WO2012028107A1 - 移动终端及其发送处理方法 - Google Patents

移动终端及其发送处理方法 Download PDF

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Publication number
WO2012028107A1
WO2012028107A1 PCT/CN2011/079251 CN2011079251W WO2012028107A1 WO 2012028107 A1 WO2012028107 A1 WO 2012028107A1 CN 2011079251 W CN2011079251 W CN 2011079251W WO 2012028107 A1 WO2012028107 A1 WO 2012028107A1
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WO
WIPO (PCT)
Prior art keywords
input
communication peer
mobile terminal
unit
input content
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2011/079251
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English (en)
French (fr)
Inventor
刘勇
宋春雨
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Lenovo Beijing Ltd
Beijing Lenovo Software Ltd
Original Assignee
Lenovo Beijing Ltd
Beijing Lenovo Software Ltd
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 Lenovo Beijing Ltd, Beijing Lenovo Software Ltd filed Critical Lenovo Beijing Ltd
Priority to US13/818,910 priority Critical patent/US8929949B2/en
Publication of WO2012028107A1 publication Critical patent/WO2012028107A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • 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
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • 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
    • H04L51/04Real-time or near real-time messaging, e.g. instant messaging [IM]
    • H04L51/046Interoperability with other network applications or services
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/01Indexing scheme relating to G06F3/01
    • G06F2203/011Emotion or mood input determined on the basis of sensed human body parameters such as pulse, heart rate or beat, temperature of skin, facial expressions, iris, voice pitch, brain activity patterns
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion

Definitions

  • the present invention relates to the field of communication technologies, and in particular, to a mobile terminal and a transmission processing method thereof. Background technique
  • the prior art has at least the following disadvantages:
  • two Input operation first input the content to be sent. Then, you need to perform another operation to express your emotions. For example, you can select some icons to express anger in QQ, or you can select the font color, size, etc. of the content to be sent. To express emotions, the emotion may change at the next input. At this time, the above two input operations need to be re-executed, resulting in cumbersome input operations and low efficiency.
  • an embodiment of the present invention provides a mobile terminal, including:
  • the motion sensing unit disposed in the housing, for collecting the motion number of the mobile terminal.
  • the determining unit is connected to the motion sensing unit for rooting. According to the motion sensing unit, The motion data determines whether the mobile terminal has a predetermined motion;
  • a generating unit configured to be connected to the determining unit, configured to generate an operation instruction when the determining result of the determining unit indicates that the mobile terminal generates the predetermined motion
  • a sending unit configured to send the operation instruction to the communication peer end, where the communication peer end performs a vibration operation according to the operation instruction.
  • the communication opposite end is provided with a motor
  • the operation instruction is used to make the communication
  • the motor is controlled to perform the vibration operation.
  • the communication peer has a display unit and a display processing unit, the display unit is configured to display a display object, and the operation instruction is used to enable the communication peer to control the display unit through the display processing unit
  • the display object is displayed in a vibrating manner on the display unit.
  • the generating unit includes:
  • a vibration intensity parameter determining unit configured to determine a vibration intensity parameter according to the motion data; the operation instruction carries the vibration intensity parameter, and the communication opposite end performs a vibration operation having a vibration intensity indicated by the vibration intensity parameter .
  • an embodiment of the present invention further provides a mobile terminal, including:
  • a first collecting unit disposed in the housing, for collecting an input operation of a user
  • a second collecting unit disposed in the housing, for collecting an input when the user performs the input operation.
  • a first generating unit configured to be connected to the first collecting unit, configured to generate an input content according to the collected input operation
  • a second generating unit connected to the second collecting unit, configured to generate an operation instruction for the input parameter collected by the root
  • a sending unit configured to send the input content and the operation instruction to the communication peer end, where the communication partner is configured to output the input content, where And performing a control operation according to the operation instruction.
  • the first collection unit is a pointing input device.
  • the input parameter is a force of pressing the pointing input device or a frequency of pressing the pointing input device.
  • the first collection unit is a voice collection device.
  • the input parameter is a volume or a speech rate when the user performs voice input.
  • the operation instruction is used to cause the communication peer end to perform an operation of changing an output teaching of the input content, or for causing the communication peer end to output the same content of the input content ⁇ outputting another content, or for causing the communication peer to perform an output environment that changes the input content, or performing an operation unrelated to the output of the input content while the communication peer outputs the input content.
  • the input content is content that is output in a string manner at the communication peer end;
  • the operation instructions are used to:
  • the input content is content that is output in an audio manner at the communication peer end;
  • the operation instruction is used to:
  • the communication peer control is set to vibrate the motor in the communication opposite end housing.
  • an embodiment of the present invention further provides a method for processing a mobile terminal, including: collecting motion data of the mobile terminal;
  • the communication opposite end is provided with a motor, the operation instruction is for causing the communication opposite end to control the motor to perform the vibration operation; or the communication opposite end has a display unit and a display processing unit, the display unit is configured to display a display object, and the operation instruction is used to enable the communication peer end
  • the display processing unit controls the display object to be displayed in a vibrating manner on the display unit.
  • an embodiment of the present invention further provides a method for processing a mobile terminal, including: collecting an input operation of a user and input parameters when the user performs the input operation;
  • the input content is generated according to the collected input operation
  • the above-mentioned transmission processing method wherein the operation instruction is used to cause the communication peer to perform an operation of changing an output parameter of the input content, or to cause the communication peer to simultaneously output when outputting the input content
  • Another content is either for causing the communication peer to perform an output environment that changes the input content, or to perform an operation independent of the output of the input content while the communication peer outputs the input content.
  • the user can obtain the to-be-sent content and the instruction for instructing the communication peer to perform the operation by one input operation, and send it to the peer end, which is required to be executed twice or two in comparison with the prior art. More than one operation can be realized, which simplifies the user's input operation and improves the user's input efficiency.
  • the invention expands the communication function of the mobile terminal, makes the communication between the users more vivid and real, and is no longer just a text or a simple expression, but evolves into a face-to-face, heart and can experience each other and feel each other's emotions.
  • the communication of the heart is DRAWINGS
  • FIG. 1 is a schematic structural diagram of a mobile terminal according to a first embodiment of the present invention.
  • FIG. 2 is a schematic flowchart of a method for processing a mobile terminal according to a first embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a mobile terminal according to a second embodiment of the present invention.
  • FIG. 4 is a schematic flowchart diagram of a method for processing a mobile terminal according to a second embodiment of the present invention. detailed description
  • the instruction is transmitted to the communication peer end, and the communication peer end performs the operation according to the instruction.
  • the mobile terminal of the first embodiment includes: Housing (not shown);
  • a motion sensing unit is disposed in the housing for collecting motion data of the mobile terminal;
  • a determining unit is connected to the motion sensing unit, and is used for rooting according to the motion sensing unit Determining, by the motion data, whether the mobile terminal has a predetermined motion;
  • a generating unit configured to be connected to the determining unit, configured to generate an operation instruction when the determining result of the determining unit indicates that the mobile terminal generates the predetermined motion
  • a sending unit configured to send the operation instruction to the communication peer end, where the communication peer end performs a vibration operation according to the operation instruction.
  • the mobile terminal of the above embodiment of the present invention detects motion data of the user through a motion sensing unit disposed in the housing, and determines that the mobile terminal generates a predetermined motion according to the motion data (eg, the user moves the mobile terminal downward/upward, and When the user shakes the mobile terminal to the left/right, and when the user rotates the mobile terminal or the like, an instruction corresponding to the predetermined motion is generated, and then the command is transmitted to the communication peer through the communication network. After the communication peer receives the command, it performs a vibration operation.
