WO2017035796A1 - 一种转场帧的显示方法及终端 - Google Patents

一种转场帧的显示方法及终端 Download PDF

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Publication number
WO2017035796A1
WO2017035796A1 PCT/CN2015/088777 CN2015088777W WO2017035796A1 WO 2017035796 A1 WO2017035796 A1 WO 2017035796A1 CN 2015088777 W CN2015088777 W CN 2015088777W WO 2017035796 A1 WO2017035796 A1 WO 2017035796A1
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WO
WIPO (PCT)
Prior art keywords
transition
preset
pressure value
terminal
frame
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PCT/CN2015/088777
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English (en)
French (fr)
Inventor
徐杰
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2015/088777 priority Critical patent/WO2017035796A1/zh
Publication of WO2017035796A1 publication Critical patent/WO2017035796A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/63Control of cameras or camera modules by using electronic viewfinders
    • 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

Definitions

  • the present invention relates to the field of terminals, and in particular, to a method and a terminal for displaying a transition frame.
  • the embodiment of the invention discloses a display method and a terminal for a transition frame, which are used to solve the problem that the display of the existing transition frame cannot reflect the difference of the user operation, so as to improve the intelligence of the human-computer interaction.
  • a first aspect of the present invention provides a method for displaying a transition frame, including:
  • the terminal acquires a pressure value that the user acts on the transition activation area
  • the terminal determines a transition frame corresponding to the pressure value according to a preset rule
  • the terminal displays the determined transition frame.
  • the determining, by the terminal, the transition frame corresponding to the pressure value according to the preset rule is:
  • the terminal displays the determined transition frame as follows:
  • the terminal displays the determined one of the transition frames.
  • the determining, by the terminal, the transition frame corresponding to the pressure value according to the preset rule is:
  • the terminal displays the determined transition frame as follows:
  • the terminal displays the determined set of transition frames in a preset order and a preset speed.
  • the determining, by the terminal, the transition frame corresponding to the pressure value according to the preset rule includes:
  • the terminal determines a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame.
  • the terminal determines, according to a correspondence between a preset pressure value and a transition parameter, a transition corresponding to the pressure value
  • the parameters include:
  • the transition parameter, K represents a preset ratio of the preset transition opening threshold to the preset transition end threshold Y 2
  • X represents the pressure value.
  • the Y 2 is a user-defined transition end threshold.
  • the transition parameter includes a length, a color, a brightness, a viscosity, a transparency, and an area of a transition variable. At least one of volume, thickness, height, and speed.
  • a second aspect of the present invention provides a terminal, including:
  • An obtaining module configured to acquire a pressure value that the user acts on the transition active area
  • a determining module configured to determine, according to a preset rule, a transition frame corresponding to the pressure value when the pressure value is greater than a preset transition threshold
  • a display module configured to display the determined transition frame.
  • the determining module is configured to determine a transition frame corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame;
  • the display module is specifically configured to display the determined one of the transition frames.
  • the determining module is configured to determine a set of transition frames corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame, where the set of transition frames includes at least two transition frames ;
  • the display module is specifically configured to display the determined set of transition frames in a preset order and a preset speed.
  • the determining module is configured to determine a transition parameter corresponding to the pressure value according to a correspondence between a preset pressure value and a transition parameter;
  • the determining module is further configured to determine a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame.
  • the Y 2 is a user-defined transition end threshold.
  • the transition parameter includes a length, a color, a brightness, a viscosity, a transparency, and an area of a transition variable. At least one of volume, thickness, height, and speed.
  • the terminal acquires a pressure value that the user acts on the transition activation area; when the pressure value is greater than the preset transition threshold, the terminal determines the transition frame corresponding to the pressure value according to a preset rule.
  • the terminal displays the determined transition frame. It can be seen that the transition frame displayed by the terminal is related to the pressure value of the user acting in the transition active area, and the pressure applied by the user is different, and the corresponding transition frame is different, thereby increasing the interaction between the terminal and the user. Instead of displaying a fixed transition frame, the displayed transition frame realistically reflects the pressure of the user's press. The value increases the intelligence of human-machine operation.
  • FIG. 1 is a schematic diagram of an embodiment of a method for displaying a transition frame according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of another embodiment of a method for displaying a transition frame according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an application scenario of a method for displaying a transition frame according to an embodiment of the present disclosure
  • FIG. 2 is a schematic diagram of another application scenario of a method for displaying a transition frame according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of another application scenario of a method for displaying a transition frame according to an embodiment of the present disclosure
  • FIG. 3 is a schematic diagram of another embodiment of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of another embodiment of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 5-a is a schematic diagram of another embodiment of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 5-b is a schematic diagram of another application scenario of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 5-c is a schematic diagram of another application scenario of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 5-d is a schematic diagram of another application scenario of a method for displaying a transition frame according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • FIG. 7 is another schematic structural diagram of a terminal according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a terminal screen according to an embodiment of the present invention.
