LMU指派专门的 IMSI范围, 并在 IMSI中指派特定的数字, 表示相关 SMLC。 IMSI中的某几个数字可用作一个 SMLC中某个 LMU的本地代码。 为了确保 LMU与 SMLC间的互访, LMU可以位于从属于同一 BSC或 MSC的小区中。 当 SMLC基于 NSS时, 上述第 ( 1 ) 种的 LMU在 HLR中 具有注册信息。 HLR中的注册信息可以区分具有 LMU功能的 MS与普通的 MS ,所有相关 LMU的数据由 LMU和相关 SMLC管理。对于第( 2 )类 LMU, 该类 LMU可从 BSC的 abis接口 (简称为 A接口)访问, 该类 LMU可以是 一个单独的网络单元, 编号釆用一些伪小区标识(id )号, 也可以集成在 BTS 内或与 BTS连接。 当 SMLC基于 BSS方式时, 该类 LMU的信令通过 BSC 传输; 当 SMLC基于 NSS方式时, 该类 LMU通过 BSC和 MSC传输。
(二) 移动定位中心网关 (GMLC ) 公众陆地移动通信网 ( Public Land Mobile-communication Network, 简 称为 PLMN )可以包含多个 GMLC。 GMLC是用户进入 GSM网的第一个节 点。 GMLC通过 lh接口从 HLR中获得路由信息。 鉴权通过后, GMLC通过 lg接口向 MSC或 VLR发出定位请求, 并接收最终定位结果。
(三) 移动定位中心 ( SMLC ) 一个 PLMN可以包括多个 SMLC, 其中, SMLC管理所有用于手机定 位的资源, 计算最终定位结果和精度。
SMLC的定位方法包括以下两种: 到达时间(TOA )定位方法和增强测 量时间差 (E - OTD ) 定位方法。 以下对这两种方法进行详细的描述。 1.到达时间 (TOA ) 定位方法 该方法包括: ( 1 )被定位的手机发出已知信号, 三个或多于三个 LMU 同时接收该已知信号,已知信号是手机执行异步切换时发出的接入突发信号; ( 2 ) 各 LMU得到接入突发信号到达时的绝对 GPS 时间后, 可得到相对时 间差(RTD ); ( 3 )根据前两步的信息, SMLC进行两两比较, 计算突发信号 到达时间差 (TDOA ), 得出精确位置。 通过三角计算得出手机精确位置, 必 须知道另外两个参数: LMU的地理位置和各 LMU之间的时间偏移量。例如, 各 LMU必须提供绝对 GPS时间, 或在已知位置的地点放置参考 LMU可得 到实际时间差 (RTD ) 参数。
LMU通过接入突发信号确定 TOA。 当定位请求发出时, LMU被选定, 且配置正确的频率, 以便接收接入突发信号。 此时, 手机在业务信道 (可能 会处于跳频方式) 上, 以特定功率发送约 70个接入脉冲 (时长 320ms )。 各 LMU通过多种方式实现和改善 TOA的测量结果。 利用收到的突发信号可提 高测量成功概率和测量精度。 釆用分集技术(例如, 天线分集和跳频), 可降 低多径效应的影响, 提高测量精度。 当某个业务需要知晓手机位置时, 该业 务向 SMLC发出请求, 同时告知手机号码和定位精度要求。 被测量的 TOA 参数及其误差值一同被釆集并发送到 SMLC, 根据该数据, SMLC可计算出 应用所需要的手机位置, 再将位置信息和误差范围返回给业务。 在实际操作中, TOA定位方法还需要附加硬件( LMU ), 以达到精确计 算突发信号到达时间的目的。 该 LMU既可集成在 BTS内, 也可作为单独设 备。 当 LMU作为单独设备时, 既可有单独的天线, 也可与 BTS共享天线, 通过空中接口实现网络间通信。
2.增强测量时间差 (E - OTD ) 定位方法 对于同步网, 手机测量几个 BTS信号的相对到达时间; 对于非同步网, 信号同时还需要被一个位置已知的 LMU接收。 确定了 BTS到手机的信号传 输时间, 则可确定 BTS与手机之间的几何距离, 然后, 再根据此几何距离进 行计算, 最终确定手机的位置。 实现步骤如下:
( 1 )手机收到各基站发来信号,得到 TOA参数; LMU得到 RTD参数; ( 2 ) 手机将 TOA和 RTD参数传送到 GSM网;
( 3 ) OTD测量需要用同步、 标准且模拟的脉冲。 当 BTS发送的帧未 被同步时, 网络需要测量 BTS之间的 RTD。 为了进行精确的三角测量, OTD 测量和 RTD测量(非同步 BTS时)均需要 3个 BTS。 获得 OTD参数后, 手 机位置既可在网络中计算(称为手机辅助方式;), 也可在终端计算(要求手机 具备各种必要信息, 称为手机自主方式)。 通过手机或网络中 SMLC的位置 计算功能模块, 实现位置计算。 综上所述, 与现有技术相比, 本发明能够针对特定区域、 特定时间的特 定用户群发送特定信息。 通过定位及数据分析, 本发明将信息有针对性地发 送给与信息密切相关的用户。 例如, 在机场候机的乘客可以经常收到打折的 机票信息。 通过手机的移动性、 便携性等特点, 针对特定人群投放适当的广 告, 可以加强并保证广告的投放效果, 节省了资源, 节省了成本。 另外, 本 发明的基于小区定位广播也是一种移动广告的业务模式, 小区广播发送与位 置相关的实时信息, 为用户即时消费提供了可能。 当移动用户来到某个小区 需要就餐或购物, 或想参与某种娱乐活动, 那么利用手机进行信息查询是最 方便的选择, 在户外运动中也是较好的选择。 在预先定位的基础上, 可以选 择用户感兴趣的或者能够满足用户当前需要的信息, 确保消费者接收的信息 是期待的信息, 从而提高广告的阅读率。 显然, 本领域的技术人员应该明白, 上述的本发明的各模块或各步骤可 以用通用的计算装置来实现, 它们可以集中在单个的计算装置上, 或者分布 在多个计算装置所组成的网络上, 可选地, 它们可以用计算装置可执行的程 序代码来实现, 从而, 可以将它们存储在存储装置中由计算装置来执行, 或 者将它们分别制作成各个集成电路模块, 或者将它们中的多个模块或步骤制 作成单个集成电路模块来实现。 这样, 本发明不限制于任何特定的硬件和软 件结合。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本 领域的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的 ^"神和 原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的保护 范围之内。

