WO2019090644A1 - 一种用于通信信息处理的方法及移动终端 - Google Patents

一种用于通信信息处理的方法及移动终端 Download PDF

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Publication number
WO2019090644A1
WO2019090644A1 PCT/CN2017/110279 CN2017110279W WO2019090644A1 WO 2019090644 A1 WO2019090644 A1 WO 2019090644A1 CN 2017110279 W CN2017110279 W CN 2017110279W WO 2019090644 A1 WO2019090644 A1 WO 2019090644A1
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Prior art keywords
mobile terminal
incoming call
positioning
module
information processing
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PCT/CN2017/110279
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English (en)
French (fr)
Inventor
辛弦
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深圳传音通讯有限公司
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Application filed by 深圳传音通讯有限公司 filed Critical 深圳传音通讯有限公司
Priority to PCT/CN2017/110279 priority Critical patent/WO2019090644A1/zh
Publication of WO2019090644A1 publication Critical patent/WO2019090644A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones

Definitions

  • the present invention relates to the field of mobile terminals, and in particular, to a method for communication information processing and a mobile terminal.
  • the mobile terminal can store contact information for communication with contacts.
  • the manner in which the mobile terminal communicates with the outside may be a voice call or a transmission of communication information, where the communication information may be exchanged through short messages or through an application, and the content may be text, photos, audio files, and videos. file.
  • the prior art uses a Bluetooth headset to assist the driver to answer an incoming call. Since the Bluetooth headset is connected to the mobile terminal by using a wireless connection manner, and is not restricted by the location of the mobile terminal, the Bluetooth headset is used to make an incoming call. When the call is answered, there is no need to perform a position shift operation on the mobile terminal, and there is no need to occupy one hand, and the driving operability is not affected.
  • the existing Bluetooth headset technology suitable for the driver is divided into two types: a car Bluetooth headset and a human body portable Bluetooth headset.
  • the car Bluetooth headset is disposed in the vehicle, and is received and played through a speaker and a microphone provided in the vehicle. Sound signal for voice calls.
  • the human body portable bluetooth earphone is a miniaturized and lightweight wireless earphone that can be worn on the user's ear to assist the user in making a voice call.
  • the human body portable bluetooth headset The advantage is not limited to use in the vehicle, can be used anywhere or occasion.
  • the user often forgets to pair the mobile terminal with the in-vehicle bluetooth headset, resulting in failure to use the in-vehicle Bluetooth headset to make a voice call.
  • the mobile terminal sends a prompt tone. Will also interfere with user driving;
  • the incoming call cannot be processed by identifying whether the user is driving the vehicle.
  • an object of the present invention is to provide a method for communication information processing and a mobile terminal, which can determine an incoming call by presetting reply information and determining whether the mobile terminal receives an incoming call in a mobile state. Automatic processing ensures that the user's driving is not affected.
  • a method for communication information processing comprising the steps of:
  • the mobile terminal When the mobile terminal receives an incoming call without connecting a Bluetooth headset, determining whether the moving speed of the mobile terminal is greater than a speed threshold preset in the mobile terminal;
  • the incoming call is hanged up and sent to the contact corresponding to the incoming call.
  • the step of determining whether the moving speed of the mobile terminal is greater than a speed threshold preset in the mobile terminal comprises:
  • the step of setting the speed threshold in the mobile terminal further includes the following steps:
  • the incoming call is not hang up and a reply information operation is performed.
  • the GPS module in the mobile terminal is implemented.
  • the mobile cellular network is implemented.
  • the speed threshold is at least 20 kilometers per hour.
  • the reply message is sent in a short message manner.
  • corresponding reply information is preset for different contacts; the incoming call is hung up and the reply is sent to a contact corresponding to the incoming call.
  • the corresponding reply message is sent to the contact.
  • a mobile terminal includes a memory, a processor, a communication module, a display module, an input module, a positioning module, and a computer program stored on the memory and operable on the processor, the processing The following steps are implemented when the computer program is executed:
  • the mobile terminal When the mobile terminal receives an incoming call without connecting a Bluetooth headset, determining whether the moving speed of the mobile terminal is greater than a speed threshold preset in the mobile terminal;
  • the incoming call is hanged up and sent to the contact corresponding to the incoming call.
  • the positioning module is a GPS module; the mobile terminal further comprises a map module.
  • FIG. 1 is a flow chart showing a method for communication information processing in accordance with an embodiment of the present invention
  • FIG. 2 is a schematic flow chart of step S103 of FIG. 1 in accordance with an embodiment of the present invention
  • step S103 of FIG. 1 is a schematic flow chart of step S103 of FIG. 1 in accordance with another embodiment of the present invention.
  • FIG. 4 is a structural block diagram of a mobile terminal for communication information processing in accordance with an embodiment of the present invention.
  • FIG. 5 is a structural block diagram of a mobile terminal for communication information processing in accordance with another embodiment of the present invention.
  • 10-Mobile terminal 11-memory, 12-processor, 13-input module, 14-communication module, 15-display module, 16-position module, 17-GPS module, 18-map module.
  • first, second, third, etc. may be used in the present disclosure to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other.
  • first information may also be referred to as second information without departing from the scope of the present disclosure.
  • second information may also be referred to as first information.
  • word "if” as used herein may be interpreted as "when” or “when” or “in response to a determination.”
