WO2017016040A1 - 移动终端、运行模式的控制方法及系统和终端 - Google Patents

移动终端、运行模式的控制方法及系统和终端 Download PDF

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Publication number
WO2017016040A1
WO2017016040A1 PCT/CN2015/088499 CN2015088499W WO2017016040A1 WO 2017016040 A1 WO2017016040 A1 WO 2017016040A1 CN 2015088499 W CN2015088499 W CN 2015088499W WO 2017016040 A1 WO2017016040 A1 WO 2017016040A1
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Prior art keywords
fingerprint
user
terminal
terminal body
determining
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English (en)
French (fr)
Inventor
刘岩
孙巍
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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    • 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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • 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
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser

Definitions

  • the present invention relates to the field of terminal control technologies, and in particular, to a mobile terminal, a control method for an operation mode, a control system for an operation mode, and a terminal.
  • the mobile terminal increases the design of the one-hand operation mode in order to meet the operation requirement of the user when the one-handed control is performed.
  • the fingerprint sensor attached to the “home” button of the mobile terminal such as the Iphone and the Ipad can read the user's
  • the fingerprint information is used to determine the operation mode suitable for one-handed control by the fingerprint information of the user, that is, the user's previous touch command is replaced with fingerprint information, specifically, the angle of the user's one-handed control is determined by the direction of the fingerprint texture. To determine the corresponding operating mode.
  • the angle of the one-handed control of the user is determined based on the direction of the fingerprint texture, thereby determining that the operation mode is not accurate, and the calculation amount of the mobile terminal is large, which affects the running performance of the mobile terminal.
  • the invention is based on at least one of the above technical problems, and proposes a new control scheme of the operation mode, which collects fingerprint information through the fingerprint sensor on the side of the terminal, and can automatically switch to the left-hand or right-hand mode according to the fingerprint information of the terminal side. It saves system resources, simplifies the user's operation steps, and improves the user experience.
  • a mobile terminal including: a terminal body; a display screen disposed on a front structure of the terminal body for displaying operation of the terminal body Information; a fingerprint sensing module, disposed on the terminal body, for Obtaining fingerprint information when the user controls the terminal body.
  • the matching of the fingerprint features when the user controls the terminal with one hand is realized, thereby, according to the fingerprint feature and the preset fingerprint feature, or moving
  • the two sides of the terminal hold the number of fingers to determine which hand the user uses to hold the terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensor acquires the fingerprint feature of the user, it does not need to determine the fingerprint direction.
  • the user sequentially encodes the collected right hand fingers into 10001, 10010, 10011, 10100 and the terminal through the terminal in the preset fingerprint feature stage. 10101, and the above-mentioned code sequentially corresponds to the five fingerprint features of the right hand, and the fingerprint sensor of the mobile terminal can determine that the one-handed control terminal is the right hand of the user, as long as it detects that one fingerprint feature corresponds to the fingerprint feature corresponding to the code.
  • the operation amount and memory usage of the terminal are effectively reduced, and the user experience and the running effect of the terminal are improved.
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode. For example, if the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), then in most cases, the class concludes that the user is the right hand holding terminal, thus The right-hand working mode is provided on the display of the terminal, so that the user can use the right hand to achieve all touch operations.
  • the fingerprint sensing module includes two fingerprint sensors separately disposed on both sides of the terminal body.
  • the fingerprint feature is matched when the user controls the terminal with one hand, thereby according to the fingerprint feature and the preset fingerprint feature, or the mobile terminal.
  • the two sides hold the number of fingers, determine which hand the user uses to hold the terminal, to quickly provide an accurate interface of the operating mode, and improve the user experience.
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine the corresponding finger genus.
  • the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), in most cases
  • the lesson concludes that the user is the right-handed terminal at this time, so that the corresponding right-hand working mode is provided on the display screen of the terminal, so that the user can realize all the touch operations by using only the right hand.
  • the fingerprint sensing module includes a fingerprint sensor disposed under the display screen.
  • the fingerprint sensor is one, the fingerprint sensor is divided into two regions according to a central axis, left and right. The area can identify the number of left and right fingers and the fingerprint information respectively.
  • the fingerprint sensor is two or more, it can be symmetrically set along the sides of the terminal, and used to obtain the fingerprint information and the number of the left and right sides respectively.
  • the fingerprint sensing module includes a fingerprint sensor on a holding portion of the mobile terminal body, and a fingerprint sensor disposed under the display screen, and the fingerprint sensor disposed at the terminal also includes a display on the display screen.
  • the following fingerprint sensors can not only obtain fingerprint features by holding the terminal, but also obtain fingerprint features by means of a touch screen, which makes it more convenient to extract fingerprints, meets the personalized needs of users, and enhances the user experience.
  • the fingerprint sensor comprises at least one of the following or a combination thereof: an optical fingerprint sensor, a semiconductor capacitance sensor, a semiconductor pressure sensor, an ultrasonic fingerprint sensor, and a radio frequency fingerprint sensor.
  • the corresponding fingerprint sensor can be determined according to the cost requirement and the detection accuracy requirement of the mobile terminal.
  • a control method for an operation mode including: determining, by the fingerprint sensor, whether a user holds the terminal body; and determining that the user holds the terminal body Obtaining, by the user, a fingerprint feature of all fingers of the terminal body; determining whether any one of the fingerprint features of the all fingers matches a preset fingerprint feature, and the preset fingerprint feature and Corresponding relationship between the left hand or the right hand of the user; determining that the operation mode of the terminal body is determined by the corresponding relationship when determining that the fingerprint feature matches the preset fingerprint feature, wherein the operation mode is Left hand mode or right hand mode.
  • the fingerprint feature is matched when the user controls the terminal with one hand. Therefore, according to the fingerprint feature and the preset fingerprint feature, or the number of fingers held by the two sides of the mobile terminal, it is determined which hand the user controls the terminal to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensor acquires the fingerprint feature of the user, it does not need to determine the fingerprint direction.
