WO2016019629A1 - 一种智能终端单手操作方法、装置及计算机存储介质 - Google Patents

一种智能终端单手操作方法、装置及计算机存储介质 Download PDF

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Publication number
WO2016019629A1
WO2016019629A1 PCT/CN2014/088226 CN2014088226W WO2016019629A1 WO 2016019629 A1 WO2016019629 A1 WO 2016019629A1 CN 2014088226 W CN2014088226 W CN 2014088226W WO 2016019629 A1 WO2016019629 A1 WO 2016019629A1
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Prior art keywords
array
smart terminal
distance
distance information
hand operation
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PCT/CN2014/088226
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English (en)
French (fr)
Inventor
刘亚明
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中兴通讯股份有限公司
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Publication of WO2016019629A1 publication Critical patent/WO2016019629A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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]

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  • the present invention relates to the field of mobile communication terminal technologies, and in particular, to a smart terminal one-hand operation method and device, and a computer storage medium.
  • the embodiment of the present invention is to provide a method, a device, and a computer storage medium for a smart terminal, which can at least solve the defect that the operation interface and the display interface of the existing smart terminal cannot be adjusted with the one-hand operation of the smart terminal. .
  • the embodiment of the invention provides a one-hand operation method for a smart terminal, and the method includes:
  • the obtaining the first distance information and the second distance information in the vertical direction of the side of the smart terminal includes:
  • the first distance sensor array determines, by the first distance sensor array, a distance between a left side of the front surface of the smart terminal and a measurement point in a vertical direction of the front surface of the smart terminal to obtain first distance information; the first distance sensor array is disposed on a left side of the front side of the smart terminal;
  • the second distance information is obtained according to the distance between the right side of the front surface of the smart terminal and the measurement point in the vertical direction of the front surface of the smart terminal according to the second distance sensor array; the second distance sensor array is disposed on the right side of the front side of the smart terminal.
  • the obtaining the first array and the second array according to the first distance information and the second distance information comprises:
  • the judging the first array and the second array according to a preset rule, and obtaining the one-hand operation type information of the smart terminal includes:
  • the smart terminal one-hand operation type is a left-hand operation; otherwise, the smart terminal one-hand operation type is determined to be a right-hand operation.
  • the setting conditions include:
  • the sum of the number of independent sensors in the first array is greater than the number of independent sensors in the second array and/or the activated time of the independent sensors in the first array is greater than the number The sum of the activated times of the individual sensors in the two arrays.
  • the determining, according to the first distance information, the number of independent sensors activated in the first distance sensor array to obtain a first array comprising:
  • the independent sensor corresponding to the measurement point is activated
  • determining, according to the second distance information, the number of independent sensors activated in the second distance sensor array to obtain a second array comprising:
  • the independent sensor corresponding to the measurement point is activated.
  • the embodiment of the invention further provides a smart terminal one-hand operation device, the device comprising:
  • a distance measuring unit configured to acquire first distance information and second distance information in a vertical direction of a side of the smart terminal
  • An array unit configured to obtain a first array and a second array according to the first distance information and the second distance information acquired by the distance measuring unit, respectively;
  • the one-hand operation identifying unit is configured to determine, according to a preset rule, the first array and the second array obtained by the array unit, to obtain one-hand operation type information of the smart terminal;
  • the one-hand operation execution unit is configured to adjust an operation interface and/or a display interface of the application according to the one-hand operation type of the smart terminal obtained by the one-hand operation recognition unit.
  • the distance measuring unit comprises:
  • the first measurement module is configured to obtain first distance information according to a distance between a left side of the front surface of the smart terminal and a measurement point in a vertical direction of the front surface of the smart terminal;
  • the second measurement module is configured to obtain the second distance information according to a distance between a right side of the front surface of the smart terminal and a measurement point in a vertical direction of the front surface of the smart terminal.
  • the first measurement module includes a first proximity sensor array, the first proximity sensor array includes a first set number of independent sensors; and the first distance sensor array is disposed at the smart terminal The left side of the front.
  • the second measurement module includes a second proximity sensor array, the second proximity sensor array includes a second set number of independent sensors; and the second distance sensor array is disposed at the smart terminal The right side of the front.
  • the array unit comprises:
  • a first array module configured to determine, according to the first distance information, a number of independent sensors activated in the first distance sensor array to obtain a first array; when the smart terminal in the first distance information is in a front vertical direction When the distance between the measuring point and the front of the smart terminal is less than the set value, the independent sensor corresponding to the measuring point is activated;
  • a second array module configured to determine, according to the second distance information, the number of independent sensors activated in the second distance sensor array to obtain a second array; when the smart terminal in the second distance information is in a front vertical direction When the distance between the measuring point and the front of the smart terminal is less than the set value, the independent sensor corresponding to the measuring point is activated.
  • the one-hand operation recognition unit includes:
  • a one-handed operation judging module configured to: when the number of independent sensors in the first array is greater than a sum of independent sensors in the second array and/or an activated time of independent sensors in the first array When the sum of the activated times of the independent sensors in the second array is greater than, the one-hand operation type of the smart terminal is determined to be a left-hand operation; otherwise, the one-hand operation type of the smart terminal is determined to be a right-hand operation.
  • the one-hand operation judgment module includes:
  • a timing module configured to calculate an activated time of the independent sensor in the first array and/or an activated time of the independent sensor in the second array.
  • An embodiment of the present invention further provides a computer storage medium, where the computer storage medium
  • the computer-executable instructions are used to execute the one-hand operation method of the smart terminal according to the embodiment of the present invention.
  • the method for the one-hand operation of the smart terminal and the computer storage medium provided by the embodiment of the present invention can obtain the distance between the palm of the user and the screen of the smart terminal by acquiring the first distance information and the second distance information in the vertical direction of the smart terminal.
  • Information respectively, the independent sensor that is activated by the first distance information and the second distance information, and the number of activated independent sensors and/or the activated time are obtained by the smart terminal one-hand operation type information, which can accurately determine Which hand the user operates on the smart terminal; finally, the operation interface of the application is adjusted according to the one-hand operation type of the smart terminal, so that the application can automatically change the operation interface of the application according to the left-hand operation mode of the user and/or
  • the display interface improves the user experience of the user operating the smart terminal.
  • FIG. 1 is a flowchart of implementing a one-hand operation method of a smart terminal according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic diagram of a position of a side of an intelligent terminal according to Embodiment 1 of the present invention
  • FIG. 3 is a schematic structural diagram of a single-hand operation device of an intelligent terminal according to Embodiment 2 of the present invention.