  • FIG. 1 is a schematic flowchart of a method for communication information processing according to an embodiment of the present invention, where the method includes the following steps:
  • S101 Preset at least one set of reply information in a mobile terminal.
  • This step performs a preset operation on the reply information, that is, the computer program automatically replies to the other party's information, which may be text information, pictures, audio information or video information.
  • the reply message is text information, it may be a common reply sentence such as "Hello, I am driving, inconvenient to answer the call, reply later", "Hello, now it is not convenient to answer, reply later".
  • a plurality of sets of reply information may be preset in the mobile terminal for the user to select, and the user may select one or more sets of reply information to reply as the current setting.
  • the user can also edit the reply information and store it in the mobile terminal.
  • the mobile terminal may be a memory 11 within the mobile terminal 10, such as a flash memory, a hard disk, or other non-volatile storage device.
  • S102 Determine whether the mobile terminal 10 receives an incoming call without connecting a Bluetooth headset.
  • This step actually performs the judgment of two objects, including the determination of whether the mobile terminal 10 is connected to the Bluetooth headset, and whether the mobile terminal 10 receives an incoming call, wherein the mobile terminal 10 is connected to the Bluetooth headset.
  • the priority is higher. Only when the mobile terminal 10 is not connected to the Bluetooth headset, it is necessary to judge whether the mobile terminal 10 receives an incoming call. If the mobile terminal 10 is connected to a Bluetooth headset, a normal answering incoming call operation may be performed.
  • Bluetooth connection status of the mobile terminal 10 is obtained from an interface opened by the operating system application layer of the mobile terminal 10.
  • a Bluetooth communication module is disposed in both the mobile terminal 10 and the Bluetooth headset.
  • Bluetooth technology replaces cable connections with short-range, low-cost wireless connections, providing a unified connection to existing data networks and small peripherals.
  • Bluetooth provides point-to-point and point-to-multipoint wireless connectivity based on the concept of the network. All devices are equal and follow the same working method within any effective communication range. Based on the principle of TDMA and the equality of Bluetooth devices, any Bluetooth device can be used as both a master device and a slave device in a master-slave network (Seeonet) and a distributed network (Seatter-net).
  • the master device is also the slave device (Slaver). Therefore, there is no concept of a slave in the Bluetooth system, and all devices are mobile and convenient to set up.
  • the mobile terminal 10 is preferably used as a Bluetooth master device, and the Bluetooth headset is used as a slave device, and the connected Bluetooth sub-devices can be obtained from the mobile terminal 10, and the mobile terminal 10 is also known. Whether a Bluetooth headset is connected.
  • the mobile terminal 10 It is determined whether the mobile terminal 10 receives an incoming call, and obtains an incoming call situation from an interface opened by an operating system open application layer of the mobile terminal 10.
  • the mobile terminal 10 is provided with an identifier for an incoming call.
  • the communication module 14 of the mobile terminal 10 detects an incoming call, the identifier is rewritten, and the identifier is read by the identifier. Whether the mobile terminal 10 has an incoming call.
  • step S102 When the determination in step S102 is established, that is, the mobile terminal 10 receives an incoming call without connecting a Bluetooth headset, this step is performed.
  • a speed threshold is preset in the mobile terminal.
  • the moving speed of the mobile terminal 10 is obtained, and the moving speed is compared with the speed threshold.
  • the moving speed of the mobile terminal 10 may be calculated by acquiring the positioning information of the mobile terminal multiple times in a period of time, or may be acquired by a third-party speed detecting software, and acquiring the mobile terminal through an interface opened by a third-party speed detecting software. 10 real-time moving speed.
  • the implementation of this step is to determine whether the user is driving the vehicle. Since the user has a higher moving speed relative to the walking or stationary state during driving the vehicle, the mobile terminal 10 is also carried by the user and has the same moving speed. Further, the determination of the moving speed can be performed.
  • step S102 When the determination in step S102 is established, that is, when the moving speed of the mobile terminal 10 is greater than the speed threshold, this step is performed.
  • This step actually performs two operations, namely, the call incoming call hang operation and the send reply information operation.
  • the call return operation When the call return operation is suspended, the instruction for rejecting the response is written by the interface opened by the application of the mobile terminal 10, and the mobile terminal 10 hangs up the incoming call and ends the communication contact process.
  • the reply information operation When the reply information operation is performed, the reply information is first obtained from the mobile terminal, and then the reply information is written by the interface opened by the operating system of the mobile terminal 10, and the reply information is passed through the communication module 14 Send to the contact corresponding to the incoming call.
  • the speed threshold is at least 20 kilometers per hour.
  • the improved embodiment preferably optimizes the speed threshold, preferably at least 20 kilometers per hour.
  • the purpose of the time threshold is to distinguish the driving state of the user from other moving states, except for the user. By driving the vehicle to move, it is also possible to move by walking, running, cycling, etc., and the moving speed of the above moving mode is smaller than that of the normal driving vehicle, so that the speed limit can be divided to distinguish whether the user is driving the vehicle. It is considered that the speed at which a person walks, runs, and rides under normal conditions is not greater than 20 kilometers per hour, so the time threshold is at least 20 kilometers per hour.
  • the reply information is sent in a short message manner.
  • the improved embodiment limits the manner in which the reply information is sent, that is, the short message is transmitted. As long as the mobile terminal 10 is connected to the mobile cellular network, information interaction can be performed by means of short messages without relying on other network forms, and the reliability is the highest.
