WO2015192456A1 - 调整移动终端界面的方法、装置及终端 - Google Patents

调整移动终端界面的方法、装置及终端 Download PDF

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Publication number
WO2015192456A1
WO2015192456A1 PCT/CN2014/084558 CN2014084558W WO2015192456A1 WO 2015192456 A1 WO2015192456 A1 WO 2015192456A1 CN 2014084558 W CN2014084558 W CN 2014084558W WO 2015192456 A1 WO2015192456 A1 WO 2015192456A1
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Prior art keywords
mobile terminal
user
area
interface
effective
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PCT/CN2014/084558
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English (en)
French (fr)
Inventor
赵冬晓
王玲
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中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US15/319,694 priority Critical patent/US20170153783A1/en
Priority to EP14895245.0A priority patent/EP3159786B1/en
Priority to JP2016574006A priority patent/JP6349419B2/ja
Publication of WO2015192456A1 publication Critical patent/WO2015192456A1/zh

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Classifications

    • 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]
    • 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
    • G06F3/0488Interaction 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 using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/0418Control or interface arrangements specially adapted for digitisers for error correction or compensation, e.g. based on parallax, calibration or alignment
    • G06F3/04186Touch location disambiguation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V10/00Arrangements for image or video recognition or understanding
    • G06V10/20Image preprocessing
    • G06V10/26Segmentation of patterns in the image field; Cutting or merging of image elements to establish the pattern region, e.g. clustering-based techniques; Detection of occlusion
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V10/00Arrangements for image or video recognition or understanding
    • G06V10/20Image preprocessing
    • G06V10/30Noise filtering
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/041Indexing scheme relating to G06F3/041 - G06F3/045
    • G06F2203/04104Multi-touch detection in digitiser, i.e. details about the simultaneous detection of a plurality of touching locations, e.g. multiple fingers or pen and finger
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2218/00Aspects of pattern recognition specially adapted for signal processing

Definitions

  • the present invention relates to the field of mobile terminal technologies, and in particular, to a method, an apparatus, and a terminal for adjusting an interface of a mobile terminal.
  • Apple mobile phones (iphone) have created new control modes such as multi-touch and gravity sensing. These innovations have greatly improved the user experience and laid a solid foundation for the success of iphone, and these technologies have become competing with other mobile phone manufacturers.
  • User experience is one of the most important and fundamental factors for a mobile phone product to be favored by users. How to design a mobile phone from the user's point of view has become the most important issue in mobile phone design.
  • Embodiments of the present invention provide a method, device, and terminal for adjusting a mobile terminal interface, so as to at least solve the problem of adjusting an interface of a mobile terminal according to whether the user is a left-hand or a right-hand operation to adapt to a user's operation requirement.
  • the present invention provides a method for adjusting a mobile terminal interface, including: detecting user holding information of a mobile terminal; determining, according to the holding information, an effective area that the user holds on the mobile terminal; Determining, by the effective area, result information of the user operating the mobile terminal by left or right hand; adjusting the mobile terminal interface according to the result information.
  • the detecting the touch information of the user to the mobile terminal includes: receiving, by the sensor, touch sensing information of the user on the mobile terminal, and converting the touch sensing information into the holding information.
  • the determining, according to the holding information, the effective area that the user holds the mobile terminal includes: the holding information is specifically an electrical signal, and the electrical signal is quantized into a binarized signal; The binarization signal determines an effective area that the user holds for the mobile terminal.
  • the determining, according to the binarized signal, the effective area touched by the user on the mobile terminal includes: filtering the binarized signal; processing the filtered binarized signal to obtain a user An effective area for touching the two sides of the mobile terminal housing.
  • the processing the filtered binary signal including: converting the binary signal into a binary image, marking a binary image region composed of consecutive effective points as an area to be identified;
  • An effective point is a black pixel point in the binary image;
  • a vertical middle line of the to-be-identified area is taken as a first reference line; and a number of consecutive effective points in a vertical direction of the first reference line exceeds a number
  • the horizontal middle line of the line segment of the continuous effective point in the vertical direction is the second reference line, and the number of consecutive effective points in the horizontal direction of the second reference line exceeds the second setting.
  • the area to be identified is taken as an effective area for the user to touch the two sides of the outer casing of the mobile terminal.
  • the processing the filtered binarized signal further includes: Converting the binarized signal into a binary image, marking a binary image region composed of consecutive effective points as an area to be identified; the effective point is a black pixel point in the binary image; calculating the to-be-identified The area value of the area, the area to be identified corresponding to the area value exceeding the third set threshold is used as an effective area for the user to touch the two sides of the mobile terminal casing.
  • the determining, according to the valid area, the result information that the user operates the mobile terminal by using the left or the right hand includes: calculating a length value of the effective area, and obtaining an effective area with a maximum length value; The location where the largest effective area is located on the mobile terminal housing obtains result information of the user operating the mobile terminal by left or right hand.
  • the adjusting the mobile terminal interface according to the result information includes: when the result information reflects that the user operates the mobile terminal by using a left hand, adjusting an interface of the mobile terminal to a layout suitable for a left-hand operation When the result information reflects that the user operates the mobile terminal by the right hand, the interface of the mobile terminal is adjusted to a layout adapted to the right-hand operation.
  • the present invention further provides an apparatus for adjusting an interface of a mobile terminal, comprising: a detecting module, configured to detect a holding information of a user on the mobile terminal; and a processing module, configured to determine a user to the user according to the holding information An effective area held by the mobile terminal; the determining module is configured to determine, according to the effective area, result information of the user operating the mobile terminal by using a left or right hand; the interface adjusting module is configured to adjust the movement according to the result information Terminal interface.
  • the detecting module is configured to receive, by using a sensor, touch sensing information of the user to the mobile terminal, and convert the touch sensing information into the holding information.
  • the processing module includes: a signal quantization module, configured to quantize the holding information into a binarized signal;
  • the filtering module is configured to filter the binarized signal; and the signal processing module is configured to process the filtered binarized signal to obtain an effective area of the user touching the two sides of the mobile terminal casing.
  • the present disclosure further provides a mobile terminal, including: a sensor configured to detect user holding information of the mobile terminal; and a processor configured to determine, according to the holding information, a user holding the mobile terminal An effective area; determining, according to the effective area, result information of the user operating the mobile terminal by left or right hand; adjusting the mobile terminal interface according to the result information.
  • a mobile terminal including: a sensor configured to detect user holding information of the mobile terminal; and a processor configured to determine, according to the holding information, a user holding the mobile terminal An effective area; determining, according to the effective area, result information of the user operating the mobile terminal by left or right hand; adjusting the mobile terminal interface according to the result information.