  • FIG. 4 is a schematic diagram of a right-hand operation intelligent terminal according to Embodiment 3 of the present invention.
  • FIG. 5 is a schematic diagram of a left-hand operation intelligent terminal according to Embodiment 3 of the present invention.
  • FIG. 6 is a flowchart of implementing an adjustment of a dial layout of Embodiment 3 of the present invention.
  • FIG. 7 is a schematic diagram of a dial layout when a smart terminal is operated by a left hand according to Embodiment 3 of the present invention.
  • FIG. 8 is a schematic diagram of a layout of a dial pad when a smart terminal is operated by a right hand according to Embodiment 3 of the present invention.
  • this embodiment provides a one-hand operation method for the smart terminal. As shown in FIG. 1 , the method includes the following steps. :
  • Step S101 Acquire first distance information and second distance information in a vertical direction of the side of the smart terminal.
  • the smart terminal side refers to the left and right sides of the front side of the smart terminal; in an actual application, when the user uses the smart terminal to display the display mode of the screen of the smart terminal as a vertical screen, the smart terminal The side is the long side of the smart terminal; when the user uses the smart terminal to display the screen of the smart terminal as a horizontal screen, the smart terminal is the short side of the smart terminal .
  • the first distance information and the second distance information are respectively distances between the left and right hands of the user and the side of the smart terminal when the user operates the smart terminal.
  • Step S102 Obtain a first array and a second array according to the first distance information and the second distance information, respectively.
  • the smart terminal one-hand operation type is divided into a left-hand one-hand operation and a right-hand one-hand operation, and the independent sensors in the distance sensor array on the side of the smart terminal can be activated according to the first distance information and the second distance information.
  • Step S103 Determine the first array and the second array according to a preset rule to obtain one-hand operation type information of the smart terminal.
  • the one-hand operation type information of the smart terminal can be obtained, and then which hand is used when the user operates the smart terminal.
  • Step S104 Adjust an operation interface and/or a display interface of the application according to the one-hand operation type information of the smart terminal.
  • the operation interface and display interface of the application are automatically adjusted according to the one-hand operation type information of the smart terminal.
  • the one-hand operation method of the smart terminal can obtain the distance information between the user's palm and the smart terminal screen by acquiring the first distance information and the second distance information in the vertical direction of the smart terminal; The first distance information and the second distance information are used to obtain the one-hand operation type information of the smart terminal, which can accurately determine which hand the user operates on the smart terminal; and finally adjust the application according to the one-hand operation type of the smart terminal.
  • the operation interface enables the application to automatically change the operation interface and/or the display interface of the application according to the left-hand operation mode of the user, thereby improving the user experience of the user operating the smart terminal.
  • the first distance sensor array and the first side are respectively disposed on the left side of the front side of the smart terminal and the right side of the front side of the smart terminal.
  • the obtaining, by the step S101, the first distance information and the second distance information in the vertical direction of the side of the smart terminal include:
  • the first distance information is obtained according to the distance between the left side of the front side of the smart terminal and the measurement point in the vertical direction of the front side of the smart terminal according to the first distance sensor array.
  • the first distance sensor array has a fixed measurement range, and when the object is outside the measurement range, the first distance sensor array cannot measure the object; when an object, such as a user's hand, When in the measurement range, the first distance sensor array measures the object as a measurement point to obtain first distance information.
  • the second distance information is obtained according to the distance between the right side of the front side of the smart terminal and the measurement point in the vertical direction of the front side of the smart terminal according to the second distance sensor array.
  • the obtaining the first array and the second array according to the first distance information and the second distance information respectively according to step S102 includes:
  • S1021 Determine, according to the first distance information, a number of independent sensors activated in the first distance sensor array to obtain a first array.
  • the first distance sensor array is capable of measuring a point in a certain range from the left side of the front side of the smart terminal to the left side of the front side of the smart terminal.
  • a finger appears in the range, that is, when the distance between the measurement point on the left vertical direction of the front surface of the smart terminal in the first distance information and the left side of the front side of the smart terminal is less than a set value
  • the independent sensor corresponding to the measurement point is activated.
  • the activated sensor will be registered into the first array; at the same time, the activated time of the independent sensor will also be counted.
  • the set value is set by the distance between the finger and the screen when the user operates the smart terminal. When the distance between the finger and the screen is greater than the set value, the user may not be considered to operate the smart terminal screen.
  • S1022 Determine, according to the second distance information, the number of independent sensors activated in the second distance sensor array to obtain a second array.
  • the second distance sensor array can measure a point in a certain range from the right side of the front side of the smart terminal to the right side of the front side of the smart terminal.
  • a finger appears in the range, that is, when the distance between the measurement point in the right vertical direction of the front side of the smart terminal in the first distance information and the right side of the front side of the smart terminal is less than a set value
  • the independent sensor corresponding to the measurement point is activated.
  • the activated sensor will be registered into the first array; at the same time, the activated time of the independent sensor will also be counted.
  • the set value is set by the distance between the finger and the screen when the user operates the smart terminal. When the distance between the finger and the screen is greater than the set value, the user may not be considered to operate the smart terminal screen.
  • the determining, by the step S103, the first array and the second array according to a preset rule, and obtaining the one-hand operation type information of the smart terminal includes:
  • the smart terminal one-hand operation type is a left-hand operation; otherwise, the smart terminal one-hand operation type is a right-hand operation.
  • the setting condition includes: the number of independent sensors in the first array is greater than The sum of the number of independent sensors in the second array and/or the activated time of the independent sensors in the first array is greater than the sum of the activated times of the independent sensors in the second array.
  • the number of independent sensors that are activated in practice, when the smart terminal is operated with one hand, the area of the finger (mainly the thumb and forefinger) operating the smart terminal will be larger than the area covered by other fingers. Accordingly, the number of independent sensors that can be activated by the finger operating the smart terminal is also greater than the number of independent sensors activated by other smart terminals. Therefore, the type of the smart terminal operated by the user with one hand can be judged according to the number of activated sensors on the left and right sides of the front side of the smart terminal.
  • the activation time of the independent sensor there is also a situation in which the user holds the smart terminal and then operates the smart terminal through the thumb or index finger.
  • other fingers may activate the independent sensor on the other side of the front side of the smart terminal, and the number of independent sensors activated by other fingers may be more than the number of independent sensors activated by the finger of the operating smart terminal.
