WO2014104173A1 - 無線端末装置 - Google Patents
無線端末装置 Download PDFInfo
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- WO2014104173A1 WO2014104173A1 PCT/JP2013/084827 JP2013084827W WO2014104173A1 WO 2014104173 A1 WO2014104173 A1 WO 2014104173A1 JP 2013084827 W JP2013084827 W JP 2013084827W WO 2014104173 A1 WO2014104173 A1 WO 2014104173A1
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- communication
- unit
- processing unit
- audio signal
- voice
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/725—Cordless telephones
- H04M1/72502—Cordless telephones with one base station connected to a single line
- H04M1/72505—Radio link set-up procedures
- H04M1/72513—On hold, intercom or transfer communication modes
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M3/00—Automatic or semi-automatic exchanges
- H04M3/42—Systems providing special services or facilities to subscribers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
- H04W88/06—Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals
Definitions
- the present invention relates to a wireless terminal device.
- a wireless terminal device including a touch screen display includes, for example, a smartphone and a tablet.
- a wireless terminal device including a touch screen display detects a finger or stylus pen gesture via the touch screen display.
- the wireless terminal device including the touch screen display operates according to the detected gesture.
- An example of the operation according to the detected gesture is described in Patent Document 1, for example.
- the basic operation of a wireless terminal device equipped with a touch screen display is Android (registered trademark), BlackBerry (registered trademark) OS, Symbian (registered trademark) OS, iOS, Windows (registered trademark) Phone installed in the wireless terminal device. It is realized by OS (Operating System) such as.
- An object of the present invention is to provide a wireless terminal device capable of making a call using each of a plurality of communication units corresponding to a voice call without significantly changing existing hardware and software configurations. To do.
- the wireless terminal device includes a first communication unit that performs wireless communication by a first communication method, a second communication unit that performs wireless communication by a second communication method different from the first communication method, A first communication processing unit that converts a signal received in the first communication unit into a digital audio signal; an audio processing unit that converts the digital audio signal converted in the first communication processing unit into an analog audio signal; and the second A second communication processing unit that converts a signal received by the communication unit into an analog audio signal, an audio output unit that outputs an analog audio signal, and an analog audio signal is transmitted between the audio processing unit and the audio output unit A first switching unit that switches between a first mode, a second mode for transmitting an analog audio signal between the second communication processing unit, and the audio output unit.
- the second communication processing unit switches the first switching unit to the second mode when voice communication is performed by the second communication processing unit, and when the voice communication by the second communication processing unit ends, The second mode may be switched to the first mode.
- the wireless terminal device includes a first control unit that controls outgoing and incoming calls in the first communication processing unit and the second communication processing unit, and the first control unit requests start or end of voice outgoing and incoming calls. Accordingly, the mode of the first switching unit may be switched by the second communication processing unit.
- the first control unit may switch to the second mode when voice communication by the first communication processing unit is not performed.
- the first control unit interrupts voice communication by the first communication processing unit when voice communication by the first communication processing unit is performed. Then, the first mode may be switched to the second mode.
- the first control unit may switch to the second mode in response to an instruction input based on a user operation when there is a request for voice communication by the second communication processing unit.
- the second communication processing unit may perform sound quality improvement processing on the audio signal input from the second communication unit, and then convert the audio signal to an analog audio signal.
- the wireless terminal device may include a signal processing unit that performs the sound quality improvement processing separately from the second communication processing unit.
- the wireless terminal device may include a second control unit that controls whether the signal processing unit performs the sound quality improvement process and transmits a digital audio signal between the second communication processing unit and the signal processing unit. Good.
- the wireless terminal device When the wireless terminal device performs voice communication with the short-range wireless communication unit that performs wireless communication with an input / output device that inputs and outputs a voice signal, and the first communication processing unit, the short-range wireless communication unit and the When a digital audio signal is transmitted between the first communication processing unit and voice communication is performed by the second communication processing unit, the digital audio signal is transmitted between the short-range wireless communication unit and the second communication processing unit.
- a second switching unit for transmission for transmission.
- a wireless terminal device includes a first communication unit that performs wireless communication by a first communication method, a second communication unit that performs wireless communication by a second communication method different from the first communication method, and an analog An audio input unit for inputting an audio signal; an audio processing unit for converting an analog audio signal input by the audio input unit into a digital audio signal; and a digital audio signal converted by the audio processing unit for the first communication unit
- a first communication processing unit for converting to a signal for transmission by the second communication processing unit for converting an analog voice signal input by the voice input unit to a signal for transmission by the second communication unit;
- the wireless terminal device can make a call using each of the communication units of a plurality of communication methods corresponding to the voice call without significantly changing the existing hardware and software configuration.
- the smartphone 1 has a housing 20.
- the housing 20 includes a front face 1A, a back face 1B, and side faces 1C1 to 1C4.
- the front face 1 ⁇ / b> A is the front of the housing 20.
- the back face 1 ⁇ / b> B is the back surface of the housing 20.
- the side faces 1C1 to 1C4 are side surfaces that connect the front face 1A and the back face 1B.
- the side faces 1C1 to 1C4 may be collectively referred to as the side face 1C without specifying which surface.
- the smartphone 1 has a touch screen display 2, buttons 3A to 3C, an illuminance sensor 4, a proximity sensor 5, a receiver 7, a microphone 8, and a camera 12 on the front face 1A.