  • step S101 when the step S101 is performed, corresponding reply information is preset for different contacts.
  • step S104 When the step S104 is performed, the corresponding reply information is sent to the contact.
  • the improved embodiment implements customized reply information.
  • different reply information is preset for different contacts, and the reply term can be set according to the user's business requirements.
  • the step S104 when the step S104 is performed, the contact corresponding to the incoming call is obtained, and a reply operation is performed according to the reply information preset for the contact.
  • step S103 includes the following steps:
  • S103-1 Acquire a first positioning position of the mobile terminal 10.
  • the positioning technology of the mobile terminal 10 can be divided into a mobile terminal based positioning technology and a network based positioning technology.
  • the positioning technology based on the mobile terminal is that the designated bit calculation is completed by the mobile terminal itself, and the mobile terminal can determine its own current location by itself, which is also called self-positioning of the mobile terminal, and is also called forward link positioning in the cellular network.
  • the technology is convenient for protecting the privacy of the mobile terminal user (ie, the current location information of the user), but requires the mobile terminal to have strong computing power and long-lasting power supply capability.
  • the network-based positioning technology mainly collects information of the mobile terminal to be located and calculates the current location of the mobile terminal, and is also called reverse link positioning in the cellular network.
  • the technology requires the mobile terminal to be located to transmit or broadcast some specific signals; the network system is responsible for collecting these signals and taking on the task of positioning calculation. In practical applications, the privacy of users can also be effectively protected through some policy control.
  • This embodiment adopts a positioning technology based on a mobile terminal, and it is suitable to use the positioning method of the mobile terminal itself in consideration of the use condition of the user in the driving process.
  • a positioning module 16 is disposed in the mobile terminal 10, and the location of the mobile terminal 10 can be located through a GPS network or a mobile cellular network to obtain the first positioning location.
  • S103-2 Acquire a second positioning position of the mobile terminal 10 after a time threshold preset in the mobile terminal.
  • the time threshold is preset in the mobile terminal. After the first positioning position is obtained in step S103-1, the mobile terminal 10 performs timing. When the time duration reaches the time threshold, the positioning is performed again. The second positioning position of the mobile terminal 10. If the mobile terminal 10 follows the vehicle movement, the first positioning position and the second positioning position are obviously different.
  • the time threshold is preferably 20 seconds or more. If the vehicle speed is 36 kilometers per hour, that is, 10 meters per second, the mobile terminal 10 moves 200 meters within 20 seconds. Under the current positioning technology, this has already been It is the minimum distance that the current positioning technology can identify the positioning accuracy. Therefore, the longer the time threshold is, the longer the moving distance of the mobile terminal 10 is, and the error of the first positioning position and the second positioning position. The effect on the moving distance is smaller.
  • This step performs a calculation operation, and the parameters participating in the calculation include the first positioning position, the second positioning position, and the time threshold.
  • the moving distance of the mobile terminal 10 is calculated by the first positioning position and the second positioning position, and then the moving distance is divided by the time threshold to obtain the moving speed of the mobile terminal 10.
  • the first positioning position and the second positioning position are represented by longitude and latitude coordinates, and distance conversion can be performed.
  • S103-4 Determine whether the moving speed is greater than the speed threshold.
  • This step performs a determining operation to determine whether the moving speed obtained in step S103-3 is greater than the speed threshold.
  • step S103 further includes:
  • S103-5 Determine whether the first positioning position is within a road range.
  • the first positioning position is determined by the location, and the determination is performed in conjunction with the map module 18 in the mobile terminal.
  • the longitude and latitude information of the first positioning location is obtained, and the specific location of the first positioning location in the map module 18 is found according to the longitude and latitude information, and Whether the first positioning position is within the road range is determined according to the coordinates of the road range in the map module 18.
  • the determination of the first positioning position is performed, and it can be determined whether the user is in the moving vehicle, and if the user is driving, it is necessarily on the road.
  • the call is not hanged and the reply information is sent, and the process of the current call is terminated, and the user operates autonomously.
  • the GPS module 17 performs positioning work by connecting to a GPS network, which is composed of a plurality of GPS satellites, and is connected to a device having a GPS module 17 on the ground to assist in positioning thereof.
  • the GPS module 17 typically uses a triangulation positioning technique to calculate the position of the object being measured using geometric triangular relationships based on the measured data. It is the most important and widely used positioning technology, including distance measurement positioning technology and angle measurement positioning technology.
  • the mobile cellular network is implemented.
  • the implementation of the positioning operation depends on the communication module 14.
  • the mobile terminal 10 When the mobile terminal 10 is connected to an external communication through a mobile cellular network, it must be connected through a communication base station near the mobile terminal 10. The location of the communication base station is determined and recorded, so that the mobile terminal is known. The base station of the communication message of 10 can know its location range.
  • the mobile terminal 10 includes:
  • the processor 12 is a core component of the mobile terminal 10, that is, a CPU, and can perform high-speed operations, process various tasks, and run a computer program.
  • the memory 11 stores the computer program, as well as data, pictures, video files, audio files, contacts, and the like required for the computer program to run.
  • the processor 12 can acquire various data required for operation from the memory 11.
  • the input module 13 receives an external input operation, and may be an input device such as a touch screen, a keyboard, or a mouse.