  • FIG. 1 is a flow chart of a method for adjusting an interface of a mobile terminal according to a first embodiment of the present invention
  • FIG. 2 is a schematic diagram of a binarized image according to a first embodiment of the present invention
  • FIG. 3 is a schematic diagram of a binarized signal according to a first embodiment of the present invention
  • 4 is a flowchart of processing a binary signal in the embodiment of the present invention
  • FIG. 5 is a schematic diagram of an apparatus for adjusting an interface of a mobile terminal according to a second embodiment of the present invention
  • FIG. 6 is a processing module according to a second embodiment of the present invention
  • FIG. 1 is a flow chart of a method for adjusting an interface of a mobile terminal according to a first embodiment of the present invention
  • FIG. 2 is a schematic diagram of a binarized image according to a first embodiment of the present invention
  • FIG. 3 is a schematic diagram of a binarized signal according to a first embodiment of the present invention
  • 4 is
  • a first embodiment of the present invention a method for adjusting an interface of a mobile terminal, as shown in FIG. 1, includes the following specific steps: Step S101: Detecting user holding information of the mobile terminal. Specifically, the touch sensing information of the user to the mobile terminal is received by the sensor, and the touch sensing information is converted into the holding information. The holding information is specifically an electrical signal, and the electrical signal is quantized into a binary signal. Further, the present invention mounts sensors on both sides of the mobile terminal.
  • the types of sensors are not limited to: capacitive sensors, pressure sensors and infrared sensors.
  • the above sensors or other sensors can be used according to actual needs.
  • the sensors installed on both sides of the mobile terminal receive the touch sensing information of the hand to the sensor, and convert the touch sensing information into an electrical signal.
  • the electrical signal includes a voltage signal or a current signal.
  • the electrical signal is converted into a binarized signal by a preset threshold, which is represented by 0 and 1, that is, the signal generated by the user to the contact area of the terminal device is indicated by 1, and the area not contacted is denoted by 0.
  • the binary signal received and converted by the sensor is displayed in the form of an image, which is represented as a binary image, that is, a black and white image, and black is represented by 1, which is an effective contact point of the user to the mobile terminal.
  • White is represented by 0, and the effective area touched by the user on the mobile terminal is converted into a binary image.
  • the binary image is a binarized signal composed of a two-dimensional array, as shown in FIG. Step S102: Determine, according to the holding information, an effective area that the user holds on the mobile terminal.
  • the holding information is specifically an electrical signal, and the electrical signal is quantized into a binary signal, and the effective area that the user holds to the mobile terminal is determined according to the binary signal.
  • the binarized signal is first filtered.
  • the purpose of filtering the binarized signal is to reduce the noise of the binarized signal to prevent the detection error of the sensor at a few points, that is, to prevent the occurrence of 0 and 1 inversion in the two-dimensional array, the mobile terminal first will image
  • the array is denoised, and from the perspective of the image, the white points in the black area are eliminated.
  • the detection method of noise the following two methods can be used: In the first way, from the vertical direction, the continuous number is a continuous number of MUs at both ends of N white points.
  • MD black points it is determined that the point is noise. From the perspective of the array, there are N adjacent elements with a value of 0 in the array. The N elements have MU and MD elements with a value of 1 at both ends. The element is noise and the value of the element is changed to 1. Obtain the arrays a[M][N] and ar[M][N] in the sensing effective areas on the left and right sides of the mobile terminal. Its In the middle, N is less than a certain threshold, and both MU and MD are greater than a certain threshold. The threshold value can be set according to actual needs. In the second method, the area of the black area in the binary image is detected, and the black area in the binary image is marked.
  • a threshold S1 is set, the area of the black area in the binary image is sequentially compared with SI, and the black area having an area not larger than S1 is marked as noise, and converted into a white area.
  • the present invention can also perform noise reduction processing on the binarized signal by other methods, and the present invention is not limited thereto.
  • the filtered binarized signal is processed to obtain an effective area for the user to touch the two sides of the mobile terminal casing. Specifically, the following two methods may also be used to obtain an effective area for the user to touch the two sides of the mobile terminal.
  • the binarized signal is converted into a binary image, and the binary image region composed of consecutive effective points is marked as the region to be identified; the effective point is the black pixel in the binary image; a vertical middle line as the first reference line; in the case where the number of consecutive effective points in the vertical direction of the first reference line exceeds the first set threshold, the horizontal middle line of the line segment of the continuous effective point in the vertical direction
  • the area to be identified is taken as an effective area for the user to touch the two side faces of the mobile terminal casing.
  • the judgment of the continuous 1 is performed, and the number of consecutive 1s of the array data is determined to detect the length of the effective area of the user's skin contacting the mobile terminal, and from the image, the black pixel is passed through the cross.
  • Judging to determine the effective contact area that is, taking the image center line as a vertical line, looking for consecutive black pixel points on the top, when the number of consecutive black pixel points is greater than a certain threshold, performing a horizontal black dot on the segment area Judging, taking the middle position of the continuous black point of the segment, and judging the number of consecutive black pixel points on the left and right sides. If the number is greater than a certain threshold, that is, there is a black cross based on the center point, then the area is determined to be valid.
  • the binarized signal is composed of a two-dimensional array, and it is judged whether 1 is equal to al[M/2][i] and ar[M/2][i] in the array. Where i is incremented from 0 and i is less than N. And record the number of consecutive black pixel points in the array, 1 as the black pixel point in the binary image, 0 as the white pixel point in the binary image, and the black pixel point as the effective point in the binary image.
  • the intermediate elements of the black pixel points in the array are laterally connected to one, assuming that the middle element of the black pixel consecutively 1 in the array is al[ M/2][R], then calculate al[j][R], where j is incremented from 0 and j is less than M.
  • the area is regarded as the effective area touched by the user to the mobile terminal, and the effective areas on the left and right sides of the mobile terminal satisfying the above conditions are used.
  • Number storage They are stored in the arrays tl[5] and tr[5], respectively, and record the number of effective contact areas on both sides of the mobile terminal.
  • al[M][N] and ar[M][N] represent arrays in the effective areas on the left and right sides of the mobile terminal, respectively.
  • Tl[5] and tr[5] respectively indicate the number of effective areas touched by the left and right sides of the mobile terminal to the mobile terminal.
  • the area of the black area in the binary image is detected, and the black area in the binary image is marked.
  • the area composed of the effective points that is, the black pixel points, is a black area.
  • Step S103 determining, according to the effective area, result information of the user operating the mobile terminal by using the left hand or the right hand. Specifically, after obtaining the effective areas on both sides of the mobile terminal, determining, according to the effective areas on both sides of the mobile terminal, whether the user operates the mobile terminal by using the left hand or the right hand.
  • the user when the user operates with one hand, it is determined whether the user operates the mobile terminal by using the left or the right hand, and various methods can be used. The following is respectively determining the position of the user's finger and determining the effective area length, and obtaining the user operating the mobile terminal by using the left or right hand. Result information.
  • judging the position of the thumb and the rest of the four fingers judging by various characteristics when people use the mobile phone, one of the methods is adopted here. As shown in Fig. 2, when the user uses the mobile phone, the thumb and the remaining four fingers are respectively Located on both sides of the mobile phone, for the thumb side, the effective contact surface is a long area due to the contact of the palm.