- the smartphone 1 has a camera 13 on the back face 1B.
- the smartphone 1 has buttons 3D to 3F and an external interface 14 on the side face 1C.
- the buttons 3A to 3F may be collectively referred to as the button 3 without specifying which button.
- the touch screen display 2 has a display 2A and a touch screen 2B.
- the display 2A includes a display device such as a liquid crystal display (Liquid Crystal Display), an organic EL panel (Organic Electro-Luminescence panel), or an inorganic EL panel (Inorganic Electro-Luminescence panel).
- the display 2A displays characters, images, symbols, graphics, and the like.
- the touch screen 2B detects contact of a finger or a stylus pen with respect to the touch screen display 2.
- the touch screen 2B can detect a position where a plurality of fingers, a stylus pen, or the like is in contact with the touch screen display 2.
- the detection method of the touch screen 2B may be any method such as a capacitance method, a resistive film method, a surface acoustic wave method (or an ultrasonic method), an infrared method, an electromagnetic induction method, and a load detection method.
- a finger that the touch screen 2B detects contact with the touch screen display 2 or a stylus pen or the like may be simply referred to as a “finger”.
- the smartphone 1 determines the type of gesture based on the contact, contact position, contact time, or number of contacts detected by the touch screen 2B.
- the gesture is an operation performed on the touch screen display 2.
- the gesture discriminated by the smartphone 1 includes touch, long touch, release, swipe, tap, double tap, long tap, drag, flick, pinch in, pinch out, and the like.
- Touch is a gesture in which a finger touches the touch screen display 2 (for example, the surface).
- the smartphone 1 determines a gesture in which a finger contacts the touch screen display 2 as a touch.
- the long touch is a gesture in which a finger contacts the touch screen display 2 for a predetermined time or more.
- the smartphone 1 determines a gesture in which a finger contacts the touch screen display 2 for a predetermined time or more as a long touch.
- Release is a gesture in which a finger leaves the touch screen display 2.
- the smartphone 1 determines a gesture in which a finger leaves the touch screen display 2 as a release.
- the swipe is a gesture that moves while the finger is in contact with the touch screen display 2.
- the smartphone 1 determines a gesture that moves while the finger is in contact with the touch screen display 2 as a swipe.
- the tap is a gesture for releasing following a touch.
- the smartphone 1 determines a gesture for releasing following a touch as a tap.
- the double tap is a gesture in which a gesture for releasing following a touch is continued twice.
- the smartphone 1 determines a gesture in which a gesture for releasing following a touch is continued twice as a double tap.
- Long tap is a gesture that releases after a long touch.
- the smartphone 1 determines a gesture for releasing following a long touch as a long tap.
- the drag is a gesture for performing a swipe from an area where a movable object is displayed.
- the smartphone 1 determines, as a drag, a gesture for performing a swipe starting from an area where a movable object is displayed.
- a flick is a gesture that is released while a finger moves at high speed in one direction following a touch.
- the smartphone 1 determines, as a flick, a gesture that is released while the finger moves in one direction at high speed following the touch.
- Flick Up flick that moves your finger up the screen, Down flick that moves your finger down the screen, Right flick that moves your finger right in the screen, Left flick that moves your finger left in the screen Etc.
- the pinch-in is a gesture that swipes in the direction in which multiple fingers approach each other.
- the smartphone 1 determines, as a pinch-in, a gesture that swipes in a direction in which a plurality of fingers approach each other.
- Pinch-out is a gesture that swipes a plurality of fingers away from each other.
- the smartphone 1 determines a gesture of swiping in a direction in which a plurality of fingers move away from each other as a pinch out.
- the smartphone 1 operates according to these gestures determined via the touch screen 2B. Therefore, operability that is intuitive and easy to use for the user is realized.
- the operation performed by the smartphone 1 according to the determined gesture differs depending on the screen displayed on the touch screen display 2.
- FIG. 4 shows an example of the home screen.
- the home screen may be called a desktop or a standby screen.
- the home screen is displayed on the display 2A.
- the home screen is a screen that allows the user to select which application to execute from among the applications installed in the smartphone 1.
- the smartphone 1 executes the application selected on the home screen in the foreground.
- the screen of the application executed in the foreground is displayed on the display 2A.
- Smartphone 1 can place an icon on the home screen.
- a plurality of icons 50 are arranged on the home screen 40 shown in FIG.
- Each icon 50 is associated with an application installed in the smartphone 1 in advance.
- the smartphone 1 detects a gesture for the icon 50, the smartphone 1 executes an application associated with the icon 50.
- the smartphone 1 detects a tap on the icon 50 associated with the mail application, the smartphone 1 executes the mail application.
- the smartphone 1 interprets a gesture to a position (area) corresponding to the display position (area) of the icon 50 on the touch screen display 2 as an execution instruction of an application associated with the icon 50. .
- the icon 50 includes an image and a character string.
- the icon 50 may include a symbol or a graphic instead of the image.
- the icon 50 may not include either an image or a character string.
- the icons 50 are arranged according to a predetermined rule.
- a wallpaper 41 is displayed behind the icon 50.
- the wallpaper is sometimes called a photo screen or a back screen.