Claims

权 利 要 求 书
1. 一种信息发送方法, 其特征在于, 包括:
将多个地理区域分成类别;
将每个所述类别映射到广播消息; 向移动终端发送所述移动终端所处的地理区域的类别所映射的广 播消息。
2. 根据权利要求 1所述的方法, 其特征在于, 将多个地理区域分成类别包 括:
才艮据所述地理区域运营的业务确定所述地理区域所属的类别。
3. 根据权利要求 2所述的方法, 其特征在于, 所述类别包括以下之一: 机 场、 商场》
4. 根据权利要求 1所述的方法, 其特征在于, 将每个所述类别映射到广播 消息包括:
才艮据所述地理区域运营的业务确定所述类别映射的广播消息。
5. 居权利要求 1所述的方法, 其特征在于, 向移动终端发送所述移动终 端所处的地理区域的类别所映射的广播消息包括:
定位中心获取移动终端的标识,将所述获取的标识发送给信息发送 装置;
所述信息发送装置判断所述标识对应的地理区域,确定所述对应的 地理区域的所述类别, 获取所述类别映射的广播消息, 将所述广播消息 及所述标识通知给短消息 /彩信中心;
所述短消息 /彩信中心通过基站将所述映射的广播消息发送给所述 标 i只对应的移动终端。
6. 根据权利要求 5所述的方法, 其特征在于, 所述移动终端的标识为所述 移动终端的号码。
7. 根据权利要求 1至 6中任一项所述的方法, 其特征在于, 所述广播消息 为广告信息。
8. —种信息发送装置, 其特征在于, 所述装置包括:
分类模块, 用于将多个地理区域分成类别;
映射模块, 将每个所述类别映射到广播消息;
发送模块,用于向移动终端发送所述移动终端所处的地理区域的类 别所映射的广播消息。
9. 根据权利要求 8所述的装置, 其特征在于, 还包括:
存储器, 用于存储所述广播消息、 每个所述地理区域的类别, 所述 广播消息与所述地理区域的类别的映射关系, 以及所述位于所述地理区 域的移动终端的标识。
10. —种信息发送系统, 所述系统包括移动终端、 无线网络和信息发送装置, 其特征在于, 所述无线网络包括:
定位模块, 用于获取位于地理区域的移动终端的标识; 第一发送模块,用于将所述定位模块获取的位于所述地理区域的终 移动端的标识发送给所述信息发送装置;
第二发送模块, 用于发送广播消息到所述移动终端;
所述信息发送装置包括:
接收模块, 用于接收所述广播消息、 以及所述第一发送模块发送的 位于所述地理区域的移动终端的标识;
控制模块,用于根据所述地理区域的移动终端的标识获得对应的所 述广播消息;
发送模块,用于将所述地理区域的移动终端的标识与所述广播消息 的对应关系发送给所述无线网络。
11. 根据权利要求 10所述的系统, 其特征在于, 所述无线网络还包括: 接收模块,用于接收来自所述信息发送装置的所述地理区域的移动 终端的标识与所述广播消息的对应关系。 根据权利要求 10所述的系统, 其特征在于, 所述系统还包括: 存储器,用于存储所述接收模块接收的所述地理区域的移动终端的 标识与所述广播消息的对应关系。
PCT/CN2010/071962 2009-05-06 2010-04-21 信息发送方法、装置及系统 WO2010127589A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN200910136411.2 2009-05-06
CNA2009101364112A CN101557561A (zh) 2009-05-06 2009-05-06 信息发送方法、装置及系统