  • the effective contact area is a longer contact area and a comparison. Short contact area. For the remaining four-finger sides, the effective contact area is a few separated short contact areas or no contacts, and the number of effective contact areas is 0 to 4. If the effective contact area on one side is greater than 2, it is judged that the side is the four-finger direction and the other side is the thumb side. If the number of effective contact areas on both sides of the mobile phone is less than or equal to two, the longest effective contact areas at both ends are taken for comparison, and the longer effective contact area is the thumb side. According to the size of the mobile terminal, the current mobile terminal products, such as smart phones, are getting larger and larger.
  • the size of the mobile terminal is large, the user often cannot touch the other four fingers of the thumb when operating with one hand. To the other side of the mobile terminal, or only a few of the fingers touch the other side of the mobile terminal. It can also be based on the user group that the mobile terminal is targeting, if it is a female or a male. It is also possible to directly judge whether the user operates the mobile phone by left or right hand according to the effective length of the user's touch on the mobile terminal. The method for determining the operation of the mobile terminal by the left or right hand of the user according to the effective area is not limited thereto. The above processing of the binarized signal, whether the user uses the left or right hand to operate the mobile terminal, can also be obtained according to FIG.
  • Step S104 adjusting the mobile terminal interface according to the result information. Specifically, after obtaining the result information of the mobile terminal by the user by using the left or the right hand, the interface of the mobile terminal is adjusted to adapt to the user's left or right hand operation of the mobile phone. When the user is operating the mobile terminal by one hand with the left hand according to the above steps, the interface of the mobile terminal is automatically adjusted to a position favorable for the left hand operation. For example, the operation buttons for deleting, selecting, and the like of the mobile terminal are adjusted to the left side of the mobile terminal to satisfy the user's left hand operation of the mobile terminal to the greatest extent, thereby improving the user experience.
  • an apparatus for adjusting an interface of a mobile terminal includes: a detecting module 10 configured to detect user holding information of the mobile terminal. Specifically, the detecting module 10 detects the touch sensing information of the user on the mobile terminal, and converts the touch sensing information into the holding information.
  • the holding information is specifically an electrical signal.
  • the detecting module 10 converts the touch sensing information into an electrical signal.
  • the electrical signal includes a voltage signal or a current signal.
  • the processing module 20 is configured to determine, according to the holding information, an effective area that the user holds on the mobile terminal. Specifically, as shown in FIG. 6, the processing module 20 includes: a signal quantization unit 21 configured to quantize the grip information into a binarized signal. Wherein, the holding information is specifically an electrical signal, and the signal quantization unit 21 quantizes the electrical signal into a binary signal.
  • the filtering unit 22 is configured to filter the binarized signal, and the purpose thereof is to perform noise reduction on the binarized signal.
  • the signal processing unit 23 is configured to process the filtered binarized signal to obtain an effective area for the user to touch the two sides of the mobile terminal casing.
  • the signal quantization unit 21 converts the electrical signal into a binary signal by a preset threshold, and the binary signal is represented by 0 and 1, that is, the signal generated by the user to the contact area of the terminal device is represented by 1, and is not in contact. The area is indicated by 0.
  • the binary signal received and converted by the sensor is displayed in the form of an image, which is represented as a binary image, that is, a black and white image, and black is represented by 1, which is an effective contact point of the user to the mobile terminal.
  • White with 0 table Shows that the effective area touched by the user on the mobile terminal is converted into a binary image.
  • the binary image is a binarized signal composed of a two-dimensional array, as shown in FIG.
  • the processing module 20 first performs filtering processing on the binarized signal.
  • the purpose of the processing module 20 filtering the binarized signal is to reduce the noise of the binarized signal to prevent the detection error of the sensor at a few points, that is, to prevent the occurrence of 0 and 1 inversion in the two-dimensional array, the mobile terminal first
  • the image array is denoised, and from the perspective of the image, the white points in the black area are eliminated.
  • the continuous number is a continuous number of MUs and MD black points at both ends of the N white points, and the point is determined to be noise.
  • the N elements From the perspective of the array, there are N adjacent elements with a value of 0 in the array.
  • the N elements have MU and MD elements with a value of 1 at both ends, and the element is determined to be noise, and the element value is changed. 1.
  • the area of the black area in the binary image is detected, and the black area in the binary image is marked.
  • a threshold S1 is set, the area of the black area in the binary image is sequentially compared with SI, and the black area having an area not larger than S1 is marked as noise, and converted into a white area.
  • the filtering unit 22 of the present invention may also perform noise reduction processing on the binarized signal by other methods, and the present invention is not limited thereto.
  • the filtered binarized signal is processed to obtain an effective area for the user to touch the two sides of the mobile terminal casing. Specifically, the following two methods may also be used to obtain an effective area for the user to touch the two sides of the mobile terminal.
  • the binarized signal is converted into a binary image, and the binary image region composed of consecutive effective points is marked as the region to be identified; the effective point is the black pixel in the binary image; a vertical middle line as the first reference line; in the case where the number of consecutive effective points in the vertical direction of the first reference line exceeds the first set threshold, the horizontal middle line of the line segment of the continuous effective point in the vertical direction
  • the area to be identified is taken as an effective area for the user to touch the two side faces of the mobile terminal casing.
  • the judgment of the continuous 1 is performed, and the number of consecutive 1s of the array data is determined to detect the length of the effective area of the user's skin contacting the mobile terminal, and the image is a black cross.
  • the determination of the pixel points to determine the effective contact area that is, the vertical line of the image is taken as a vertical line, and the continuous black pixel points are searched for.
  • the horizontal area of the segment is horizontally Judging the black point, taking the middle position of the continuous black dot, and judging the number of consecutive black pixel points on the left and right. If the number is greater than a certain threshold, that is, there is a black cross based on the center point, then the judgment is made.
  • the area is an effective contact area, and the length of the effective contact area is recorded, and the effective contact areas on both sides of the mobile phone are respectively obtained by such methods.
  • the binarized signal is composed of a two-dimensional array, and it is judged whether 1 is equal to al[M/2][i] and ar[M/2][i] in the array. Where i is incremented from 0 and i is less than N. And record the number of consecutive black pixel points in the array, 1 as the black pixel point in the binary image, 0 as the white pixel point in the binary image, and the black pixel point as the effective point in the binary image.
  • the intermediate elements of the black pixel points in the array are laterally connected to one, assuming that the middle element of the black pixel consecutively 1 in the array is al[ M/2][R], then calculate al[j][R], where j is incremented from 0 and j is less than M.
  • the area is regarded as the effective area touched by the user to the mobile terminal, and the effective areas on the left and right sides of the mobile terminal satisfying the above conditions are used.
  • the number storage is stored in the arrays tl[5] and tr[5], respectively, and the number of effective contact areas on both sides of the mobile terminal is recorded separately.
  • al[M][N] and ar[M][N] represent arrays in the effective areas on the left and right sides of the mobile terminal, respectively.
  • Tl[5] and tr[5] respectively indicate the number of effective areas touched by the left and right sides of the mobile terminal to the mobile terminal.
  • the area of the black area in the binary image is detected, and the black area in the binary image is marked. Among them, the area composed of the effective points, that is, the black pixel points, is a black area.