- the smartphone 1 can use any image as the wallpaper 41. For example, an arbitrary image is determined as the wallpaper 41 according to the setting of the user.
- the smartphone 1 can increase or decrease the number of home screens. For example, the smartphone 1 determines the number of home screens according to the setting by the user. When the smartphone 1 displays the home screen, even if there are a plurality of home screens, the smartphone 1 displays one selected from them on the display 2A.
- the smartphone 1 displays one or more locators on the home screen.
- the number of locators matches the number of home screens.
- the locator indicates the position of the currently displayed home screen.
- the locator corresponding to the currently displayed home screen is displayed in a manner different from other locators.
- locators 51 are displayed. This indicates that the number of home screens 40 is four.
- the second symbol from the left is displayed in a manner different from other symbols. This indicates that the second home screen from the left is currently displayed.
- the smartphone 1 When the smartphone 1 detects a specific gesture while displaying the home screen, the smartphone 1 switches the home screen displayed on the display 2A. For example, when detecting a right flick, the smartphone 1 switches the home screen displayed on the display 2A to the left home screen. Further, when the smartphone 1 detects a left flick, the smartphone 1 switches the home screen displayed on the display 2A to the right home screen.
- a region 42 is provided at the upper end of the display 2A.
- a remaining amount mark 43 indicating the remaining amount of the rechargeable battery and a radio wave level mark 44 indicating the electric field strength of the communication radio wave are displayed.
- the smartphone 1 may display the current time, weather information, the application being executed, the type of the communication system, the status of the phone, the mode of the device, the event that has occurred in the device, and the like in the area 42.
- the area 42 is used for various notifications to the user.
- the area 42 may be provided on a screen different from the home screen 40. The position where the region 42 is provided is not limited to the upper end of the display 2A.
- the home screen 40 shown in FIG. 4 is an example, and the form of various elements, the arrangement of various elements, the number of home screens 40, the manner of various operations on the home screen 40, and the like are described above. It does not have to be street.
- FIG. 5 is a block diagram showing the configuration of the smartphone 1.
- the smartphone 1 includes a touch screen display 2, a button 3, an illuminance sensor 4, a proximity sensor 5, a first communication unit 6A, a second communication unit 6B, a receiver 7, a microphone 8, a storage 9,
- the controller 10 as the first control unit, the cameras 12 and 13, the external interface 14, the acceleration sensor 15, the azimuth sensor 16, the rotation detection sensor 17, the voice processing unit 18, and the first switching unit as the first switching unit. 1 switch 19, amplifier 60, and DSP (Digital Signal Processor) 70.
- DSP Digital Signal Processor
- the touch screen display 2 has the display 2A and the touch screen 2B as described above.
- the display 2A displays characters, images, symbols, graphics, or the like.
- the touch screen 2B detects a gesture.
- the button 3 is operated by the user.
- the button 3 has buttons 3A to 3F.
- the controller 10 detects an operation on the button by cooperating with the button 3.
- the operation on the button is, for example, click, double click, push, and multi-push.
- buttons 3A to 3C are a home button, a back button, or a menu button.
- the button 3D is a power on / off button of the smartphone 1.
- the button 3D may also serve as a sleep / sleep release button.
- the buttons 3E and 3F are volume buttons.
- the illuminance sensor 4 detects illuminance.
- the illuminance is light intensity, brightness, luminance, or the like.
- the illuminance sensor 4 is used for adjusting the luminance of the display 2A, for example.
- the proximity sensor 5 detects the presence of a nearby object without contact.
- the proximity sensor 5 detects that the touch screen display 2 is brought close to the face, for example.
- the first communication method used by the first communication unit 6A is a wireless communication standard.
- a wireless communication standard of the first communication method there is a cellular phone communication standard such as 3G or 4G.
- communication standards for cellular phones include LTE (Long Term Evolution), W-CDMA, CDMA2000, and the like.
- Other wireless communication standards for the first communication method include, for example, WiMAX (Worldwide Interoperability for Microwave Access), IEEE 802.11, Bluetooth (registered trademark), IrDA, NFC (Near Field Communication), and the like.
- the first communication unit 6A may support one or more of the communication standards described above.
- the second communication method used by the second communication unit 6B is a communication method different from the first communication method and is a wireless communication standard.
- a cellular phone communication standard such as 2G as a wireless communication standard of the second communication method.
- cellular phone communication standards include PDC, GSM (registered trademark), PHS (Personal Handy-phone System), and the like.
- the second communication unit 6B may support one or more of the communication standards described above.
- the receiver 7 and the microphone 8 as the voice input / output unit are connected to the voice processing unit 18 via the first switch 19.
- the receiver 7 outputs the analog audio signal transmitted from the audio processing unit 18 as audio.
- the microphone 8 converts the voice of the user or the like into an analog voice signal and transmits it to the voice processing unit 18.
- the sound processing unit 18 performs predetermined sound processing in accordance with the control of the controller 10 and outputs the processed signal to the receiver 7.
- the audio processing unit 18 converts a linear PCM digital audio signal into an analog audio signal and outputs the analog audio signal to the receiver 7.
- the audio processing unit 18 converts the analog audio signal input from the microphone 8 into a linear PCM digital audio signal, and outputs the converted signal to the controller 10.