  • the embodiment of the invention discloses a display method and a terminal for a transition frame, which are used to solve the problem that the display process of the existing transition frame does not reflect the difference of the user operation, so as to improve the intelligence of human-computer interaction.
  • FIG. 8 is a schematic structural diagram of a screen of a terminal according to an embodiment of the present invention.
  • the touch screen and display screen of the terminal are integrated in a screen structure, and the screen 800 includes:
  • the conductive layer 804 is attached to the lower surface 8020 of the display screen 802;
  • the upper surface of the display screen is attached to the cover plate from the top layer of the terminal to the bottom layer of the terminal, and the conductive layer is attached to the lower surface of the display screen.
  • the materials required for the conductive layer in the embodiment of the present invention are relatively common, and only need to have conductivity. Therefore, some existing conductive materials can be effectively utilized without special pressure materials. This saves material costs to a large extent.
  • the conductive layer is attached to the lower surface of the display screen.
  • the metal middle frame 803 and the at least one gap form at least one capacitor, wherein a change in capacitance of the at least one capacitor reflects a magnitude of at least one pressure acting on the cover plate 801.
  • the conductive layer, the metal middle frame and the at least one gap form at least one capacitor
  • the conductive layer can be regarded as one plate of the capacitor
  • the metal middle frame can be regarded as the other plate of the capacitor, which can be used as the pressure sensing
  • the pressure sensing For example, when the user presses on the cover plate, a certain force is generated, and the force causes the conductive layer to be deformed, so that the distance between the two plates of the capacitor changes, so that the capacitance of the capacitor changes, and the capacitor can be further passed.
  • the change in capacitance reflects the amount of pressure acting on the cover.
  • the capacitor of the structure acts as a pressure sensor, which can induce a pressure of 60,000 steps from light press to heavy pressure, thereby identifying different The pressure of the order.
  • the change of the capacitance of the capacitor is proportional to the magnitude of the pressure. For example, the greater the change of the capacitance of the capacitor, the greater the pressure acting on the cover plate, or the cover plate is applied. The greater the pressure above, the greater the change in capacitance of the capacitor.
  • an embodiment of a method for displaying a transition frame in an embodiment of the present invention mainly includes: acquiring, by a terminal, a pressure value of a user acting in a transition active area; and when the pressure value is greater than a preset transition threshold And determining, by the terminal, a transition frame corresponding to the pressure value according to a preset rule; the terminal displays the determined transition frame.
  • the specific process is as follows:
  • the terminal acquires a pressure value that the user acts on the transition activation area.
  • the terminal may detect the magnitude of the force pressed by the user in the preset transition activation area, where the transition activation area indicates that the transition frame can be activated by the pressure.
  • the active area displayed the location of the area can be the same as the prior art, such as a button or an operation bar; for example, when a transition frame is used to represent a picture frame from one interface to another, the corresponding transition is activated.
  • the area may be a touch sensing area on the entire terminal screen; for example, when the transition frame is used to represent a changing frame from one state to another state, the corresponding transition active area may be a touch sensing area in which the entire link is located.
  • the transition field is used to indicate the change from the previous state to the next interface, or from the previous state to the next state on the same interface. For example, by clicking a link in the short message interface or the chat interface of the social APP, a corresponding webpage can be opened. After leaving the short message interface or the chat interface of the social APP, before entering the web interface, the terminal displays the transition content.
  • the transition content is composed of transition frames, and the transition content may be an animation composed of a plurality of transition frames, or may be an image text represented by a transition frame.
  • the terminal determines, according to a preset rule, a transition frame corresponding to the pressure value, when the pressure value is greater than a preset transition threshold.
  • the terminal is preset with a transition threshold.
  • the pressure value of the user acting in the transition activation region is greater than the preset transition threshold, the display of the transition frame can be started. Further, the terminal determines the pressure value according to the preset rule.
  • the corresponding transfer frame wherein the pressure value may correspond to one transition frame, or may correspond to multiple transition frames. In actual applications, multiple pressure values may be set corresponding to one transition frame.
  • the transition frame corresponding to the pressure value is determined according to a preset rule, and is not specifically limited herein.
  • the terminal displays the determined transition frame.
  • the determined transition frame is displayed, wherein when the determined transition frame is a transition frame, the transition frame is directly displayed, when the determined transition
  • the field frame is a plurality of transition frames
  • multiple transition frames may be displayed according to a preset speed and a preset order. The specifics may be determined according to actual applications, and are not specifically limited herein.
  • the transition frame in the embodiment of the present invention is related to the pressure value of the user acting in the transition active area, for example, the pressure reaches 5 cattle from 2 cows, and the user A presses faster than 0.5s.