  • the determining module 30 is configured to determine, according to the valid area, result information of the user operating the mobile terminal by using a left hand or a right hand. Specifically, after obtaining the effective areas on both sides of the mobile terminal, the determining module 30 determines, according to the effective areas on both sides of the mobile terminal, whether the user operates the mobile terminal by using the left hand or the right hand.
  • the effective contact surface is longer due to the palm contact
  • the area of the effective contact area is a longer contact area and a shorter contact area if the thumb is also placed on the side.
  • the effective contact area is a few separated short contact areas or no contacts, and the number of effective contact areas is 0 to 4. If the effective contact area on one side is greater than 2, it is judged that the side is the four-finger direction and the other side is the thumb side. If the number of effective contact areas on both sides of the mobile phone is less than or equal to two, the longest effective contact areas at both ends are taken for comparison, and the longer effective contact area is the thumb side.
  • the current mobile terminal products such as smart phones
  • the size of the mobile terminal is getting larger and larger. If the size of the mobile terminal is large, the user often cannot touch the other four fingers of the thumb when operating with one hand. To the other side of the mobile terminal, or only a few of the fingers touch the other side of the mobile terminal. It can also be based on the user group that the mobile terminal is targeting, if it is a female or a male. It is also possible to directly judge whether the user operates the mobile phone by left or right hand according to the effective length of the user's touch on the mobile terminal. The method for determining the operation of the mobile terminal by the left or right hand of the user according to the effective area is not limited thereto.
  • the interface adjustment module 40 is configured to adjust the mobile terminal interface according to the result information. Specifically, after the user obtains the result information of the mobile terminal by using the left or the right hand, the interface adjustment module 40 adjusts the interface of the mobile terminal to adapt to the user's left or right hand operation of the mobile phone.
  • a mobile terminal is provided. As shown in FIG. 7, the method includes: a sensor 50, configured to detect user holding information of the mobile terminal. Specifically, the sensor 50 detects the touch sensing information of the user on the mobile terminal, and converts the touch sensing information into the holding information.
  • the holding information is specifically an electrical signal, and the electrical signal is quantized into a binary signal. Further, the sensor 50 is mounted on both sides of the mobile terminal.
  • the types of sensors are not limited to: capacitive sensors, pressure sensors and infrared sensors.
  • the above sensors or other sensors can be used according to actual needs.
  • the processor 60 is configured to determine, according to the holding information, an effective area that the user holds to the mobile terminal; determine, according to the effective area, result information of the user operating the mobile terminal by using a left or right hand; and adjust the mobile terminal interface according to the result information.