- the receiver 7 and the microphone 8 are connected to the second communication unit 6 ⁇ / b> B via the first switch 19 and the amplifier 60.
- the receiver 7 outputs an analog audio signal transmitted from the second communication unit 6B as audio.
- the microphone 8 converts a user's voice into an analog voice signal and transmits the analog voice signal to the second communication unit 6B.
- the amplifier 60 amplifies the audio signal according to the control of the second communication unit 6B, and outputs the processed signal to the receiver 7.
- the amplifier 60 amplifies the signal input from the microphone 8 and outputs the processed signal to the second communication unit 6B.
- the smartphone 1 may further include a speaker in addition to the receiver 7.
- the smartphone 1 may further include a speaker instead of the receiver 7.
- the storage 9 stores programs and data.
- the storage 9 is also used as a work area for temporarily storing the processing result of the controller 10.
- the storage 9 may include any storage device such as a semiconductor storage device and a magnetic storage device.
- the storage 9 may include a plurality of types of storage devices.
- the storage 9 may include a combination of a portable storage medium such as a memory card and a storage medium reading device.
- the program stored in the storage 9 includes an application executed in the foreground or the background and a control program that supports the operation of the application.
- the application displays a predetermined screen on the display 2A, and causes the controller 10 to execute processing according to the gesture detected by the touch screen 2B.
- the control program is, for example, an OS.
- the application and the control program may be installed in the storage 9 via wireless communication or a storage medium by the first communication unit 6A or the second communication unit 6B.
- the storage 9 stores, for example, a control program 9A, a mail application 9B, a browser application 9C, setting data 9Z, and the like.
- the mail application 9B provides an electronic mail function for creating, transmitting, receiving, and displaying an electronic mail.
- the browser application 9C provides a WEB browsing function for displaying a WEB page.
- the table 9D includes various tables such as a key assignment table.
- the arrangement pattern database 9E stores arrangement patterns such as icons displayed on the display 2A.
- the setting data 9Z provides various setting functions related to the operation of the smartphone 1. For example, the setting data 9Z stores a first parameter and a second parameter for adjusting the sound quality of the audio signal.
- the first parameter and the second parameter include parameters for volume adjustment, frequency characteristic change, automatic gain control, echo cancellation, and noise suppression, respectively.
- the control program 9A provides functions related to various controls for operating the smartphone 1.
- the control program 9A realizes a call by controlling the first communication unit 6A, the second communication unit 6B, the receiver 7, the microphone 8, and the like, for example.
- the function provided by the control program 9A includes a function of performing various controls such as changing information displayed on the display 2A according to a gesture detected via the touch screen 2B. Note that the functions provided by the control program 9A may be used in combination with functions provided by other programs such as the mail application 9B.
- the controller 10 is, for example, a CPU (Central Processing Unit).
- the controller 10 may be an integrated circuit such as a SoC (System-on-a-chip) in which other components such as the first communication unit 6A are integrated.
- SoC System-on-a-chip
- the controller 10 controls various operations of the smartphone 1 to realize various functions.
- the controller 10 executes instructions included in the program stored in the storage 9 while referring to the data stored in the storage 9 as necessary, and displays the display 2A and the first communication unit.
- Various functions are realized by controlling 6A, the second communication unit 6B, and the like.
- the controller 10 may change the control according to detection results of various detection units such as the touch screen 2B, the button 3, and the acceleration sensor 15.
- the controller 10 executes various controls such as changing the information displayed on the display 2A according to the gesture detected via the touch screen 2B by executing the control program 9A, for example.
- the camera 12 is an in-camera that captures an object facing the front face 1A.
- the camera 13 is an out camera that captures an object facing the back face 1B.
- the external interface 14 is a terminal to which other devices are connected.
- the external interface 14 may be a general-purpose terminal such as USB (Universal Serial Bus), HDMI (High-Definition Multimedia Interface) (registered trademark), Light Peak (Thunderbolt), and an earphone microphone connector.
- the external interface 14 may be a dedicated terminal such as a dock connector.
- Devices connected to the external interface 14 include, for example, an external storage, a speaker, and a communication device.
- the acceleration sensor 15 detects the direction and magnitude of acceleration acting on the smartphone 1.
- the direction sensor 16 detects the direction of geomagnetism.
- the rotation detection sensor 17 detects the rotation of the smartphone 1. The detection results of the acceleration sensor 15, the azimuth sensor 16, and the rotation detection sensor 17 are used in combination in order to detect changes in the position and orientation of the smartphone 1.
- the first switch 19 is a first mode for transmitting an analog audio signal between the audio processing unit 18 and the audio input / output unit (receiver 7 or microphone 8), or between the second communication unit 6B and the audio input / output unit. To switch the second mode for transmitting the analog audio signal.
- the DSP 70 as a signal processing unit performs a sound quality improvement process on the digital audio signal received from the second communication unit 6B, and provides it to the second communication unit 6B.
- the sound quality improvement processing includes processing such as frequency correction and noise removal, for example.
- the smartphone 1 configured in this way can realize a call using each of a plurality of communication units corresponding to a voice call.
- a specific configuration will be described below.
- FIG. 6 is a block diagram showing detailed functions of the smartphone 1.
- a transmission path of a digital audio signal or an analog audio signal related to voice communication is indicated by a solid arrow, and a control signal path is indicated by a broken arrow.