  • the input module 13 is connected to the processor 12 and feeds back the received operation signal content to the processor 12.
  • the communication module 14 is a module for communication connection with the outside, and may be a wireless network card (wifi module), a mobile cellular communication module, a Bluetooth module, etc., and may be connected to different networks according to an application.
  • the communication module 14 can receive communication information sent from the outside, and can also send the communication information outward.
  • the display module 15 is an important component of the mobile terminal 10, and displays various functional interfaces to the user. In particular, when the display module 15 includes a touch screen, it can also receive input operations of the user. The display module 15 displays various prompt information to the user.
  • the positioning module 16 implements a positioning operation, and sends the obtained positioning location to the mobile terminal 10.
  • the positioning module 16 interacts with an external signal source, such as a GPS satellite, a communication base station, etc., to acquire a positioning location.
  • the mobile terminal 10 also includes a computer program stored on the memory and executable on the processor 12, the processor 12 implementing the computer program to implement the following steps:
  • the mobile terminal 10 When the mobile terminal 10 receives an incoming call without connecting a Bluetooth headset, determining whether the moving speed of the mobile terminal 10 is greater than a speed threshold preset in the mobile terminal;
  • the incoming call is hanged up and sent to the contact corresponding to the incoming call.
  • the positioning module 16 is a GPS module 17, and the GPS module 17 performs positioning by connecting with a GPS network.
  • the GPS network is composed of a plurality of GPS satellites and is connected to a device having a GPS module 17 on the ground to assist in positioning thereof.
  • the mobile terminal 10 further includes:
  • the map module 18 can be a map application, internally storing map information, and having a navigation function.
  • the map module 18 determines the position of the first positioning position on the map, and determines whether the first positioning position is within the road range in combination with the road information.
  • the mobile terminal 10 can be implemented in various forms.
  • the terminal described in the present invention may include a mobile terminal such as a mobile phone, a smart phone, a notebook computer, a PDA (Personal Digital Assistant), a PAD (Tablet), a PMP (Portable Multimedia Player), a navigation device, and the like, and such as Fixed terminal for digital TV, desktop computer, etc.