  • the processor 60 receives the touch sensing information of the user on the mobile terminal through the sensor 50, and converts the touch sensing information into the holding information.
  • the holding information is specifically an electrical signal, and the electrical signal is quantized into a binary signal; and the effective area that the user holds to the mobile terminal is determined according to the binary signal.
  • the method, the device and the terminal for adjusting the interface of the mobile terminal provided by the embodiment of the present invention can dynamically adjust the interface of the mobile terminal according to whether the user operates the mobile terminal by left or right hand, and dynamically adjust the interface of the mobile terminal according to whether the user is left-handed or right-handed. Adapt to the user's operational needs and improve the user experience.
  • the technical means and functions of the present invention for achieving the intended purpose can be more deeply and specifically understood by the description of the specific embodiments.
  • the accompanying drawings are only for the purpose of illustration and description, and are not intended to limit.
  • a method, device, and terminal for adjusting a mobile terminal interface provided by the embodiments of the present invention have the following beneficial effects: dynamically acquiring information of a mobile terminal by dynamically acquiring whether the user is left-handed or right-handed, and correspondingly dynamically adjusting the movement
  • the interface of the terminal adapts to the user's operation requirements and improves the user experience.

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Abstract

本发明提出了一种调整移动终端界面的方法、装置及终端,其方法包括:检测用户对移动终端的握持信息(S101);根据握持信息确定用户对移动终端握持的有效区域(S102);根据有效区域判断出用户通过左手或右手操作所述移动终端的结果信息(S103);根据结果信息调整所述移动终端界面(S104)。本发明提供的调整移动终端界面的方法、装置及终端,通过动态的获取用户是左手还是右手操作移动终端的信息,相应的动态调整移动终端的界面,以适应用户的操作需求,提高了用户体验。

Description

调整移动终端界面的方法、 装置及终端 技术领域 本发明涉及移动终端技术领域, 尤其涉及一种调整移动终端界面的方法、 装置及 终端。 背景技术 苹果手机 (iphone) 开创了多点触摸、 重力感应等全新的操控方式, 这些创新极 大提高了用户体验, 为 iphone的成功奠定了坚实的基础, 而这些技术也成为了其他手 机厂商竞相模仿的对象。 用户体验是一款手机产品能否获得用户青睐最重要的也是最 基础的因素之一, 如何从用户的角度来进行手机的设计也就成为了手机设计时最应该 考虑的问题。 有数据统计, 全球大概 10%的人口是左撇子, 而美国历任总统则有超过一半为左 撇子, 而对于那些非左撇子的人群, 生活中或许也有着使用左手写字, 打电话的习惯, 所以在进行产品设计的时候就需要考虑到这一部分人群的需求, 在现有的科技产品中 有着大量的这样的例子, 像 windows系统中的鼠标使用习惯就有着左右手之分, 同时 大部分的鼠标产品都是左右手通用的对称的设计, 并有少数产品是单独为左撇子设计 的。对于日常生活中的手机特别是触摸屏手机使用来说,最常见的操作就是拇指操作, 而拇指的活动是有一定范围的, 经常会出现操作起来费劲的情况, 极大影响了用户的 操作体验, 而这样的手机产品对于左撇子人群来说, 其操作的体验将会更加糟糕。 现有的手机产品中存在着大量的这样的设计, 如拨号界面删除键在右侧、 短信发 送按键在右侧、 现在大屏手机流行, 左手习惯的人更难以触摸到右侧的屏幕操作。 现有技术存在的问题是, 不能动态的获知用户是左手还是右手操作移动终端, 也 不能相应的动态调整移动终端的界面, 以适应用户的操作需求。 发明内容 本发明实施例提供了一种调整移动终端界面的方法、 装置及终端, 以至少解决根 据用户是左手还是右手操作来调整移动终端的界面, 以适应用户操作需求的问题。 本发明采用的技术方案是, 包括: 第一方面, 本发明提供了一种调整移动终端界面的方法, 包括: 检测用户对移动终端的握持信息; 根据所述握持信息确定用户对所述移动终端握持的有效区域; 根据所述有效区域判断出用户通过左手或右手操作所述移动终端的结果信息; 根据所述结果信息调整所述移动终端界面。 可选的, 所述检测用户对移动终端的触摸信息, 包括: 通过传感器接收用户对所述移动终端的触摸感应信息, 将所述触摸感应信息转换 为所述握持信息。 可选的,所述根据所述握持信息确定用户对所述移动终端握持的有效区域,包括: 所述握持信息具体为电信号, 将所述电信号量化为二值化信号; 根据所述二值化信号确定用户对所述移动终端握持的有效区域。 可选的, 所述根据所述二值化信号确定用户对所述移动终端触摸的有效区域, 包 括: 对所述二值化信号进行滤波; 对滤波后的二值化信号进行处理, 得到用户对所述移动终端外壳的两个侧面触摸 的有效区域。 可选的, 所述对滤波后的二值化信号进行处理, 包括: 将所述二值化信号转换为二值图像, 将由连续有效点组成的二值图像区域标记为 待识别区域; 所述有效点为所述二值图像中的黑色像素点; 以所述待识别区域的竖直中间线作为为第一基准线; 在所述第一基准线竖直方向 上连续有效点的数量超过第一设定阈值情况下, 以所述竖直方向上连续有效点所在线 段的水平中间线为第二基准线, 当所述第二基准线水平方向上的连续有效点数量超过 第二设定阈值时, 将所述待识别区域作为为用户对所述移动终端外壳的两个侧面触摸 的有效区域。 可选的, 所述对滤波后的二值化信号进行处理, 还包括: 将所述二值化信号转换为二值图像, 将由连续有效点组成的二值图像区域标记为 待识别区域; 所述有效点为所述二值图像中的黑色像素点; 计算所述待识别区域的面积值, 将面积值超过第三设定阈值时所对应的待识别区 域作为为用户对所述移动终端外壳的两个侧面触摸的有效区域。 可选的, 所述根据所述有效区域判断出用户通过左手或右手操作所述移动终端的 结果信息, 包括: 计算所述有效区域的长度值, 得到长度值最大的有效区域; 根据所述长度值最大的有效区域在所述移动终端外壳上所处的位置, 得到用户通 过左手或右手操作所述移动终端的结果信息。 可选的, 所述根据所述结果信息调整所述移动终端界面, 包括: 当所述结果信息反映出用户通过左手操作移动终端时, 将所述移动终端的界面调 整为适应于左手操作的布局; 当所述结果信息反映出用户通过右手操作移动终端时, 将所述移动终端的界面调 整为适应于右手操作的布局。