  • the predetermined motion may be defined by various motion parameters, such as one or more of speed, acceleration, and displacement. Therefore, the motion sensing unit may be Speed sensor, acceleration sensor or displacement sensor, etc., or any combination of them.
  • the mobile terminal needs to preset a predetermined motion, such as a motion in which the acceleration exceeds 2 m/s 2 , and predetermines an instruction to be generated when a predetermined motion occurs.
  • a predetermined motion such as a motion in which the acceleration exceeds 2 m/s 2
  • the acceleration sensor detects the acceleration of the mobile terminal. If the acceleration data detected by the acceleration sensor is greater than 2 m/s 2 , the determination unit determines that the mobile terminal is performing a predetermined motion (the motion of the acceleration exceeds 2 m/s 2 ) . At this time, the generating unit generates an instruction indicating that the communication peer of the mobile terminal performs a corresponding operation according to the determination result.
  • the sending unit sends the command to the communication peer through the communication network. After the communication peer receives the command, it performs a vibration operation.
  • the vibrating operation may include two types of operations, as follows: vibration to the communication peer itself;
  • Vibrate the display object in the display of the communication peer (such as the dialog box in the instant messaging interface).
  • the above two vibration operations are described in detail below.
  • the communication opposite end includes a motor disposed inside the casing for causing vibration.
  • the communication peer controls the motor according to the received command to achieve vibration of the communication peer.
  • the communication peer has a display unit and a display processing unit, and the display unit displays a display object on the display screen.
  • the communication peer controls the display object to be displayed in a vibrating manner on the display screen by the display processing unit according to the received command.
  • the display object may be an object of various application interfaces or boundaries, such as an open Word editing interface, and a dialog window of an instant messaging application (QQ, MSN, etc.), etc.
  • the specific embodiment of the present invention is not specifically limited.
  • the same command is sent for all predetermined actions (e.g., all motions with accelerations exceeding 2 m/s 2 ).
  • the following units are further arranged in the generating unit:
  • the vibration intensity parameter determining unit is configured to determine the vibration intensity parameter according to the detected motion data.
  • the vibration intensity parameter may be carried in the operation instruction and sent to the communication peer.
  • the communication peer performs a vibration operation having a vibration intensity indicated by the vibration intensity parameter.
  • different vibration intensities may be determined according to the specific magnitude of the acceleration, and at the communication opposite end, vibration operations of different intensities may be performed according to different vibration intensities. Thereby distinguishing these actions and further expressing the feelings or emotions of the mobile terminal user.
  • the predetermined motion is predefined in the communication terminal, and the vibration intensity parameter corresponding to the different motion data is further defined.
  • the motion with the acceleration exceeding 2 m/s 2 is taken as a predetermined motion as an example.
  • the relationship between different motion data and the vibration intensity parameter is as follows. As shown in the following table:
  • the acceleration sensor detects the acceleration of the mobile terminal. If the acceleration data detected by the acceleration sensor is greater than 2 m/s 2 , the judging unit judges that the mobile terminal has a predetermined motion (acceleration exceeds 2 m/ s motion. 2), the vibration intensity parameter determination unit further determines the motion intensity parameters according to specific values of the acceleration data, such as acceleration 2.3m / s 2, the parameter value of vibration intensity XL, and acceleration At 4.2 m/s 2 , the value of the vibration intensity parameter is x3. The value of the vibration intensity parameter is carried by the command and sent to the communication peer through the communication network.
  • the communication peer obtains the vibration intensity parameter from the instruction, and further can control the rotation speed and the stop frequency of the motor according to the vibration intensity parameter to achieve the vibration of the corresponding intensity, or can control the vibration amplitude of the display object on the display screen. Achieve vibration of the corresponding intensity.
  • the above vibration intensity parameter may be directly the rotational speed, the stall frequency, the vibration amplitude, etc., or may be a vibration level parameter.
  • the communication peer determines the corresponding speed, the stall frequency, the vibration amplitude, and the like according to the vibration level parameter.
  • the trend relationship between the vibration intensity parameter and the motion data is not limited to the above example.
  • the larger the motion data the larger the vibration intensity parameter, which can better reflect the user's real operation.
  • the method for processing the mobile terminal of the first embodiment of the present invention is as shown in FIG. 2, and includes:
  • Step 21 Collect motion data of the mobile terminal.
  • Step 22 determining, according to the collected motion data, whether the mobile terminal has a predetermined motion;
  • Step 23 generating an operation instruction when the determining result in step 22 indicates that the mobile terminal generates the predetermined motion;
  • Step 24 Send an operation instruction to the communication peer end, where the communication peer end performs a vibration operation according to the operation instruction.
  • FIG. 3 shows a mobile terminal according to a second embodiment of the present invention, including:
  • a first collecting unit disposed in the housing, for collecting an input operation of a user
  • a second collecting unit configured to collect an input parameter when the user performs an input operation
  • a first generating unit configured to be connected to the first collecting unit, configured to generate an input content according to the collected input operation
  • a second generating unit configured to be connected to the second collecting unit, configured to generate an operation instruction according to the collected input parameter
  • the sending unit is connected to the first and second generating units, and configured to send the input content and the operation instruction to the communication peer end, wherein the communication peer end outputs the input content, and performs a control operation according to the operation instruction.
  • the input operation of the input and the input parameter when the user performs the input operation are first collected.
  • the input operation and the input parameter may be in various forms, for example. Say See below.
  • the input device is a pointing input device such as a keyboard, a touch screen, or the like.
  • the user can perform an input operation through the keyboard.
  • the input content may be, for example, a character, text, and the like input by the user through the keyboard
  • the input parameter may be the strength of pressing the button when the user performs an input operation through the keyboard, or The frequency at which the button is pressed.
  • the force of pressing the button can be detected by setting a pressure sensor under the keycap.
  • Detecting the pressing of the button can be accomplished in a variety of ways, such as one of the following.
  • the keyboard is provided with a button scanning circuit, and the signal scanned by the button scanning circuit can be used to determine whether a button is pressed or pressed.
  • the button when the button is pressed, the code needs to be transmitted to the host. Therefore, whether the button is pressed can be determined by whether the keyboard transmits the code to the host.
  • the frequency of pressing the button is determined according to the number of times the user performs the operation of pressing the button detected in the unit time. If the unit time is 2s, and the user performs the operation of pressing the button 5 times within 2s, the frequency at which the user presses the button is determined to be 2.5 times / s.
  • the length of the unit time can be selected according to different needs.
  • the frequency of pressing the button is determined according to the interval time at which the user performs the operation of pressing the button n times, such as when the user performs an operation of pressing the button, starts the timer, and reads when the user performs the operation of pressing the button for the nth time. Take the timer reading, such as 0.5s, to determine the frequency at which the user presses the button 2n (times/s).
  • the value of n can also be rooted according to different needs.
  • the user can perform various types of input operations through the touch screen.
  • the input content may be, for example, characters, text, and the like input by the user through the touch screen.
  • the input parameter may be that the user presses the touch screen when performing an input operation through the touch screen. The strength, or the frequency of pressing the touch screen.
  • the pressing force can be detected by setting a sensor under the touch screen.
  • the frequency at which the touch screen is pressed can be determined by the frequency of information exchange between the touch screen and the main board, and will not be described in further detail herein.