  • a mobile terminal such as a mobile phone, a smart phone, a notebook computer, a PDA (Personal Digital Assistant), a PAD (Tablet), a PMP (Portable Multimedia Player), a navigation device, and the like
  • the terminal is a mobile terminal.
  • those skilled in the art will appreciate that configurations in accordance with embodiments of the present invention can be applied to fixed type terminals in addition to components that are specifically for mobile purposes.

Abstract

本发明提供了一种用于通信信息处理的方法及移动终端,所述方法包括以下步骤:于一移动终端内预设至少一组回复信息;判断所述移动终端是否在未连接蓝牙耳机的情况下接收来电呼叫;当所述移动终端在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值;当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。本技术方案自动识别用户是否在驾驶状态,并根据蓝牙耳机的连接情况对来电呼叫进行处理;使用户免受来电呼叫提示音打扰,集中注意力驾驶。

Description

一种用于通信信息处理的方法及移动终端 技术领域
本发明涉及移动终端领域,尤其涉及一种用于通信信息处理的方法及移动终端。
背景技术
目前,智能手机、卫星电话等移动终端设备已成为人们生活中不可缺少的一部分,所述移动终端内可以存储联系人的信息,用于和联系人进行通讯交流。所述移动终端与外部进行通信的方式可以是语音通话或者通信信息的传输,其中所述通信信息可以通过短信息交互,也可以通过应用程序交互,其内容可以是文本、照片、音频文件和视频文件。随着我国经济的发展,越来越多的人们选择自驾汽车出行,而驾驶汽车需要驾驶员注意力高度集中,若驾驶员随身携带的移动终端接收到来电,往往会干扰驾驶员的驾驶操作,传统的接听方式需要驾驶员的一只手将所述移动终端移至耳朵旁边进行接听,一方面占用了一只手,驾驶的可操作性变差,另一方面接听来电会分散驾驶员的注意力,无法顾及道路状况,造成安全隐患,容易引起交通事故。此外,我国的道路交通安全法律法规也规定了驾驶员在驾驶过程中不得接打电话。然而,用户的移动终端接收的来电呼叫中往往有较为重要且紧急的事项需要沟通,不接听来电会耽误事项处理。这就造成了驾驶过程中接听来电不安全且违法,不接听来电容易耽误事的两难境况。
现有技术为解决上述问题,采用蓝牙耳机的方式协助驾驶员接听来电呼叫,由于蓝牙耳机采用无线连接方式与所述移动终端连接,不受所述移动终端位置限制,使用所述蓝牙耳机进行来电呼叫接听时无需对移动终端进行位置移动操作,也就无须占用一只手,不影响驾驶操作性。现有适用于驾驶员的蓝牙耳机技术分为车载蓝牙耳机和人体便携式蓝牙耳机两种,所述车载蓝牙耳机设于所述车辆内,通过设于所述车辆内的音箱和麦克风来接收和播放声音信号,实现语音通话。用户使用车载蓝牙耳机时须先将所述移动终端和所述车载蓝牙耳机配对连接。所述人体便携式蓝牙耳机则是小型化、重量轻的一种无线耳机,可佩戴在用户的耳朵上,协助用户进行语音通话。所述人体便携式蓝牙耳机 的优点是不限于在车辆内使用,可在任意地点或场合使用。
然而,现有技术仍存在以下问题:
1、用户在驾驶车辆过程中往往忘记将所述移动终端与所述车载蓝牙耳机配对,导致未能使用所述车载蓝牙耳机进行语音通话,当有来电呼叫时,所述移动终端发出的提示音也会干扰用户驾驶;
2、不是所有的车辆都具备车载蓝牙耳机,也不是每个驾驶员都配备了人体便携式蓝牙耳机,这种情况下需要对所述移动终端的来电呼叫进行处理;
3、无法通过识别用户是否在驾驶车辆的状态来对来电呼叫进行处理。
因此,需要提供一种对通信信息的处理手段,通过判断所述移动终端是否连接蓝牙耳机并处于移动状态,实现对来电呼叫的处理。
发明内容
为了克服上述技术缺陷,本发明的目的在于提供一种用于通信信息处理的方法及移动终端,通过预设回复信息,并判断所述移动终端是否在移动状态接收来电呼叫,实现对来电呼叫的自动处理,确保用户驾驶不受影响。
本发明的第一方面,公开了一种用于通信信息处理的方法,包括以下步骤:
于一移动终端内预设至少一组回复信息;
判断所述移动终端是否在未连接蓝牙耳机的情况下接收来电呼叫;
当所述移动终端在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值;
当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
优选地,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值的步骤包括:
获取所述移动终端的第一定位位置;
经过一预设于所述移动终端内的时间阈值后,获取所述移动终端的第二定位位置;
计算所述移动终端的移动速度;
判断所述移动速度是否大于所述速度阈值。
优选地,获取所述移动终端的第一定位位置的步骤与经过一时间阈值的步骤与获取所述移动终端的第二定位位置的步骤之间,判断所述移动终端的移动速度是否大于一预 设于所述移动终端内的速度阈值的步骤还包括以下步骤:
判断所述第一定位位置是否在道路范围内;
当所述第一定位位置在道路范围内时,执行获取所述第二定位位置的步骤;
当所述第一定位位置不在道路范围内时,不对所述来电呼叫执行挂断及发送回复信息操作。
优选地,获取所述移动终端的第一定位位置及第二定位位置时,通过所述移动终端内的GPS模块实现。
优选地,获取所述移动终端的第一定位位置及第二定位位置时,通过移动蜂窝网络实现。
优选地,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值时,所述速度阈值至少为20千米每小时。
优选地,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息时,以短信息方式发送所述回复信息。
优选地,于所述移动终端内预设至少一组回复信息时,针对不同的联系人预设对应的回复信息;挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息时,向所述联系人发送对应的回复信息。