  • the user sequentially encodes the collected right hand fingers into 10001, 10010, 10011, 10100 and the terminal through the terminal in the preset fingerprint feature stage. 10101, and the above-mentioned code sequentially corresponds to the five fingerprint features of the right hand, and the fingerprint sensor of the mobile terminal can determine that the one-handed control terminal is the right hand of the user, as long as it detects that one fingerprint feature corresponds to the fingerprint feature corresponding to the code.
  • the operation amount and memory usage of the terminal are effectively reduced, and the user experience and the running effect of the terminal are improved.
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode. For example, if the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), then in most cases, the class concludes that the user is the right hand holding terminal, thus The right-hand working mode is provided on the display of the terminal, so that the user can use the right hand to achieve all touch operations.
  • the fingerprint sensor on the left side and the fingerprint sensor on the right side respectively Detecting the number of fingers of the user, and respectively recording the number of fingers on the left side and the number of fingers on the right side; determining the relationship between the number of fingers on the left side and the number of fingers on the right side; determining the number of fingers on the left side When the number of the right finger is greater than the number of the right finger, determining that the operating mode of the terminal body is the right-hand working mode, and generating an interface of the corresponding right-hand working mode; or determining that the number of the left finger is smaller than the number of the right finger
  • the operating mode of the terminal body is determined to be the left-hand working mode, and an interface of the corresponding left-hand working mode is generated.
  • the corresponding operation mode is determined according to the number of fingers, the calculation amount and the memory occupation of determining the operation mode are reduced, and the running power consumption of the terminal is reduced.
  • the fluency of the operation process of the mobile terminal is improved, and at the same time, the determined operation mode is ensured to meet the one-hand control requirement of the user.
  • both sides of the mobile terminal The fingerprint sensor detects the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode.
  • the fingerprint sensor on the left side detects three fingers (right side)
  • the number of detected fingers is usually less than or equal to 2), in most cases, the class concludes that the user is the right-hand control terminal, thereby providing a corresponding right-hand working mode on the display of the terminal, so that the user only uses the right hand. All touch operations can be achieved.
  • the method before determining, by the fingerprint sensor, whether the user holds the terminal body, the method further includes: acquiring a fingerprint feature pre-stored by the user; and encoding the pre-stored fingerprint feature according to an instruction of the user, And generating a correspondence between the encoding and the identification information of the fingerprint feature, so that the pre-stored fingerprint feature is used as the preset fingerprint feature.
  • the pre-stored fingerprint features for example, sequentially encoding the left thumb to the little finger as 00001, 00010, 00011, 00100, and 00101, the right thumb to the little finger are sequentially encoded as 10001, 10010, 10011, 10100. And 10101, and the coding code and the corresponding finger identification information, and the pre-stored fingerprint feature as the preset fingerprint information, can realize fast and accurate determination of the operation mode of the mobile terminal, and improve the user experience.
  • the method before determining, by the fingerprint sensor, whether the user holds the terminal body, the method further includes: acquiring a fingerprint feature pre-stored by the user; and encoding the pre-stored fingerprint feature according to an instruction of the user, And generating a correspondence between the encoding and the identification information of the fingerprint feature, so that the pre-stored fingerprint feature is used as the preset fingerprint feature.
  • the pre-stored fingerprint features for example, sequentially encoding the left thumb to the little finger as 00001, 00010, 00011, 00100, and 00101, the right thumb to the little finger are sequentially encoded as 10001, 10010, 10011, 10100. And 10101, and the coding code and the corresponding finger identification information, and the pre-stored fingerprint feature as the preset fingerprint information, can realize fast and accurate determination of the operation mode of the mobile terminal, and improve the user experience.
  • a control system for an operation mode The determining unit is configured to determine, by the fingerprint sensor, whether the user holds the terminal body, and the acquiring unit, configured to acquire, when the user holds the terminal body, the user to hold the The fingerprint feature of all the fingers of the terminal body; the determining unit is further configured to: determine whether any one of the fingerprint features of the all fingers matches the preset fingerprint feature, and the preset fingerprint feature and the user
  • the control system of the operation mode further includes: a determining unit, configured to determine the terminal by using the corresponding relationship when determining that any one of the fingerprint features matches the preset fingerprint feature An operating mode of the body, wherein the operating mode is a left-hand working mode or a right-hand working mode.
  • the fingerprint feature is matched when the user controls the terminal with one hand, so according to the fingerprint feature and the preset fingerprint feature. Or, the number of fingers held on both sides of the mobile terminal determines which hand the user uses to hold the terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensor acquires the fingerprint feature of the user, it does not need to determine the fingerprint direction.
  • the user sequentially encodes the collected right hand fingers into 10001, 10010, 10011, 10100 and the terminal through the terminal in the preset fingerprint feature stage. 10101, and the above-mentioned code sequentially corresponds to the five fingerprint features of the right hand, and the fingerprint sensor of the mobile terminal can determine that the one-handed control terminal is the right hand of the user, as long as it detects that one fingerprint feature corresponds to the fingerprint feature corresponding to the code.
  • the operation amount and memory usage of the terminal are effectively reduced, and the user experience and the running effect of the terminal are improved.
  • the acquiring unit is further configured to: when determining that the fingerprint feature does not match the preset fingerprint feature, acquire the fingerprint sensor of the left side and the right The number of fingers of the user detected by the fingerprint sensor on the side is respectively recorded as the number of fingers on the left side and the number of fingers on the right side; the determining unit is further configured to: determine the number of the left finger and the right side The determining unit is further configured to: when it is determined that the number of the left finger is greater than the number of the right finger, determine that the operating mode of the terminal body is the right-hand working mode, and generate a corresponding The interface of the right hand working mode.
  • the corresponding operation mode is determined according to the number of fingers, the calculation amount and the memory occupation of determining the operation mode are reduced, and the running power consumption of the terminal is reduced. At the same time, it improves the smooth running process of the mobile terminal. Sex, at the same time, ensures that the determined operating mode meets the user's one-handed handling requirements.