Publications (1)

Publication Number Publication Date
WO2010127589A1 true WO2010127589A1 (zh) 2010-11-11

Family

ID=41175454

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2010/071962 WO2010127589A1 (zh) 2009-05-06 2010-04-21 信息发送方法、装置及系统

Country Status (2)

Country Link
CN (1) CN101557561A (zh)
WO (1) WO2010127589A1 (zh)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102595343A (zh) * 2011-01-12 2012-07-18 腾讯科技(深圳)有限公司 发送信息的方法、装置和系统
CN103648086A (zh) * 2013-12-20 2014-03-19 深圳先进技术研究院 基于移动基站模拟器的飞机防手机干扰系统及方法
CN110412886A (zh) * 2019-09-04 2019-11-05 安徽华米信息科技有限公司 一种节能控制系统、中控终端及节能控制方法

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101557561A (zh) * 2009-05-06 2009-10-14 中兴通讯股份有限公司 信息发送方法、装置及系统

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008086268A1 (en) * 2007-01-08 2008-07-17 Microsoft Corporation Dynamic map rendering as a function of a user parameter
CN101227649A (zh) * 2008-01-15 2008-07-23 侯万春 以无线覆盖区域选择广告受众的系统和方法
CN101557561A (zh) * 2009-05-06 2009-10-14 中兴通讯股份有限公司 信息发送方法、装置及系统

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008086268A1 (en) * 2007-01-08 2008-07-17 Microsoft Corporation Dynamic map rendering as a function of a user parameter
CN101227649A (zh) * 2008-01-15 2008-07-23 侯万春 以无线覆盖区域选择广告受众的系统和方法
CN101557561A (zh) * 2009-05-06 2009-10-14 中兴通讯股份有限公司 信息发送方法、装置及系统

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102595343A (zh) * 2011-01-12 2012-07-18 腾讯科技(深圳)有限公司 发送信息的方法、装置和系统
CN103648086A (zh) * 2013-12-20 2014-03-19 深圳先进技术研究院 基于移动基站模拟器的飞机防手机干扰系统及方法
CN110412886A (zh) * 2019-09-04 2019-11-05 安徽华米信息科技有限公司 一种节能控制系统、中控终端及节能控制方法

Also Published As

Publication number Publication date
CN101557561A (zh) 2009-10-14

Similar Documents

Publication Publication Date Title
EP1264493B1 (en) Service provision in a communication system
CN100471335C (zh) 关于移动站的信息的提供
US9408176B2 (en) Location and state information providing/inquiring system using WLAN/WPAN communication, log information providing/inquiring system and method, service server and customer terminal, location and state providing/inquiring method
US6839022B1 (en) Network support for subscriber access to mobile caller location information
KR100545351B1 (ko) 듀얼 스택 이동통신망에서의 가입자 위치 추적 방법
KR101008507B1 (ko) 역 광고 sms에 의해 개시되고 촉발되는 supl 네트워크에 기초하여 분실된 및/또는 도난된 전화의 위치 결정을 위한 방법 및 시스템
JP2003516057A (ja) 電気通信システム
CN101529866A (zh) 本地无线网接入点和移动设备间基于呈现的通信
US8744409B2 (en) Location method, device and system for secure user plane location enabled terminal
CN102918875A (zh) 使用城市地址信息的定位和位置服务
CN101742643A (zh) 用于定位移动终端的方法
US8055270B1 (en) System and method for providing location information for a mobile handset
WO2008095399A1 (fr) Procédé et système de localisation de terminal mobile
US7295846B2 (en) Method for localizing a mobile terminal in an area under radio coverage of a cellular communication network and of a localization point, corresponding mobile terminal, server and localization point
WO2010127589A1 (zh) 信息发送方法、装置及系统
US20160007149A1 (en) Service provision in a communication system
KR100766605B1 (ko) 로밍된 서비스 플랫폼 간의 연동 시스템을 통한 위치 정보제공 방법 및 시스템
KR101238634B1 (ko) 이동통신 단말기를 이용한 음영지역에서의 위치 정보 수집방법 및 시스템
KR101222617B1 (ko) 무선 통신 시스템에서 벤더 식별자를 이용한 적응적 위치측정 방법 및 이를 위한 시스템
ES2354674A1 (es) Sistema y método para mercadotecnia local en el punto de venta.
JP5197764B2 (ja) PHS網でのロケーティング(locating)およびアシスタント・ロケーティングの方法および装置
KR20060028515A (ko) 이동통신 단말기의 위치 정보를 이용하여 위치에 따른광고를 제공하는 방법 및 시스템
Burroughs Discussion of Indoor Location Standards
EP1420599B1 (en) Service provision in a communication system
KR101416275B1 (ko) 단말의 위치 정보 획득 시스템 및 방법

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 10771992

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 10771992

Country of ref document: EP

Kind code of ref document: A1