第二方面, 本发明还提供了一种调整移动终端界面的装置, 包括: 检测模块, 设置为检测用户对移动终端的握持信息; 处理模块, 设置为根据所述握持信息确定用户对所述移动终端握持的有效区域; 判断模块, 设置为根据所述有效区域判断出用户通过左手或右手操作所述移动终 端的结果信息; 界面调整模块, 设置为根据所述结果信息调整所述移动终端界面。 可选的, 所述检测模块, 设置为通过传感器接收用户对所述移动终端的触摸感应 信息, 将所述触摸感应信息转换为所述握持信息。 可选的, 所述处理模块, 包括: 信号量化模块, 设置为将握持信息量化为二值化信号; 滤波模块, 设置为对所述二值化信号进行滤波; 信号处理模块, 设置为对滤波后的二值化信号进行处理, 得到用户对所述移动终 端外壳的两个侧面触摸的有效区域。
第三方面, 本发明又提供一种移动终端, 包括: 传感器, 设置为检测用户对移动终端的握持信息; 处理器, 设置为根据所述握持信息确定用户对所述移动终端握持的有效区域; 根 据所述有效区域判断出用户通过左手或右手操作所述移动终端的结果信息; 根据所述 结果信息调整所述移动终端界面。 采用上述技术方案, 本发明至少具有下列优点: 本发明所述调整移动终端界面的方法、 装置及终端, 通过动态的获取用户是左手 还是右手操作移动终端的信息, 相应的动态调整移动终端的界面, 以适应用户的操作 需求, 提高了用户体验。 附图说明 图 1 为本发明第 实施例中调整移动终端界面的方法流程图; 图 2 为本发明第 实施例中二值化图像示意图; 图 3 为本发明第 实施例中二值化信号示意图; 图 4为本发明第 实施例中对二值化信号处理的流程图; 图 5为本发明第二实施例中调整移动终端界面的装置示意图; 图 6为本发明第二实施例中处理模块 20的示意图; 图 7为本发明第三实施例中移动终端示意图。 具体实施方式 为更进一步阐述本发明为达成预定目的所采取的技术手段及功效, 以下结合附图 及较佳实施例, 对本发明进行详细说明如后。 本发明第一实施例, 一种调整移动终端界面的方法, 如图 1所示, 包括以下具体 步骤: 步骤 S101 , 检测用户对移动终端的握持信息。 具体的, 通过传感器接收用户对移动终端的触摸感应信息, 将触摸感应信息转换 为握持信息。 其中, 握持信息具体为电信号, 将电信号量化为二值化信号。 进一步的, 本发明在移动终端的两侧安装传感器。 其中, 传感器的种类不限于采 用: 电容传感器、 压力传感器和红外传感器。 可以根据实际的需要采用上述传感器或 其他传感器。 当用户单手用手操作移动终端时, 安装在移动终端两侧的传感器接收手对传感器 的触摸感应信息, 将触摸感应信息转换为电信号。 其中, 电信号包括电压信号或电流 信号等。 通过预先设定的阈值, 将该电信号转换为二值化信号, 用 0和 1表示, 即用 户对终端设备接触区域产生的信号用 1表示, 没有接触的区域用 0表示。 将传感器接 收到并转换的二值信号以图像的形式展现出来, 表现为二值图像, 即黑白图像, 黑色 用 1表示, 为用户对移动终端的有效接触点。 白色用 0表示, 将用户对移动终端触摸 的有效区域转换为二值图像。 其中, 二值图像是由二维数组组成的二值化信号, 如图 3所示。 步骤 S102, 根据所述握持信息确定用户对所述移动终端握持的有效区域。 其中, 握持信息具体为电信号, 将电信号量化为二值化信号, 根据二值化信号确定用户对所 述移动终端握持的有效区域。 具体的, 首先对二值化信号进行滤波处理。 对二值化信号滤波的目的在于对二值 化信号进行降噪, 以防止传感器在少数点上的检测错误, 即防止在二维数组中出现 0 和 1倒置的情况, 移动终端首先会对图像数组进行降噪处理, 从图像的角度看, 即消 除黑色区域中的白点。 对于噪声的检测方式, 可以采用以下两种方式: 第一种方式, 从竖直方向来看, 连续数量为 N个白点两端分别连续数量的 MU和
MD个黑点, 判定该点为噪点, 从数组角度来讲, 数组中有相邻的 N个数值为 0的元 素, 这 N个元素两端有 MU和 MD个数值为 1的元素, 判定该元素为噪点, 将该元素 值变为 1。 获得移动终端左右两侧的感应有效区域内的数组 al[M][N]和 ar[M][N]。 其 中, N小于一定的阀值, MU和 MD都要大于一定的阀值, 阈值大小的设定可根据实 际需要具体而定。 第二种方式, 检测二值图像中的黑色区域面积, 并对二值图像中的黑色区域进行 标记。 设定一个阈值 Sl, 将二值图像中黑色区域的面积依次与 SI进行比较, 将面积 不大于 S1的黑色区域标记为噪声, 将其转换为白色区域。 本发明还可以采用其他方法对二值化信号进行降噪处理, 本发明不限于此。 其次, 对滤波后的二值化信号进行处理, 得到用户对所述移动终端外壳的两个侧 面触摸的有效区域。 具体的,获取用户对移动终端两个侧面触摸的有效区域也可以采用以下两种方式。 第一种方式, 将二值化信号转换为二值图像, 将由连续有效点组成的二值图像区 域标记为待识别区域; 有效点为所述二值图像中的黑色像素点; 以待识别区域的竖直 中间线作为为第一基准线; 在第一基准线竖直方向上连续有效点的数量超过第一设定 阈值情况下, 以竖直方向上连续有效点所在线段的水平中间线为第二基准线, 当第二 基准线水平方向上的连续有效点数量超过第二设定阈值时, 将待识别区域作为为用户 对移动终端外壳的两个侧面触摸的有效区域。 具体的, 采用对连续 1的判断, 对数组数据进行连续的 1的数量的判断用以检测 用户皮肤接触移动终端两侧有效区域的长度, 从图像上来看, 就是通过十字形的黑色 像素点的判断来确定有效接触区, 即以图像中线为竖线, 在上面寻找连续的黑色像素 点, 当连续的黑色像素点个数大于某一阀值的时候, 在对该段区域进行横向的黑点判 断, 取该段连续黑点的中间位置, 判断其左右的连续黑色像素点个数, 如果该数目大 于某一阀值, 即以该中心点为基准存在一个黑色十字, 则判断该区域为有效接触区, 并记录该有效接触区的长度, 通过这样的方法分别获得手机两侧的有效接触区域。 进一步的, 二值化信号即由二维数组组成, 分别对数组中 al[M/2][i]和 ar[M/2][i] 判断是否为 1。 其中 i从 0开始递加, i小于 N。 并记录数组中连续为 1的黑色像素点 个数, 1作为二值图像中黑色像素点, 0作为二值图像中白色像素点, 将黑色像素点作 为二值图像中的有效点。 当连续为 1的黑色像素点个数大于某一阀值的时候, 对该数 组中黑色像素点的中间元素进行横向连 1判断, 假设数组中连续为 1的黑色像素点的 中间元素为 al[M/2][R], 则分别对 al[j][R]进行计算, 其中, j从 0开始递加, j小于 M。 当数组中连续为 1的黑色像素点的数量大于某一阀值的时候, 视该区域为用户对移动 终端触摸的有效区域,并将符合上述条件的移动终端左侧和右侧的有效区域个数存储, 分别存储于数组 tl[5]和 tr[5]中, 并分别记录移动终端两侧有效接触区与的个数。其中, al[M][N]和 ar[M][N]分别表示移动终端左右两侧的有效区域内的数组。 tl[5]和 tr[5]分别 表示移动终端左侧和右侧用户对移动终端触摸有效区域的数量。 第二种方式, 检测二值图像中的黑色区域面积, 并对二值图像中的黑色区域进行 标记。 其中, 由有效点即黑色像素点组成的区域为黑色区域。 设定一个阈值 S2, 将二 值图像中黑色区域的面积依次与 S2进行比较, 将面积大于 S2的黑色区域标记用户对 移动终端触摸的有效区域, 分别记录移动终端两侧有效区域的数量及各有效区域对应 的面积、 长度等信息。 步骤 S103 , 根据有效区域判断出用户通过左手或右手操作移动终端的结果信息。 