  • the number of independent sensors cannot accurately determine the type of one-hand operation.
  • the finger operating the smart terminal will always activate the independent sensor, while the other fingers will activate the independent sensor discontinuously. From the time when the independent sensor is activated, the sum of the times when the finger of the operating smart terminal activates the independent sensor must be longer than the sum of the time when the other finger activates the independent sensor.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the one-hand operation method of the smart terminal according to the embodiment of the invention.
  • the present embodiment and the embodiment 1 are in the same inventive concept.
  • the present embodiment provides a smart terminal one-hand operation device.
  • the device structure of this embodiment is as shown in FIG. 3, and the device includes:
  • the distance measuring unit 301 is configured to acquire first distance information and second distance information in a vertical direction of the side of the smart terminal;
  • the array unit 302 is configured to obtain the first array and the second array according to the first distance information and the second distance information acquired by the distance measuring unit 301, respectively;
  • the one-hand operation identification unit 303 is configured to determine, according to a preset rule, the first array and the second array obtained by the array unit 302, to obtain one-hand operation type information of the smart terminal;
  • the one-hand operation execution unit 304 is configured to adjust an operation interface and/or a display interface of the smart terminal one-hand operation type adjustment application obtained according to the one-hand operation recognition unit 303.
  • the distance measuring unit 301 further includes:
  • the first measurement module is configured to obtain first distance information according to a distance between a left side of the front surface of the smart terminal and a plurality of measurement points in a vertical direction of the front surface of the smart terminal; the first measurement module includes a first proximity sensor array, The first proximity sensor array includes a first set number of independent sensors; the first distance sensor array is disposed on a left side of the front side of the smart terminal.
  • the independent sensor when the smart terminal screen is lit, the independent sensor is also turned on, and it is started to measure whether there is a measurement point within the set range of the front side of the smart terminal.
  • Each independent sensor independently measures a certain range of points.
  • the independent sensor When the distance between the measured point and the front of the intelligent terminal is less than the set value, the independent sensor is activated. It can be seen that the opening and activation of independent sensors is not the same concept.
  • the opening of the independent sensor means that the independent sensor is powered on and starts measuring the distance; and the independent sensor is activated, which is a state when the distance between the front surface of the intelligent terminal and the measuring point measured by the independent sensor is less than the set value.
  • the independent sensor When the independent sensor is activated, the independent sensor sends an activation signal to the first array module in the one-hand operation identification unit 302, indicating that the independent sensor is activated at this time.
  • the second measurement module is configured to obtain the second distance information according to a distance between a right side of the front surface of the smart terminal and a plurality of measurement points in a vertical direction of the front surface of the smart terminal.
  • the second measurement module includes a second proximity sensor array, the second proximity sensor array includes a second set number of independent sensors; and the second distance sensor array is disposed on a right side of the front side of the smart terminal.
  • the first proximity sensor array and the second according to the actual operation of the smart terminal
  • the proximity sensor arrays are respectively disposed at the middle and lower portions of the left and right sides of the front surface of the smart terminal, as shown in FIG. 2 .
  • the array unit 302 further includes:
  • a first array module configured to determine, according to the first distance information, a number of independent sensors activated in the first distance sensor array to obtain a first array; the first array module is activated in the first proximity sensor array After the activation signal sent by the independent sensor, the independent sensor corresponding to the activation signal is registered into the first array, and the activated time and the deactivation time of the activated independent sensor are recorded;
  • a second array module configured to determine, according to the second distance information, the number of independent sensors activated in the second distance sensor array to obtain a second array; the second array module records the activated in the second proximity sensor array
  • the one-hand operation recognition unit 303 further includes:
  • the one-hand operation judging module is configured to determine that the one-hand operation type of the smart terminal is a left-hand operation when the first array and the second array satisfy a set condition; otherwise, determine that the one-hand operation type of the smart terminal is a right-hand operation operating.
  • the setting condition includes: the number of independent sensors in the first array is greater than the number of independent sensors in the second array and/or the activated time of independent sensors in the first array is greater than The sum of the activated times of the individual sensors in the second array.
  • the one-handed operation determination module further includes a timing module configured to calculate an activated time of the independent sensor in the first array and/or an activated time of the independent sensor in the second array. That is, the difference between the activated time and the deactivated time of the independent sensor in the first array and/or the second array is calculated.
  • the intelligent terminal autonomously controls the operation interface and/or the display interface of the application.
  • the smart terminal one-hand operation type information is sent to the application, and the application program automatically adjusts the operation interface and/or the display interface according to the smart terminal one-hand operation type information.
  • This embodiment describes the present invention in detail through an actual scenario.
  • Most smart terminal users operate the smart terminal with one hand in two postures: one-handed right-hand operation intelligent terminal and one-handed left-hand operation intelligent terminal.
  • the right-hand operation intelligent terminal is shown in Figure 4
  • the left-hand operation intelligent terminal is shown in Figure 5.
  • a distance measuring unit is disposed on the front side of the smart terminal.
  • the distance measuring unit in this embodiment uses a proximity sensor array device configured to monitor and record the distance between the left and right sides of the smart terminal and the palm of the user.
  • the change sequence value may also be set in other positions on the left and right sides when the smart terminal is operated;
  • the smart terminal further includes a one-hand operation recognition unit configured to analyze and record the distance between the left and right sides of the intelligent terminal and the palm of the user.
  • the serial value and the one-hand operation type are determined;
  • the smart terminal further includes a one-hand operation execution unit configured to adjust an operation interface and/or a display interface of the application according to the one-hand operation type of the smart terminal.
  • the distance measuring unit adopts a proximity sensor array.
  • the first short-distance sensor array and the second short-distance sensor array respectively monitor the change of the distance between the middle and lower parts of the front and rear sides of the smart terminal and the vertical direction of the user's palm in the front direction of the smart terminal, and record the corresponding The distance changes the sequence value.
  • the one-hand operation recognition unit is configured to analyze the recorded distance change sequence value.
  • the distance change sequence value records distance information configured as a first proximity sensor array and configured as a second proximity sensor array within respective measurement ranges, but the distance information may not necessarily activate the independent sensor. Only when the distance data in the distance information is smaller than the set value, it is considered that an object is close to the screen of the smart terminal.