  • the determining unit is further configured to: when it is determined that the number of the left finger is less than the number of the right finger, determine that the operating mode of the terminal body is the left-hand working mode, and Generate the interface for the corresponding left-hand work mode.
  • the acquiring unit is further configured to: acquire a fingerprint feature pre-stored by the user;
  • the control system of the operation mode further includes: an encoding unit, configured to: the pre-stored fingerprint feature according to a user instruction Performing coding, and generating a correspondence between the encoding and the identification information of the fingerprint feature, to use the pre-stored fingerprint feature as the preset fingerprint feature.
  • the pre-stored fingerprint features for example, sequentially encoding the left thumb to the little finger as 00001, 00010, 00011, 00100, and 00101, the right thumb to the little finger are sequentially encoded as 10001, 10010, 10011, 10100. And 10101, and the coding code and the corresponding finger identification information, and the pre-stored fingerprint feature as the preset fingerprint information, can realize fast and accurate determination of the operation mode of the mobile terminal, and improve the user experience.
  • a terminal comprising: a control system of an operation mode as described in the above technical solution.
  • the terminal can collect fingerprint information on the side thereof, and can automatically switch to the left-hand or right-hand mode according to the fingerprint information of the terminal side, thereby saving system resources, facilitating user operations, and improving user experience.
  • FIG. 1 shows a schematic diagram of a mobile terminal in accordance with an embodiment of the present invention
  • FIG. 2 is a flow chart showing a control method of an operation mode according to an embodiment of the present invention
  • Figure 3 shows a schematic block diagram of a control system in an operational mode in accordance with one embodiment of the present invention
  • Figure 4 shows a schematic block diagram of a terminal in accordance with an embodiment of the present invention
  • 5A to 5C are diagrams showing an interface of a control scheme of an operation mode according to an embodiment of the present invention.
  • FIG. 1 shows a schematic diagram of a mobile terminal in accordance with an embodiment of the present invention.
  • a mobile terminal includes: a terminal body; a display screen 100 disposed on a front structure of the terminal body for displaying operation information of the terminal body; fingerprint sensing
  • the module is disposed on the terminal body, and is configured to acquire fingerprint information when the user controls the terminal body.
  • At least two fingerprint sensors (shown as a0 and a1 in Fig. 1) are respectively disposed on the left side surface (102) and the right side surface (104) of the terminal body.
  • the fingerprint is realized when the user controls the terminal with one hand.
  • Feature matching thereby determining which hand the user uses to hold the terminal according to the fingerprint feature and the preset fingerprint feature, or the number of fingers held by the two sides of the mobile terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user's use.
  • the fingerprint sensor acquires the fingerprint feature of the user, it does not need to determine the fingerprint direction.
  • the user sequentially encodes the collected right hand fingers into 10001, 10010, 10011, 10100 and the terminal through the terminal in the preset fingerprint feature stage. 10101, and the above-mentioned code sequentially corresponds to the five fingerprint features of the right hand
  • the fingerprint sensor of the mobile terminal (as shown by a0 and a1 in FIG. 1) may detect that one fingerprint feature corresponds to the fingerprint feature corresponding to the code, It is determined that the one-handed control terminal is the right hand of the user, which effectively reduces the calculation amount and memory usage of the terminal, and improves the user experience and the operation effect of the terminal.
  • the fingerprint sensors on both sides of the mobile terminal perform the number of fingers held by the user on both sides. Detecting to determine that the corresponding finger belongs to the user's left or right hand, and then determining the corresponding operating mode. For example, the fingerprint sensor a0 on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2) In most cases, the class concludes that the user is the right-hand control terminal, thereby providing a corresponding right-hand working mode on the display screen of the terminal, so that the user can realize all touch operations by using only the right hand.
  • the fingerprint sensing module includes two fingerprint sensors separately disposed on both sides of the terminal body.
  • the fingerprint sensors are respectively disposed on the left side surface and the right side surface of the terminal body, thereby realizing the matching of the fingerprint features when the user controls the terminal with one hand, thereby according to the fingerprint features and presets.
  • the fingerprint feature, or the number of fingers held by the two sides of the mobile terminal determines which hand the user uses to hold the terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode. For example, if the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), then in most cases, the class concludes that the user is the right hand holding terminal, thus The right-hand working mode is provided on the display of the terminal, so that the user can use the right hand to achieve all touch operations.
  • the left side surface (102) and the right side surface (104) of the terminal body are provided, and a plurality of fingerprint sensors (shown as a0 and a1 in FIG. 1) are provided.
  • the corresponding fingerprint sensor can be determined according to the cost requirement and the detection accuracy requirement of the mobile terminal (as shown by a0 and a1 in FIG. 1).
  • the fingerprint sensing module includes a fingerprint sensor disposed under the display screen.
  • the fingerprint sensing module includes a fingerprint sensor on a holding portion of the mobile terminal body, and a fingerprint sensor disposed under the display screen, and the fingerprint sensor disposed at the terminal also includes a display on the display screen.
  • the following fingerprint sensors can not only obtain fingerprint features by holding the terminal, but also obtain fingerprint features by means of a touch screen, which makes it more convenient to extract fingerprints, meets the personalized needs of users, and enhances the user experience.
  • the fingerprint sensor comprises at least one of the following or a combination thereof: an optical fingerprint sensor, a semiconductor capacitance sensor, a semiconductor pressure sensor, an ultrasonic fingerprint sensor, and a radio frequency fingerprint sensor.
  • the corresponding fingerprint sensor can be determined according to the cost requirement and the detection accuracy requirement of the mobile terminal.
  • FIG. 2 is a flow chart showing a control method of an operation mode according to an embodiment of the present invention.