  • the mobile terminal When the mobile terminal has a voice collection device (such as a microphone), the user can perform an input operation through the voice collection device.
  • the input content is a character string that the user voice is recognized by voice, and the input parameter may be a voice of the user. Sets the volume, or speech rate, etc. when the device performs voice input.
  • the volume can be detected by the volume detecting element, which has been widely used in microphones and various noise monitoring devices and will not be described in detail herein.
  • the speech rate can be obtained by collecting speech of a certain length of time, then performing speech recognition to convert it into a character string, and dividing the number of characters in the string by the length of time.
  • the number of input parameters it collects may be independent of the input device or input content.
  • the second collecting unit is a human body physiological parameter collecting unit, which is used for collecting physiological parameters when the user performs an input operation as an input parameter, such as a heartbeat frequency, a breathing frequency, etc., and these parameters can directly indicate the user's emotion.
  • the detection methods for the various input parameters described above are not limited to the above-listed modes, and other detection methods in the prior art may also be used in the mobile terminal of the embodiment of the present invention.
  • the mobile terminal After collecting the input operation to the user and the input parameter when the user performs the input operation, the mobile terminal generates an input content according to the collected input operation, and generates an operation instruction according to the collected input parameter, and then inputs the content and the operation.
  • the instruction is sent to the communication peer for the communication peer to perform the operation and the operation.
  • generating the input content according to the collected input operation may be implemented by any suitable known method, such as collecting an input operation performed by the user on the keyboard to obtain a character string, and collecting the input operation of the user through the voice collection device 1 row. Obtain a string (by voice recognition) or an audio file, etc., and will not be described in detail here.
  • an operation instruction is generated according to the collected input parameters while generating the input content.
  • the operation instruction may be used to: enable the communication peer to perform an operation of changing an output parameter of the input content, or enable the communication peer to simultaneously output the input content Outputting another content, or causing the communication peer to perform an operation of changing an output environment of the input content, or performing an operation independent of an output of the input content while the communication peer outputs the input content.
  • control operation may be a control operation for the input content itself, and the operation instruction causes the communication peer to change the parameter of the input content at the output through the corresponding output unit, and the control operation is performed for different forms of input content. It is also different from the output unit, as explained below.
  • the output unit may be, for example, a display on which an interface or object of the corresponding application is displayed to output a character string.
  • the application here can be a variety of applications that can output text, such as instant Communication software, or text editing software.
  • the communication peer After receiving the operation instruction sent by the mobile terminal, the communication peer performs control according to the operation instruction, for example, changing the display color, the font size and the font of the character string output in the application interface, as if the user clicks the command on the application interface. Buttons or menu selections to perform these same operations. Of course, it can also be to change other character formats of the string (such as black, bold, italic, etc.), not ".” - enumeration, .
  • the corresponding output unit may be, for example, an audio output device such as a speaker or the like.
  • the communication peer After receiving the operation instruction sent by the mobile terminal, the communication peer performs control according to the operation instruction to change the volume, the playing speed or other playing parameters of the audio output device when playing the audio file by, for example, audio playing software. Such as the play mode, etc., not listed here. This operation is as if the user clicked on the volume up button in the audio player software or through the menu option.
  • the operation instruction causes the communication peer to output another content while outputting the received input content, the other content preferably being related to the input content, such as when playing the sound file, the communication peer end passes the audio playing software. At the same time, the background sound (such as wind, thunder, rain, laughter, etc.) is played.
  • the communication pair control displays another picture such as a fire, or simultaneously displays the other party through the software for text output. I got angry with the words and so on.
  • the operation instruction causes the communication peer to perform an operation of changing the output environment in which the input content is output, but the input content is not modified, as illustrated below.
  • the communication peer changes the display frame in which the input content is displayed when outputting the received input content according to the received operation instruction (for example, for the instant communication software, The background color or background pattern for the dialog box, or the vibration display box;
  • the communication peer changes the background color or the background pattern of the play interface of the audio player, or changes the play interface, according to the received operation instruction, when playing the received audio file.
  • the communication peer can use the display setting software to change the display.
  • the second generation unit generates an operation instruction according to the collected input parameter.
  • the second generation unit may further include:
  • a saving unit configured to save a correspondence between the instruction and the input parameter
  • the instruction generating unit is configured to acquire an instruction corresponding to the collected input operation according to the correspondence.
  • the first and second users communicate using their respective mobile terminals.
  • the first user constantly asks the second user for the same thing.
  • the second user may have some impatientness. If the second user inputs the answer content by means of keyboard input, the user's input parameters (keyboard) Pressing the force or pressing the frequency) will be larger than the input parameters under normal conditions.
  • the mobile terminal of the second user sends an operation instruction according to the collected input parameter to the mobile terminal of the first user by using the second generating unit, and the mobile terminal sends the mobile terminal according to the second instruction according to the second instruction.
  • the control operation is performed, for example, changing the color of the character string sent by the second user through its mobile terminal to red. When the first user sees that the displayed content is red, the current mood of the second user can be known.
  • the first user constantly asks the second user for the same thing.
  • the second user may have some impatientness.
  • the user's input parameter at this time. (keyboard pressing force or pressing frequency) may be larger than an input parameter in a normal situation, in which case the mobile terminal of the second user generates an operation instruction according to the collected input parameter through the second generating unit and transmits Going to the mobile terminal of the first user, the mobile terminal displays the character string sent by the user through the mobile terminal, and performs a control operation according to the operation instruction, for example, adding a flame icon after the displayed character string, or adding "be careful, the other party afterwards” The prompt of "get angry", or the voice output "be careful, the other party is angry", and the first user can know the current mood of the second user when he sees that the displayed content is red.
  • the first user continually asks the second user for the same thing, in which case the second user may have some impatience, in which case the second user is entering their answer content by voice, at this time
  • the input parameter (volume or speech rate) of Lu may be larger than the input parameter under normal conditions, in which case the mobile terminal of the second user generates an operation instruction according to the collected input parameter by the second generation unit.
  • the mobile terminal transmitting to the mobile terminal of the first user, the mobile terminal performs a control operation according to the operation instruction, and plays the second
  • the audio file is played at an increased volume, and the first user knows the current mood of the second user.
  • the first user constantly asks the second user for the same thing, in which case the second user may have some impatience, if the second user enters the answer content by way of keyboard input, At this time, the input parameter of the user (the keyboard pressing force or the pressing frequency) may be larger than the input parameter in the normal situation, in which case the mobile terminal of the second user passes the collected input parameter according to the second generating unit.
  • the operation instruction is generated and sent to the mobile terminal of the first user
  • the mobile terminal performs a control operation according to the operation instruction, for example, adjusting the background color of the instant communication dialog displayed on the display to red.
  • the first user sees that the color of the dialog box is red, the second user's current mood can be known.
  • the first user constantly asks the second user for the same thing, in which case the second user may have some impatience, if the second user enters the answer content by way of keyboard input, At this time, the user's input parameters (keyboard pressing force or pressing frequency) may be larger than the input parameters in the normal situation, in which case the input parameters collected by the second user's mobile terminal through the second generating unit are collected.
  • the operation instruction is generated and sent to the mobile terminal of the first user, the mobile terminal performs a control operation according to the operation instruction, and controls the internally set motor to cause vibration, so that the first user can know the current mood of the second user.
  • a motor for vibration is provided in the communication opposite end, and the control operation is specifically implemented by controlling the motor.