  • the one-hand operation recognition unit is activated by the independent sensor corresponding to the distance change sequence value measured by the one-hand operation recognition unit and smaller than the set value. By counting the activated independent sensors, the number of activated independent sensors in the first proximity sensor array and the second proximity sensor array is obtained. It is also possible to record the activated time and the deactivation time of the activated independent sensor; the activated time of each activated independent sensor can be obtained by a timer.
  • the one-hand operation type of the smart terminal is a left-hand operation; otherwise, the one-hand operation type of the smart terminal is determined to be a right-hand operation.
  • the one-hand operation execution unit is configured to save the final judgment result for other applications of the intelligent terminal to call; or to send to other applications in the form of a broadcast message, and other applications adjust the page layout according to the result, which is convenient for the user to operate.
  • FIG. 6 is a flowchart of implementing dialpad layout adjustment according to Embodiment 3 of the present invention; as shown in FIG. 6, the specific steps include:
  • STEP1 Monitor whether the smart terminal is being used; it can be judged by whether the smart terminal screen is lit or by other methods.
  • STEP2 monitoring the change of the distance between the two sides of the smart terminal and the palm through the first short-distance sensor array and the second short-distance sensor array; when the user operates the smart terminal (can be judged whether the user is illuminated by whether the smart terminal screen is lit) The smart terminal is being operated, and can also be judged by other means), the proximity sensor array on both sides of the smart terminal is powered on, and two of them are The change of the distance between the side lower middle position and the palm in the vertical direction of the front side of the smart terminal is monitored, and the distance change sequence values acquired by the respective independent sensors in the first proximity sensor array and the second proximity sensor array are recorded.
  • STEP 3 analyzing the recorded distance change sequence value; recording the independent sensor activated in the distance change sequence value of the left and right positions of the smart terminal as LS; and changing the distance change sequence value of the right middle lower position of the smart terminal
  • the activated independent sensor is denoted as RS; when the number of independent sensors in the LS is smaller than the number of independent sensors in the RS, the intelligent terminal user is considered to be in the right-hand one-hand operation mode; otherwise, the intelligent terminal user is considered to be in the left-hand one-handed Operating mode.
  • the left-hand one-hand operation and the right-hand one-hand operation can also be determined by the activated time of the activated independent sensor, and the specific determination method is as described above.
  • step STEP 4 Save the judgment result in step STEP 3 for other applications of the intelligent terminal. Or send it to other applications in the form of a broadcast message.
  • the layout of the dial pad when the smart terminal is operated by the left hand is as shown in FIG. 7
  • the layout of the dial pad when the smart terminal is operated by the right hand is as shown in FIG. 8 .
  • the corresponding layout can be automatically displayed according to the left-hand one-hand operation mode or the right-hand one-hand operation mode, thereby facilitating the operation of the smart terminal by the user and improving the user experience.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner such as: multiple units or components may be combined, or Can be integrated into another system, or some features can be ignored or not executed.