  • the control method of the operation mode includes: Step 202, determining, by the fingerprint sensor, whether the user holds the terminal body; Step 204, determining that the user holds the When the terminal body is described, acquiring fingerprint features of the fingers of the user for holding the terminal body; and step 206, determining whether any one of the fingerprint features of the all fingers matches the preset fingerprint feature, and Corresponding relationship between the preset fingerprint feature and the left or right hand of the user; Step 208, when determining that any of the fingerprint features matches the preset fingerprint feature, determining, by the corresponding relationship, the terminal body
  • An operation mode wherein the operation mode is a left-hand operation mode (that is, switching from the operation mode shown in FIG. 5A to the operation mode shown in FIG. 5B) or a right-hand operation mode (that is, the operation mode shown in FIG. 5A). Switch to the operating mode shown in Figure 5C).
  • the fingerprint feature is matched when the user controls the terminal with one hand, so according to the fingerprint feature and the preset fingerprint feature. Or, the number of fingers held on both sides of the mobile terminal determines which hand the user uses to hold the terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensor acquires the fingerprint feature of the user, it does not need to determine the fingerprint direction.
  • the user sequentially encodes the collected right hand fingers into 10001, 10010, 10011, 10100 and the terminal through the terminal in the preset fingerprint feature stage. 10101, and the above-mentioned code sequentially corresponds to the five fingerprint features of the right hand, and the fingerprint sensor of the mobile terminal can determine that the one-handed control terminal is the right hand of the user, as long as it detects that one fingerprint feature corresponds to the fingerprint feature corresponding to the code.
  • the operation amount and memory usage of the terminal are effectively reduced, and the user experience and the running effect of the terminal are improved.
  • the fingers on both sides of the mobile terminal detects the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode.
  • the fingerprint sensor on the left side detects three fingers (right side)
  • the number of detected fingers is usually less than or equal to 2), in most cases, the class concludes that the user is the right-hand control terminal, thereby providing a corresponding right-hand working mode on the display of the terminal, so that the user only uses the right hand. All touch operations can be achieved.
  • the fingerprint sensor on the left side and the fingerprint sensor on the right side respectively Detecting the number of fingers of the user, and respectively recording the number of fingers on the left side and the number of fingers on the right side; determining the relationship between the number of fingers on the left side and the number of fingers on the right side; determining the number of fingers on the left side When the number of the right finger is greater than the number of the right finger, determining that the operating mode of the terminal body is the right-hand working mode, and generating an interface of the corresponding right-hand working mode; or determining that the number of the left finger is smaller than the number of the right finger Determining that the operating mode of the terminal body is the left-hand working mode (that is, switching from the working mode shown in FIG. 5A to the working mode as shown in FIG. 5B), and generating an interface of the corresponding left-hand working mode (eg, Figure 5B).
  • the corresponding operation mode is determined according to the number of fingers, the calculation amount and the memory occupation of determining the operation mode are reduced, and the running power consumption of the terminal is reduced.
  • the fluency of the operation process of the mobile terminal is improved, and at the same time, the determined operation mode is ensured to meet the one-hand control requirement of the user.
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation.
  • the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), in most cases, the class concludes that the user is the right hand holding terminal at this time, thereby A corresponding right-hand mode of operation is provided on the display of the terminal, so that the user can use the right hand to achieve all touch operations.
  • determining that the operating mode of the terminal body is the left-hand working mode that is, as shown in FIG. 5A
  • the working mode is switched to the working mode as shown in FIG. 5B
  • the interface into the corresponding left-hand working mode as shown in Figure 5B).
  • the method before determining, by the fingerprint sensor, whether the user holds the terminal body, the method further includes: acquiring a fingerprint feature pre-stored by the user; and encoding the pre-stored fingerprint feature according to an instruction of the user, And generating a correspondence between the encoding and the identification information of the fingerprint feature, so that the pre-stored fingerprint feature is used as the preset fingerprint feature.
  • the pre-stored fingerprint features for example, sequentially encoding the left thumb to the little finger as 00001, 00010, 00011, 00100, and 00101, the right thumb to the little finger are sequentially encoded as 10001, 10010, 10011, 10100. And 10101, and the coding code and the corresponding finger identification information, and the pre-stored fingerprint feature as the preset fingerprint information, can realize fast and accurate determination of the operation mode of the mobile terminal, and improve the user experience.
  • Figure 3 shows a schematic block diagram of a control system in an operational mode in accordance with one embodiment of the present invention.
  • the control system 300 of the operating mode includes: a determining unit 302, configured to determine, by the fingerprint sensor, whether the user holds the terminal body; and the obtaining unit 304 is configured to: When determining that the user holds the terminal body, acquiring a fingerprint feature of the user for holding all the fingers of the terminal body; the determining unit 302 is further configured to: determine a fingerprint feature of all the fingers Whether any of the fingerprint features match the preset fingerprint feature, the corresponding relationship between the preset fingerprint feature and the left or right hand of the user; and the control system 300 of the operating mode further includes: a determining unit 306, configured to When it is determined that the fingerprint feature matches the preset fingerprint feature, determining, by the corresponding relationship, an operation mode of the terminal body, where the operation mode is a left-hand operation mode (that is, as shown in FIG. 5A The operation mode is switched to the operation mode as shown in FIG. 5B or the right-hand operation mode (that is, the operation mode shown in FIG. 5A
  • the fingerprint feature is matched when the user controls the terminal with one hand, so according to the fingerprint feature and the preset fingerprint feature. Or, the number of fingers held on both sides of the mobile terminal determines which hand the user uses to hold the terminal, so as to quickly provide an accurate operation mode related interface, thereby improving the user experience.
  • the fingerprint sensor acquires the user fingerprint feature, it does not need to be performed.
  • the determination of the fingerprint direction for example, the user sequentially encodes the collected right-hand fingers into 10001, 10010, 10011, 10100, and 10101 through the terminal in the preset fingerprint feature stage, and sequentially encodes the above-mentioned codes to the five fingerprint features of the right hand, and then moves
  • the fingerprint sensor of the terminal detects that the fingerprint feature corresponds to the fingerprint feature corresponding to the above code, it can determine that the one-handed control terminal is the right hand of the user, effectively reducing the calculation amount and memory usage of the terminal, and improving the use of the user.