  • user C applies a pressure of 4 N in the transition activation area then the specific transition frame corresponding to this pressure is seen, such as the transition frame. B, and the display stays in the transition frame B does not move, if the user applies a force again on any position of the screen (the transition activation area in this case), for example, 5 cattle, the corresponding transition of the 5 cattle is displayed.
  • a frame such as a transition frame L.
  • the embodiment describes a display method of a transition frame in detail, mainly The method includes: the terminal acquires a pressure value of the user acting in the transition activation area; and when the pressure value is greater than the preset transition threshold, the terminal determines the corresponding relationship between the preset pressure value and the transition frame. a transition frame corresponding to the pressure value; the terminal displays the determined one of the transition frames.
  • the specific process is as follows:
  • the terminal acquires a pressure value that the user acts on the transition activation area.
  • the step 201 is the same as or similar to the step 101 in the embodiment shown in FIG. 1. For details, refer to step 101, and details are not described herein again.
  • the terminal determines a transition frame corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame.
  • the terminal when the pressure value is greater than a preset transition threshold and does not exceed a preset transition threshold, the terminal corresponds to a preset pressure value and a transition frame. Determining a transition frame corresponding to the pressure value. When the pressure value is greater than the preset transition end threshold, the terminal determines a transition frame corresponding to the preset transition end threshold as a transition frame corresponding to the pressure value.
  • the terminal determines a corresponding one of the pressure values according to a correspondence between a preset pressure value and a transition frame.
  • the transition frame wherein the preset relationship between the pressure value and the transition frame includes: a transition frame corresponding to the pressure value greater than the preset transition end threshold is corresponding to the preset transition end threshold.
  • the transition frame is the transition frame X.
  • the corresponding transition frame is determined as the transition frame X according to the correspondence between the preset pressure value and the transition frame.
  • a to L respectively represent a transition frame.
  • the transition frame corresponding to the pressure value is a transition frame corresponding to the preset transition end threshold, that is, the transition frame L.
  • the terminal displays the determined one of the transition frames.
  • the terminal displays the determined one of the transition frames.
  • the display of the entire transition frame is related to the pressure exerted by the user on the transition active area, such as the direction of the transition frame (such as forward or backward), and the speed of the transition frame is completely displayed with the user.
  • the pressure-dependent action on the transition activation area is a good indication of the realism of pressure manipulation.
  • the terminal presets the correspondence between the pressure value and the transition frame.
  • the display of the entire transition frame is related to the pressure exerted by the user on the transition active area.
  • the user uses 0.5s from 3.8 cattle to 5.0.
  • the display of the specific transition frame is shown in Figure 2-c.
  • the user uses 1s from 3.8 cattle to 5.0.
  • the display of the specific transition frame is shown in Figure 2-d. Shown. Among them, the shaded portions shown in Figures 2-b and 2-c are variable portions in the transition frame, and other portions that are immutable may also be included in each transition frame. It can be seen that the display of the transition frame is determined according to the pressure value of the user in the transition activation area, which restores the real world operation experience and increases the intelligence of human-computer interaction.
  • the transition field in the embodiment of the present invention Another embodiment of the display method of the frame, the embodiment describes the display method of the transition frame in detail, which mainly includes: the terminal acquires the pressure value of the user acting in the transition active area; when the pressure value is greater than the preset When the transition threshold is turned on, the terminal determines a set of transition frames corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame, where the set of transition frames includes at least two transitions a frame; the terminal displays the determined set of transition frames in a preset order and a preset speed.
  • the specific process is as follows:
  • the terminal acquires a pressure value that the user acts on the transition activation area.
  • the step 301 is the same as or similar to the step 101 in the embodiment shown in FIG. 1. For details, refer to step 101, and details are not described herein again.
  • the terminal determines a set of transition frames corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame.
  • the set of transition frames includes at least two transition frames, and the set of transition frames may be preset consecutive multiple transition frames, or may be preset multiple discontinuous transition frames. This is not specifically limited.
  • the terminal when the pressure value is greater than a preset transition threshold and does not exceed a preset transition threshold, the terminal corresponds to a preset pressure value and a transition frame. A set of transition frames corresponding to the pressure values are determined. When the pressure value is greater than the preset transition end threshold, the terminal determines a set of transition frames corresponding to the preset transition end threshold as a set of transition frames corresponding to the pressure value.
  • the terminal determines a corresponding one of the pressure values according to a correspondence between a preset pressure value and a transition frame.
  • the group transition frame wherein the pressure value may be greater than a preset transition end threshold, and may be less than a preset transition end threshold.
  • the pressure value is greater than a preset transition end threshold, according to a preset pressure value
  • the correspondence between the transition frames determines that the set of transition frames corresponding to the pressure value is a set of transition frames corresponding to the preset transition end threshold.
  • the terminal determines all the number of transition frames according to the transition threshold, the transition threshold, and the pressure sensitivity.