- the first communication unit 6A includes a first antenna 61A as a first communication unit and a first RF circuit unit 61B as a first communication processing unit.
- the first antenna 61A performs wireless communication with an external device such as a base station using the first communication method described above. Specifically, the first antenna 61A transmits / receives a high-frequency signal modulated by the first RF circuit unit 61B to / from an external device such as a base station.
- the high frequency signal includes an audio signal related to a call.
- the first RF circuit unit 61B processes a high-frequency signal transmitted and received by the first antenna 61A. Specifically, the first RF circuit unit 61B demodulates the signal received by the first antenna 61A using a predetermined demodulation method, and supplies the demodulated signal to the controller 10. The first RF circuit unit 61B modulates the signal supplied from the controller 10 with a predetermined modulation method, and supplies the modulated signal to the first antenna 61A.
- the first RF circuit unit 61B obtains a linear PCM digital audio signal by demodulating (converting) the audio signal received by the first antenna 61A.
- the first RF circuit unit 61B supplies the linear PCM digital audio signal to the controller 10. Further, when a linear PCM digital audio signal is supplied from the controller 10, the first RF circuit unit 61B modulates this signal and supplies it to the first antenna 61A.
- the second communication unit 6B includes a second antenna 62A as a second communication unit and a second RF circuit unit 62B as a second communication processing unit.
- the second antenna 62A performs wireless communication with an external device such as a base station by the above-described second communication method.
- the second antenna 62A transmits and receives a high-frequency signal modulated by the second RF circuit unit 62B with an external device such as a base station.
- the high frequency signal includes an audio signal related to a call.
- the second RF circuit unit 62B processes a high-frequency signal transmitted and received by the second antenna 62A. Specifically, the second RF circuit unit 62B demodulates the signal received by the second antenna 62A by a predetermined demodulation method, and supplies the demodulated signal to the receiver 7 via the amplifier 60 and the first switch 19. . The second RF circuit unit 62B modulates the signal supplied from the microphone 8 via the first switch 19 and the amplifier 60 by a predetermined modulation method, and supplies the modulated signal to the second antenna 62A.
- the second RF circuit unit 62B acquires a ⁇ -law PCM digital audio signal by demodulating (converting) the audio signal received by the second antenna 62A.
- the second RF circuit unit 62B converts the ⁇ -law PCM digital audio signal into an analog audio signal, performs processing such as volume adjustment, and outputs the analog audio signal.
- the second RF circuit unit 62B digitally converts this signal, modulates it, and supplies it to the second antenna 62A.
- the second RF circuit unit 62B performs sound quality improvement such as frequency correction and noise removal by the DSP 70 before converting the digital sound signal into an analog sound signal.
- the controller 10 controls the output of the digital audio signal input from the first RF circuit unit 61B to the audio processing unit 18 and the output of the digital audio signal input from the audio processing unit 18 to the first RF circuit unit 61B.
- the controller 10 supplies the digital audio signal to the audio processing unit 18 when a digital audio signal is supplied from the first RF circuit unit 61B when communication is performed by the first communication unit 6A. . Further, when a digital audio signal is input from the audio processing unit 18 when communication is performed by the first communication unit 6A, the controller 10 supplies the digital audio signal to the first RF circuit unit 61B. Then, the audio processing unit 18 converts (decodes) the digital audio signal into an analog audio signal and outputs the analog audio signal to the receiver 7 via the first switch 19.
- the first switch 19 switches the transmission path of the audio signal under the control of the second RF circuit unit 62B.
- the first switch 19 establishes a transmission path between the voice processing unit 18 and the receiver 7, and a transmission path between the voice processing unit 18 and the microphone 8, and Enable voice calls in one mode.
- the first switch 19 establishes a transmission path between the amplifier 60 and the receiver 7, and a transmission path between the amplifier 60 and the microphone 8, and performs voice in the second mode. Enable calls. Therefore, the smartphone 1 can realize a call using each of the plurality of communication units corresponding to the voice call.
- the second RF circuit unit 62B controls the first switch 19 to perform the voice communication by the second RF circuit unit 62B from the first mode to the second mode.
- the voice communication by the second RF circuit unit 62B is completed, the second mode is switched to the first mode.
- the controller 10 controls outgoing and incoming calls in the first RF circuit unit 61B and the second RF circuit unit 62B.
- the controller 10 instructs the second RF circuit unit 62B to switch the mode of the first switch 19 in response to a request to start or end the voice transmission / reception by the second communication method.
- the controller 10 switches to the second mode when voice communication by the first RF circuit unit 61B is not performed. Commands to the circuit unit 62B.
- the controller 10 interrupts voice communication by the first RF circuit unit 61B and instructs the second RF circuit unit 62B to switch to the second mode. .
- the controller 10 may instruct switching to the second mode in response to an instruction input based on a user operation.
- the request for a voice call by the second RF circuit unit 62B is, for example, an incoming call response based on a user operation with respect to an incoming call notification received from the second RF circuit unit 62B or a second RF circuit corresponding to a request based on the user operation. This is a call request to the unit 62B.
- the smartphone 1 switches the first mode and the second mode with the first switch 19 for the transmission path of the analog audio signal. Therefore, the smartphone 1 can realize a call using each of the communication units of a plurality of communication methods corresponding to the voice call.