  • the one-handed control terminal is the right hand of the user, effectively reducing the calculation amount and memory usage of the terminal, and improving the use of the user.
  • Experience and the operation of the terminal for example, the user sequentially encodes the collected right-hand fingers into 10001, 10010, 10011, 10100, and 10101 through the terminal in the preset fingerprint feature stage, and sequentially encodes the above-
  • the fingerprint sensors on both sides of the mobile terminal detect the number of fingers held by the user on both sides to determine whether the corresponding finger belongs to the left or right hand of the user, thereby determining the corresponding operation mode. For example, if the fingerprint sensor on the left side detects three fingers (the number of fingers detected on the right side is usually less than or equal to 2), then in most cases, the class concludes that the user is the right hand holding terminal, thus The right-hand working mode is provided on the display of the terminal, so that the user can use the right hand to achieve all touch operations.
  • the acquiring unit 304 is further configured to: when determining that the fingerprint feature does not match the preset fingerprint feature, acquire the fingerprint sensor on the left side and the The number of fingers of the user detected by the fingerprint sensor on the right side is respectively recorded as the number of fingers on the left side and the number of fingers on the right side; the determining unit 302 is further configured to: determine the number of the left finger and the The determining unit 306 is further configured to: determine that the operating mode of the terminal body is the right-hand working mode when determining that the number of the left finger is greater than the number of the right finger, and Generate an interface for the corresponding right-hand work mode.
  • the corresponding operation mode is determined according to the number of fingers, the calculation amount and the memory occupation of determining the operation mode are reduced, and the running power consumption of the terminal is reduced.
  • the fluency of the operation process of the mobile terminal is improved, and at the same time, the determined operation mode is ensured to meet the one-hand control requirement of the user.
  • the determining unit 302 is further configured to: when it is determined that the number of the left finger is less than the number of the right finger, determine that the operating mode of the terminal body is the left-hand working mode ( That is, the operation mode shown in FIG. 5A is switched to the operation mode shown in FIG. 5B), and the interface of the corresponding left-hand operation mode is generated (as shown in FIG. 5B).
  • the acquiring unit 304 is further configured to: acquire a fingerprint feature pre-stored by the user; the control system 300 of the operating mode further includes: an encoding unit 308, The pre-stored fingerprint feature is encoded according to an instruction of the user, and a correspondence between the encoding and the identification information of the fingerprint feature is generated to use the pre-stored fingerprint feature as the preset fingerprint feature.
  • the pre-stored fingerprint features for example, sequentially encoding the left thumb to the little finger as 00001, 00010, 00011, 00100, and 00101, the right thumb to the little finger are sequentially encoded as 10001, 10010, 10011, 10100. And 10101, and the coding code and the corresponding finger identification information, and the pre-stored fingerprint feature as the preset fingerprint information, can realize fast and accurate determination of the operation mode of the mobile terminal, and improve the user experience.
  • Figure 4 shows a schematic block diagram of a terminal in accordance with an embodiment of the present invention.