  • the pressure value corresponds to four transition frames), as shown in the following table:
  • a to H respectively represent a transition frame, and a pressure value corresponds to a set of transition frames, and each set of transition frames includes two transition frames.
  • the pressure value is greater than 4.2, the pressure field corresponds to the transition frame. It is a transition frame corresponding to the preset transition end threshold, that is, the set of transition frames composed of G and H.
  • the terminal displays the determined set of transition frames in a preset order and a preset speed.
  • the terminal displays the determined set of transition frames in a preset order and a preset speed.
  • the speed at which each group of transition frames is displayed by the terminal can be preset to be the same, and in a preset order, such as the interval between A and B and between C and D, between E and F.
  • the interval between G and H is the same, and the display order is displayed in alphabetical order.
  • the terminal may also display the determined set of transition frames according to the display order and speed corresponding to the preset user pressure value, for example, the pressure value 3.9 corresponds to the display speed V1, the pressure value 4.0 corresponds to the display speed V2, and the pressure value is 4.1.
  • the display order is displayed in alphabetical order; or the pressure values 3.9 and 4.0 correspond to the display speed V1; the pressure values 4.1 and 4.2 correspond to the display speed V2, and the display order is displayed in reverse alphabetical order. This is not specifically limited.
  • the corresponding set of transition frames is determined by the pressure value of the user's action, which can reflect the user's real pressure operation and increase the interaction between the terminal and the user, instead of displaying only the fixed transition frame, thereby being realistic.
  • the pressure operation of the user pressing process is presented to increase the intelligence of human-computer interaction.
  • the method includes: the terminal acquires a pressure value of the user acting in the transition activation area; and when the pressure value is greater than the preset transition threshold, the terminal determines the corresponding relationship between the preset pressure value and the transition parameter. a transition parameter corresponding to the pressure value; the terminal determines a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame; and the transition frame determined by the terminal Display.
  • the specific process is as follows:
  • the terminal acquires a pressure value that the user acts on the transition activation area.
  • the step 401 is the same as or similar to the step 101 in the embodiment shown in FIG. 1. For details, refer to step 101, and details are not described herein again.
  • the terminal determines a transition parameter corresponding to the pressure value according to a correspondence between a preset pressure value and a transition parameter.
  • the terminal when the pressure value is greater than a preset transition opening threshold and does not exceed a preset transition end threshold, the terminal is configured according to a preset pressure value and a transition parameter.
  • the correspondence between the determinations determines the transition parameters corresponding to the pressure values.
  • the terminal determines the transition parameter corresponding to the preset transition end threshold as the transition parameter corresponding to the pressure value.
  • the terminal determines the rotation corresponding to the pressure value according to a correspondence between a preset pressure value and a transition parameter.
  • the field parameter wherein the pressure value may be greater than a preset transition end threshold, and may be less than a preset transition end threshold.
  • the pressure value is greater than a preset transition end threshold, according to a preset pressure value and a transition
  • the correspondence between the frames determines that the transition parameter corresponding to the pressure value is a transition parameter corresponding to the preset transition end threshold.
  • the transition parameter includes at least one of length, color, brightness, viscosity, transparency, area, volume, thickness, height, and speed of the transition variable.
  • the transition variable may be one or more specific objects or contents in the transition frame.
  • the transition parameters may be other parameters, such as speed, etc., and are not specifically limited herein.
  • the length of a specific object in the transition frame, the display color of the entire or partial content of the transition frame or the display color of a specific object in the transition frame, the display brightness of the entire or partial content of the transition frame or the display brightness of the specific object, the transition Display viscosity of frame-specific objects, display transparency of whole or partial content of transition frames or display transparency of specific objects; display area of specific objects in transition frames; display volume of specific objects in transition frames; specific objects in transition frames Display thickness; display height of specific content in a transition frame or display height of a specific object; display speed of a specific object in a transition frame, and the like.
  • the transition parameter may be a parameter, or the transition parameter is any combination of multiple parameters.
  • the transition parameter is a combination of speed and radius, and corresponds when the pressure value changes. The display speed and radius of the transition frame change.
  • the terminal determines, according to a correspondence between a preset transition parameter and a transition frame, a transition frame corresponding to the pressure value.
  • step 402 and step 403 for example, when the preset transition threshold is 3.8, and the preset transition threshold is 4.5, the terminal determines all transition parameters according to the transition threshold and the transition end threshold. Then, according to the correspondence between the preset transition parameters and the transition frame, all the transition frames are determined, as follows:
  • a to G respectively represent a transition frame.
  • the transition frame corresponding to the pressure value is a transition frame corresponding to the preset transition end threshold.
  • the transition parameter is b (b, for example, the display brightness is 2; b, for example, the area is 30%; b, for example, the color is light purple).