  • the communication peer has a display unit for displaying a display object, and the operation instruction for causing the communication peer to control the display object to be displayed by the display processing unit
  • the unit is displayed in vibration mode.
  • the second collection unit may collect an input parameter when the user performs the input operation, and determine a vibration intensity parameter according to the input parameter.
  • the operation command carries a vibration intensity parameter, and the communication opposite end performs a vibration operation having the vibration intensity indicated by the vibration intensity parameter.
  • the input operation may be an operation performed by the user by controlling the movement of the mobile terminal.
  • the second collection unit is a motion sensing unit, and is used to collect the motion of the mobile terminal.
  • the second generating unit root determines a vibration intensity parameter according to the motion data.
  • the communication peer may be The string mode is output, and the user inputs through the keyboard of the user terminal, but the communication peer may output in a voice manner.
  • the transmission processing method of the mobile terminal of the second embodiment is as shown in FIG. 4, and includes:
  • Step 41 Collect an input operation of the user and an input parameter when the user performs the input operation
  • Step 42 Generate an input content according to the collected input operation
  • Step 43 Generate a command according to the collected input parameter.
  • Step 44 Send the input content and the operation instruction to a communication peer end, wherein the communication peer end outputs the input content, and performs a control operation according to the operation instruction.
  • the input parameter is the strength of pressing the pointing input device or the frequency of pressing the pointing input device.
  • the input parameter is the volume or the speed of the voice input by the user.
  • the operation instruction causes the communication peer to perform an operation of changing an output parameter of the input content, or when the communication peer outputs the input content, simultaneously output another content, or cause the communication peer to perform a change The output environment of the input content, or an operation unrelated to the output of the input content while the communication peer outputs the input content.
  • the operation instruction is specifically used to:
  • the communication peer control is set to vibrate the motor in the communication opposite end housing.
  • the operation instruction is specifically used to:
  • the communication peer control is set to vibrate the motor in the communication opposite end housing.

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Description

移动终端及其发送处理方法
技术领域
本发明涉及通信技术领域, 特别是移动终端及其发送处理方法。 背景技术
随着通信技术和计算机技术的不断进步, 当前情况下, 用户已经可以通过各种方 式进行输入操作, 也可以通过各种方式与其他用户进行通信。
发明人在实现本发明实施例的过程中发现, 现有技术至少存在如下的缺点: 以即时通信为例, 现有技术中, 用户在输入过程中, 如果想要表达自己当前的情 绪, 需要两次输入操作, 首先输入待发.送的内容, 然后还需要执行另外的操作来表达 其情绪, 如在 QQ中可以选择一些图标来表达愤怒, 也可以通过选择待发送内容的字 体颜色、 大小等来表达情绪, 而在下一次输入时, 可能情绪发生变化, 此时又需要重 新执行以上的两次输入操作, 导致用户的输入操作繁琐, 效率较低。
当然以上的问题也存在于多种其他通信应用场景下。
发明内容
本发明的目的是提供一种移动终端及其发送处理方法, 降低用户输入操作的复杂 度, 提高用户的输入效率。
为了实现上述目的, 本发明实施例提供了一种移动终端, 包括:
壳体;
运动传感单元, 设置于所述壳体内, 用于采集所述移动终端的运动数.据; 判断单元, 与所述运动传感单元连接, 用于根.据所述运动传感单元采集到的所述 运动数据判断所述移动终端是否发生预定运动;