  • a terminal 400 includes a control system 300 of an operation mode as described in the above technical solution.
  • the present application proposes a new operation mode control scheme through the terminal side.
  • the fingerprint sensor collects fingerprint information and can automatically switch to the left-hand or right-hand mode according to the fingerprint information of the terminal side, which saves system resources, simplifies the user's operation steps, and improves the user experience.

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Abstract

本发明提供了一种移动终端、运行模式的控制方法和运行模式的控制系统及终端,其中,所述移动终端,包括:终端本体;显示屏,设置于所述终端本体的正面结构上,用于显示所述终端本体的运行信息;指纹传感模块,设置在所述终端本体上,用于获取用户把持所述终端本体时的指纹信息。通过本发明的技术方案,使得终端能够在其侧面采集指纹信息,并且能够根据终端侧面指纹信息自动切换至左手工作模式或者右手工作模式,节约了系统资源,方便了用户操作,提升了用户体验。

Description

移动终端、运行模式的控制方法及系统和终端 技术领域
本发明涉及终端控制技术领域,具体而言,涉及一种移动终端、一种运行模式的控制方法、一种运行模式的控制系统和一种终端。
背景技术
在相关技术中,移动终端为了满足用户单手把持时的操作需求,增加了单手操作模式的设计,例如可以基于Iphone和Ipad等移动终端的“home”按键中附加的指纹传感器读取用户的指纹信息,以通过用户的指纹信息来判断适于单手把持时的运行模式,也即将用户以前的触控指令替换为指纹信息,具体地,通过指纹纹理的方向确定用户的单手把持的角度,从而确定相应的运行模式。
但是,上述技术方案中基于指纹纹理的方向确定用户的单手把持的角度,从而确定运行模式并不准确,且移动终端的运算量大,影响移动终端的运行性能。
因此,如何设计一种新的运行模式的控制方案,以快速的确定移动终端的运行模式成为亟待解决的技术问题。
发明内容
本发明正是基于上述技术问题至少之一,提出了一种新的运行模式的控制的方案,通过终端侧面的指纹传感器采集指纹信息,且能够根据终端侧面指纹信息自动切换至左手或者右手模式,节约了系统资源,简化了用户的操作步骤,提升了用户体验。
有鉴于此,根据本发明的第一方面的实施例,提供了一种移动终端,包括:终端本体;显示屏,设置于所述终端本体的正面结构上,用于显示所述终端本体的运行信息;指纹传感模块,设置在所述终端本体上,用于 获取用户把持所述终端本体时的指纹信息。
在该技术方案中,通过在终端本体的左侧面和右侧面分别上设置指纹传感器,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
另外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,所述指纹传感模块包括分离地设置在所述终端本体的两侧面的两个指纹传感器。
在该技术方案中,通过在终端本体的左侧面和右侧面分别设置指纹传感器,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
此外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属 于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,所述指纹传感模块包括设置在所述显示屏下的指纹传感器,当所述指纹传感器为一个时,指纹传感器按照中轴线划分为左右两个区域,左右两个区域可以分别识别左右手指的个数及指纹信息;当指纹传感器为两个或两个以上时,可以按照沿着终端两侧边对称设置,分别用于获取左右两边的指纹信息及个数。
在该技术方案中,指纹传感模块既包括在移动终端本体上的把持部位上的指纹传感器,又包括设置在显示屏幕下的指纹传感器,通过在终端的的指纹传感器,也包括设置在显示屏下面的指纹传感器,不仅可以通过把持终端的方式获取指纹特征,也可以通过触摸屏的方式获取指纹特征,使得提取指纹更加方便,满足用户个性化的需求,提升用户体验。
在上述技术方案中,优选地,所述指纹传感器包括以下至少之一或其组合:光学指纹传感器、半导体电容传感器、半导体压感传感器、超声波指纹传感器和射频指纹传感器。
在该技术方案中,通过将设置多种指纹传感器应用于上述移动终端,可以根据移动终端的造价要求和检测精度要求确定相应的指纹传感器。
根据本发明的第二方面的实施例,提供了一种运行模式的控制方法,包括:通过所述指纹传感器判断用户是否握持所述终端本体;在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,以及所述预设指纹特征与所述用户的左手或右手的对应关系;在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式或右手工作模式。
在该技术方案中,通过判断获取的全部指纹特征中的任一指纹特征是否与预设指纹特征匹配,实现了用户单手把持终端时对指纹特征的匹配, 从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
另外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,包括:在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的手指数量,并分别记作左侧手指数量和右侧手指数量;判断所述左侧手指数量和所述右侧手指数量的大小关系;在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面;或在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式,并生成相应的左手工作模式的界面。
在该技术方案中,通过在指纹特征和预设指纹特征均不匹配时,根据手指数量确定相应的运行模式,减小了确定运行模式的运算量和内存占用,降低了终端的运行功耗,同时,提升了移动终端的运行过程的流畅性,同时,保证了确定的运行模式符合用户的单手把持需求。
具体地,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的 指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,包括:在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式,并生成相应的左手工作模式的界面。
在上述技术方案中,优选地,在通过所述指纹传感器判断用户是否握持所述终端本体前,还包括:获取用户预存的指纹特征;根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
在该技术方案中,通过将预存的指纹特征进行编码,例如将左手拇指到小拇指的依次编码为00001、00010、00011、00100和00101,将右手拇指到小拇指依次编码为10001、10010、10011、10100和10101,并将编码代码和相应的手指标识信息,以及预存的指纹特征作为预设指纹信息,可以实现对移动终端的运行模式的快速且准确的判定,提升了用户的使用体验。
在上述技术方案中,优选地,在通过所述指纹传感器判断用户是否握持所述终端本体前,还包括:获取用户预存的指纹特征;根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。7
在该技术方案中,通过将预存的指纹特征进行编码,例如将左手拇指到小拇指的依次编码为00001、00010、00011、00100和00101,将右手拇指到小拇指依次编码为10001、10010、10011、10100和10101,并将编码代码和相应的手指标识信息,以及预存的指纹特征作为预设指纹信息,可以实现对移动终端的运行模式的快速且准确的判定,提升了用户的使用体验。
根据本发明的第三方面的实施例,提供了一种运行模式的控制系统, 包括:判断单元,用于通过所述指纹传感器判断用户是否握持所述终端本体;获取单元,用于在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;所述判断单元还用于:判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,以及所述预设指纹特征与所述用户的左手或右手的对应关系;所述运行模式的控制系统还包括:确定单元,用于在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式或右手工作模式。