  • the above table can determine that the transition frame is B (for example, B represents a transition frame in which a specific object, such as a group of cartoon characters, has a display brightness of 2 levels; for example, B represents a transition frame, where A specific object in a transition frame, such as a circle, has a display area of 30%; for example, B represents a transition frame in which content is displayed, such as the entire transition frame, and the display color is light purple).
  • the terminal displays the determined transition frame.
  • the terminal displays the determined transition frame.
  • the transition parameter corresponding to the pressure value is determined according to the pressure value of the transition active area of the user, and the corresponding relationship between the preset transition parameter and the transition frame is further adopted, for example, receiving the 4.0 cow applied by the user.
  • the pressure shows the transition frame B. If the user applies another 3.9 ton of pressure on the transition frame B interface, the transition frame A is displayed. If a 3.9-4.5 ox is continuously applied on the transition frame A interface. The pressure corresponds to the display transition frame AG. If the transition frame A-G constitutes a transition animation, from the user's point of view, different pressures can be applied to see different display effects. The faster the pressure is increased, the faster the animation is played, and the smaller the pressure is, the animation is played back. Therefore, the interaction between the terminal and the user is increased, and the fixed transition frame is no longer displayed, thereby realistically presenting the real effect of the user's pressure control and increasing the intelligence of human-computer interaction.
  • FIG. 5-a another embodiment of a method for displaying a transition frame in the embodiment of the present invention is performed in detail.
  • the description mainly includes: the terminal acquires a pressure value of the user acting in the transition activation area; and when the pressure value is greater than the preset transition opening threshold, the terminal determines the transition corresponding to the pressure value according to the preset objective function. a parameter R X ; the terminal determines a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame; and the terminal displays the determined transition frame.
  • the specific process is as follows:
  • the terminal acquires a pressure value that the user acts on the transition activation area.
  • the step 501 is the same as or similar to the step 101 in the embodiment shown in FIG. 1. For details, refer to step 101, and details are not described herein again.
  • the terminal determines a transition parameter corresponding to the pressure value according to a preset target function.
  • the parameter K represents a preset ratio of the preset transition opening threshold to the Y 2
  • X represents the pressure value.
  • transition parameters can also be determined in the form of a correspondence table, as shown in the following table:
  • the Y 2 is a user-defined transition end threshold. Since K is preset by the terminal, when the user customizes the adjustment Y 2 , the corresponding preset transition threshold is also changed, and the user can adjust the transition opening and ending thresholds according to the size of the finger force. Thereby effectively improving the user experience.
  • the transition parameter includes at least one of length, color, brightness, viscosity, transparency, area, volume, thickness, height, and speed of the transition parameter.
  • transition parameters may be other parameters, such as speed, etc., and are not specifically limited herein. Reference can be made to the description of the above embodiments.
  • the transition parameter can be a parameter, or any combination of several parameters.
  • the transition parameter is a combination of speed and radius.
  • the pressure value changes, the display speed and radius of the corresponding transition frame are followed. Change has taken place.
  • the terminal determines, according to a correspondence between a preset transition parameter and a transition frame, a transition frame corresponding to the pressure value.
  • the terminal determines a transition frame corresponding to the pressure value according to a correspondence between the preset transition parameter and the transition frame.
  • the radius of the transition parameter is still taken as an example, as follows:
  • a to G respectively represent a transition frame
  • the rotation parameter corresponding to the pressure value is a transition parameter corresponding to the preset transition end threshold, and therefore, according to the preset transition parameter Corresponding relationship with the transition frame, when the pressure value is greater than 5.0, the transition frame corresponding to the transition parameter is the transition frame corresponding to the transition parameter corresponding to the preset transition end threshold, such as a transition frame.
  • the terminal displays the determined transition frame.
  • the terminal displays the determined transition frame.
  • the transition parameter corresponding to the pressure value is determined according to the pressure value of the transition active area of the user, and the corresponding value of the pressure value is further determined by the corresponding relationship between the preset transition parameter and the transition frame.
  • Field frame which increases the interaction between the terminal and the user, instead of the display being fixed.
  • the transition frame which realistically presents the real effect of user pressure control, increases the intelligence of human-computer interaction.
  • the radius of the transition parameter is taken as an example.
  • the larger the pressure value, the larger the corresponding radius, and the transition field has a corresponding relationship with the transition frame. That is, the larger the pressure value is, the corresponding transition frame corresponding to the radius is displayed. Therefore, the display of the transition frame is determined according to the pressure value of the transition active region of the user, and the effect corresponding to the pressure operation is well exhibited.
  • the pressure value is displayed on the terminal interface.
  • the transition frame corresponding to the radius as shown in Figure 5-c, the larger white circle portion A (ie, there is no fully formed white circle), wherein when the pressure value applied by the user is greater than or equal to the end of the preset transition At the threshold, the circle A and the circle B (ie, the smaller white circle) are circumscribed.
  • the radius of the corresponding circle is relatively small (ie, there is no circle yet) B phase is cut out).