本发明的第二方面,公开了一种移动终端,包括存储器、处理器、通讯模块、显示模块、输入模块、定位模块及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现以下步骤:
于所述移动终端内预设至少一组回复信息;
判断所述移动终端是否在未连接蓝牙耳机的情况下接收来电呼叫;
当所述移动终端在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值;
当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
优选地,所述定位模块为GPS模块;所述移动终端还包括地图模块。
采用了上述技术方案后,与现有技术相比,具有以下有益效果:
1.自动识别用户是否在驾驶状态,并根据蓝牙耳机的连接情况对来电呼叫进行处理;
2.使用户免受来电呼叫提示音打扰,集中注意力驾驶;
3.向来电呼叫对应的联系人发送回复信息,缓冲事项处理。
附图说明
图1为符合本发明一实施例中用于通信信息处理的方法的流程示意图;
图2为符合本发明一实施例中图1中步骤S103的流程示意图;
图3为符合本发明另一实施例中图1中步骤S103的流程示意图;
图4为符合本发明一实施例中用于通信信息处理的移动终端的结构框图;
图5为符合本发明另一实施例中用于通信信息处理的移动终端的结构框图。
附图标记:
10-移动终端、11-存储器、12-处理器、13-输入模块、14-通讯模块、15-显示模块、16-定位模块、17-GPS模块、18-地图模块。
具体实施方式
以下结合附图与具体实施例进一步阐述本发明的优点。
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
在本公开使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本公开。在本公开和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
应当理解,尽管在本公开可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本公开范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语“如果”可以被解释成为“在……时”或“当……时”或“响应于确定”。
在本发明的描述中,需要理解的是,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为 对本发明的限制。
在本发明的描述中,除非另有规定和限定,需要说明的是,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是机械连接或电连接,也可以是两个元件内部的连通,可以是直接相连,也可以通过中间媒介间接相连,对于本领域的普通技术人员而言,可以根据具体情况理解上述术语的具体含义。
在后续的描述中,使用用于表示元件的诸如“模块”、“部件”或“单元”的后缀仅为了有利于本发明的说明,其本身并没有特定的意义。因此,“模块”与“部件”可以混合地使用。
参阅图1,为符合本发明一实施例中用于通信信息处理的方法的流程示意图,所述方法包括以下步骤:
S101:于一移动终端内预设至少一组回复信息。
本步骤执行对回复信息的预设操作,所述回复信息即所述计算机程序自动回复对方的信息,可以是文本信息、图片、音频信息或视频信息。当所述回复信息为文本信息时,可以是“您好,我正在驾驶中,不方便接听来电,稍后回复”、“您好,现在不方便接听,稍后答复”等常用的回复语句。所述移动终端内可以预设多组回复信息供用户选择,用户可以选择其中一组或多组回复信息作为当前的设置进行回复。用户还可以自行编辑回复信息并存储于所述移动终端内。所述移动终端可以是所述移动终端10内的存储器11,例如闪存、硬盘或其他非易失存储设备。
S102:判断所述移动终端10是否在未连接蓝牙耳机的情况下接收来电呼叫。
本步骤实际上执行了两个对象的判断,包括所述移动终端10是否连接蓝牙耳机的判断,以及所述移动终端10是否接收来电呼叫的判断,其中所述移动终端10是否连接蓝牙耳机的判断优先级更高,只有所述移动终端10未连接蓝牙耳机,才有必要对所述移动终端10是否接收来电呼叫进行判断。若所述移动终端10连接了蓝牙耳机,则执行正常的接听来电呼叫操作即可。
判断所述移动终端10是否连接蓝牙耳机,从所述移动终端10的操作系统应用层开放的接口获取所述移动终端10的蓝牙连接情况。所述移动终端10和所述蓝牙耳机内均设有蓝牙通信模块。蓝牙技术利用短距离、低成本的无线连接替代电缆连接,从而为现存的数据网络和小型的外围设备提供了统一的连接。蓝牙根据网络的概念提供点对点和点对多点有无线连接,在任意一个有效通讯范围内,所有的设备都是平等的,并且遵循相同的工作方式。基于TDMA原理和蓝牙设备的平等性,任一蓝牙设备在主从网络(Pieonet)和分散网络(Seatter-net)中,既可用主设备(Master),又可作从设备(Slaver),还可同时既是 主设备(Master),又是从设备(Slaver)。因此在蓝牙系统中没有从站的概念,另外所有的设备都是可移动,组网十分方便。本实施例中,优选所述移动终端10作为蓝牙主设备,所述蓝牙耳机作为从设备,可以从所述移动终端10获取所连接的各蓝牙子设备的情况,也就获知所述移动终端10是否连接了蓝牙耳机。
判断所述移动终端10是否接收来电呼叫,从所述移动终端10的操作系统开放应用层开放的接口获取来电呼叫情况。所述移动终端10内设有关于来电呼叫的标识位,当所述移动终端10的通讯模块14检测到有来电呼叫时,改写所述标识位,通过读取所述标识位则可获知所述移动终端10是否有来电呼叫。
S103:当所述移动终端10在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端10的移动速度是否大于一预设于所述移动终端内的速度阈值。
当步骤S102判断成立时,即所述移动终端10在未连接蓝牙耳机的情况下接收来电呼叫时,执行本步骤。所述移动终端内预设有一速度阈值,本步骤中获取所述移动终端10的移动速度,并将所述移动速度与所述速度阈值比较。所述移动终端10的移动速度可通过一段时间内多次获取所述移动终端的定位信息来计算,也可通过第三方速度检测软件获取,通过第三方速度检测软件开放的接口获取所述移动终端10的实时移动速度。本步骤的实施是为了判断出用户是否在驾驶车辆,由于用户在驾驶车辆过程中相对于步行或静止状态具有较高的移动速度,因此所述移动终端10被用户携带也具有同样的移动速度,进而可以进行所述移动速度的判断。
S104:当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