具体的, 当获取移动终端两侧有效区域的后, 根据移动终端两侧的有效区域判断 用户是通过左手还是右手对移动终端的操作。 其中, 当用户单手操作时, 判断用户是 通过左手还是右手操作移动终端, 可以采用多种方法, 下面分别对用户手指位置的判 断和有效区域长度的判断, 得到用户通过左手或右手操作移动终端的结果信息。 进行拇指和其余四指位置的判断时, 通过人们使用手机时的各种特征进行判断, 这里采用了其中一种方法, 如图 2所示, 用户在使用手机的时候, 拇指和其余四指分 别位于手机的两侧, 对于拇指侧来说, 由于手掌的接触, 所以有效接触面为一条较长 的区域, 如果拇指也放在侧边, 那么有效接触区域为一条较长的接触区以及一条较短 的接触区。 而对于其余四指侧, 有效接触区域为几段分离的较短的接触区域或者没有 接触, 有效接触区域的数目为 0到 4。 如果某一侧的有效接触区域大于 2, 则判断该侧 为四指方向, 另一侧就是拇指侧。 如果手机两侧有效接触区域的个数都小于等于二, 分别取两端最长有效接触区域进行比较, 有效接触区域较长的为拇指侧。 具体根据移 动终端尺寸的大小, 现在的移动终端产品, 如智能手机等尺寸越来越大, 如果移动终 端的尺寸较大, 那么用户在单手操作时往往除大拇指的另外四个手指无法接触到移动 终端的另一侧, 或只有其中几个手指接触到移动终端的另一侧。 也可根据移动终端面 向的用户群体, 如果是女性或男性等。 也可以直接根据用户对移动终端触摸的有效长 度判断用户是左手还是右手操作手机。 本发明根据有效区域对用户左手或右手操作移 动终端的判断方法不限于此。 上述对二值化信号的处理, 得到用户是使用左手还是右手对移动终端的操作也可 根据图 4中得到。 步骤 S104, 根据结果信息调整移动终端界面。 具体的, 当得到用户通过左手或右手操作所述移动终端的结果信息后, 调整移动 终端的界面, 以适应用户左手还是右手操作手机。 当根据上述步骤得到用户是通过左手单手操作移动终端时, 移动终端的界面自动 调整为有利于左手操作的位置。 如, 将移动终端的删除、 选择等触摸的操作按键调整 到移动终端的左侧, 以最大程度的满足用户左手操作移动终端的需求,提高用户体验。 当用户切换到右手操作移动终端时, 移动终端动态的接收用户对其的触摸信息, 经过 计算得到用户右手操作移动终端的结果信息, 根据该结果信息自动调整移动终端的界 面, 以适应用户右手操作移动终端的方便需求, 提高用户体验。 本发明第二实施例, 一种调整移动终端界面的装置, 如图 5所示, 包括: 检测模块 10, 设置为检测用户对移动终端的握持信息。 具体的,检测模块 10检测用户对移动终端的触摸感应信息,将触摸感应信息转换 为握持信息。 其中, 握持信息具体为电信号。 当用户单手用手操作移动终端时,检测模块 10将触摸感应信息转换为电信号。其 中, 电信号包括电压信号或电流信号等。 处理模块 20, 设置为根据所述握持信息确定用户对所述移动终端握持的有效区 域。 具体的, 如图 6所示, 处理模块 20包括: 信号量化单元 21, 设置为将握持信息量化为二值化信号。 其中, 握持信息具体为 电信号, 信号量化单元 21将电信号量化为二值化信号。 滤波单元 22, 设置为对所述二值化信号进行滤波, 其目的在于对二值化信号进行 降噪。 信号处理单元 23, 设置为对滤波后的二值化信号进行处理, 得到用户对所述移动 终端外壳的两个侧面触摸的有效区域。 其中, 通过预先设定的阈值, 信号量化单元 21将电信号转换为二值化信号, 二值 化信号用 0和 1表示, 即用户对终端设备接触区域产生的信号用 1表示, 没有接触的 区域用 0表示。 将传感器接收到并转换的二值信号以图像的形式展现出来, 表现为二 值图像, 即黑白图像, 黑色用 1表示, 为用户对移动终端的有效接触点。 白色用 0表 示, 将用户对移动终端触摸的有效区域转换为二值图像。 其中, 二值图像是由二维数 组组成的二值化信号, 如图 3所示。 进一步的, 处理模块 20首先对二值化信号进行滤波处理。 处理模块 20对二值化 信号滤波的目的在于对二值化信号进行降噪, 以防止传感器在少数点上的检测错误, 即防止在二维数组中出现 0和 1倒置的情况, 移动终端首先会对图像数组进行降噪处 理, 从图像的角度看, 即消除黑色区域中的白点。 对于噪声的检测方式, 可以采用以下两种方式: 第一种方式, 从竖直方向来看, 连续数量为 N个白点两端分别连续数量的 MU和 MD个黑点, 判定该点为噪点, 从数组角度来讲, 数组中有相邻的 N个数值为 0的元 素, 这 N个元素两端有 MU和 MD个数值为 1的元素, 判定该元素为噪点, 将该元素 值变为 1。 获得移动终端左右两侧的感应有效区域内的数组 al[M][N]和 ar[M][N]。 其 中, N小于一定的阀值, MU和 MD都要大于一定的阀值, 阈值大小的设定可根据实 际需要具体而定。 第二种方式, 检测二值图像中的黑色区域面积, 并对二值图像中的黑色区域进行 标记。 设定一个阈值 Sl, 将二值图像中黑色区域的面积依次与 SI进行比较, 将面积 不大于 S1的黑色区域标记为噪声, 将其转换为白色区域。 本发明滤波单元 22还可以采用其他方法对二值化信号进行降噪处理,本发明不限 于此。 其次, 对滤波后的二值化信号进行处理, 得到用户对所述移动终端外壳的两个侧 面触摸的有效区域。 具体的,获取用户对移动终端两个侧面触摸的有效区域也可以采用以下两种方式。 第一种方式, 将二值化信号转换为二值图像, 将由连续有效点组成的二值图像区 域标记为待识别区域; 有效点为所述二值图像中的黑色像素点; 以待识别区域的竖直 中间线作为为第一基准线; 在第一基准线竖直方向上连续有效点的数量超过第一设定 阈值情况下, 以竖直方向上连续有效点所在线段的水平中间线为第二基准线, 当第二 基准线水平方向上的连续有效点数量超过第二设定阈值时, 将待识别区域作为为用户 对移动终端外壳的两个侧面触摸的有效区域。 具体的, 采用对连续 1的判断, 对数组数据进行连续的 1的数量的判断用以检测 用户皮肤接触移动终端两侧有效区域的长度, 从图像上来看, 就是通过十字形的黑色 像素点的判断来确定有效接触区, 即以图像中线为竖线, 在上面寻找连续的黑色像素 点, 当连续的黑色像素点个数大于某一阀值的时候, 在对该段区域进行横向的黑点判 断, 取该段连续黑点的中间位置, 判断其左右的连续黑色像素点个数, 如果该数目大 于某一阀值, 即以该中心点为基准存在一个黑色十字, 则判断该区域为有效接触区, 并记录该有效接触区的长度, 通过这样的方法分别获得手机两侧的有效接触区域。 进一步的, 二值化信号即由二维数组组成, 分别对数组中 al[M/2][i]和 ar[M/2][i] 判断是否为 1。 其中 i从 0开始递加, i小于 N。 并记录数组中连续为 1的黑色像素点 个数, 1作为二值图像中黑色像素点, 0作为二值图像中白色像素点, 将黑色像素点作 为二值图像中的有效点。 当连续为 1的黑色像素点个数大于某一阀值的时候, 对该数 组中黑色像素点的中间元素进行横向连 1判断, 假设数组中连续为 1的黑色像素点的 中间元素为 al[M/2][R], 则分别对 al[j][R]进行计算, 其中, j从 0开始递加, j小于 M。 当数组中连续为 1的黑色像素点的数量大于某一阀值的时候, 视该区域为用户对移动 终端触摸的有效区域,并将符合上述条件的移动终端左侧和右侧的有效区域个数存储, 分别存储于数组 tl[5]和 tr[5]中, 并分别记录移动终端两侧有效接触区与的个数。其中, al[M][N]和 ar[M][N]分别表示移动终端左右两侧的有效区域内的数组。 tl[5]和 tr[5]分别 表示移动终端左侧和右侧用户对移动终端触摸有效区域的数量。 第二种方式, 检测二值图像中的黑色区域面积, 并对二值图像中的黑色区域进行 标记。 其中, 由有效点即黑色像素点组成的区域为黑色区域。 设定一个阈值 S2, 将二 值图像中黑色区域的面积依次与 S2进行比较, 将面积大于 S2的黑色区域标记用户对 移动终端触摸的有效区域, 分别记录移动终端两侧有效区域的数量及各有效区域对应 的面积、 长度等信息。 判断模块 30, 设置为根据所述有效区域判断出用户通过左手或右手操作所述移动 终端的结果信息。 