  • the coupling, or direct coupling, or communication connection of the components shown or discussed may be indirect coupling or communication connection through some interfaces, devices or units, and may be electrical, mechanical or other forms. of.
  • the units described above as separate components may or may not be physically separated.
  • the components displayed as the unit may be, or may not be, physical units, that is, may be located in one place, or may be distributed to multiple network units; some or all of the units may be selected according to actual needs to implement the solution of the embodiment. purpose.
  • each functional unit in each embodiment of the present invention may be integrated into one processing module, or each unit may be separately used as one unit, or two or more units may be integrated into one unit; the above integration
  • the unit can be implemented in the form of hardware or in the form of hardware plus software functional units.
  • the foregoing program may be stored in a computer readable storage medium, and the program is executed when executed.
  • the foregoing storage medium includes: a mobile storage device, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
  • ROM read-only memory
  • RAM random access memory
  • magnetic disk or an optical disk.
  • optical disk A medium that can store program code.
  • the first distance information and the second distance information in the vertical direction of the smart terminal are obtained, and the distance information between the user's palm and the smart terminal screen can be obtained; and the first distance information and the second distance information are respectively corresponding to
  • the independent sensor is activated, and the number of activated independent sensors and/or the activated time is determined by the one-hand operation type information of the smart terminal, which can accurately determine which hand the user operates on the smart terminal;
  • the one-hand operation type of the terminal adjusts the operation interface of the application, so that the application can automatically change the operation interface and/or the display interface of the application according to the left and right hand operation mode of the user, and the improvement is improved.
  • the user operates the user experience of the smart terminal.

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Abstract

公开了一种智能终端单手操作方法,包括:获取智能终端正面侧边垂直方向上的第一距离信息和第二距离信息(S101);分别根据所述第一距离信息和第二距离信息得到第一数组和第二数组(S102);按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息(S103);根据所述智能终端单手操作类型信息调整应用程序的操作界面和/或显示界面(S104)。同时还公开了一种智能终端单手操作装置及计算机存储介质。

Description

一种智能终端单手操作方法、装置及计算机存储介质 技术领域
本发明涉及移动通信终端技术领域,尤其涉及一种智能终端单手操作方法、装置及计算机存储介质。
背景技术
近年来,随着智能终端越来越智能化,人们对智能终端的要求也越来越高。除了追求智能终端功能的多样性之外,对智能终端操作的用户体验也有了更高的要求。经研究表明,用户通过单手方式操作智能终端占据了智能终端操作的大部分时间。但是,由于现有智能终端及智能终端应用程序的操作界面和显示界面都是居中显示,没有针对智能终端单手操作对智能终端的操作界面和显示界面进行调整。这样,用户单手操作智能终端时,智能终端屏幕的操作界面和显示界面就不可避免地被操作智能终端的手遮挡了,降低了智能终端操作的用户体验。
发明内容
有鉴于此,本发明实施例期望提供一种智能终端单手操作方法、装置及计算机存储介质,至少能解决现有智能终端存在的操作界面和显示界面不能随智能终端单手操作进行调整的缺陷。
本发明实施例的技术方案是这样实现的:
本发明实施例提供了一种智能终端单手操作方法,所述方法包括:
获取智能终端侧边垂直方向上的第一距离信息和第二距离信息;
分别根据所述第一距离信息和第二距离信息得到第一数组和第二数组;
按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息;
根据所述智能终端单手操作类型信息调整应用程序的操作界面和/或显示界面。
在另一实施例中,所述获取智能终端侧边垂直方向上的第一距离信息和第二距离信息包括:
根据第一距离传感器阵列测量智能终端正面的左侧与智能终端正面垂直方向上的测量点之间的距离得到第一距离信息;所述第一距离传感器阵列设置在智能终端正面的左侧;
根据第二距离传感器阵列测量智能终端正面的右侧与智能终端正面垂直方向上的测量点之间的距离得到第二距离信息;所述第二距离传感器阵列设置在智能终端正面的右侧。
在另一实施例中,所述根据所述第一距离信息和第二距离信息得到第一数组和第二数组包括:
根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组;
根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组。
在另一实施例中,所述按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息包括:
当所述第一数组和第二数组满足设定条件时,判定所述智能终端单手操作类型为左手操作;否则,判定所述智能终端单手操作类型为右手操作。
在另一实施例中,所述设定条件包括:
所述第一数组中的独立传感器的数量大于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第 二数组中的独立传感器的被激活时间之和。
在另一实施例中,所述根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组,包括:
当所述第一距离信息中的智能终端正面的左侧垂直方向上的测量点和智能终端正面的左侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活;
相应的,所述根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组,包括:
当所述第二距离信息中的智能终端正面的右侧垂直方向上的测量点和智能终端正面的右侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活。
本发明实施例还提供了一种智能终端单手操作装置,所述装置包括:
距离测量单元,配置为获取智能终端侧边垂直方向上的第一距离信息和第二距离信息;
数组单元,配置为分别根据所述距离测量单元获取的所述第一距离信息和第二距离信息得到第一数组和第二数组;
单手操作识别单元,配置为按预设规则对所述数组单元得到的所述第一数组和第二数组进行判断,得到智能终端单手操作类型信息;
单手操作执行单元,配置为根据所述单手操作识别单元获得的所述智能终端单手操作类型调整应用程序的操作界面和/或显示界面。
在另一实施例中,所述距离测量单元包括:
第一测量模块,配置为根据智能终端正面的左侧与智能终端正面垂直方向上的测量点之间的距离得到第一距离信息;
第二测量模块,配置为根据智能终端正面的右侧与智能终端正面垂直方向上的测量点之间的距离得到第二距离信息。
在另一实施例中,所述第一测量模块包括第一近距离传感器阵列,所述第一近距离传感器阵列包括第一设定数量的独立传感器;所述第一距离传感器阵列设置在智能终端正面的左侧。
在另一实施例中,所述第二测量模块包括第二近距离传感器阵列,所述第二近距离传感器阵列包括第二设定数量的独立传感器;所述第二距离传感器阵列设置在智能终端正面的右侧。
在另一实施例中,所述数组单元包括:
第一数组模块,配置为根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组;当所述第一距离信息中的智能终端正面垂直方向上的测量点和智能终端正面之间的距离小于设定值时,所述测量点对应的独立传感器被激活;
第二数组模块,配置为根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组;当所述第二距离信息中的智能终端正面垂直方向上的测量点和智能终端正面之间的距离小于设定值时,所述测量点对应的独立传感器被激活。
在另一实施例中,所述单手操作识别单元包括:
单手操作判断模块,配置为当所述第一数组中的独立传感器的数量大于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和时,判定所述智能终端单手操作类型为左手操作;否则,判定所述智能终端单手操作类型为右手操作。
在另一实施例中,所述单手操作判断模块包括:
计时模块,配置为计算所述第一数组中的独立传感器的被激活时间和/或所述第二数组中的独立传感器的被激活时间。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中 存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的智能终端单手操作方法。
本发明实施例所提供的智能终端单手操作方法、装置及计算机存储介质,通过获取智能终端侧边垂直方向上的第一距离信息和第二距离信息,能够得到用户手掌和智能终端屏幕的距离信息;分别通过所述第一距离信息和第二距离信息对应激活的独立传感器,并对激活的独立传感器的数量和/或被激活时间的判断得到智能终端单手操作类型信息,能够准确地判断用户通过哪只手对智能终端进行操作;最后根据所述智能终端单手操作类型调整应用程序的操作界面,使得应用程序能够根据用户的左右手操作方式,自动地改变应用程序的操作界面和/或显示界面,提高了用户操作智能终端的用户体验。
附图说明
图1为本发明实施例1智能终端单手操作方法的实现流程图;
图2为本发明实施例1智能终端侧边的位置示意图;
图3为本发明实施例2智能终端单手操作装置的组成结构示意图;
图4为本发明实施例3右手操作智能终端的示意图;
图5为本发明实施例3左手操作智能终端的示意图;
图6为本发明实施例3拨号盘布局调整的实现流程图;
图7为本发明实施例3左手操作智能终端时的拨号盘布局示意图;
图8为本发明实施例3右手操作智能终端时的拨号盘布局示意图。
具体实施方式
以下结合说明书附图及具体实施例对本发明的技术方案做进一步的详细阐述。
实施例1
为了解决现有智能终端存在的操作界面和显示界面不能随智能终端单手操作进行调整的缺陷,本实施例提供了一种智能终端单手操作方法,如图1所示,该方法包括以下步骤:
步骤S101:获取智能终端侧边垂直方向上的第一距离信息和第二距离信息。
这里,所述智能终端侧边是指智能终端正面的左右两侧;在实际应用中,当用户使用所述智能终端使所述智能终端的屏幕的显示方式为竖屏显示时,所述智能终端侧边为所述智能终端的长侧边;当用户使用所述智能终端使所述智能终端的屏幕的显示方式为横屏显示时,所述智能终端侧边为所述智能终端的短侧边。其中,所述第一距离信息和所述第二距离信息分别为用户操作所述智能终端时所述用户的左手和右手分别与所述智能终端侧边的距离。
步骤S102:分别根据所述第一距离信息和第二距离信息得到第一数组和第二数组。
智能终端单手操作类型分为左手单手操作和右手单手操作,根据所述第一距离信息和第二距离信息能够激活智能终端侧边上的距离传感器阵列中的独立传感器。
步骤S103:按预设规则对所述第一数组和第二数组进行判断,得到智能终端单手操作类型信息。
通过对激活的独立传感器的数量和被激活时间进行判断,可以得到智能终端单手操作类型信息,进而判断用户对智能终端进行操作时用到的是哪只手。
步骤S104:根据所述智能终端单手操作类型信息调整应用程序的操作界面和/或显示界面。
将对应的智能终端单手操作类型信息发送给应用程序,应用程序就可 根据智能终端单手操作类型信息对应用程序的操作界面和显示界面进行自动调整。
本发明实施例所提供的智能终端单手操作方法,通过获取智能终端侧边垂直方向上的第一距离信息和第二距离信息,能够得到用户手掌和智能终端屏幕之间的距离信息;通过所述第一距离信息和所述第二距离信息得到智能终端单手操作类型信息,能够准确地判断用户通过哪只手对智能终端进行操作;最后根据所述智能终端单手操作类型调整应用程序的操作界面,使得应用程序能够根据用户的左右手操作方式,自动地改变应用程序的操作界面和/或显示界面,提高了用户操作智能终端的用户体验。
由上述描述可知,为了获取智能终端侧边垂直方向上的第一距离信息和第二距离信息,还需在智能终端正面的左侧和智能终端正面的右侧分别设置第一距离传感器阵列和第二传感器阵列;其中,所述智能终端的正面为所述智能终端的触控显示屏所在的平面。
具体地,步骤S101获取智能终端侧边垂直方向上的第一距离信息和第二距离信息包括:
S1011:根据所述第一距离传感器阵列测量智能终端正面的左侧与智能终端正面垂直方向上的测量点之间的距离得到第一距离信息。
本实施例中,所述第一距离传感器阵列有固定的测量范围,当物体处于所述测量范围之外时,所述第一距离传感器阵列无法对该物体进行测量;当物体、如用户的手处于所述测量范围内时,所述第一距离传感器阵列会将所述物体作为测量点对其进行测量,得到第一距离信息。
S1012:根据所述第二距离传感器阵列测量智能终端正面的右侧与智能终端正面垂直方向上的测量点之间的距离得到第二距离信息。
依据本实施例的另一优选实施例,步骤S102所述的分别根据所述第一距离信息和第二距离信息得到第一数组和第二数组包括:
S1021:根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组。
本实施例中,所述第一距离传感器阵列能够测量智能终端正面的左侧到智能终端正面的左侧垂直方向上一定范围内的点。当有手指出现在该范围内的时候,即当所述第一距离信息中的智能终端正面的左侧垂直方向上的测量点和智能终端正面的左侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活。激活后的传感器将被登记到第一数组内;同时,所述独立传感器的被激活时间也会被统计。所述设定值是通过用户操作智能终端时,手指和屏幕之间的距离来设置的,当手指和屏幕之间的距离大于设定值时,可认为用户没有操作智能终端屏幕。
S1022:根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组。