当步骤S102判断成立时,即所述移动终端10的移动速度大于所述速度阈值时,执行本步骤。本步骤实际执行了两个操作,分别是来电呼叫挂断操作和发送回复信息操作。执行挂断所述来电呼叫操作时,通过所述移动终端10的应用程序开放的接口写入拒绝应答的指令,则所述移动终端10挂断所述来电呼叫,结束本次通信联系过程。执行发送回复信息操作时,先从所述移动终端内获取所述回复信息,而后通过所述移动终端10操作系统开放的接口写入回复信息的指令,将所述回复信息通过所述通讯模块14发送给所述来电呼叫对应的联系人。
作为所述用于通信信息处理的方法的进一步改进,所述步骤S103执行时,所述速度阈值至少为20千米每小时。本改进实施例对所述速度阈值进行优选,优选为至少20千米每小时。所述时间阈值的目的是将用户的驾驶状态与其他移动状态进行区分,用户除 了通过驾驶车辆移动,还可通过步行、跑步、骑自行车等方式移动,上述移动方式的移动速度均小于正常驾驶的车辆,因此可通过划分速度界限来区分用户是否在驾驶车辆。考虑人正常状态下进行步行、跑步和骑自行车的速度不会大于20千米每小时,因此所述时间阈值至少为20千米每小时。
作为所述用于通信信息处理的方法的进一步改进,所述步骤S104执行时,以短信息方式发送所述回复信息。本改进实施例对发送所述回复信息的方式进行了限定,即通过短信息的方式进行发送。只要所述移动终端10与移动蜂窝网络连接,就能够通过短信息方式进行信息交互,无需依赖其他网络形式,其可靠性最高。
作为所述用于通信信息处理的方法的进一步改进,所述步骤S101执行时,针对不同的联系人预设对应的回复信息。所述步骤S104执行时,向所述联系人发送对应的回复信息。本改进实施例实现定制化的回复信息,首先在所述步骤S101中针对不同的联系人分别预设不同的回复信息,可根据用户的业务需求有针对性地设置回复用语。而后在所述步骤S104执行时,获取所述来电呼叫对应的联系人,按照针对该联系人预设的回复信息进行回复操作。
参阅图2,为符合本发明一实施例中图1中步骤S103的流程示意图,步骤S103包括以下步骤:
S103-1:获取所述移动终端10的第一定位位置。
所述移动终端10的定位技术可以分为基于移动终端的定位技术和基于网络的定位技术。基于移动终端的定位技术是指定位计算由移动终端自己完成,移动终端可以自行确定自己的当前位置,也称为移动终端的自定位,在蜂窝网络中又叫做前向链路定位。该技术便于保护移动终端用户的隐私(即用户当前的位置信息)不受侵犯,但是要求移动终端有较强的计算能力和持久的供电能力。基于网络的定位技术主要由网络系统收集待定位移动终端的信息并计算移动终端的当前位置,在蜂窝网络中又叫做反向链路定位。该技术要求待定位移动终端发送或广播一些特定的信号;网络系统负责收集这些信号并担负起定位计算的任务。在实际应用中,通过一些策略控制也可以有效地保护用户的隐私。
本实施例采用基于移动终端的定位技术,考虑到用户在驾驶过程中的使用条件,使用移动终端自身定位的方式比较适合。所述移动终端10内设有定位模块16,可通过GPS网络或者移动蜂窝网络定位所述移动终端10的位置,得到所述第一定位位置。
S103-2:经过一预设于所述移动终端内的时间阈值后,获取所述移动终端10的第二定位位置。
所述移动终端内预设有时间阈值,当步骤S103-1完成所述第一定位位置获取后,所述移动终端10进行计时,当计时时长达到所述时间阈值时,再一次进行定位,获取所述移动终端10的第二定位位置。若所述移动终端10跟随车辆移动,则所述第一定位位置与第二定位位置显然是不同的。所述时间阈值优选为20秒以上,假设车速为36千米每小时,即10米每秒,则20秒内所述移动终端10移动了200米,在当前定位技术手段的条件下,这已经是当前民用级定位技术手段定位精度能识别的最小距离了,因此所述时间阈值的时间越长,所述移动终端10移动距离就越长,所述第一定位位置和第二定位位置的误差对于所述移动距离的影响就越小。
S103-3:计算所述移动终端的移动速度。
本步骤执行计算操作,参与计算的参数有所述第一定位位置、第二定位位置以及时间阈值。首先通过所述第一定位位置和第二定位位置计算出所述移动终端10的移动距离,而后将所述移动距离除以所述时间阈值可得到所述移动终端10的移动速度。所述第一定位位置及第二定位位置由经度和纬度坐标表示,可以进行距离换算。
S103-4:判断所述移动速度是否大于所述速度阈值。
本步骤执行判断操作,判断步骤S103-3中得到的所述移动速度是否大于所述速度阈值。
参阅图3,为符合本发明另一实施例中图1中步骤S103的流程示意图,步骤S103-1’与步骤S103-2’之间,所述步骤S103还包括:
S103-5:判断所述第一定位位置是否在道路范围内。
本步骤对所述第一定位位置进行位置判断,须结合所述移动终端内的地图模块18进行判断。获取所述第一定位位置后,也就获取了所述第一定位位置的经度和纬度信息,根据所述经度和纬度信息找到所述地图模块18内所述第一定位位置的具体位置,并根据所述地图模块18内的道路范围的坐标判断所述第一定位位置是否在道路范围内。本步骤在所述移动终端10的移动速度判断的基础上,进行了所述第一定位位置的判断,可以辅助判断用户是否在移动的车辆内,若用户在驾驶,则必然是在道路上。
当所述第一定位位置在道路范围内时,执行S103-2’,也就是继续进行所述第二定位位置的获取,并计算移动速度。
当所述第一定位位置不在道路范围内时,不对所述来电呼叫执行挂断及发送回复信息操作,结束本次来电呼叫的处理过程,由用户自主进行操作。
作为所述用于通信信息处理的方法的进一步改进,获取所述移动终端10的第一定位 位置及第二定位位置时,通过所述移动终端10内的GPS模块17实现。所述GPS模块17通过与GPS网络连接进行定位工作,所述GPS网络由多个GPS卫星组成,与地面上具备GPS模块17的设备进行连接,辅助其定位。所述GPS模块17通常使用三角测量定位技术,根据测量得出的数据,利用几何三角关系计算被测物体的位置。它是最主要和应用最为广泛的定位技术,包括距离测量定位技术和角度测量定位技术。
作为所述用于通信信息处理的方法的进一步改进,获取所述移动终端10的第一定位位置及第二定位位置时,通过移动蜂窝网络实现。本实施例中,定位操作的实现依托于所述通讯模块14。所述移动终端10通过移动蜂窝网络与外部通信连接时,须经过所述移动终端10附近的通信基站进行连接,所述通信基站的位置是确定的且有记录的,因此只要知道所述移动终端10的通信消息来自哪个基站,即可得知其位置范围。
参阅图4,为符合本发明一实施例中用于通信信息处理的移动终端10的结构框图,所述移动终端10包括:
-处理器12
处理器12为所述移动终端10的核心部件,也就是CPU,可以进行高速运算,处理各种任务,运行计算机程序。