在该技术方案中,通过判断获取的全部指纹特征中的任一指纹特征是否与预设指纹特征匹配,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
在上述技术方案中,优选地,所述获取单元还用于:在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的手指数量,并分别记作左侧手指数量和右侧手指数量;所述判断单元还用于:判断所述左侧手指数量和所述右侧手指数量的大小关系;所述确定单元还用于:在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面。
在该技术方案中,通过在指纹特征和预设指纹特征均不匹配时,根据手指数量确定相应的运行模式,减小了确定运行模式的运算量和内存占用,降低了终端的运行功耗,同时,提升了移动终端的运行过程的流畅 性,同时,保证了确定的运行模式符合用户的单手把持需求。
在上述技术方案中,优选地,所述判断单元还用于:在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式,并生成相应的左手工作模式的界面。
在上述技术方案中,优选地,所述获取单元还用于:获取用户预存的指纹特征;所述运行模式的控制系统还包括:编码单元,用于根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
在该技术方案中,通过将预存的指纹特征进行编码,例如将左手拇指到小拇指的依次编码为00001、00010、00011、00100和00101,将右手拇指到小拇指依次编码为10001、10010、10011、10100和10101,并将编码代码和相应的手指标识信息,以及预存的指纹特征作为预设指纹信息,可以实现对移动终端的运行模式的快速且准确的判定,提升了用户的使用体验。
根据本发明的第四方面的实施例,提供了一种终端,包括:如上述技术方案中所述的运行模式的控制系统。
通过以上技术方案,使得终端能够在其侧面采集指纹信息,并且能够根据终端侧面指纹信息自动切换至左手或者右手模式,节约系统资源,方便用户操作,提升用户体验。
附图说明
图1示出了根据本发明的实施例的移动终端的示意图;
图2示出了根据本发明的实施例的运行模式的控制方法的流程示意图;
图3示出了根据本发明的一个实施例的运行模式的控制系统的示意框图;
图4示出了根据本发明的实施例的终端的示意框图;
图5A至图5C示出了根据本发明的实施例的运行模式的控制方案的界面示意图。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不受下面公开的具体实施例的限制。
下面结合图1至图4,以及图5A至图5C,对根据本发明的运行模式的控制方案进行具体说明。
图1示出了根据本发明的实施例的移动终端的示意图。
如图1所示,根据本发明的实施例的移动终端,包括:终端本体;显示屏100,设置于所述终端本体的正面结构上,用于显示所述终端本体的运行信息;指纹传感模块,设置在所述终端本体上,用于获取用户把持所述终端本体时的指纹信息。至少两个指纹传感器(如图1中a0和a1所示),分别设置在所述终端本体的左侧面(102)和右侧面(104)。
在该技术方案中,通过在终端本体的左侧面(102)和右侧面(104)分别设置指纹传感器(如图1中a0和a1所示),实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器(如图1中a0和a1所示)只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
另外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器(如图1中a0和a1所示)对用户把持在两侧面的手指数量进行 检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器a0检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,所述指纹传感模块包括分离地设置在所述终端本体的两侧面的两个指纹传感器。
在该技术方案中,在该技术方案中,通过在终端本体的左侧面和右侧面分别设置指纹传感器,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
此外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
如图1中a0和a1所示,分别设置在所述终端本体的左侧面(102)和右侧面(104),通过将设置多种指纹传感器(如图1中a0和a1所示)应用于上述移动终端,可以根据移动终端的造价要求和检测精度要求确定相应的指纹传感器(如图1中a0和a1所示)。
在上述技术方案中,优选地,所述指纹传感模块包括设置在所述显示屏下的指纹传感器。
在该技术方案中,指纹传感模块既包括在移动终端本体上的把持部位上的指纹传感器,又包括设置在显示屏幕下的指纹传感器,通过在终端的的指纹传感器,也包括设置在显示屏下面的指纹传感器,不仅可以通过把持终端的方式获取指纹特征,也可以通过触摸屏的方式获取指纹特征,使得提取指纹更加方便,满足用户个性化的需求,提升用户体验。
在上述技术方案中,优选地,所述指纹传感器包括以下至少之一或其组合:光学指纹传感器、半导体电容传感器、半导体压感传感器、超声波指纹传感器和射频指纹传感器。
在该技术方案中,通过将设置多种指纹传感器应用于上述移动终端,可以根据移动终端的造价要求和检测精度要求确定相应的指纹传感器。
图2示出了根据本发明的实施例的运行模式的控制方法的流程示意图。
如图2所示,根据本发明的实施例的运行模式的控制方法,包括:步骤202,通过所述指纹传感器判断用户是否握持所述终端本体;步骤204,在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;步骤206,判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,以及所述预设指纹特征与所述用户的左手或右手的对应关系;步骤208,在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式(也即由图5A所示的工作模式切换至如图5B所示的工作模式)或右手工作模式(也即由图5A所示的工作模式切换至如图5C所示的工作模式)。
在该技术方案中,通过判断获取的全部指纹特征中的任一指纹特征是否与预设指纹特征匹配,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
另外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指 纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,包括:在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的手指数量,并分别记作左侧手指数量和右侧手指数量;判断所述左侧手指数量和所述右侧手指数量的大小关系;在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面;或在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式(也即由图5A所示的工作模式切换至如图5B所示的工作模式),并生成相应的左手工作模式的界面(如图5B所示)。
在该技术方案中,通过在指纹特征和预设指纹特征均不匹配时,根据手指数量确定相应的运行模式,减小了确定运行模式的运算量和内存占用,降低了终端的运行功耗,同时,提升了移动终端的运行过程的流畅性,同时,保证了确定的运行模式符合用户的单手把持需求。
具体地,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,包括:在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式(也即由图5A所示的工作模式切换至如图5B所示的工作模式),并生 成相应的左手工作模式的界面(如图5B所示)。
在上述技术方案中,优选地,在通过所述指纹传感器判断用户是否握持所述终端本体前,还包括:获取用户预存的指纹特征;根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
在该技术方案中,通过将预存的指纹特征进行编码,例如将左手拇指到小拇指的依次编码为00001、00010、00011、00100和00101,将右手拇指到小拇指依次编码为10001、10010、10011、10100和10101,并将编码代码和相应的手指标识信息,以及预存的指纹特征作为预设指纹信息,可以实现对移动终端的运行模式的快速且准确的判定,提升了用户的使用体验。
图3示出了根据本发明的一个实施例的运行模式的控制系统的示意框图。
