WO2013178091A1 - 一种短消息屏蔽方法和移动终端 - Google Patents

一种短消息屏蔽方法和移动终端 Download PDF

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Publication number
WO2013178091A1
WO2013178091A1 PCT/CN2013/076570 CN2013076570W WO2013178091A1 WO 2013178091 A1 WO2013178091 A1 WO 2013178091A1 CN 2013076570 W CN2013076570 W CN 2013076570W WO 2013178091 A1 WO2013178091 A1 WO 2013178091A1
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WO
WIPO (PCT)
Prior art keywords
short message
mobile terminal
shielding
unit
sending
Prior art date
Application number
PCT/CN2013/076570
Other languages
English (en)
French (fr)
Inventor
李颖
朱淑娟
Original Assignee
华为终端有限公司
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 华为终端有限公司 filed Critical 华为终端有限公司
Publication of WO2013178091A1 publication Critical patent/WO2013178091A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements
    • H04W4/14Short messaging services, e.g. short message services [SMS] or unstructured supplementary service data [USSD]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L51/00User-to-user messaging in packet-switching networks, transmitted according to store-and-forward or real-time protocols, e.g. e-mail
    • H04L51/21Monitoring or handling of messages
    • H04L51/212Monitoring or handling of messages using filtering or selective blocking

Definitions

  • TECHNICAL FIELD The present application relates to the field of information control technologies, and in particular, to a short message screening method and a mobile terminal.
  • voice mode such as dialing the called party number with a mobile phone, and implementing a voice call after being connected
  • a text mode such as using a mobile phone to send a short message to the called party to implement Communication.
  • people can choose the appropriate communication method according to actual needs.
  • signal shields are usually placed in or near these locations.
  • the signal blocker is transmitted at a certain speed from the low-end frequency of the forward channel.
  • the high-end frequency scanning process forms a garbled interference on the received message signal of the mobile phone, so that the mobile phone cannot detect the normal data from the base station, thereby shielding the mobile signal.
  • the mobile signal is completely shielded, if an emergency situation needs to contact the mobile terminal that blocks the signal, the called party cannot be dialed by voice, and the called party cannot be notified by SMS, causing the emergency transaction to be processed in time. In fact, in some cases, it is only necessary to prohibit the short messaging function of the mobile terminal while retaining the voice calling capability.
  • the prior art adopts a "one size fits all" method of shielding mobile signals, which cannot meet the actual needs.
  • an object of the embodiments of the present application is to provide a short message screening method and a mobile terminal, and the method and the mobile terminal perform short message shielding setting on the mobile terminal by using signaling on the network side. To shield the short message while retaining the voice call function of the mobile terminal.
  • the short message screening method includes: detecting, when the mobile terminal sends and receives a short message, detecting a status of the short message sending and receiving flag bit, and if it is in a masking state, prohibiting sending the short message or presenting the short message;
  • the state of the short message transceiving flag is set by the mobile terminal according to the short message masking instruction, and the short message masking instruction is sent by the designated network when the mobile terminal accesses the designated network.
  • the embodiment of the present application also provides a mobile terminal.
  • the terminal includes: a receiving unit, a setting unit, a detecting unit, and a shielding unit, where: the receiving unit is configured to receive a short message screening instruction sent by the designated network when the mobile terminal accesses the designated network;
  • the setting unit is configured to set a state of the short message transceiving flag bit according to the short message masking instruction sent by the specified network.
  • the detecting unit is configured to detect a state of the short message transceiving flag bit when the mobile terminal sends and receives the short message, if the state is a masking state, The masking unit is triggered; the shielding unit is configured to prohibit the mobile terminal from sending or presenting a short message.
  • the technical solution provided by the embodiment of the present application sets a short message transceiving flag bit by receiving a short message masking instruction sent by the specified network when the mobile terminal accesses the designated network.
  • the mobile terminal first detects the status of the transceiving flag bit. If it is in the masked state, it is forbidden to send a short message or to present a short message.
  • the technical solution of the embodiment of the present application performs short message screening setting on the mobile terminal according to the requirements of the specified network, so that the mobile terminal cannot receive short message during the shielding period, but the mobile terminal can still receive the designated network.
  • FIG. 1 is a short message transmission signaling diagram of the prior art
  • FIG. 2 is a flowchart of an embodiment of the short message screening method of the present application
  • FIG. 3 is a signaling diagram of the embodiment of FIG. A block diagram of the components of the mobile terminal embodiment.
  • DETAILED DESCRIPTION OF THE EMBODIMENTS In order to make those skilled in the art better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present application. The described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present application without departing from the inventive scope shall fall within the scope of the application.
  • the short message service transmits the data elements of the short message as the data field of the MAP information in the network by using the MAP (Mobile Application Part) protocol in SS#7 (Signaling System #7, Signaling System No. 7). Realized.