-存储器11
存储器11存储所述计算机程序,以及所述计算机程序运行时所需的数据、图片、视频文件、音频文件、联系人等信息。所述处理器12可以从所述存储器11获取运行所需的各种数据。
-输入模块13
所述输入模块13接收外部输入操作,可以是触摸屏、键盘、鼠标等输入设备。所述输入模块13与所述处理器12连接,将接收的操作信号内容反馈给所述处理器12。
-通讯模块14
所述通讯模块14为与外部进行通信连接的模块,可以是无线网卡(wifi模块)、移动蜂窝通信模块、蓝牙模块等类型,可根据应用场合连接不同的网络。所述通讯模块14可接收外部发来的通信信息,也可向外发送通信信息。
-显示模块15
所述显示模块15是所述移动终端10的重要组成部分,向用户显示各种功能界面,尤其是所述显示模块15包括触摸屏时,还可以接收用户的输入操作。所述显示模块15向用户显示各种提示信息。
-定位模块16
所述定位模块16实现定位操作,将得到的定位位置发送给所述移动终端10。所述定位模块16通过与外部的信号源,如GPS卫星、通信基站等设置进行交互,获取定位位置。
所述移动终端10还包括存储在存储器上并可在所述处理器12上运行的计算机程序,所述处理器12执行所述计算机程序时实现以下步骤:
于所述移动终端10内预设至少一组回复信息;
判断所述移动终端10是否在未连接蓝牙耳机的情况下接收来电呼叫;
当所述移动终端10在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端10的移动速度是否大于一预设于所述移动终端内的速度阈值;
当所述移动终端10的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
参阅图5,为符合本发明另一实施例中用于通信信息处理的移动终端10的结构框图,所述定位模块16为GPS模块17,所述GPS模块17通过与GPS网络连接进行定位工作,所述GPS网络由多个GPS卫星组成,与地面上具备GPS模块17的设备进行连接,辅助其定位。
所述移动终端10还包括:
-地图模块18
所述地图模块18可以是一地图应用程序,内部存储有地图信息,并具备导航功能。所述地图模块18判断所述第一定位位置在所述地图上的位置,并结合道路信息判断所述第一定位位置是否在道路范围内。
移动终端10可以以各种形式来实施。例如,本发明中描述的终端可以包括诸如移动电话、智能电话、笔记本电脑、PDA(个人数字助理)、PAD(平板电脑)、PMP(便携式多媒体播放器)、导航装置等等的移动终端以及诸如数字TV、台式计算机等等的固定终端。下面,假设终端是移动终端。然而,本领域技术人员将理解的是,除了特别用于移动目的的元件之外,根据本发明的实施方式的构造也能够应用于固定类型的终端。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种用于通信信息处理的方法,其特征在于,包括以下步骤:
    于一移动终端内预设至少一组回复信息;
    判断所述移动终端是否在未连接蓝牙耳机的情况下接收来电呼叫;
    当所述移动终端在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值;
    当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
  2. 如权利要求1所述的用于通信信息处理的方法,其特征在于,
    判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值的步骤包括:
    获取所述移动终端的第一定位位置;
    经过一预设于所述移动终端内的时间阈值后,获取所述移动终端的第二定位位置;
    计算所述移动终端的移动速度;
    判断所述移动速度是否大于所述速度阈值。
  3. 如权利要求2所述的用于通信信息处理的方法,其特征在于,
    获取所述移动终端的第一定位位置的步骤与经过一时间阈值的步骤与获取所述移动终端的第二定位位置的步骤之间,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值的步骤还包括以下步骤:
    判断所述第一定位位置是否在道路范围内;
    当所述第一定位位置在道路范围内时,执行获取所述第二定位位置的步骤;
    当所述第一定位位置不在道路范围内时,不对所述来电呼叫执行挂断及发送回复信息操作。
  4. 如权利要求2或3所述的用于通信信息处理的方法,其特征在于,
    获取所述移动终端的第一定位位置及第二定位位置时,通过所述移动终端内的GPS模块实现。
  5. 如权利要求2或3所述的用于通信信息处理的方法,其特征在于,
    获取所述移动终端的第一定位位置及第二定位位置时,通过移动蜂窝网络实现。
  6. 如权利要求1-3任一项所述的用于通信信息处理的方法,其特征在于,
    判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值时,所述速度阈值至少为20千米每小时。
  7. 如权利要求1-3任一项所述的用于通信信息处理的方法,其特征在于,
    挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息时,以短信息方式发送所述回复信息。
  8. 如权利要求1-3任一项所述的用于通信信息处理的方法,其特征在于,
    于所述移动终端内预设至少一组回复信息时,针对不同的联系人预设对应的回复信息;挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息时,向所述联系人发送对应的回复信息。
  9. 一种移动终端,包括存储器、处理器、通讯模块、显示模块、输入模块、定位模块及存储在存储器上并可在处理器上运行的计算机程序,其特征在于,所述处理器执行所述计算机程序时实现以下步骤:
    于所述移动终端内预设至少一组回复信息;
    判断所述移动终端是否在未连接蓝牙耳机的情况下接收来电呼叫;
    当所述移动终端在未连接蓝牙耳机的情况下接收来电呼叫时,判断所述移动终端的移动速度是否大于一预设于所述移动终端内的速度阈值;
    当所述移动终端的移动速度大于所述速度阈值时,挂断所述来电呼叫并向所述来电呼叫对应的联系人发送所述回复信息。
  10. 如权利要求9所述的移动终端,其特征在于,
    所述定位模块为GPS模块;
    所述移动终端还包括地图模块。
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