本步骤中,所述第二距离传感器阵列能够测量智能终端正面的右侧到智能终端正面的右侧垂直方向上一定范围内的点。当有手指出现在该范围内的时候,即当所述第一距离信息中的智能终端正面的右侧垂直方向上的测量点和智能终端正面的右侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活。激活后的传感器将被登记到第一数组内;同时,所述独立传感器的被激活时间也会被统计。所述设定值是通过用户操作智能终端时,手指和屏幕之间的距离来设置的,当手指和屏幕之间的距离大于设定值时,可认为用户没有操作智能终端屏幕。
依据本实施例的另一优选实施例,步骤S103所述按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息包括:
S1031:当所述第一数组和第二数组满足设定条件时,所述智能终端单手操作类型为左手操作;否则,所述智能终端单手操作类型为右手操作。具体的,所述设定条件包括:所述第一数组中的独立传感器的数量多于所 述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和。
对智能终端的单手操作需要考虑两种情况:
一、被激活的独立传感器的数量;实际中,单手操作智能终端时,操作智能终端的手指(主要是拇指和食指)覆盖的面积会比其他手指覆盖的面积大。相应地,操作智能终端的手指能够激活的独立传感器的数量也比其他智能终端激活的独立传感器的数量多。因此,根据智能终端正面的左侧和右侧被激活的传感器的数量可以判断用户单手操作智能终端的类型。
二、独立传感器的被激活时间;实际中还存在一种情况,即用户手握智能终端,然后通过拇指或食指操作智能终端。此时,其他的手指可能在智能终端正面的另一侧同时激活了独立传感器,并且,其他的手指激活的独立传感器的数量也有可能比操作智能终端的手指激活的独立传感器多,单靠被激活的独立传感器的数量就不能准确判断单手操作的类型。实际中,操作智能终端的手指会一直激活独立传感器,而其他手指则是非连续激活独立传感器。从独立传感器被激活的时间来看,操作智能终端的手指激活独立传感器的时间之和一定会比其他手指激活独立传感器的时间之和要长。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的智能终端单手操作方法。
实施例2
本实施例和实施例1属于同一发明构思,本实施例提供了一种智能终端单手操作装置,本实施例的装置结构如图3所示,该装置包括:
距离测量单元301,配置为获取智能终端侧边垂直方向上的第一距离信息和第二距离信息;
数组单元302,配置为分别根据所述距离测量单元301获取的所述第一距离信息和第二距离信息得到第一数组和第二数组;
单手操作识别单元303,配置为按预设规则对所述数组单元302得到的所述第一数组和所述第二数组进行判断,得到所述智能终端单手操作类型信息;
单手操作执行单元304,配置为根据所述单手操作识别单元303获得的所述智能终端单手操作类型调整应用程序的操作界面和/或显示界面。
所述距离测量单元301进一步包括:
第一测量模块,配置为根据智能终端正面的左侧与智能终端正面垂直方向上的多个测量点之间的距离得到第一距离信息;所述第一测量模块包括第一近距离传感器阵列,所述第一近距离传感器阵列包括第一设定数量的独立传感器;所述第一距离传感器阵列设置在智能终端正面的左侧。
实际中,当智能终端屏幕点亮时,所述独立传感器也开启,并开始测量智能终端正面垂直方向的设定范围内是否有测量点。每个独立传感器都独立测量一定范围内的点,当被测点与智能终端正面的距离小于设定值时,独立传感器被激活。可见,独立传感器的开启和激活不是同一概念。独立传感器的开启是指独立传感器加电并开始测量距离;而独立传感器被激活是指独立传感器测得的智能终端正面和测量点之间的距离小于设定值时的一种状态。当独立传感器被激活时,独立传感器会向单手操作识别单元302中的第一数组模块发送激活信号,表明此时独立传感器被激活。
第二测量模块,配置为根据智能终端正面的右侧与智能终端正面垂直方向上的多个测量点之间的距离得到第二距离信息。所述第二测量模块包括第二近距离传感器阵列,所述第二近距离传感器阵列包括第二设定数量的独立传感器;所述第二距离传感器阵列设置在智能终端正面的右侧。
根据实际中操作智能终端的情况,所述第一近距离传感器阵列和第二 近距离传感器阵列分别设置在智能终端正面左右两侧的中下部,如图2所示。
所述数组单元302进一步包括:
第一数组模块,配置为根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组;第一数组模块接收到第一近距离传感器阵列中被激活的独立传感器发来的激活信号后,将所述激活信号对应的独立传感器登记到第一数组中,并记录被激活的独立传感器的被激活时刻和去激活时刻;
第二数组模块,配置为根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组;第二数组模块记录第二近距离传感器阵列中被激活的独立传感器发来的激活信号、被激活时刻和去激活时刻的过程和所述第一数组模块相同,此处不再赘述。
所述单手操作识别单元303进一步包括:
单手操作判断模块,配置为当所述第一数组和第二数组满足设定条件时,判定所述智能终端单手操作类型为左手操作;否则,判定所述智能终端单手操作类型为右手操作。所述设定条件包括:所述第一数组中的独立传感器的数量大于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和。
所述单手操作判断模块进一步包括:计时模块,配置为计算所述第一数组中的独立传感器的被激活时间和/或所述第二数组中的独立传感器的被激活时间。即计算第一数组和/或第二数组中独立传感器的被激活时刻和去激活时刻之间的差值。
所述单手操作执行单元304根据所述智能终端单手操作类型调整应用程序的操作界面的方法有两种:
一、根据智能终端单手操作类型,智能终端自主控制应用程序的操作界面和/或显示界面。
二、将智能终端单手操作类型信息发送给应用程序,应用程序根据智能终端单手操作类型信息自主调整操作界面和/或显示界面。
实施例3
本实施例通过一个实际的场景对本发明进行详细说明。
多数智能终端用户单手操作智能终端的姿势分为两种:单手右手操作智能终端和单手左手操作智能终端。右手操作智能终端如图4所示,左手操作智能终端如图5所示。
由图4和图5可知,单手操作智能终端时,对应单手操作的智能终端侧的部分区域会被覆盖或遮挡,利用这一特征可对智能终端单手操作进行判断。
首先,在智能终端正面侧边设置距离测量单元,本实施例的距离测量单元采用近距离传感器阵列装置,所述近距离传感器阵列装置配置为监测并记录智能终端左右两侧与用户手掌之间距离变化序列值,也可设置在其他能识别出智能终端操作时左右两侧的位置;所述智能终端还包括单手操作识别单元,配置为分析记录的智能终端左右侧与用户手掌之间距离变化序列值,并判断单手操作类型;所述智能终端还包括单手操作执行单元,配置为根据所述智能终端单手操作类型调整应用程序的操作界面和/或显示界面。
本实施例组成部分具体为:
1、距离测量单元,采用近距离传感器阵列。智能终端使用过程中,通过第一近距离传感器阵列和第二近距离传感器阵列分别监测智能终端正面左右两侧中下方部分与智能终端正面垂直方向上用户手掌之间距离的变化情况,并记录对应的距离变化序列值。
2、单手操作识别单元,配置为分析记录的距离变化序列值。所述距离变化序列值记录了配置为第一近距离传感器阵列和配置为第二近距离传感器阵列在各自的测量范围内测量到的距离信息,但所述距离信息不一定都能激活独立传感器。只有距离信息中的距离数据小于设定值时,才认为有物体靠近智能终端的屏幕。
3、单手操作识别单元,单手操作识别单元测得的小于设定值的距离变化序列值对应的独立传感器被激活。对被激活的独立传感器进行统计,就可得到第一近距离传感器阵列和第二近距离传感器阵列中被激活的独立传感器的数量。还能记录被激活的独立传感器的被激活时刻和去激活时刻;通过计时器可以得到每个被激活的独立传感器的被激活时间。
当所述第一数组中的独立传感器的数量多于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和时,判断所述智能终端单手操作类型为左手操作;否则,判断所述智能终端单手操作类型为右手操作。
4、单手操作执行单元,配置为保存最终的判断结果,供智能终端其它应用程序调用;或者以广播消息的形式发送给其它应用程序,其它应用根据结果调整页面布局,方便用户操作。
以下通过拨号盘布局场景对本实施例进行说明,图6为本发明实施例3拨号盘布局调整的实现流程图;如图6所示,具体步骤包括:
STEP1:监测智能终端是否正在被使用;可以通过智能终端屏幕是否被点亮来判断,也可以通过其他方法判断。
STEP2:通过第一近距离传感器阵列和第二近距离传感器阵列监测智能终端两侧与手掌之间的距离变化情况;当用户操作智能终端的时候(可通过智能终端屏幕是否点亮来判断用户是否正在操作智能终端,也可通过其它方式来判断),智能终端两侧的近距离传感器阵列加电启动,并对其两 侧中下方位置与智能终端正面垂直方向上手掌之间的距离的变化情况进行监测,并记录第一近距离传感器阵列和第二近距离传感器阵列中各个独立传感器所获取的距离变化序列值。