  • MAP Mobile Application Part
  • SS#7 Signaling System #7, Signaling System No. 7
  • MAP information is transmitted by conventional time division multiplexing based signaling or IP layer based SIGTRAN (Signaling Transport Protocol) protocol and adaptation layer.
  • the short message protocol is defined in the short message point-to-point protocol of 3GPP TS 23.040 and the cell broadcast service protocol of 3GPP TS 23.041.
  • the figure shows the signaling flow of the short message transmission process.
  • the mobile terminal needs to send a short message
  • the mobile terminal sends the short message to the VMSC/SGSN through the air interface (visiting the mobile switching center/GPRS service support node), and after receiving the short message, the VMSC/SGSN calls the MAP service package.
  • the MO-FORWARDSM sends information to the IMSC MSC (Interworking Mobile Switching Center) of the SMSC (Short Message Service Center).
  • SMS-PP APDU Application Protocol Data Unit of SMS-PP
  • the SMS-PP APDU Application Protocol Data Unit of SMS-PP
  • the SC will return an acknowledgment message indicating success or failure.
  • the ISC MSC of the SMSC sends an appropriate receipt to the VMSC/SGSN, and the VMSC/SGSN sends a status report to the mobile terminal over the air interface.
  • the receiving process of the short message corresponds to the above process, and is no longer here.
  • Step S201 The mobile terminal accesses the designated network; when the mobile terminal enters the signal coverage of the designated network, the designated network will detect the access request of the mobile terminal, and establish a signal path between the designated network and the mobile terminal. connection.
  • the designated network here refers to a network that needs to set a short message mask within its signal coverage in order to meet the actual situation.
  • the network may be within the scope of one base station or multiple base stations, or may be a certain cell managed by the base station controller. Or local network.
  • Step S202 When the designated network detects the access of the mobile terminal, the short message shielding instruction is sent to the mobile terminal; that is, when the mobile terminal accesses the designated network, the mobile terminal receives the short message screening instruction sent by the designated network; the mobile terminal accesses the designated network. After the signal coverage, a connection establishment request is sent, and the designated network can detect (discover) the access of the mobile terminal after receiving the connection request. At this time, the designated network sends a short message masking instruction to the mobile terminal.
  • the short message masking instruction can be directly sent to the mobile terminal, or can be carried in the paging request message (Paging) and sent to the mobile terminal, which can save system overhead.
  • IMSI Paging is often used in practical applications.
  • the paging request message uses IMSI to identify the user. The uniqueness is good, and no additional load needs to be added.
  • Step S203 The mobile terminal sets a short message transceiving flag bit according to the short message masking instruction sent by the specified network. The mobile terminal directly receives the short message masking instruction, or obtains the short message sending and receiving flag according to the short message masking instruction after obtaining the short message masking instruction by parsing the paging request message.
  • the short message transceiving flag includes two states: a masked state and an unmasked state, which can be identified by a single bit.
  • the short message transceiving flag is turned on by 1, the mobile terminal is in a masked state, and has a short message shielding function;
  • the message sending and receiving flag is turned off, the mobile terminal is in an unshielded state, and the short message can be sent and received freely.
  • the mobile terminal sets the short message transceiving flag according to the short message masking instruction, it may preferably return a message that the processing is successful to the designated network.
  • Step S204 When the mobile terminal sends and receives the short message, detecting the status of the short message sending and receiving flag bit, if it is in the masking state, executing step S205; when the mobile terminal receives the short message sent by the other mobile terminal, or editing the short message by itself When the message is ready to be sent, the status of the short message transceiving flag bit is detected first, and whether the short message is sent or received is determined according to the status of the short message flag bit.
  • Step S205 The mobile terminal prohibits sending a short message or presents a short message; when detecting that the status of the short message flag bit is 1, it indicates that the short message blocking function is enabled on the mobile terminal, and the mobile terminal is in the shielding state, the mobile terminal will prohibit the Short messages sent by other mobile terminals, or short messages sent by other mobile terminals that are not received.
  • the process of the foregoing embodiment is a short message screening process when the mobile terminal first enters the coverage of the designated network. If the mobile terminal is set by the short message screening function, it receives short messages sent by other terminals or prepares to be sent to other terminals.
  • the steps S204 and S205 need to be performed to achieve the purpose of the invention, that is, detecting the state of the short message flag bit, and if it is the masking state, prohibiting the presentation of the short message or the sending of the short message.
  • the technical solution provided in this embodiment sets a short message transceiving flag bit by receiving a short message masking instruction sent by the specified network when the mobile terminal accesses the designated network.
  • the mobile terminal first detects the status of the transceiving flag bit. If it is in the masked state, sending a short message or presenting a short message is prohibited.
  • the technical solution of this embodiment performs short message screening setting on the mobile terminal according to the requirements of the specified network, so that the mobile terminal cannot receive short messages during the shielding period, but the mobile terminal can still receive the specified network.
  • the network signal therefore, does not hinder the normal voice communication of the mobile terminal, and solves the technical problem that the prior art cannot select the communication mode according to actual needs.