- the analog audio signal is output from the second communication unit 6B, it is not necessary to provide a processing unit for converting the digital audio signal into the analog audio signal between the second communication unit 6B and the receiver.
- the hardware configuration can be reduced as compared with the provision of the processing unit.
- the smartphone 1 is equipped with the function of the voice call by the second communication method without changing the first communication unit 6A, the controller 10, and the voice processing unit 18, which are functional units related to the voice call by the first communication method. Can do. Furthermore, since the existing second communication unit 6B having a function of converting to an analog voice signal can be used for the function unit related to the voice call by the second communication method, another control unit dedicated to the second communication method is used. It is possible to mount easily without having. In addition, since the receiver 7 and the microphone 8 are shared by both communication methods, the number of parts and the size of the device can be reduced.
- the mode can be appropriately switched according to the start or end of the voice call by the second communication method. Furthermore, since the smartphone 1 commands the second RF circuit unit 62B to switch the mode under the control of the controller 10, the mode can be appropriately switched based on the state of the voice call by the first communication method, the user operation, and the like. .
- the smartphone 1 Since the smartphone 1 performs the sound quality improvement process by the DSP 70, it is possible to improve the call quality while reducing the processing load of the second RF circuit unit 62B.
- FIG. 7 is a block diagram showing detailed functions of the smartphone 1a according to the present embodiment.
- the smart phone 1a is provided with the 2nd switch 80 as a 2nd control part and a 2nd switching part. Call control communication between the second communication unit 6 ⁇ / b> B and the controller 10 is performed via the second switch 80.
- the DSP 70 improves the sound quality and then supplies the processed signal to the second RF circuit unit 62B.
- the second switch 80 turns on the DSP 70 only during a voice call by the second communication unit 6B and when a sound quality improvement process is performed. In other cases, for example, when the voice communication is performed by the first communication unit 6A or the voice communication by the second communication unit 6B, but the sound quality improvement processing is not performed, the second switch 80 turns off the DSP 70. The power consumption of the DSP 70 can be reduced.
- FIG. 8 is a block diagram showing detailed functions of the smartphone 1b according to the present embodiment.
- the smartphone 1b includes a short-range wireless communication unit 90 in addition to the configuration of the second embodiment.
- the short-range wireless communication unit 90 is controlled by the second switch 80, and communicates with a headset as an audio signal input / output device by, for example, Bluetooth (registered trademark). Thereby, a hands-free call becomes possible.
- Bluetooth registered trademark
- the second switch 80 When performing a hands-free call, the second switch 80 transmits a digital voice signal between the first communication unit 6A and the short-range wireless communication unit 90 in the case of voice communication by the first communication unit 6A. On the other hand, in the case of voice communication by the second communication unit 6B, the second switch 80 transmits a digital voice signal between the second communication unit 6B and the short-range wireless communication unit 90. As described above, the second switch 80 switches the transmission path of the audio signal, so that the smartphone 1b can realize a hands-free call using each of the communication units of a plurality of communication methods.
- the sound quality improvement process is performed by the DSP 70, but the second RF circuit unit 62B itself may perform the sound quality improvement process on the audio signal input from the second antenna 62A. According to this configuration, the DSP 70 is unnecessary depending on the processing capability of the second RF circuit unit 62B, and the number of components is reduced.
- the second RF circuit unit 62B controls the first switch 19, but the controller 10 may control the first switch 19.
- the controller 10 turns on the voice processing unit 18 when the first switch 19 enables the voice call in the first mode, while the first switch 19 turns the voice call in the second mode. If it becomes possible, the sound processing unit 18 may be turned off. As a result, the smartphone 1 can reduce power consumption by turning off the voice processing unit 18 when the voice processing unit 18 is not used.
- each program shown in FIG. 5 may be divided into a plurality of modules, or may be combined with other programs.
- 5 may be downloaded from another device through wireless communication by the first communication unit 6A or the second communication unit 6B.
- 5 may be stored in a storage medium that can be read by a reading device included in the storage 9.
- 5 is stored in a storage medium such as a CD, a DVD, or Blu-ray (registered trademark) that can be read by a reader connected to the external interface 14. May be stored.
- a wireless terminal device is not limited to a smart phone.
- the wireless terminal device may be a mobile electronic device such as a mobile phone, a portable personal computer, a digital camera, a media player, an electronic book reader, a navigator, or a game machine.
- the wireless terminal device may be a stationary electronic device such as a desktop personal computer or a television receiver.