STEP 3:对记录的距离变化序列值进行分析;将智能终端左侧中下方位置的距离变化序列值中被激活的独立传感器记为LS;将智能终端右侧中下方位置的距离变化序列值中被激活的独立传感器记为RS;当LS中的独立传感器的数量小于RS中的独立传感器的数量时,则认为智能终端用户处于右手单手操作模式;反之,则认为智能终端用户处于左手单手操作模式。通过对被激活的独立传感器的被激活时间也能确定左手单手操作和右手单手操作,具体判断的方法如前述。
STEP 4:将步骤STEP 3中的判断结果保存起来,供智能终端其它应用调用。或者以广播消息的形式发送给其它应用。对应的,左手操作智能终端时的拨号盘布局如图7所示,右手操作智能终端时的拨号盘布局如图8所示。
本实施例能够根据左手单手操作模式或右手单手操作模式自动显示相应的布局,方便用户对智能终端的操作,提升用户体验。
在本申请所提供的几个实施例中,应该理解到,所揭露的设备和方法,可以通过其它的方式实现。以上所描述的设备实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,如:多个单元或组件可以结合,或可以集成到另一个系统,或一些特征可以忽略,或不执行。另外,所显示或讨论的各组成部分相互之间的耦合、或直接耦合、或通信连接可以是通过一些接口,设备或单元的间接耦合或通信连接,可以是电性的、机械的或其它形式的。
上述作为分离部件说明的单元可以是、或也可以不是物理上分开的, 作为单元显示的部件可以是、或也可以不是物理单元,即可以位于一个地方,也可以分布到多个网络单元上;可以根据实际的需要选择其中的部分或全部单元来实现本实施例方案的目的。
另外,在本发明各实施例中的各功能单元可以全部集成在一个处理模块中,也可以是各单元分别单独作为一个单元,也可以两个或两个以上单元集成在一个单元中;上述集成的单元既可以采用硬件的形式实现,也可以采用硬件加软件功能单元的形式实现。
本领域普通技术人员可以理解:实现上述方法实施例的全部或部分步骤可以通过程序指令相关的硬件来完成,前述的程序可以存储于一计算机可读取存储介质中,该程序在执行时,执行包括上述方法实施例的步骤;而前述的存储介质包括:移动存储设备、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应以所述权利要求的保护范围为准。
工业实用性
本发明实施例通过获取智能终端侧边垂直方向上的第一距离信息和第二距离信息,能够得到用户手掌和智能终端屏幕的距离信息;分别通过所述第一距离信息和第二距离信息对应激活的独立传感器,并对激活的独立传感器的数量和/或被激活时间的判断得到智能终端单手操作类型信息,能够准确地判断用户通过哪只手对智能终端进行操作;最后根据所述智能终端单手操作类型调整应用程序的操作界面,使得应用程序能够根据用户的左右手操作方式,自动地改变应用程序的操作界面和/或显示界面,提高了 用户操作智能终端的用户体验。

Claims (14)

  1. 一种智能终端单手操作方法,所述方法包括:
    获取智能终端侧边垂直方向上的第一距离信息和第二距离信息;
    分别根据所述第一距离信息和第二距离信息得到第一数组和第二数组;
    按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息;
    根据所述智能终端单手操作类型信息调整应用程序的操作界面和/或显示界面。
  2. 根据权利要求1所述的方法,其中,所述获取智能终端侧边垂直方向上的第一距离信息和第二距离信息,包括:
    根据第一距离传感器阵列测量智能终端正面的左侧与智能终端正面垂直方向上的测量点之间的距离得到第一距离信息;所述第一距离传感器阵列设置在智能终端正面的左侧;
    根据第二距离传感器阵列测量智能终端正面的右侧与智能终端正面垂直方向上的测量点之间的距离得到第二距离信息;所述第二距离传感器阵列设置在智能终端正面的右侧。
  3. 根据权利要求2所述的方法,其中,所述根据所述第一距离信息和第二距离信息得到第一数组和第二数组,包括:
    根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组;
    根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组。
  4. 根据权利要求3所述的方法,其中,所述按预设规则对所述第一数组和第二数组进行判断,得到所述智能终端单手操作类型信息,包括:
    当所述第一数组和第二数组满足设定条件时,判定所述智能终端单手操作类型为左手操作;否则,判定所述智能终端单手操作类型为右手操作。
  5. 根据权利要求4所述的方法,其中,所述设定条件包括:
    所述第一数组中的独立传感器的数量大于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和。
  6. 根据权利要求3所述的方法,其中,所述根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组,包括:
    当所述第一距离信息中的智能终端正面的左侧垂直方向上的测量点和智能终端正面的左侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活;
    相应的,所述根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组,包括:
    当所述第二距离信息中的智能终端正面的右侧垂直方向上的测量点和智能终端正面的右侧之间的距离小于设定值时,所述测量点对应的独立传感器被激活。
  7. 一种智能终端单手操作装置,所述装置包括:
    距离测量单元,配置为获取智能终端侧边垂直方向上的第一距离信息和第二距离信息;
    数组单元,配置为分别根据所述距离测量单元获取的所述第一距离信息和所述第二距离信息得到第一数组和第二数组;
    单手操作识别单元,配置为按预设规则对所述数组单元得到的所述第一数组和所述第二数组进行判断,得到所述智能终端单手操作类型信息;
    单手操作执行单元,配置为根据所述单手操作识别单元获得的所述智 能终端单手操作类型调整应用程序的操作界面和/或显示界面。
  8. 根据权利要求7所述的装置,其中,所述距离测量单元包括:
    第一测量模块,配置为根据智能终端正面的左侧与智能终端正面垂直方向上的测量点之间的距离得到第一距离信息;
    第二测量模块,配置为根据智能终端正面的右侧与智能终端正面垂直方向上的测量点之间的距离得到第二距离信息。
  9. 根据权利要求8所述的装置,其中,所述第一测量模块包括第一近距离传感器阵列,所述第一近距离传感器阵列包括第一设定数量的独立传感器;所述第一距离传感器阵列设置在智能终端正面的左侧。
  10. 根据权利要求9所述的装置,其中,所述第二测量模块包括第二近距离传感器阵列,所述第二近距离传感器阵列包括第二设定数量的独立传感器;所述第二距离传感器阵列设置在智能终端正面的右侧。
  11. 根据权利要求10所述的装置,其中,所述数组单元包括:
    第一数组模块,配置为根据所述第一距离信息确定所述第一距离传感器阵列中被激活的独立传感器的数量得到第一数组;当所述第一距离信息中的智能终端正面垂直方向上的测量点和智能终端正面之间的距离小于设定值时,所述测量点对应的独立传感器被激活;
    第二数组模块,配置为根据所述第二距离信息确定所述第二距离传感器阵列中被激活的独立传感器的数量得到第二数组;当所述第二距离信息中的智能终端正面垂直方向上的测量点和智能终端正面之间的距离小于设定值时,所述测量点对应的独立传感器被激活。
  12. 根据权利要求11所述的装置,其中,所述单手操作识别单元包括:
    单手操作判断模块,配置为当所述第一数组中的独立传感器的数量大于所述第二数组中的独立传感器的数量和/或所述第一数组中的独立传感器的被激活时间之和大于所述第二数组中的独立传感器的被激活时间之和 时,判定所述智能终端单手操作类型为左手操作;否则,判定所述智能终端单手操作类型为右手操作。
  13. 根据权利要求11所述的装置,其中,所述单手操作判断模块包括:
    计时模块,配置为计算所述第一数组中的独立传感器的被激活时间和/或所述第二数组中的独立传感器的被激活时间。
  14. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1至6任一项所述的智能终端单手操作方法。
PCT/CN2014/088226 2014-08-05 2014-10-09 一种智能终端单手操作方法、装置及计算机存储介质 WO2016019629A1 (zh)

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