  • the mobile terminal sets the state of the short message transceiving flag bit according to the short message masking instruction sent by the specified network, and further determines whether to allow the receiving and transmitting of the short message according to the flag bit status.
  • the short message transceiving flag bit not only the state of the short message transceiving flag bit needs to be set, but also the duration, start time or end time of the flag bit state is also set at the same time.
  • the duration of the masking state is further set, so that the mobile terminal will remain in the shielding state for the period of time.
  • the short message transceiving flag bit is set to the unmasked state, the non-masking state is changed to the masking state after a long time of setting, that is, the short message masking function is started after the duration.
  • the short message masking instruction may be carried in the paging request message as described above, and the short message transceiving flag bit is The masking duration information is also carried in the paging request message and sent to the mobile terminal. After receiving the paging request message, the mobile terminal parses the short message masking instruction and the masking duration information from the message, and sets the duration of the masking state according to the short message masking instruction and the masking duration information.
  • the mobile terminal can unmask the state by itself, and the "unmasking state” here can be the shielding of the short message sending and receiving flag bit.
  • the state is set to the unmasked state.
  • the "unshielded state” can be changed back to the "masked state” when certain conditions are met. It can also be the application of completely removing the "shielded short message sending and receiving" function. In this case, if it is necessary to activate the short message masking function of the mobile terminal, it is necessary to re-receive the masking instruction to perform setting and the like when re-accessing the designated network.
  • the mobile terminal may also send an inquiry message indicating whether to end the masking state to the designated network when the masking state duration ends, and set the next status of the short message transceiving flag bit according to the response message sent by the specified network.
  • the state of the short message transceiving flag bit is detected as the masking state, the sending of the short message or the short message is prohibited, and if the short message sent by other mobile terminals or the edited short message is completely discarded, until the detected state is reached. It is allowed to receive and present the message or allow editing and sending of the short message when it is in the unmasked state, which will cause waste of resources and bring unnecessary trouble to the mobile terminal user.
  • the present application may also cache the received short message or the edited short message before detecting the status of the short message transceiving flag bit. If the short message transceiving flag bit is detected as being unmasked, the short message may be presented. Sending the short message; if the short message sending and receiving flag bit is detected as being masked, It is forbidden to present the short message or send the short message to continue the detection work. It is worth noting that: if the user edits the short message at the same time when receiving the short message, the received short message and the edited short message can be cached simultaneously through the two queues, and the short message receiving and transmitting flag bit is blocked. In the state, it is prohibited to present the received short message or to send the edited short message.
  • FIG. 3 shows a setting process of the short message masking function of the mobile terminal B, and a short message transmitting and receiving process in the case where the mobile terminal B sets the short message transceiving flag bit state.
  • the apparatus embodiment 400 includes: a receiving unit 401, a setting unit 402, a detecting unit 403, and a screening unit 404, where: the receiving unit 401 is configured to receive the designated network when the mobile terminal accesses the designated network.
  • the short message masking instruction is sent; the setting unit 402 is configured to set a state of the short message transceiving flag bit according to the short message masking instruction sent by the specified network; the detecting unit 403 is configured to send and receive the short message in the mobile terminal The state of the short message transceiving flag bit is detected, and if it is the masking state, the masking unit is triggered; the shielding unit 404 is configured to prohibit the mobile terminal from transmitting or presenting the short message.
  • the working process of the mobile terminal embodiment is as follows: the receiving unit 401 of the mobile terminal first receives the short message screening instruction sent by the designated network when the mobile terminal accesses the designated network, and then the short message sent by the setting unit 402 according to the specified network.
  • the masking instruction sets the state of the short message transceiving flag bit; the detecting unit 403 detects the state of the short message transceiving flag bit when the mobile terminal transmits and receives the short message, and if it is the masking state, triggers the shielding unit 404, by which the mobile terminal is prohibited from transmitting or Present a short message.
  • the mobile terminal embodiment of the present application sets a short message transceiving flag bit by receiving a short message masking instruction sent by the specified network when the mobile terminal accesses the designated network, in the short message receiving and receiving process, the mobile terminal The status of the transceiving flag bit is detected first, and if it is the masking state, sending short messages or short messages is prohibited.
  • the technical solution of the mobile terminal embodiment performs short message screening setting on the mobile terminal according to the requirements of the specified network, so that the mobile terminal cannot receive short messages during the shielding period, but the mobile terminal can still receive the designated information.
  • the network signal of the network does not hinder the normal voice communication of the mobile terminal, and solves the technical problem that the prior art cannot select the communication mode according to actual needs.
  • the short message screening instruction may be directly sent to the mobile terminal, or may be carried in the paging request message, and when being carried in the paging request message, the mobile terminal may further include a parsing unit 405, where the unit And configured to parse the paging request message to obtain a short message screening instruction, where the paging request message is sent by the designated network when detecting that the mobile terminal accesses, and the paging request message includes a short message screening instruction.