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Abstract
Description
このような無線端末装置において、新たな通信方式の音声通話機能を搭載するためには、この新たな音声通話機能に対応した処理ユニットが必要となる。さらに、新たに対応するデジタル音声信号の形式が既存の通信方式と異なる場合には、各形式に対応したデータ処理部及び音声信号の伝送経路を設けるため、既存のハードウェア及びソフトウェア構成を大幅に変更しなければならなかった。
本発明を実施するための第1実施形態を、図面を参照しつつ詳細に説明する。
以下では、無線端末装置の一例として、スマートフォンについて説明する。
第1通信ユニット6Aによって用いられる第1の通信方式は、無線通信規格である。例えば、第1の通信方式の無線通信規格として、3G、4G等のセルラーフォンの通信規格がある。例えば、セルラーフォンの通信規格としては、LTE(Long Term Evolution)、W-CDMA、CDMA2000等がある。他には、例えば、第1の通信方式の無線通信規格として、WiMAX(Worldwide Interoperability for Microwave Access)、IEEE802.11、Bluetooth(登録商標)、IrDA、NFC(Near Field Communication)等がある。第1通信ユニット6Aは、上述した通信規格の1つ又は複数をサポートしていてもよい。
レシーバ7は、音声処理部18から送信されるアナログ音声信号を音声として出力する。マイク8は、利用者等の音声をアナログ音声信号へ変換して音声処理部18へ送信する。音声処理部18は、コントローラ10の制御に従って所定の音声処理を行い、処理後の信号をレシーバ7に出力する。具体的には、音声処理部18は、リニアPCM方式のデジタル音声信号をアナログ音声信号に変換してレシーバ7に出力する。音声処理部18は、マイク8から入力されたアナログ音声信号をリニアPCM方式のデジタル音声信号に変換し、この変換された信号をコントローラ10に出力する。
レシーバ7は、第2通信ユニット6Bから送信されるアナログ音声信号を音声として出力する。マイク8は、利用者等の音声をアナログ音声信号へ変換して第2通信ユニット6Bへ送信する。アンプ60は、第2通信ユニット6Bの制御に従って音声信号を増幅し、処理後の信号をレシーバ7に出力する。アンプ60は、マイク8から入力された信号を増幅し、処理後の信号を第2通信ユニット6Bに出力する。
なお、スマートフォン1は、レシーバ7に加えて、スピーカをさらに有してもよい。スマートフォン1は、レシーバ7に代えて、スピーカをさらに有してもよい。
なお、図中で音声通信に関するデジタル音声信号又はアナログ音声信号の伝送経路を実線の矢印で示し、制御信号の経路を破線の矢印で示す。
第1アンテナ61Aは、上述した第1の通信方式により、基地局等の外部機器と無線通信を行う。具体的には、第1アンテナ61Aは、基地局等の外部機器と、第1RF回路部61Bにより変調される高周波信号の送受信を行う。例えば、この高周波信号は、通話に係る音声信号を含む。
第2アンテナ62Aは、上述した第2の通信方式により、基地局等の外部機器と無線通信を行う。具体的には、第2アンテナ62Aは、基地局等の外部機器と、第2RF回路部62Bにより変調される高周波信号の送受信を行う。例えば、この高周波信号は、通話に係る音声信号を含む。
また、第2RF回路部62Bは、デジタル音声信号をアナログ音声信号に変換する前に、DSP70により周波数補正及びノイズ除去等の音質改善を行う。
そして、音声処理部18は、デジタル音声信号をアナログ音声信号に変換(復号化)して、第1スイッチ19を介してレシーバ7に出力する。
よって、スマートフォン1は、音声通話に対応する複数の通信ユニットそれぞれを用いて通話を実現することができる。
また、第1RF回路部61Bによる音声通信が行われている場合には、コントローラ10は、第1RF回路部61Bによる音声通信を中断し、第2モードへの切り替えを第2RF回路部62Bへ指令する。このとき、コントローラ10は、ユーザ操作に基づく指示入力に応じて、第2モードへの切り替えを指令してもよい。
ここで、第2のRF回路部62Bによる音声通話の要求とは、例えば、第2RF回路部62Bから受けた着信通知に対するユーザ操作に基づく着信応答、又はユーザ操作に基づく要求に応じた第2RF回路部62Bへの発信要求である。
さらに、第2の通信方式による音声通話に関する機能部についても、アナログ音声信号への変換機能を有する既存の第2通信ユニット6Bを用いることができるため、第2の通信方式専用に別の制御部を備えることなく、容易に実装が可能である。また、両通信方式でレシーバ7及びマイク8が共有されるので、部品点数及び装置の小型化が可能となる。
さらに、スマートフォン1は、コントローラ10の制御により第2RF回路部62Bへモードの切り替えを指令するので、第1の通信方式による音声通話の状況、及びユーザ操作等に基づいて、適切にモード切り替えを行える。
本発明を実施するための第2実施形態を、図面を参照しつつ説明する。
なお、第1実施形態と同様の構成には同一の符号を付し、説明を省略又は簡略化する。
スマートフォン1aは、第1スイッチ19に加えて、第2制御部及び第2切替部としての第2スイッチ80を備える。第2通信ユニット6Bとコントローラ10との呼制御用通信は、この第2スイッチ80を介して行われる。
第2スイッチ80は、第2通信ユニット6Bによる音声通話時であって、かつ、音質改善処理を行うときのみ、DSP70をONにする。それ以外のとき、例えば第1通信ユニット6Aによる音声通話時、又は第2通信ユニット6Bによる音声通話時であるが音質改善処理を行わないとき、第2スイッチ80は、DSP70をOFFにすることで、DSP70の消費電力を削減できる。