  • the pressure value applied by the user is greater than the preset transition opening threshold and less than or equal to the preset transition end threshold, the greater the pressure value, the larger the radius, as shown in FIG. 5-d, wherein, when the user When the applied pressure value is less than the preset transition end threshold, the radius corresponding to the radius corresponding to the transition frame, such as the circle C (ie, the circle that is the farthest from the circle B is lighter), wherein the circle B (ie, : Smaller white circle), when the pressure value applied by the user is larger, the corresponding radius is larger, that is, the corresponding circle A, as in the circle closest to the circle B in Figure 5-d, when the pressure value applied by the user is greater than Or equal to the preset transition end threshold, the circle A and the circle B (ie: the smaller white circle) are circumscribed, visible, from the user's point of view, applying different pressures can see different display effects, thus increasing The interaction between the terminal and the user is no longer a display of a fixed transition frame, thereby
  • an embodiment of the terminal 600 in the embodiment of the present invention includes: an obtaining module 601, a determining module 602, and a display module 603.
  • the obtaining module 601 is configured to acquire a pressure value that the user acts on the transition active area
  • a determining module 602 configured to: when the pressure value is greater than a preset transition threshold, according to a preset gauge Determining a transition frame corresponding to the pressure value;
  • the display module 603 is configured to display the transition frame determined by the determining module 602.
  • the transition frame in the embodiment of the present invention is related to the pressure value of the user acting in the transition active area, for example, the pressure reaches 5 cattle from 2 cows, and the user A presses faster than 0.5s.
  • transition frame B the specific transition frame corresponding to the pressure is seen, such as the transition frame B, and the display stays in the transition frame B does not move, if The user applies a force again on any position of the screen (the transition activation area in this case), for example 5 cows, to display the transition frame corresponding to the 5 cows, for example, the transition frame L.
  • the interaction between the terminal and the user is increased, instead of simply displaying through a fixed transition frame, thereby realistically presenting the magnitude and change of the pressure value in the user pressing process, and effectively improving the intelligence of human-computer interaction.
  • the determining module 602 is specifically configured to determine, according to a preset relationship between the preset pressure value and the transition frame, a transition frame corresponding to the pressure value;
  • the display module 603 is specifically configured to display the one transition frame determined by the determining module 602.
  • the display of the entire transition frame is related to the pressure exerted by the user on the transition active area, such as the direction of the transition frame (such as forward or backward), and the speed of the transition frame is completely displayed with the user. Acting on the pressure-dependent activation area of the transition, it is a good way to restore the real world operating experience and increase the intelligence of human-computer interaction.
  • the determining module 602 is specifically configured to determine, according to a preset relationship between a preset pressure value and a transition frame, a set of transition frames corresponding to the pressure value, where the group The transition frame includes at least two transition frames;
  • the display module 603 is specifically configured to display the set of transition frames determined by the determining module 602 according to a preset sequence and a preset speed.
  • the user's real pressure operation can be embodied, thereby increasing the interaction between the terminal and the user, instead of displaying only
  • the fixed transition frame which realistically presents the pressure operation during the user press, increases the intelligence of human-computer interaction.
  • the determining module 602 is specifically configured to determine a transition parameter corresponding to the pressure value according to a correspondence between a preset pressure value and a transition parameter;
  • the transition parameter includes at least one of length, color, brightness, viscosity, transparency, area, volume, thickness, height, and speed of the transition variable.
  • the transition variable may be one or more specific objects or contents in the transition frame.
  • the transition parameters may be other parameters, such as speed, etc., and are not specifically limited herein.
  • the length of a specific object in the transition frame, the display color of the entire or partial content of the transition frame or the display color of a specific object in the transition frame, the display brightness of the entire or partial content of the transition frame or the display brightness of the specific object, the transition Display viscosity of frame-specific objects, display transparency of whole or partial content of transition frames or display transparency of specific objects; display area of specific objects in transition frames; display volume of specific objects in transition frames; specific objects in transition frames Display thickness; display height of specific content in a transition frame or display height of a specific object; display speed of a specific object in a transition frame, and the like.
  • the transition parameter may be a parameter, or the transition parameter is any combination of multiple parameters.
  • the transition parameter is a combination of speed and radius, and corresponds when the pressure value changes. The display speed and radius of the transition frame change.
  • the determining module 602 is further configured to determine a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame.
  • the display module 603 is configured to display the transition frame determined by the determining module 602.
  • the transition parameter corresponding to the pressure value is determined according to the pressure value of the transition active area of the user, and the corresponding relationship between the preset transition parameter and the transition frame is further adopted, for example, receiving the 4.0 cow applied by the user.