如图3所示,根据本发明的一个实施例的运行模式的控制系统300,包括:判断单元302,用于通过所述指纹传感器判断用户是否握持所述终端本体;获取单元304,用于在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;所述判断单元302还用于:判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,所述预设指纹特征与所述用户的左手或右手的对应关系;以及所述运行模式的控制系统300还包括:确定单元306,用于在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式(也即由图5A所示的工作模式切换至如图5B所示的工作模式)或右手工作模式(也即由图5A所示的工作模式切换至如图5C所示的工作模式)。
在该技术方案中,通过判断获取的全部指纹特征中的任一指纹特征是否与预设指纹特征匹配,实现了用户单手把持终端时对指纹特征的匹配,从而根据指纹特征与预设指纹特征,或移动终端的两侧面把持手指的数量,确定用户用哪只手把持终端,以快速提供准确的运行模式的相关界面,提升了用户的使用体验。
值得特别指出的是,指纹传感器获取用户指纹特征后,并不需要进行 指纹走向的判定,例如,用户在预设指纹特征阶段通过终端将采集的右手手指依次编码为10001、10010、10011、10100和10101,并将上述编码依次对应于右手的五个指纹特征,则移动终端的指纹传感器只要检测到一个指纹特征对应于上述编码对应的指纹特征,则可以确定单手把持终端的为用户的右手,有效地减小了终端的运算量和内存占用,提升了用户的使用体验和终端的运行效果。
另外,在指纹传感器无法识别用户的指纹特征时,移动终端两侧的指纹传感器对用户把持在两侧面的手指数量进行检测,以确定相应的手指属于用户的左手或右手,进而确定相应的运行模式,例如,在左侧面的指纹传感器检测三个手指(右侧面检测到的手指数量通常小于或等于2),则可以绝大多数情况下节课断定此时用户是右手把持终端,从而在终端的显示屏上提供相应的右手工作模式,以便于用户仅仅使用右手即可实现全部触控操作。
在上述技术方案中,优选地,所述获取单元304还用于:在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的手指数量,并分别记作左侧手指数量和右侧手指数量;所述判断单元302还用于:判断所述左侧手指数量和所述右侧手指数量的大小关系;所述确定单元306还用于:在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面。
在该技术方案中,通过在指纹特征和预设指纹特征均不匹配时,根据手指数量确定相应的运行模式,减小了确定运行模式的运算量和内存占用,降低了终端的运行功耗,同时,提升了移动终端的运行过程的流畅性,同时,保证了确定的运行模式符合用户的单手把持需求。
在上述技术方案中,优选地,所述判断单元302还用于:在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式(也即由图5A所示的工作模式切换至如图5B所示的工作模式),并生成相应的左手工作模式的界面(如图5B所示)。
在上述技术方案中,优选地,所述获取单元304还用于:获取用户预存的指纹特征;所述运行模式的控制系统300还包括:编码单元308,用 于根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
在该技术方案中,通过将预存的指纹特征进行编码,例如将左手拇指到小拇指的依次编码为00001、00010、00011、00100和00101,将右手拇指到小拇指依次编码为10001、10010、10011、10100和10101,并将编码代码和相应的手指标识信息,以及预存的指纹特征作为预设指纹信息,可以实现对移动终端的运行模式的快速且准确的判定,提升了用户的使用体验。
图4示出了根据本发明的实施例的终端的示意框图。
如图4所示,根据本发明的实施例的终端400,包括:如上述技术方案中所述的运行模式的控制系统300。
考虑到相关技术中提出的如何设计一种新的运行模式的控制方案,以快速的确定移动终端的运行模式的技术问题,本申请提出了一种新的运行模式的控制的方案,通过终端侧面的指纹传感器采集指纹信息,且能够根据终端侧面指纹信息自动切换至左手或者右手模式,节约了系统资源,简化了用户的操作步骤,提升了用户体验。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (11)

  1. 一种移动终端,其特征在于,包括:
    终端本体;
    显示屏,设置于所述终端本体上,用于显示所述终端本体的运行信息;
    指纹传感模块,设置在所述终端本体上,用于获取用户把持所述终端本体时的指纹信息。
  2. 根据权利要求1所述的移动终端,其特征在于,
    所述指纹传感模块包括分离地设置在所述终端本体的两侧面的两个指纹传感器。
  3. 根据权利要求1所述的移动终端,其特征在于,
    所述指纹传感模块包括设置在所述显示屏下的指纹传感器。
  4. 根据权利要求2或3所述的终端,其特征在于,所述指纹传感器包括以下至少之一或其组合:光学指纹传感器、半导体电容传感器、半导体压感传感器、超声波指纹传感器和射频指纹传感器。
  5. 一种运行模式的控制方法,适用于如权利要求1至4中任一项所述的移动终端,其特征在于,包括:
    通过所述指纹传感器判断用户是否握持所述终端本体;
    在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;
    判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,以及所述预设指纹特征与所述用户的左手或右手的对应关系;
    在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式或右手工作模式。
  6. 根据权利要求5所述的运行模式的控制方法,其特征在于,包括:
    在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的 手指数量,并分别记作左侧手指数量和右侧手指数量;
    判断所述左侧手指数量和所述右侧手指数量的大小关系;
    在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面;
    或在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式,并生成相应的左手工作模式的界面。
  7. 根据权利要求5或6所述的运行模式的控制方法,其特征在于,在通过所述指纹传感器判断用户是否握持所述终端本体前,还包括:
    获取用户预存的指纹特征;
    根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
  8. 一种运行模式的控制系统,适用于如权利要求1至4中任一项所述的终端,其特征在于,包括:
    判断单元,用于通过所述指纹传感器判断用户是否握持所述终端本体;
    获取单元,用于在判定所述用户握持所述终端本体时,获取所述用户用于握持所述终端本体的全部手指的指纹特征;
    所述判断单元还用于:判断所述全部手指的指纹特征中的任一指纹特征是否与预设指纹特征匹配,以及所述预设指纹特征与所述用户的左手或右手的对应关系;
    所述运行模式的控制系统还包括:
    确定单元,用于在判定所述任一指纹特征与所述预设指纹特征匹配时,通过所述对应关系确定所述终端本体的运行模式,其中,所述运行模式为左手工作模式或右手工作模式。
  9. 根据权利要求8所述的运行模式的控制系统,其特征在于,
    所述获取单元还用于:在判定所述任一指纹特征与所述预设指纹特征均不匹配时,获取所述左侧面的指纹传感器和所述右侧面的指纹传感器分别检测到的所述用户的手指数量,并分别记作左侧手指数量和右侧手指数量;
    所述判断单元还用于:判断所述左侧手指数量和所述右侧手指数量的大小关系;
    所述确定单元还用于:在判定所述左侧手指数量大于所述右侧手指数量时,确定所述终端本体的运行模式为所述右手工作模式,并生成相应的右手工作模式的界面;或在判定所述左侧手指数量小于所述右侧手指数量时,确定所述终端本体的运行模式为所述左手工作模式,并生成相应的左手工作模式的界面。
  10. 根据权利要求8或9所述的运行模式的控制系统,其特征在于,
    所述获取单元还用于:获取用户预存的指纹特征;
    所述运行模式的控制系统还包括:
    编码单元,用于根据用户的指令将所述预存的指纹特征进行编码,并生成所述编码与所述指纹特征的标识信息的对应关系,以将所述预存的指纹特征作为所述预设指纹特征。
  11. 一种终端,其特征在于,包括:如权利要求7至10中任一项所述的运行模式的控制系统。
PCT/CN2015/088499 2015-07-29 2015-08-30 移动终端、运行模式的控制方法及系统和终端 Ceased WO2017016040A1 (zh)

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