生成单元, 与所述判断单元连接, 用于在所述判断单元的判断结果指示所述移动 终端发生所述预定运动时, 生成操作指令;
发送单元, 与所述生成单元连接, 用于将所述操作指令发送到通信对端, 其中, 所述通信对端根据所述操作指令执行震动操作。
上述的移动终端, 其中, 所述通信对端设置有马达, 所述操作指令用于使所述通 信对端控制所述马达来执行所述震动操作。
上述的移动终端, 其中, 所述通信对端具有显示单元和显示处理单元, 所述显示 单元用于显示显示对象, 所述操作指令用于使所述通信对端通过所述显示处理单元控 制所述显示对象在所述显示单元上以震动方式显示。
上述的移动终端, 其中, 所述生成单元包括:
震动强度参数确定单元, 用于根据所述运动数据确定震动强度参数; 所述操作指令中携带所述震动强度参数, 所述通信对端执行具有所述震动强度参 数所指示的震动强度的震动操作。
为了实现上述目的, 本发明实施例还提供了一种移动终端, 包括:
壳体;
第一采集单元, 设置在所述壳体内, 用于采集用户的输入操作;
第二采集单元, 设置在所述壳体内, 用于采集所述用户执行所述输入操作时的输 入.参"数,;
第一生成单元, 与所述第一采集单元连接, 用于根据采集到的所述输入操作生成 输入内容;
第二生成单元, 与所述第二采集单元连接, 用于根^^采集到的所述输入参数生成 操作指令;
发送单元, 与所述第一生成单元和所述第二生成单元连接, 用于将所述输入内容 和所述操作指令发送到通信对端, 其中, 所述通信对端输出所述输入内容, 并根据所 述操作指令执行控制操作。
上述的移动终端, 其中 , 所述第一采集单元为指点输入设备。
上述的移动终端, 其中 , 所述输入参数为按压指点输入设备的力度或者按压指点 输入设备的频率。
上述的移动终端, 其中 , 所述第一采集单元为语音采集装置。
上述的移动终端, 其中 , 所述输入参数为用户进行语音输入时的音量或语速。 上述的移动终端, 其中 , 所述操作指令用于使所述通信对端执行改变所述输入内 容的输出参教的操作, 或者用于使所述通信对端在输出所述输入内容的同 0†输出另一 内容, 或者用于使所述通信对端执行改变所述输入内容的输出环境, 或者在所述通信 对端输出所述输入内容的同时执行与输入内容的输出无关的操作。 上述的移动终端, 其中,
所述输入内容为在所述通信对端以字符串方式输出的内容;
所述操作指令用于:
使所述通信对端执行改变所述输入内容的字体、 字号、 字体颜色或者字符格式的 操作; 或
使所述通信对端在输出所述输入内容的同时输出另一内容; 或
使所述通信对端改变显示所述输入内容的显示框的背景颜色或背景图案, 或使所 述通信对端输出所述输入内容时, 震动所述显示框; 或
使所述通信对端控制设置于通信对端壳体内的马达震动„
上述的移动终端,其中,所述输入内容为在所述通信对端以声音方式输出的内容; 所述操作指令用于:
使所述通信对端执行改变所述输入内容的播放音量、 播放速度或播放模式的操 作; 或
使所述通信对端执行输出所述输入内容的同时输出另一内容; 或
使所述通信对端改变播放所述输入内容的播放单元的播放界面的背景颜色或背 景图案; 或
使所述通信对端改变在播放单元的播放界面中显示的所述输入内容的文件名的 颜色、 字体或字号; 或
使所述通信对端输出所述输入内容时, 震动所述播放界面; 或
使所述通信对端控制设置于通信对端壳体内的马达震动。
为了实现上述目的,本发明实施例还提供了一种移动终端的发送处理方法, 包括: 采集所述移动终端的运动数据;
根据采集到的所述运动数据判断所述移动终端是否发生预定运动;
在所述判断的结果指示所述移动终端发生所述预定运动时, 生成操作指令; 将所述操作指令发送到通信对端, 其中, 所述通信对端根 4t所述操作指令执行震 动操作。
上述的发送处理方法, 其中, 所述通信对端设置有马达, 所述操作指令用于使所 述通信对端控制所述马达来执行所迷震动操作; 或者所述通信对端具有显示单元和显 示处理单元, 所述显示单元用于显示显示对象, 所述操作指令用于使所述通信对端通 过所述显示处理单元控制所述显示对象在所述显示单元上以震动方式显示。
为了实现上述目的, 本发明实施例还提供了一种移动终端的发送处理方法, 包括: 采集用户的输入操作和所述用户执行所述输入操作时的输入参数;
根.据采集到的所述输入操作生成输入内容;
根据采集到的所述输入参数生成操作指令;
将所述输入内容和所述操作指令发送到通信对端, 其中, 所述通信对端输出所述 输入内容, 并根据所述操作指令执行一控制操作。
上述的发送处理方法, 其中, 所述操作指令用于使所述通信对端执行改变所述输 入内容的输出参数的操作, 或者用于使所述通信对端在输出所述输入内容时同时输出 另一内容, 或者用于使所述通信对端执行改变所述输入内容的输出环境, 或者在所述 通信对端输出所述输入内容的同时执行与输入内容的输出无关的操作。
本发.明实施例具有以下的有益效果:
本发明实施例中,用户通过一次输入操作即可得到待发.送内容和用于指示通信对 端执行操作的指令, 并发.送到对端, 相对于现有技术中需要执行两次或两次以上的操 作才能实现而言, 简化了用户的输入操作, 提.高了用户的输入效率。
本发明拓展了移动终端的通讯功能, 使得用户之间的通讯更加生动、 真实, 而不 再只是文字或者简单的表情表达, 而演变为一种可以互相体验和感受彼此情绪的 "面 对面, 心与心" 的沟通。 附图说明
图 1为本发明第一实施例的移动终端的结构示意图;
图 2为本发明第一实施例的移动终端的发送处理方法的流程示意图;
图 3为本发.明第二实施例的移动终端的结构示意图;
图 4为本发明第二实施例的移动终端的发送处理方法的流程示意图。 具体实施方式
本发.明实施例的移动终端中, 通过采集用户的操作来得到预定的指令后,将该指 令传递到通信对端, 由通信对端根.据该指令来执行'操作。
如图 1所示, 本;!明第一实施例的移动终端包括: 壳体(图中未示出);
运动传感单元, 设置于所述壳体内, 用于采集所述移动终端的运动数据; 判断单元, 与所述运动传感单元连接, 用于根.据所述运动传感单元采集到的所述 运动数据判断所述移动终端是否发生预定运动;
生成单元, 与所述判断单元连接, 用于在所述判断单元的判断结果指示所述移动 终端发生所述预定运动时, 生成操作指令;
发送单元, 与所述生成单元连接, 用于将所述操作指令发送到通信对端, 其中, 所述通信对端根.据所述操作指令执行震动操作。
本发明上述实施例的移动终端通过设置于壳体内的运动传感单元来检测用户的 运动数据, 并根据运动数据判断出移动终端发生预定运动(如用户向下 /上甩动移动终 端, 又如用户向左 /右晃动移动终端, 又如用户转动移动终端等)时, 生成与该预定运 动相对应的指令, 然后将该指令通过通信网络发送到通信对端。 通信对端接收到该指 令后, 执行震动操作。
在本发明的具体实施例中, 该预定运动可以通过各种运动参数来限定, 如速度、 加速度、 位移中的一个或多个来进行限定, 因此, 根据应用需要, 该运动传感单元可 以是速度传感器、 加速度传感器或位移传感器等, 或者是它们的任意组合。
以加速度传感器为例说明如下。
移动终端需要预先设定预定运动, 如加速度超过 2m/s2的运动, 并预先确定发生 预定运动时要生成的指令。
例如在用户晃动移动终端时, 加速度传感器检测移动终端的加速度, 如果加速度 传感器检测到的加速度数据大于 2m/s2时, 判断单元判断移动终端正在进行预定运动 (加速度超过 2m/s2的运动) 。 此时, 生成单元根据该判断结果生成指示该移动终端 的通信对端执行相应操作的指令。 发送单元将该指令通过通信网络发送到通信对端。 通信对端接收到该指令后, 执行震动操作。
在本发明的示例实施例中, 该震动操作可以包括两种类型的操作, 如下: 对通信对端自身的震动;