  • the pressure shows the transition frame B. If the user applies another 3.9 ton of pressure on the transition frame B interface, the transition frame A is displayed. If a 3.9-4.5 ox is continuously applied on the transition frame A interface. The pressure corresponds to the display transition frame AG. If the transition frame A-G constitutes a transition animation, then from the user's point of view, different pressures can be applied to see different display effects, and the pressure increases. The faster the animation plays, the faster the animation will be. Therefore, the interaction between the terminal and the user is increased, and the fixed transition frame is no longer displayed, thereby realistically presenting the real effect of the user's pressure control and increasing the intelligence of human-computer interaction.
  • R 2 represents a transition parameter corresponding to the preset transition end threshold Y 2
  • K represents a preset ratio of the preset transition opening threshold to the preset transition end threshold Y 2 , Indicates the pressure value.
  • the display module 603 is configured to display the transition frame determined by the determining module 602.
  • the Y 2 is a user-defined transition end threshold.
  • the transition parameters include at least one of length, color, brightness, viscosity, transparency, area, volume, thickness, height, speed of the transition variable.
  • transition parameters may be other parameters, such as speed, etc., and are not specifically limited herein. Reference may be made to the description in the embodiment shown in FIG.
  • the transition parameter can be a parameter, or any combination of several parameters.
  • the transition parameter is a combination of speed and radius.
  • the pressure value changes, the display speed and radius of the corresponding transition frame are followed. Change has taken place.
  • the transition field corresponding to the pressure value is determined according to the pressure value of the transition active area of the user, and the transition frame corresponding to the pressure value is further determined by the correspondence between the preset transition parameter and the transition frame. Therefore, the interaction between the terminal and the user is increased, instead of displaying a fixed transition frame, thereby realistically presenting the real effect of the user's pressure control and increasing the intelligence of human-computer interaction.
  • a terminal 700 includes: a memory 701, which is processed. 702, a transmitter 703 and a receiver 704, and a display 705; wherein the memory 701 is coupled to the processor 702, the processor 702 is coupled to the transmitter 703, and the processor 702 is coupled to the receiver The device 704 is connected, and the display 705 is connected to the processor 702;
  • the processor 702 is configured to execute, for example, by calling an operation instruction stored in the memory 701.
  • the solution described in the above method embodiment for example:
  • the processor 702 determines, according to a preset rule, a transition frame corresponding to the pressure value, when the pressure value is greater than a preset transition threshold;
  • the display 705 displays the determined transition frame.
  • the processor 702 determines a transition frame corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame;
  • the display 705 displays the determined transition frame as follows:
  • the display 705 displays the determined one of the transition frames.
  • the determining, by the processor 702, the transition frame corresponding to the pressure value according to the preset rule is:
  • the processor 702 determines a set of transition frames corresponding to the pressure value according to a correspondence between a preset pressure value and a transition frame, where the set of transition frames includes at least two transition frames;
  • the display 705 displays the determined transition frame as follows:
  • the display 705 displays the determined set of transition frames in a preset order and a preset speed.
  • the determining, by the processor 702, the transition frame corresponding to the pressure value according to the preset rule includes:
  • the processor 702 determines a transition parameter corresponding to the pressure value according to a correspondence between a preset pressure value and a transition parameter;
  • the processor 702 determines a transition frame corresponding to the pressure value according to a correspondence between a preset transition parameter and a transition frame.
  • the determining, by the processor 702, the transition parameters corresponding to the pressure value according to the correspondence between the preset pressure value and the transition parameter includes:
  • the processor 702 determines, according to a correspondence between a preset transition parameter and a transition frame.
  • the transition frame corresponding to the pressure value.
  • the transition frame in the embodiment of the present invention is related to the pressure value of the user acting in the transition active area, and the pressure applied by the user is different, and the corresponding transition frame is different, thereby increasing the relationship with the user.
  • the interaction instead of displaying a fixed transition frame, realistically presents the pressure value of the user's pressing, increasing the intelligence of human-computer interaction.
  • the disclosed system, apparatus, and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of cells is only a logical function division.