具体的, 当获取移动终端两侧有效区域的后,判断模块 30根据移动终端两侧的有 效区域判断用户是通过左手还是右手对移动终端的操作。 其中, 当用户单手操作时, 判断用户是通过左手还是右手操作移动终端, 可以采用多种方法, 下面分别对用户手 指位置的判断和有效区域长度的判断, 得到用户通过左手或右手操作移动终端的结果 信息。 进行拇指和其余四指位置的判断时, 通过人们使用手机时的各种特征进行判断, 这里采用了其中一种方法, 如图 2所示, 用户在使用手机的时候, 拇指和其余四指分 别位于手机的两侧, 对于拇指侧来说, 由于手掌的接触, 所以有效接触面为一条较长 的区域, 如果拇指也放在侧边, 那么有效接触区域为一条较长的接触区以及一条较短 的接触区。 而对于其余四指侧, 有效接触区域为几段分离的较短的接触区域或者没有 接触, 有效接触区域的数目为 0到 4。 如果某一侧的有效接触区域大于 2, 则判断该侧 为四指方向, 另一侧就是拇指侧。 如果手机两侧有效接触区域的个数都小于等于二, 分别取两端最长有效接触区域进行比较, 有效接触区域较长的为拇指侧。 具体根据移 动终端尺寸的大小, 现在的移动终端产品, 如智能手机等尺寸越来越大, 如果移动终 端的尺寸较大, 那么用户在单手操作时往往除大拇指的另外四个手指无法接触到移动 终端的另一侧, 或只有其中几个手指接触到移动终端的另一侧。 也可根据移动终端面 向的用户群体, 如果是女性或男性等。 也可以直接根据用户对移动终端触摸的有效长 度判断用户是左手还是右手操作手机。 本发明根据有效区域对用户左手或右手操作移 动终端的判断方法不限于此。 界面调整模块 40, 设置为根据所述结果信息调整所述移动终端界面。 具体的, 当得到用户通过左手或右手操作所述移动终端的结果信息后, 界面调整 模块 40调整移动终端的界面, 以适应用户左手还是右手操作手机 本发明第三实施例, 一种移动终端, 如图 7所示, 包括: 传感器 50, 设置为检测用户对移动终端的握持信息。 具体的,传感器 50检测用户对移动终端的触摸感应信息,将触摸感应信息转换为 握持信息。 其中, 握持信息具体为电信号, 将电信号量化为二值化信号。 进一步的, 传感器 50安装在移动终端的两个侧面。其中, 传感器的种类不限于采 用: 电容传感器、 压力传感器和红外传感器。 可以根据实际的需要采用上述传感器或 其他传感器。 处理器 60, 设置为根据握持信息确定用户对移动终端握持的有效区域; 根据有效 区域判断出用户通过左手或右手操作所述移动终端的结果信息; 根据结果信息调整所 述移动终端界面。 具体的, 处理器 60通过传感器 50接收用户对移动终端的触摸感应信息, 将触摸 感应信息转换为握持信息。 其中, 握持信息具体为电信号, 将电信号量化为二值化信 号; 根据二值化信号确定用户对移动终端握持的有效区域。 分别计算移动终端外壳的 两个侧面有效区域的长度值, 得到长度值最大的有效区域; 根据长度值最大的有效区 域在移动终端外壳上所处的位置,得到用户通过左手或右手操作移动终端的结果信息。 当结果信息反映出用户通过左手操作移动终端时, 将移动终端的界面调整为适应于左 手操作的布局; 当结果信息反映出用户通过右手操作移动终端时, 将移动终端的界面 调整为适应于右手操作的布局。 本发明实施例提供的调整移动终端界面的方法、 装置及终端, 通过动态的获取用 户是左手还是右手操作移动终端的信息, 能够动态的根据用户是左手还是右手操作来 调整移动终端的界面, 以适应用户的操作需求, 提高了用户体验。 通过具体实施方式的说明, 应当可对本发明为达成预定目的所采取的技术手段及 功效得以更加深入且具体的了解, 然而所附图示仅是提供参考与说明之用, 并非用来 对本发明加以限制。 工业实用性 如上所述, 本发明实施例提供的一种调整移动终端界面的方法、 装置及终端具有 以下有益效果: 通过动态的获取用户是左手还是右手操作移动终端的信息, 相应的动 态调整移动终端的界面, 以适应用户的操作需求, 提高了用户体验。

Claims

权 利 要 求 书 、 一种调整移动终端界面的方法, 包括: 检测用户对移动终端的握持信息;
根据所述握持信息确定用户对所述移动终端握持的有效区域; 根据所述有效区域判断出用户通过左手或右手操作所述移动终端的结果信 息;
根据所述结果信息调整所述移动终端界面。 、 根据权利要求 1所述的调整移动终端界面的方法, 其中, 所述检测用户对移动 终端的触摸信息, 包括:
通过传感器接收用户对所述移动终端的触摸感应信息, 将所述触摸感应信 息转换为所述握持信息。 、 根据权利要求 1所述的调整移动终端界面的方法, 其中, 所述根据所述握持信 息确定用户对所述移动终端握持的有效区域, 包括:
所述握持信息具体为电信号, 将所述电信号量化为二值化信号; 根据所述二值化信号确定用户对所述移动终端握持的有效区域。 、 根据权利要求 3所述的调整移动终端界面的方法, 其中, 所述根据所述二值化 信号确定用户对所述移动终端触摸的有效区域, 包括:
对所述二值化信号进行滤波;
对滤波后的二值化信号进行处理, 得到用户对所述移动终端外壳的两个侧 面触摸的有效区域。 、 根据权利要求 4所述的调整移动终端界面的方法, 其中, 所述对滤波后的二值 化信号进行处理, 包括:
将所述二值化信号转换为二值图像, 将由连续有效点组成的二值图像区域 标记为待识别区域; 所述有效点为所述二值图像中的黑色像素点; 以所述待识别区域的竖直中间线作为为第一基准线; 在所述第一基准线竖 直方向上连续有效点的数量超过第一设定阈值情况下, 以所述竖直方向上连续 有效点所在线段的水平中间线为第二基准线, 当所述第二基准线水平方向上的 连续有效点数量超过第二设定阈值时, 将所述待识别区域作为为用户对所述移 动终端外壳的两个侧面触摸的有效区域。 、 根据权利要求 4所述的调整移动终端界面的方法, 其中, 所述对滤波后的二值 化信号进行处理, 还包括:
将所述二值化信号转换为二值图像, 将由连续有效点组成的二值图像区域 标记为待识别区域; 所述有效点为所述二值图像中的黑色像素点; 计算所述待识别区域的面积值, 将面积值超过第三设定阈值时所对应的待 识别区域作为为用户对所述移动终端外壳的两个侧面触摸的有效区域。 、 根据权利要求 4所述的调整移动终端界面的方法, 其中, 所述根据所述有效区 域判断出用户通过左手或右手操作所述移动终端的结果信息, 包括:
计算所述有效区域的长度值, 得到长度值最大的有效区域;
根据所述长度值最大的有效区域在所述移动终端外壳上所处的位置, 得到 用户通过左手或右手操作所述移动终端的结果信息。 、 根据权利要求 7所述的调整移动终端界面的方法, 其中, 所述根据所述结果信 息调整所述移动终端界面, 包括: 当所述结果信息反映出用户通过左手操作移动终端时, 将所述移动终端的 界面调整为适应于左手操作的布局;
当所述结果信息反映出用户通过右手操作移动终端时, 将所述移动终端的 界面调整为适应于右手操作的布局。 、 一种调整移动终端界面的装置, 包括: 检测模块, 设置为检测用户对移动终端的握持信息;
处理模块, 设置为根据所述握持信息确定用户对所述移动终端握持的有效 区域;
判断模块, 设置为根据所述有效区域判断出用户通过左手或右手操作所述 移动终端的结果信息;
界面调整模块, 设置为根据所述结果信息调整所述移动终端界面。 、 根据权利要求 9所述调整移动终端界面的装置, 其中, 所述检测模块, 设置为 通过传感器接收用户对所述移动终端的触摸感应信息, 将所述触摸感应信息转 换为所述握持信息。 、 根据权利要求 9所述调整移动终端界面的装置, 其中, 所述处理模块, 包括: 信号量化单元, 设置为将握持信息量化为二值化信号; 滤波单元, 设置为对所述二值化信号进行滤波;
信号处理单元, 设置为对滤波后的二值化信号进行处理, 确定用户对所述 移动终端握持的有效区域。 、 一种移动终端, 包括: 传感器, 设置为检测用户对移动终端的握持信息;
处理器, 设置为根据所述握持信息确定用户对所述移动终端握持的有效区 域; 根据所述有效区域判断出用户通过左手或右手操作所述移动终端的结果信 息; 根据所述结果信息调整所述移动终端界面。
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