对通信对端的显示屏中的显示对象(如即时通信界面中的对话框) 的震动。 对以上两种震动操作详细说明如下。
在第一种震动操作中, 通信对端包括设置于其壳体内部的用于引起震动的马达。 通信对端根据接收到的指令控制马达来实现通信对端的震动。
而在第二种震动操作中, 所迷通信对端具有显示单元和显示处理单元, 显示单元 在显示屏上显示一显示对象。 通信对端根据接收到的指令, 通过所述显示处理单元控 制所述显示对象在显示屏上以震动方式显示。
在本发明的具体实施例中, 该显示对象可以是各种应用界面或者界.面上的对象, 如打开的 Word编辑界面, 又如即时通信应用 (QQ、 MSN等) 的对话窗口等, 在本 发明的具体实施例中不作具体限定。
在上述的具体实施例中, 对于所有的预定动作 (如所有的加速度超过 2m/s2的运 动)都会发送相同的指令。 为了能够进一步区分动作, 在本发明的示例实施例中, 在 生成单元中进一步设置如下单元:
震动强度参数确定单元, 用于根据检测到的运动数据确定震动强度参数。
可以将所述震动强度参数携带在所述操作指令中发送到通信对端。 所述通信对端 执行具有所述震动强度参数所指示的震动强度的震动操作。 由此, 例如对于所有的加 速度超过 2m/s2的运动, 可以根.据加速度的具体大小, 确定不同震动强度, 而在通信 对端, 也可以根据不同的震动强度执行强度不同的震动操作, 从而区分这些动作, 并 进一步表达了移动终端用户的感情或情绪。
详细举例说明如下。
假定在通信终端预先定义预定运动, 并进一步定义不同运动数据所对应的震动强 度参数, 以加速度超过 2m/s2的运动为预定运动为例说明如下, 不同运动数据与震动 强度参数之间的关系如下表所示:
加速度数据 (a) 震动强度参数
3 > a>2 l
4 > a>3 x2
5 > a>4 x3 在用户晃动移动终端时, 加速度传感器会检测移动终端的加速度, 如果加速度传 感器检测到的加速度数据大于 2m/s2时, 判断单元判断移动终端发生预定运动 (加速 度超过 2m/s2的运动) , 震动强度参数确定单元进一步根据加速度数据的具体取值来 确定震动强度参数, 如加速度为 2.3m/s2时, 震动强度参数的取值为 xl, 而加速度为 4.2m/s2时, 震动强度参数的取值为 x3。 该震动强度参数的值通过指令携带, 并通过通 信网络发送到通信对端。 通信对端从该指令中获得震动强度参数, 进而可以根据该震 动强度参数来控制马达的转速及停转频率来实现相应强度的震动, 或者可以控制显示 对象在所述显示屏上的震动幅度来实现相应强度的震动。
应当理解的是, 上述的震动强度参数可以直接是转速、 停转频率、 震动幅度等, 也可以是震动等级参数。在这种情况下,通信对端根据震动等级参数确定对应的转速、 停转频率、 震动幅度等。
同时, 在本发明的具体实施例中, 震动强度参数与运动数据之间的趋势关系不限 于上述示例。 优选地, 运动数据越大, 震动强度参数越大, 这样能够更好的反映用户 的真实操作。
本发明第一实施例的移动终端的发送处理方法如图 2所示, 包括:
步骤 21, 采集所述移动终端的运动数据;
步驟 22 , 根据采集到的运动数据判断所述移动终端是否发生预定运动; 步骤 23 , 在步骤 22的判断结果指示所述移动终端发生所述预定运动时, 生成操 作指令;
步骤 24, 将操作指令发送到通信对端, 其中, 所述通信对端根据所述操作指令 执行震动操作。
图 3示出了本发明第二实施例的移动终端, 包括:
壳体 (图中未示出);
第一采集单元, 设置在所述壳体内, 用于采集用户的输入操作;
第二采集单元, 设置在所述壳体内, 用于采集用户执行输入操作时的输入参数; 第一生成单元, 与所述第一采集单元连接, 用于根据采集到的输入操作生成输入 内容;
第二生成单元, 与所述第二采集单元连接, 用于根据采集到的输入参数生成操作 指令;
发送单元, 与第一和第二生成单元连接, 用于将输入内容和操作指令发送到通信 对端, 其中, 所述通信对端输出所述输入内容, 并根据所述操作指令执行控制操作。
在本发明的具体实施例中, 首先采集用卢的输入操作和用户执行该输入操作时的 输入参数, 在本发.明的具体实施例中, 输入操作和输入参数可以是各种形式, 举例说 明如下。
该输入设备为指点输入设备, 如键盘、 触摸屏等。
在移动终端具有键盘时, 用户可以通过键盘进行输入操作, 此时, 输入内容可以 是例如用户通过键盘输入的字符、 文本等, 输入参数可以是用户通过键盘执行输入操 作时按压按键的力度、 或者按压按键的频率。
按压按键的力度可以通过在键帽下方设置压力传感器来检测。
检测对按键的按压可以通过多种方式来实现, 例如如下方式之一。
方式一, 键盘中设置有按键扫描电路, 可以通过按键扫描电路扫描到的信号来确 定是否有按键被,按压。
方式二, 按键被按下时, 需要向主机传送编码, 因此也可以通过键盘是否向主机 传递的编码来确定是否有按键被按压。
可利用如下方式来确定按压按键的频率:
根据单位时间内检测到的用户执行按压按键的操作的次数来确定按压按键的频 率, 如单位时间为 2s, 2s内检测到用户执行 5次按压按键的操作, 即可确定用户按压 按键的频率为 2.5次 /s。 该单位时间的长度可以根据不同的需求来选择。
根据用户执行 n次按压按键的操作的间隔时间来确定按压按键的频率, 如当检测 到用户执行按压按键的操作时, 启动定时器, 并在第 n次检测到用户执行按压按键的 操作时读取计时器的读数, 如 0.5s, 可以确定用户按压按键的频率为 2n (次 /s)。 当然, n的值也可以根.据不同的需求来选择。
在移动终端具有触摸屏时,用户可以通过触摸屏执行各种类型的输入操作,此时, 输入内容可以是例如用户通过触摸屏输入的字符、 文本等, 输入参数可以是用户通过 触摸屏执行输入操作时按压触摸屏的力度, 或者按压触摸屏的频率。
可以通过在触摸屏下方设置传感器来检测按压力度。 可以通过触摸屏与主板之间 的信息交互的频率来确定按压触摸屏的频率, 在此不作进一步详细描述。
在移动终端具有语音采.集设备 (如麦克风) 时, 用户可以通过语音采集设备来执 行输入操作, 此时输入内容是将用户语音通过语音识别成为的字符串, 输入参数可以 是用户通过语音釆集设备执行语音输入时的音量、 或语速等。
可以通过音量检测元件检测音量, 这种元件已经广泛应用于麦克风及各种噪音监 测的器件中, 在此不作详细说明。 而对于语速的测定, 可以通过采集一定时间长度的语音, 然后进行语音识别将其 转换为字符串, 将字符串中字符的数量除以时间长度来得到语速。
对于第二采集单元而言 , 其采集的输入参.数可以是与输入设备或输入内容无关。 例如, 第二采集单元是人体生理参数采集单元, 用于采集用户执行输入操作时的生理 参数作为输入参数, 如心跳频率, 呼吸频率等, 这些参数可以直接表明用户的情绪。
当然, 对于上述的各种输入参数的检测方法并不局限于以上所列举的方式, 现有 技术中的其他检测方法也可以用于本发明实施例的移动终端。
当然, 以上仅.仅是举例说明, 现有设备的输入方式多种多样, 但任意一种输入方 式都需要用户参与, 而用户在参与输入的过程中必然有一定的参数可供采集, 在此不 列举―说明。
在采.集到用户的输入操作和用户执行该输入操作时的输入参数后, 移动终端根据 采集到的输入操作生成输入内容, 并根据采集到的输入参数生成操作指令, 然后将输 入内容和操作指令发送到通信对端, 供通信对端进行揄出和执行操作。 这里, 根据采 集到的输入操作生成输入内容可以采用任何适当的已知方法来实现, 如采.集用户对键 盘进行的输入操作而得到字符串, 采集用户通过语音采集设备 1行的输入操作而得到 字符串 (通过语音识别)或者音频文件等, 在此不作详细描述。
根^"本发明具体实施例的移动终端中, 在生成输入内容的同时, 还根据采集到的 输入参数生成操作指令。