  • the unit And configured to parse the paging request message to obtain a short message screening instruction, where the paging request message is sent by the designated network when detecting that the mobile terminal accesses, and the paging request message includes a short message screening instruction.
  • the mobile terminal embodiment may not only require setting the state of the short message transceiving flag bit but also setting the duration of the state according to the actual situation, which will facilitate more flexible control of the short message screening function and enhance Its application value.
  • the received paging request message of the mobile terminal embodiment may further include shielding duration information.
  • the parsing unit of the mobile terminal is further configured to parse the paging request message to obtain the masking duration information.
  • the setting unit is further configured to set the short message transcoding flag bit according to the masking duration information when the short message transceiving flag bit is set to the masking state. The length of the masked state.
  • the mobile terminal of the present application may further include a first sending unit, configured to send, to the designated network, an inquiry message of whether to end the masking state when the set masking state duration ends, and then the setting unit sends the response message according to the specified network. Set the status of the short message transceiving flag. This approach is beneficial to the overall control of the short message screening process.
  • the foregoing mobile terminal embodiment may further include a presentation unit or a second sending unit, and a buffer unit according to an actual situation, where: a buffer unit, configured to receive the short message before and after detecting the status of the short message sending and receiving flag bit The short message or the edited short message is buffered, if the detecting unit detects that the short message sending and receiving flag bit is in an unmasked state, triggering the rendering unit or the second sending unit; the rendering unit is configured to present the received short message; a sending unit, configured to send the edited short message.