本発明を実施するための第3実施形態を、図面を参照しつつ説明する。
なお、第2実施形態と同様の構成には同一の符号を付し、説明を省略又は簡略化する。
スマートフォン1bは、第2実施形態の構成に加えて、短距離無線通信部90を備える。この短距離無線通信部90は、第2スイッチ80により制御され、例えば、Bluetooth(登録商標)によって音声信号の入出力装置としてのヘッドセットと通信を行う。これにより、ハンズフリー通話が可能となる。
このように、第2スイッチ80が音声信号の伝送経路を切り替えることにより、スマートフォン1bは、複数の通信方式の通信ユニットそれぞれを用いてハンズフリー通話を実現できる。
なお、図5においてストレージ9が記憶することとしたプログラムの一部又は全部は、第1通信ユニット6A又は第2通信ユニット6Bによる無線通信で他の装置からダウンロードされてもよい。また、図5においてストレージ9が記憶することとしたプログラムの一部又は全部は、ストレージ9に含まれる読み取り装置が読み取り可能な記憶媒体に記憶されていてもよい。また、図5においてストレージ9が記憶することとしたプログラムの一部又は全部は、外部インタフェース14に接続される読み取り装置が読み取り可能なCD、DVD、又はBlu-ray(登録商標)等の記憶媒体に記憶されていてもよい。
6A 第1通信ユニット
6B 第2通信ユニット
7 レシーバ(音声出力部)
8 マイク(音声入力部)
10 コントローラ(第1制御部)
18 音声処理部
19 第1スイッチ(第1切替部)
60 アンプ
61A 第1アンテナ(第1通信部)
61B 第1RF回路部(第1通信処理部)
62A 第2アンテナ(第2通信部)
62B 第2RF回路部(第2通信処理部)
70 DSP(信号処理部)
80 第2スイッチ(第2制御部、第2切替部)
Claims (11)
- 第1の通信方式により無線通信を行う第1通信部と、
前記第1の通信方式と異なる第2の通信方式により無線通信を行う第2通信部と、
前記第1通信部において受信した信号をデジタル音声信号に変換する第1通信処理部と、
前記第1通信処理部において変換されたデジタル音声信号をアナログ音声信号に変換する音声処理部と、
前記第2通信部において受信した信号をアナログ音声信号に変換する第2通信処理部と、
アナログ音声信号を出力する音声出力部と、
前記音声処理部と前記音声出力部との間でアナログ音声信号を伝送する第1モードと前記第2通信処理部と前記音声出力部との間でアナログ音声信号を伝送する第2モードとを切り替える第1切替部と、を備える無線端末装置。 - 前記第2通信処理部は、前記第1切替部を、前記第2通信処理部により音声通信を行う際に前記第2モードへ切り替えさせ、前記第2通信処理部による音声通信が終了すると、前記第2モードから前記第1モードへ切り替えさせる請求項1に記載の無線端末装置。
- 前記第1通信処理部及び前記第2通信処理部における発着信を制御する第1制御部を備え、
前記第1制御部は、音声発着信の開始又は終了要求に応じて、当該第2通信処理部に前記第1切替部のモードを切り替えさせる請求項2に記載の無線端末装置。 - 前記第1制御部は、前記第2通信処理部による音声通信の要求があると、前記第1通信処理部による音声通信が行われていない場合に、前記第2モードへ切り替えさせる請求項3に記載の無線端末装置。
- 前記第1制御部は、前記第2通信処理部による音声通信の要求があると、前記第1通信処理部による音声通信が行われている場合に、当該第1通信処理部による音声通信を中断し、前記第1モードから前記第2モードへ切り替えさせる請求項3に記載の無線端末装置。
- 前記第1制御部は、前記第2通信処理部による音声通信の要求があると、ユーザ操作に基づく指示入力に応じて、前記第2モードへ切り替えさせる請求項3に記載の無線端末装置。
- 前記第2通信処理部は、前記第2通信部から入力される音声信号に対して、音質改善処理を行った後、アナログ音声信号へ変換する請求項1に記載の無線端末装置。
- 前記音質改善処理を行う信号処理部を、前記第2通信処理部とは別に備える請求項7に記載の無線端末装置。
- 前記信号処理部による前記音質改善処理の有無を制御し、前記第2通信処理部と前記信号処理部との間でデジタル音声信号を伝送する第2制御部を備える請求項8に記載の無線端末装置。
- 音声信号を入出力する入出力装置との間で無線通信する短距離無線通信部と、
前記第1通信処理部により音声通信を行うとき、前記短距離無線通信部と前記第1通信処理部との間でデジタル音声信号を伝送し、前記第2通信処理部により音声通信を行うとき、前記短距離無線通信部と前記第2通信処理部との間でデジタル音声信号を伝送する第2切替部と、を備える請求項1に記載の無線端末装置。 - 第1の通信方式により無線通信を行う第1通信部と、
前記第1の通信方式と異なる第2の通信方式により無線通信を行う第2通信部と、
アナログ音声信号を入力する音声入力部と、
前記音声入力部によって入力されたアナログ音声信号をデジタル音声信号に変換する音声処理部と、
前記音声処理部によって変換されたデジタル音声信号を前記第1通信部によって送信するための信号に変換する第1通信処理部と、
前記音声入力部によって入力されたアナログ音声信号を前記第2通信部によって送信するための信号に変換する第2通信処理部と、
前記音声処理部と前記音声入力部との間でアナログ音声信号を伝送する第1モードと前記第2通信処理部と前記音声入力部との間でアナログ音声信号を伝送する第2モードとを切り替える第1切替部と、を備える無線端末装置。
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