在本发明的具体实施例中, 所述操作指令可以用于: 使所述通信对端执行改变所 述输入内容的输出参数的操作, 或者使所述通信对端在输出所述输入内容时同时输出 另一内容, 或者使所述通信对端执行改变所述输入内容的输出环境的操作, 或者在所 述通信对端输出该输入内容的同时执行与输入内容的输出无关的操作。 分别说明如 下。
情况一
在情况一中, 控制操作可以是针对输入内容自身的控制操作, 操作指令使所述通 信对端通过对应的输出单元来改变输入内容在输出时的参数, 对于不同形式的输入内 容, 该控制操作和输出单元也不相同, 举例说明如下。
如输入内容是字符串, 则输出单元可以是例如显示器, 其上显示相应的应用的界 面或对象, 以输出字符串。 这里的应用可以是各种能够进行文字输出的应用, 如即时 通信软件, 又或者文本编辑软件。 通信对端在接收到移动终端发送的操作指令后, 根 据该操作指令执行控制, 以例如改变应用界面中输出的字符串的显示颜色、 字号及字 体等, 就好像用户通过在应用界面上点击命令按钮或者进行菜单选择来执行这些操作 一样。 当然, 还可以是改变字符串的其他字符格式(如加黑、 加粗、 斜体等) , 在此 不―.―—列举,.。 如输入内容为音频文件, 则对应的输出单元可以是例如音频输出设备, 如扬声器 等。 通信对端在接收到移动终端发送的操作指令后, 根.据该操作指令执行控制, 以通 过例如音频播放软件等来改变音频输出设备在播放音频文件时的音量、 播放速度或者 其他播放参数, 如播放模式等, 在此不一一列举。 这种操作就好像用户通过鼠标点击 音频播放软件中的音量加大按钮或者通过菜单选项来选定的操作一样。
情况二
在情况二中, 操作指令使通信对端在输出接收到的输入内容的同时输出另一内 容, 该另一内容优选地与输入内容有关, 如在播放声音文件时, 通信对端通过音频播 放软件同时播放背景音(如风声、 雷声、 雨声、 笑声等) , 在显示字符串时, 通信对 端控通过进行文字输出的软件来另外显示例如一团火的图片、 或者同时显示 "对方发 怒了" 的文字等。
情况三
在情况三中, 操作指令使所述通信对端执行改变输出所述输入内容的输出环境的 操作, 但对输入内容没有修改, 举例说明如下。
在输入内容例如是字符串的情况下, 通信对端根据接收到的操作指令, 在输出接 收到的输入内容时, 改变所述输入内容显示所在的显示框(例如, 对于即时通信软件 而言, 为对话框) 的背景颜色或背景图案, 或震动显示框;
在输入内容例如是音频文件的情况下, 通信对端根据接收到的操作指令, 在播放 接收到的音频文件时, 改变音频播放器的播放界面的背景颜色或背景图案, 或改变在 播放界面中显示的文件名的颜色、 字体或字号, 或震动播放界面或其中的对象。
情况四
在情况四中, 在所述通信对端输出所述输入内容的同时执行与输入内容的输出元 关的其他操作, 例如对通信对端自身的操作。
例如, 在输出所述输入内容的同时, 通信对端可以利用显示屏设置软件来改变显 示屏的背景颜色及分辨率, 或者利用设置于通信对端壳体中的马达来震动该通信对 端。
以上列举了根据操作指令可能执行的控制操作, 上述的实施例中, 第二生成单元 根据采集到的输入参数生成操作指令, 在本发明的具体实施例中, 该第二生成单元可 以进一步包括:
保存单元, 用于保存指令与输入参数之间的对应关系;
指令生成单元, 用于根据所述对应关系获取与采集到的输入操作对应的指令。 下面对本发明第二实施例的移动终端的应用进行举例说明。
例如, 第一和第二用户使用各自的移动终端进行通信。 第一用户不断询问第二用 户一个相同的事情, 在这种情况下, 第二用户可能有一些不耐烦, 如果第二用户在通 过键盘输入的方式输入回答内容, 此时用户的输入参数(键盘按压力量或按压频率) 会比通常状况下的输入参数大。在这种情况,第二用户的移动终端通过第二生成单元, 根.据采集到的所述输入参数生成操作指令时并发送到第一用户的移动终端, 该移动终 端根据该第二指令来执行控制操作, 例如将第二用户通过其移动终端发送过来的字符 串的颜色修改为红色。 第一用户在看到显示的内容为红色时, 则可以知道第二用户当 前的心情。
例如, 第一用户不断询问第二用户一个相同的事情, 在这种情况下, 第二用户可 能有一些不耐烦, 如果第二用户在通过键盘输入的方式输入回答内容, 此时用户的输 入参数,(键盘按压力量或按压频率)会比通常状况下的输入参数大, 在这种情况, 第 二用户的移动终端通过第二生成单元, 根据采集到的所述输入参数生成操作指令时并 发送到第一用户的移动终端, 该移动终端显示用户通过移动终端发送过来的字符串, 同时根据操作指令来执行控制操作, 例如在显示的字符串后加入火焰图标, 或者在之 后加入 "小心, 对方生气了" 的提示语, 或者语音输出 "小心, 对方生气了" 的提示 语, 而第一用户在看到显示的内容为红色时, 则可以知道第二用户当前的心情。
例如, 第一用户不断询问第二用户一个相同的事情, 在这种情况下, 第二用户可 能有一些不耐烦, 在这种情况下, 第二用户在通过语音方式输入其回答内容, 此时用 卢的输入参数(音量或语速)可能比通常状况下的输入参数大, 在这种情况, 第二用 户的移动终端通过第二生成单元根据采集到的所述输入参数, 生成操作指令时并发送 到第一用户的移动终端, 该移动终端则根.据该操作指令来执行控制操作, 在播放第二 用户通过移动终端发送过来的音频文件时, 以加大的音量播放, 第一用户从而获知第 二用户当前的心情。
例如, 在即时通信应用中, 第一用户不断询问第二用户一个相同的事情, 在这种 情况下, 第二用户可能有一些不耐烦, 如果第二用户在通过键盘输入的方式输入回答 内容, 此时用户的输入参数,(键盘按压力量或按压频率) 会比通常状况下的输入参数 大, 在这种情况下, 第二用户的移动终端通过第二生成单元根据采集到的所述输入参 数生成操作指令时并发送到第一用户的移动终端, 该移动终端则根据该操作指令来执 行控制操作, 例如将显示器上显示的即时通信对话框的背景颜色调整为红色。 第一用 户在看到对话框的颜色为红色时, 则可以知道第二用户当前的心情。
例如, 在即时通信应用中, 第一用户不断询问第二用户一个相同的事情, 在这种 情况下, 第二用户可能有一些不耐烦, 如果第二用户在通过键盘输入的方式输入回答 内容, 此时用户的输入参数(键盘按压力量或按压频率) 会比通常状况下的输入参数 大, 在这种情况下, 第二用户的移动终端通过第二生成单元根^采集到的所述输入参 数生成操作指令时并发送到第一用户的移动终端, 该移动终端则根据该操作指令来执 行控制操作, 控制内部设置的马达引起震动, 从而第一用户可以获知第二用户当前的 心情。
本发明不限于以上的例子,在此不一一列举其他示例。本领域技术人员可以理解, 对于语音方式输出的第一内容, 同样可以执行上述类似的操作。
在本发明的具体实施例中, 所述通信对端中设置有用于震动的马达, 所述控制操 作具体通过控制所述马达来实现。
所述通信对端具有显示单元和显示处理单元, 所述显示单元用于显示显示对象, 所述操作指令用于使所述通信对端通过所述显示处理单元控制所述显示对象在所述 显示单元上以震动方式显示。
备选地, 第二采集单元可以采集所述用户执行所述输入操作时的输入参数, 并根 据所述输入参数确定震动强度参数。
操作指令中携带有震动强度参数, 所述通信对端执行具有所述震动强度参数所指 示的震动强度的震动操作。
当然, 所述输入操作可以是为用户通过控制所述移动终端运动来执行的操作, 这 种情况下, 所述第二采集单元为运动传感单元, 用于采.集所述移动终端的运动数据, 所述第二生成单元根.据所述运动数据确定震动强度参数。
当然, 应当理解的是, 用户在移动终端上输入内容的方式与通信对端输出该输入 内容之间没有必然的对应关系, 如用户通过用户终端的麦克风进行输入, 但在通信对 端可能是以字符串方式进行输出, 而用户通过用户终端的键盘进行输入, 但在通信对 端可能是以语音的方式进行输出。
本发.明第二实施例的移动终端的发送处理方法如图 4所示, 包括:
步骤 41 , 采集用户的输入操作和所述用户执行所述输入操作时的输入参数; 步骤 42 , 根.据采集到的所述输入操作生成输入内容;
步骤 43 , 根据采集到的所述输入参数生成搡作指令;
步骤 44, 将所述输入内容和所述操作指令发送到通信对端, 其中, 所述通信对端 输出所述输入内容, 并根据所述操作指令执行控制操作。
用户通过指点输入设备输入时, 所述输入参数为按压指点输入设备的力度或者按 压指点输入设备的频率。
用户通过语音采集装置输入时, 所述输入参数为用户进行语音输入时的音量或语 速。
所述操作指令使所述通信对端执行改变所述输入内容的输出参数的操作, 或者使 所述通信对端输出所述输入内容时同时输出另一内容, 或者使所述通信对端执行改变 所述输入内容的输出环境, 或者在所述通信对端输出该输入内容的同时执行与输入内 容的输出无关的操作。
所述输入内容为在所述通信对端以字符串方式输出的内容时, 所述操作指令具体 用于:
使所述通信对端执行改变所述输入内容的字体、 字号、 字体颜色或者字符格式的 操作; 或
使所述通信对端输出所述输入内容的同时输出另一内容; 或
使所述通信对端改变显示所述输入内容的显示框的背景颜色或背景图案, 或使所 述通信对端输出所述输入内容时, 震动所述显示框; 或
使所述通信对端控制设置于通信对端壳体内的马达震动。
所述输入内容为在所述通信对端以声音方式输出的内容时, 所述操作指令具体用 于:
! 3 使所述通信对端执行改变所述输入内容的播放音量、 播放速度或播放模式的操 作; 或
使所述通信对端执行输出所述输入内容的同时输出另一内容; 或
使所述通信对端改变播放所述输入内容的播放单元的播放界面的背景颜色或背 景图案; 或使所述通信对端改变在播放单元的播放界面中显示的所述输入内容的文件 名的颜色、 字体或字号, 或使所述通信对端输出所述输入内容时, 震动所述播放界面; 或
使所述通信对端控制设置于通信对端壳体内的马达震动。
以上所述仅是本发明的优选实施方式, 应当指出, 对于本技术领域的普通技术人 员来说, 在不脱离本发明原理的前提下, 还可以作出若干改进和润饰, 这些改进和润 饰也应视为本发明的保护范围。

Claims

权 利 要 求
1 .一种移动终端, 包括:
壳体;
运动传感单元, 设置于所述壳体内, 用于采集所述移动终端的运动数据; 判断单元, 与所述运动传感单元连接, 用于根据所述运动传感单元采集到的所述 运动数据判断所述移动终端是否发生预定运动;
生成单元, 与所述判断单元连接, 用于在所述判断单元的判断结果指示所述移动 终端发生所述预定运动时, 生成操作指令;
发送单元, 与所述生成单元连接, 用于将所述操作指令发送到通信对端, 其中, 所述通信对端根据所述操作指令执行震动操作。
2. 根^ 权利要求 1所述的移动终端, 其中, 所述通信对端设置有马达, 所述操作 指令用于使所述通信对端控制所述马达来执行所述震动操作。
3. 根据权利要求 1所述的移动终端, 其中, 所述通信对端具有显示单元和显示处 理单元, 所述显示单元用于显示显示对象, 所述操作指令用于使所述通信对端通过所 述显示处理单元控制所述显示对象在所述显示单元上以震动方式显示。
4. 根据权利要求 1、 2或 3所述的移动终端, 其中, 所述生成单元包括: 震动强度参数确定单元, 用于根据所述运动数据确定震动强度参数; 所述操作指令中携带所述震动强度参数, 所述通信对端执行具有所述震动强度参 数所指示的震动强度的震动操作。
5.一种移动终端, 包括:
壳体';
第一采集单元, 设置在所述壳体内, 用于采集用户的输入操作;
第二采集单元, 设置在所述壳体内, 用于采集所述用户执行所述输入操作时的输 入参数;
第一生成单元, 与所述第一采.集单元连接, 用于根.据采.集到的所述输入操作生成 输入内容;
第二生成单元, 与所述第二采集单元连接, 用于根.据采集到的所述输入参数生成 操作指令; 发送单元, 与所述第一生成单元和所述第二生成单元连接, 用于将所述输入内容 和所述操作指令发送到通信对端, 其中, 所述通信对端输出所述输入内容, 并根据所 述操作指令执行控制操作。
6. 根据权利要求 5所述的移动终端 , 其中, 所述第一采集单元为指点输入设.备.。
7. 根据权利要求 6所述的移动终端, 其中, 所述输入参数为按压指点输入设备的 力度或者按压指点输入设备的频率。
8. 根据权利要求 5所述的移动终端 , 其中, 所述第一采集单元为语音采集装置。
9. 根据权利要求 8所述的移动终端, 其中, 所述输入参教为用户进行语音输入时 的音量或语速。
10. 根据权利要求 5-9 中任意一项所述的移动终端, 其中, 所述操作指令用于使 所述通信对端执行改变所述输入内容的输出参数的操作, 或者用于使所述通信对端在 输出所述输入内容.的同时输出另一内容, 或者用于使所述通信对端执行改变所述输入 内容的输出环境, 或者在所述通信对端输出所述输入内容的同时执行与输入内容的输 出无关的操作。
1 1. 根据权利要求 10所述的移动终端, 其中:
所述输入内容.为在所述通信对端以字符串方式输出的内容;
所述操作指令用于:
使所述通信对端执行改变所述输入内容的字体、 字号、 字体颜色或者字符格式的 操作; 或
使所述通信对端在输出所述输入内容的同时输出另一内容; 或
使所述通信对端改变显示所述输入内容的显示框的背景颜色或背景图案, 或使所 述通信对端输出所述输入内容时, 震动所述显示框; 或
使所述通信对端控制设置于通信对端壳体内的马达进行震动。
12. 根†居权利要求 10所述的移动终端, 其中:
所述输入内容为在所述通信对端以声音方式输出的内容;
所述操作指令用于:
使所述通信对端执行改变所述输入内容的播放音量、 播放速度或播放模式的操 作; 或
使所述通信对端执行在输出所述输入内容的同时输出另一内容; 或 使所述通信对端改变播放所述输入内容的播放单元的播放界面的背景颜色或背 景图案; 或
使所述通信对端改变在播放单元的播放界面中显示的所述输入内容的文件名的 颜色、 字体或字号; 或
使所述通信对端输出所述输入内容时, 震动所述播放界面; 或
使所述通信对端控制设置于通信对端壳体内的马达进行震动。
13. 一种移动终端的发送处理方法, 包括:
采集所述移动终端的运动数据;
根据采集到的所述运动数据判断所述移动终端是否发生预定运动;
在所述判断的结果指示所述移动终端发生所述预定运动时, 生成操作指令; 将所述操作指令发.送到通信对端, 其中, 所述通信对端根据所述操作指令执行震 动.橾作。
14. 根^ ¾权利要求 13所述的发送处理方法, 其中, 所述通信对端设置有马达, 所 述操作指令用于使所述通信对端控制所述马达来执行所述震动操作; 或者
所述通信对端具有显示单元和显示处理单元, 所述显示单元用于显示显示对象, 所述操作指令用于使所述通信对端通过所述显示处理单元控制所述显示对象在所述 显示单元上以震动方式显示。
15. 一种移动终端的发送处理方法, 包括:
采集用户的输入操作和所述用户执行所述输入操作时的输入参数;
根据采集到的所述输入操作生成输入内容;
根据采集到的所述输入参数生成操作指令;
将所述输入内容和所述操作指令发送到通信对端, 其中, 所述通信对端输出所述 输入内容, 并根据所述操作指令执行控制操作。
16. 根据权利要求 15 所述的发送处理方法, 其中, 所述操作指令用于使所述通 信对端执行改变所述输入内容的输出参数的操作, 或者用于使所述通信对端在输出所 述输入内容的同时输出另一内容, 或者用于使所述通信对端执行改变所述输入内容的 输出环境, 或者在所述通信对端输出所述输入内容的同时执行与输入内容的输出无关 的操作。
PCT/CN2011/079251 2010-09-02 2011-09-01 移动终端及其发送处理方法 Ceased WO2012028107A1 (zh)

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