  • a buffer unit configured to receive the short message before and after detecting the status of the short message sending and receiving flag bit The short message or the edited short message is buffered, if the detecting unit detects that the short message sending and receiving flag bit is in an unmasked state, triggering the rendering unit or the second sending unit; the rendering unit is configured to present the received short message; a sending unit, configured to send the edited short message.

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

Abstract

本申请的实施例给出了一种短消息屏蔽方法。该方法包括:在移动终端收发短消息时,检测短消息收发标志位的状态,如果为屏蔽状态,则禁止呈现短消息或发送短消息;其中:所述短消息收发标志位的状态由移动终端根据短消息屏蔽指令设置,所述短消息屏蔽指令在移动终端接入指定网络时由指定网络下发。本申请实施例还给出了与上述方法相对应的移动终端。通过本申请实施例可使移动终端在保持正常语音功能情况下实现短消息屏蔽。

Description

一种短消息屏蔽方法和移动终端
本申请要求于 2012 年 5 月 31 日提交中国专利局、 申请号为 201210176546.3、 名称为 "一种短消息屏蔽方法和移动终端 "的中国专利申请的 优先权, 其全部内容通过引用结合在本申请中。
技术领域 本申请涉及信息控制技术领域,尤其涉及一种短消息屏蔽方法和移动终端。 背景技术 随着通信技术的发展, 移动终端越来越成为人们的基本通信工具。利用移 动终端实现通信的方式通常包括两种:一是语音方式, 如用手机拨打被叫方号 码, 接通后实现语音通话; 一是文本方式, 如用手机向被叫方发送短消息以实 现通信。在大多数场合, 人们可根据实际需要选择恰当的通信方式。但是, 在 某些应用场合, 诸如正在开会的会议室、 上课的教室、 考场等, 通常会在这些 场所内或附近安置信号屏蔽器,信号屏蔽器以一定的速度从前向信道的低端频 率向高端频率扫描, 该扫描过程对手机接收报文信号形成乱码干扰, 使得手机 不能检测到来自基站的正常数据, 从而实现移动信号的屏蔽。 然而, 移动信号完全屏蔽情况下, 如果出现紧急情况需要联系屏蔽掉信号 的移动终端,则既无法通过语音方式拨打被叫方,也无法通过短信通知被叫方, 造成紧急事务不能及时处理。 实际上, 在某些情况下, 仅需要禁止移动终端的 短消息收发功能, 而保留语音通话能力。现有技术采取屏蔽移动信号的"一刀 切"方式, 不能满足现实需要。 发明内容 有鉴于此,本申请实施例的发明目的在于提供一种短消息屏蔽方法及移动 终端, 该方法及移动终端通过网络侧的信令对移动终端进行短消息屏蔽设置, 以在保留移动终端的语音通话功能的情况下实现短消息的屏蔽。 本申请实施例给出的短消息屏蔽方法包括: 在移动终端收发短消息时,检测短消息收发标志位的状态, 如果为屏蔽状 态, 则禁止发送短消息或呈现短消息; 其中: 所述短消息收发标志位的状态由移动终端根据短消息屏蔽指令设置,所述 短消息屏蔽指令在移动终端接入指定网络时由所述指定网络下发。 本申请实施例还给出了一种移动终端。该终端包括:接收单元、设置单元、 检测单元和屏蔽单元, 其中: 所述接收单元,用于接收在移动终端接入指定网络时该指定网络下发的短 消息屏蔽指令; 所述设置单元,用于根据指定网络下发的短消息屏蔽指令设置短消息收发 标志位的状态; 所述检测单元,用于在移动终端收发短消息时检测短消息收发标志位的状 态, 如果为屏蔽状态, 则触发屏蔽单元; 所述屏蔽单元, 用于禁止移动终端发送或呈现短消息。 本申请实施例提供的技术方案在移动终端接入指定网络时,通过接收指定 网络发送的短信息屏蔽指令设置短消息收发标志位,在短消息收发过程中, 移 动终端先检测收发标志位的状态, 如果为屏蔽状态, 则禁止发送短信息或者呈 现短消息。与现有技术相比, 本申请实施例的技术方案根据指定网络的要求对 移动终端进行短消息屏蔽设置, 使移动终端在屏蔽期内不能收发短信息,但由 于移动终端仍能接收指定网络的网络信号, 因此, 并不妨碍移动终端的正常语 音通信, 解决了现有技术不能根据实际需要选择通信方式的技术问题。 附图说明 为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面描述 中的附图仅仅是本申请中记载的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。 图 1为现有技术的短消息发送信令图; 图 2为本申请的短消息屏蔽方法实施例的流程图; 图 3为图 2所述实施例的信令图 ·' 图 4为本申请的移动终端实施例的组成框图。 具体实施方式 为了使本技术领域的人员更好地理解本申请中的技术方案,下面将结合本 申请实施例中的附图, 对本申请实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本申请一部分实施例, 而不是全部的实施例。 基 于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获 得的所有其他实施例, 都应当属于本申请保护的范围。 为便于本领域技术人员理解本申请的发明目的、技术方案和技术效果, 下 面先对短消息的发送流程作原理性介绍,然后结合具体实施例和附图对本技术 方案进行详细阐释。 短消息服务是通过使用 SS#7 ( Signaling System #7, 信令系统 7号) 中的 MAP (Mobile Application Part, 移动应用部分)协议将短消息的数据元素作为 MAP信息的数据域在网络中传输实现的。这些 MAP信息通过传统的基于时分 复用的信令,或者基于 IP层的 SIGTRAN ( SignalingTransport,信令传输协议) 协议和适配层进行传输。 短消息协议的定义见 3GPP TS 23.040的短信点对点 协议和 3GPP TS 23.041的小区广播服务协议。 参见图 1, 该图示出了短消息发送过程的信令流程。 当移动终端需要发送 一条短消息时, 移动终端会通过空中接口将短消息发送给 VMSC/SGSN (拜访 移动交换中心 /GPRS服务支持节点), VMSC/SGSN接收到短消息后,调用 MAP 服务包中的 MO— FORWARDSM发送信息给 SMSC (短消息服务中心) 的 IW MSC (互通移动交换中心)。 SMSC的 IW MSC收到 MO— FORWARDSM后, 传送包含短消息内容的 SMS-PP APDU ( SMS-PP 的应用协议数据单元) 到 SMSC的实际服务中心 SC中存储, 随后将该短消息进行转发或交付给目的地 址。 SC将返回一个表明成功或失败的确认消息, SMSC的 IW MSC在收到该 确认信息后,发送一个适当的回执给 VMSC/SGSN, 由 VMSC/SGSN通过空中 接口向移动终端发送状态报告。短消息的接收过程与上述过程对应, 这里不再
下面结合上述短消息的收发流程和本申请的实施例详细介绍本申请的技 术方案。 参见附图 2, 图 2示出了本申请的短消息屏蔽方法的一个实施例的流 程。 该实施例包括: 歩骤 S201 : 移动终端接入指定网络; 移动终端进入到指定网络的信号覆盖范围时,指定网络将检测到移动终端 的接入请求, 建立指定网络与移动终端间的信号通路连接。这里的指定网络指 为了满足实际情况要求, 需要在其信号覆盖范围内设置短消息屏蔽的网络, 该 网络可以是一个基站或多个基站所辖范围,也可以是基站控制器管理的某个小 区或局部网络。 比如, 军事管辖区、 大型考场、 会议中心等, 这些地方的网络 通常具有设定短消息屏蔽服务的需求。 歩骤 S202: 指定网络检测到移动终端接入时, 向移动终端发送短消息屏 蔽指令; 即移动终端接入指定网络时, 移动终端接收指定网络发送的短消息屏 蔽指令; 移动终端接入指定网络的信号覆盖范围后,会发送建立连接请求, 指定网 络接收到该连接请求后即可检测到(发现)移动终端的接入, 这时, 该指定网 络向移动终端发送短消息屏蔽指令。 短消息屏蔽指令可直接发送到移动终端, 也可携带在寻呼请求消息(Paging)中发送到移动终端,这样可节约系统开销。 实际应用中多选用 IMSI Paging, 该寻呼请求消息用 IMSI来标识用户, 唯一性 好, 无需要追加额外的负荷。 歩骤 S203 : 移动终端根据指定网络下发的短消息屏蔽指令设置短消息收 发标志位; 移动终端直接接收到短消息屏蔽指令,或者通过解析寻呼请求消息获得短 消息屏蔽指令后, 根据该短消息屏蔽指令设置短消息收发标志位。短消息收发 标志位包括两种状态: 屏蔽状态和非屏蔽状态, 可用一位二进制位标识, 比如 用 1标识短消息收发标志位开启,移动终端处于屏蔽状态,具有短信屏蔽功能; 用 0标识短消息收发标志位关闭,移动终端处于非屏蔽状态,短信可自由收发。 在移动终端根据短消息屏蔽指令设置好短消息收发标志位后,可优选向指定网 络返回处理成功的消息。 歩骤 S204: 移动终端收发短消息时, 检测短消息收发标志位的状态, 如 果为屏蔽状态, 则执行歩骤 S205 ; 移动终端接收其他移动终端发送来的短消息时,或者自己编辑好短消息准 备发送时, 先检测短消息收发标志位的状态, 根据短消息标志位的状态决定是 否收发短消息。 歩骤 S205: 移动终端禁止发送短消息或呈现短消息; 在检测到短消息标志位的状态为 1时,说明移动终端开启了短消息屏蔽功 能,移动终端处于屏蔽状态,则移动终端将禁止向其他移动终端发送的短消息, 或者不呈现接收的其他移动终端的发来的短消息。 值得注意的是:上述实施例过程是移动终端首次进入指定网络的覆盖范围 时的短消息屏蔽过程, 如果移动终端经过短消息屏蔽功能设置后,接收其他终 端发送来的短消息或准备向其他终端发送短消息时, 仅需要执行歩骤 S204、 S205 即可实现发明目的, 即检测短消息标志位的状态, 如果为屏蔽状态, 则 禁止呈现短消息或发送短消息。 本实施例提供的技术方案在移动终端接入指定网络时,通过接收指定网络 发送的短信息屏蔽指令设置短消息收发标志位,在短消息收发过程中, 移动终 端先检测收发标志位的状态, 如果为屏蔽状态, 则禁止发送短信息或者呈现短 消息。与现有技术相比, 本实施例的技术方案根据指定网络的要求对移动终端 进行短消息屏蔽设置, 使移动终端在屏蔽期内不能收发短信息, 但由于移动终 端仍能接收指定网络的网络信号, 因此, 并不妨碍移动终端的正常语音通信, 解决了现有技术不能根据实际需要选择通信方式的技术问题。 上述实施例中移动终端根据指定网络发送的短消息屏蔽指令设置短消息 收发标志位的状态, 进而根据标志位状态决定是否允许短消息的接收和发送。 然而, 在具体应用实践中, 不仅需要设置短消息收发标志位的状态, 通常还会 同时设定该标志位状态的持续时间、 启动时间或结束时间。 比如, 短消息收发 标志位设置为屏蔽状态时,进一歩设定该屏蔽状态保持的时长, 这样移动终端 在该时段内将一直处于屏蔽状态。还比如, 短消息收发标志位设置为非屏蔽状 态时, 进一歩设定经过多长时间后将非屏蔽状态改变为屏蔽状态, 也就是说, 经过该时长后才启动短消息屏蔽功能。假设现在需要设定移动终端为屏蔽状态 且保持该屏蔽状态一定的时长, 则在具体实现时, 可同前述将短消息屏蔽指令 携带于寻呼请求消息之中一样,将短消息收发标志位的屏蔽时长信息也携带在 寻呼请求消息之中发送到移动终端。移动终端接收到该寻呼请求消息后, 从该 消息中解析出短消息屏蔽指令和屏蔽时长信息,根据短消息屏蔽指令和屏蔽时 长信息设置屏蔽状态的时长。 按照上述内容设定短消息收发标志位和屏蔽状态时长情况下,如果该屏蔽 状态时长结束时, 移动终端可自行解除屏蔽状态, 这里的 "解除屏蔽状态"可 以是将短消息收发标志位的屏蔽状态设定为非屏蔽状态, 这种情况下, 可在满 足一定条件时, 再由 "非屏蔽状态"转变回 "屏蔽状态"; 也可以是完全去除 "屏蔽短消息收发"功能的应用, 这种情况下, 如果需要启动移动终端的短消 息屏蔽功能, 需要重新接入该指定网络时重新接收屏蔽指令进行设置等操作。 除自行解除这种的情况外, 移动终端还可以在屏蔽状态时长结束时, 向指定网 络发送是否结束屏蔽状态的询问消息,根据指定网络下发的应答消息设置短消 息收发标志位接下来的状态。 上述实施例中检测到短消息收发标志位的状态为屏蔽状态时禁止发送短 消息或呈现短消息,如果完全丢弃其他移动终端发送来的短消息或已经编辑好 的短消息,直至检测到的状态为非屏蔽状态时才允许接收和呈现该消息或允许 编辑和发送短消息, 将造成资源浪费, 给移动终端用户带来不必要的麻烦。 因 此, 本申请还可在检测短消息收发标志位的状态之前,将接收的短消息或者编 辑的短消息进行缓存, 如果检测到短消息收发标志位为非屏蔽状态, 则呈现所 述短消息或者发送所述短消息; 如果检测到短消息收发标志位为屏蔽状态, 则 禁止呈现所述短消息或者发送所述短消息,继续进行检测工作。值得注意的是: 如果用户在接收短消息时同时编辑好了短消息,则可对接收的短消息和编辑的 短消息通过两个队列同时进行缓存操作,在检测到短消息收发标志位为屏蔽状 态时, 既禁止呈现接收的短消息, 也禁止发送编辑的短消息。 参见图 3, 该图示出了上述实施例的一个实例的信令流转过程。 该实例给 出两个移动终端(移动终端 A或 B ) , 移动终端 B是进入指定网络覆盖范围的 终端, 移动终端 A是位于该指定网络外的终端。 图 3示出了移动终端 B的短 消息屏蔽功能的设置过程、 移动终端 B在设置了短消息收发标志位状态的情 况下的短消息发送和接收过程。
上述实施例是本申请提供的方法实施例, 相应地, 本申请还提供了一种移 动终端的实施例。 参见附图 4, 该装置实施例 400包括: 接收单元 401、 设置 单元 402、 检测单元 403和屏蔽单元 404, 其中: 所述接收单元 401, 用于接收在移动终端接入指定网络时该指定网络下发 的短消息屏蔽指令; 所述设置单元 402, 用于根据指定网络下发的短消息屏蔽指令设置短消息 收发标志位的状态; 所述检测单元 403, 用于在移动终端收发短消息时检测短消息收发标志位 的状态, 如果为屏蔽状态, 则触发屏蔽单元; 所述屏蔽单元 404, 用于禁止移动终端发送或呈现短消息。 上述移动终端实施例的工作过程是:移动终端的接收单元 401先接收在移 动终端接入指定网络时该指定网络下发的短消息屏蔽指令, 然后由设置单元 402根据指定网络下发的短消息屏蔽指令设置短消息收发标志位的状态; 检测 单元 403在移动终端收发短消息时检测短消息收发标志位的状态,如果为屏蔽 状态, 则触发屏蔽单元 404, 通过该单元禁止移动终端发送或呈现短消息。 本申请移动终端实施例在移动终端接入指定网络时,通过接收指定网络发 送的短信息屏蔽指令设置短消息收发标志位,在短消息收发过程中, 移动终端 先检测收发标志位的状态, 如果为屏蔽状态, 则禁止发送短信息或者呈现短消 息。与现有技术相比, 本移动终端实施例的技术方案根据指定网络的要求对移 动终端进行短消息屏蔽设置, 使移动终端在屏蔽期内不能收发短信息, 但由于 移动终端仍能接收指定网络的网络信号, 因此, 并不妨碍移动终端的正常语音 通信, 解决了现有技术不能根据实际需要选择通信方式的技术问题。 上述移动终端实施例中短信屏蔽指令可直接发送到移动终端,也可携带于 寻呼请求消息中进行发送, 当携带于寻呼请求消息中时, 该移动终端还可以包 括解析单元 405, 该单元用于解析寻呼请求消息以获得短消息屏蔽指令, 所述 寻呼请求消息由指定网络在检测到有移动终端接入时发送,所述寻呼请求消息 包括短消息屏蔽指令。通过将短消息屏蔽指令嵌入寻呼请求消息中, 可避免系 统增加额外的开销。 上述移动终端实施例在具体应用中, 根据实际情况, 可能不仅要求设置短 消息收发标志位的状态, 还需要设定该状态的持续时间, 这样将有利于更加灵 活地控制短消息屏蔽功能, 增强其应用价值。 为此, 本移动终端实施例的接收 的寻呼请求消息中还可以包括屏蔽时长信息。这种情形下, 移动终端的解析单 元, 还用于解析所述寻呼请求消息以获得屏蔽时长信息; 设置单元, 还用于在 短消息收发标志位设置为屏蔽状态时,根据屏蔽时长信息设置屏蔽状态的时长。 进一歩地, 本申请移动终端还可以包括第一发送单元,用于在设置的屏蔽状态 时长结束时向指定网络发送是否结束屏蔽状态的询问消息,然后由设置单元根 据指定网络下发的应当消息设置短消息收发标志位的状态。这种方式有利于全 盘地控制短消息屏蔽过程。 上述移动终端实施例在具体应用中, 根据实际情况, 还可以包括呈现单元 或第二发送单元, 以及缓存单元, 其中: 缓存单元, 用于在检测短消息收发标 志位的状态之前, 将接收的短消息或编辑的短消息进行缓存, 如果检测单元检 测到短消息收发标志位为非屏蔽状态, 则触发呈现单元或第二发送单元; 呈现 单元, 用于呈现所述接收的短消息; 第二发送单元, 用于发送所述编辑的短消 息。通过增加这些功能单元有利于避免短消息收发标志位为屏蔽状态而拒绝接 收其他终端发送来的短消息或者拒绝发送已编辑好的短消息带来的资源浪费。 以上所述仅为本申请的较佳实施例, 并不用以限制本申请, 凡在本申请的 精神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在发明的保 护范围之内。

Claims

权 利 要求 书
1、 一种短消息屏蔽方法, 其特征在于, 该方法包括: 在移动终端收发短消息时,检测短消息收发标志位的状态, 如果为屏蔽状 态, 则禁止呈现短消息或发送短消息; 其中: 所述短消息收发标志位的状态由移动终端根据短消息屏蔽指令设置,所述 短消息屏蔽指令在移动终端接入指定网络时由所述指定网络下发。
2、 根据权利要求 1所述的方法, 其特征在于, 所述短消息收发标志位的 状态由移动终端根据短消息屏蔽指令设置,所述短消息屏蔽指令在移动终端接 入指定网络时由所述指定网络下发, 具体包括: 移动终端接入指定网络时,所述移动终端接收所述指定网络下发的寻呼请 求消息, 所述寻呼请求消息包含短消息屏蔽指令, 移动终端解析所述寻呼请求消息获得短消息屏蔽指令,以便根据短消息屏 蔽指令设置短消息收发标志位的状态。
3、 根据权利要求 2所述的方法, 其特征在于, 所述寻呼请求消息还包括 屏蔽时长信息, 贝 IJ : 移动终端解析所述寻呼请求消息获得屏蔽时长信息,在短消息收发标志位 设置为屏蔽状态时, 根据屏蔽时长信息设置屏蔽状态的时长。
4、 根据权利要求 3所述的方法, 其特征在于, 在设置的屏蔽状态时长结 束时, 移动终端将短消息收发标志位的状态设置为非屏蔽状态, 或者, 移动终端向指定网络发送是否结束屏蔽状态的询问消息,根据指定网络下 发的应答消息设置短消息收发标志位的状态。
5、 根据权利要求 1所述的方法, 其特征在于, 在检测短消息收发标志位 的状态之前,将接收的短消息或者编辑的短消息进行缓存, 如果检测到短消息 收发标志位为非屏蔽状态, 则呈现所述短消息或者发送所述短消息。
6、 一种移动终端, 其特征在于, 该终端包括: 接收单元、 设置单元、 检 测单元和屏蔽单元, 其中: 所述接收单元,用于接收在移动终端接入指定网络时该指定网络下发的短 消息屏蔽指令; 所述设置单元,用于根据指定网络下发的短消息屏蔽指令设置短消息收发 标志位的状态; 所述检测单元,用于在移动终端收发短消息时检测短消息收发标志位的状 态, 如果为屏蔽状态, 则触发屏蔽单元; 所述屏蔽单元, 用于禁止移动终端发送或呈现短消息。
7、 根据权利要求 6所述的终端, 其特征在于, 所述接收单元接收在移动 终端接入指定网络时该指定网络下发的寻呼请求消息,所述寻呼请求消息包括 短消息屏蔽指令, 所述终端还包括解析单元,用于解析所述寻呼请求消息以获 得短消息屏蔽指令。
8、 根据权利要求 7所述的终端, 其特征在于, 所述寻呼请求消息还包括 屏蔽时长信息, 所述解析单元, 还用于解析所述寻呼请求消息以获得屏蔽时长信息; 所述设置单元, 还用于在短消息收发标志位设置为屏蔽状态时, 根据屏蔽 时长信息设置屏蔽状态的时长。
9、 根据权利要求 8所述的终端, 其特征在于, 所述终端还包括第一发送 单元,用于在设置的屏蔽状态时长结束时向指定网络发送是否结束屏蔽状态的 询问消息, 所述设置单元,还用于根据指定网络下发的应答消息设置短消息收发标志 位的状态。
10、 根据权利要求 6所述的终端, 其特征在于, 所述终端还包括呈现单元 和 /或第二发送单元, 以及缓存单元, 其中: 所述缓存单元,用于在检测短消息收发标志位的状态之前,将接收的短消 息和 /或编辑的短消息进行缓存, 如果检测单元检测到短消息收发标志位为非 屏蔽状态, 则触发呈现单元和 /或第二发送单元; 所述呈现单元, 用于呈现所述接收的短消息; 所述第二发送单元, 用于发送所述编辑的短消息。
PCT/CN2013/076570 2012-05-31 2013-05-31 一种短消息屏蔽方法和移动终端 WO2013178091A1 (zh)

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CN104796525A (zh) * 2014-01-20 2015-07-22 中国科学院深圳先进技术研究院 一种短信显示的方法及装置
CN105828308B (zh) * 2015-10-20 2020-10-16 维沃移动通信有限公司 一种限制电子设备通信功能的方法、电子设备及微型基站
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