  • multiple units or components may be combined or integrated. Go to another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separate, and the components displayed as units may 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 achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • An integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, can be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

公开了一种转场帧的显示方法,用于解决现有的转场帧的显示无法体现真实操作体验的问题,以提高人机交互的智能性。所述方法包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;所述终端将确定的所述转场帧进行显示。

Description

一种转场帧的显示方法及终端 技术领域
本发明涉及终端领域,具体涉及一种转场帧的显示方法及终端。
背景技术
在智能终端特别是触屏终端上,屏幕压力感应技术将会逐渐普及,在压力感应方案设计过程中如何更好的还原真实世界的操作体验,必然成为一个重要的课题。现有的操作转场动画,动画总时长是固定的,系统识别到触发转场后开始播放转场帧,转场动画或转场画面播放的过程和用户是没有互动的,仅是作为界面切换的视觉上的一种缓冲方式。
由于现有的转场动画或画面的显示时长是固定的,转场动画或画面播放过程和用户是没有互动的,无法体现出真实世界的操作体验。
发明内容
本发明实施例公开了一种转场帧的显示方法及终端,用于解决现有的转场帧的显示无法体现用户操作差异的问题,以提高人机交互的智能性。
本发明第一方面提供一种转场帧的显示方法,包括:
终端获取用户作用于转场激活区域内的压力值;
当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;
所述终端将确定的所述转场帧进行显示。
结合第一方面,在第一种可能的实现方式中,所述终端根据预设规则确定所述压力值对应的转场帧具体为:
所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
所述终端将确定的所述转场帧进行显示具体为:
所述终端将确定的所述一个转场帧进行显示。
结合第一方面,在第二种可能的实现方式中,所述终端根据预设规则确定所述压力值对应的转场帧具体为:
所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
所述终端将确定的所述转场帧进行显示具体为:
所述终端将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
结合第一方面,在第三种可能的实现方式中,所述终端根据预设规则确定所述压力值对应的转场帧包括:
所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
结合第一方面的第三种可能的实现方式,在第四种可能的实现方式中,所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数包括:
所述终端根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示预设的转场结束阈值,R1表示所述预设转场开启阈值对应的转场参数,所述R2表示所述预设的转场结束阈值Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
结合第一方面的第四种可能的实现方式,在第五种可能的实现方式中,所述Y2为用户定义的转场结束阈值。
结合第一方面的第三种至第五种任一可能的实现方式,在第六种可能的实现方式中,所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
本发明第二方面提供一种终端,包括:
获取模块,用于获取用户作用于转场激活区域内的压力值;
确定模块,用于当所述压力值大于预设转场开启阈值时,根据预设规则确定所述压力值对应的转场帧;
显示模块,用于将确定的所述转场帧进行显示。
结合第二方面,在第一种可能的实现方式中,
所述确定模块,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
所述显示模块,具体用于将确定的所述一个转场帧进行显示。
结合第二方面,在第二种可能的实现方式中,
所述确定模块,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
所述显示模块,具体用于将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
结合第二方面,在第三种可能的实现方式中,
所述确定模块,具体用于根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
所述确定模块,具体还用于根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
结合第二方面的第三种可能的实现方式,在第四种可能的实现方式中,所述确定模块,具体用于根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示所述预设的转场结束阈值,R1表示所述预设转场开启阈值对应的转场参数,所R2表示预设的转场结束阈值Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
结合第二方面的第四种可能的实现方式,在第五种可能的实现方式中,所述Y2为用户定义的转场结束阈值。
结合第二方面的第三种至第五种任一可能的实现方式,在第六种可能的实现方式中,所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
应用以上技术方案,终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;所述终端将确定的所述转场帧进行显示。可见,终端显示的转场帧与用户作用于转场激活区域内的压力值相关,用户施加的压力大小不同,对应显示的转场帧也就不相同,从而增加了终端与用户之间的互动,而不再是显示固定不变的转场帧,从而使得显示的转场帧逼真地反映出用户压按的压力 值,增加了人机操作的智能性。
附图说明
图1为本发明实施例中转场帧的显示方法的一个实施例示意图;
图2-a为本发明实施例中转场帧的显示方法的另一个实施例示意图;
图2-b为本发明实施例中转场帧的显示方法的一个应用场景示意图;
图2-c为本发明实施例中转场帧的显示方法的另一个应用场景示意图;
图2-d为本发明实施例中转场帧的显示方法的另一个应用场景示意图;
图3为本发明实施例中转场帧的显示方法的另一个实施例示意图;
图4为本发明实施例中转场帧的显示方法的另一个实施例示意图;
图5-a为本发明实施例中转场帧的显示方法的另一个实施例示意图;
图5-b为本发明实施例中转场帧的显示方法的另一个应用场景示意图;
图5-c为本发明实施例中转场帧的显示方法的另一个应用场景示意图;
图5-d为本发明实施例中转场帧的显示方法的另一个应用场景示意图;
图6为本发明实施例中终端的一个结构示意图;
图7为本发明实施例中终端的另一个结构示意图;
图8为本发明实施例中终端屏幕的一个结构示意图。
具体实施方式
本发明实施例公开了一种转场帧的显示方法及终端,用于解决现有的转场帧的显示过程没有体现用户操作的差异的问题,以提高人机交互的智能性。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域技术人员在没有作出创造性劳动前提下所获取的所有其他实施例,都属于本发明保护的范围。
本发明的技术方案,应用于任何能够感知压力大小的终端或电子设备,比如智能手机、ipad,可穿戴产品和个人电脑等,此处不做具体限定。终端可以采用现有的压力传感器进行压力感知;也可以采用特定的压力感知屏进行感知。例如可以是如专利申请号为PCT/CN2015/088009,标题为“一种终端“中记载的可感知压力的终端。作为示例,图8为本发明实施例中一种终端的屏幕的结构示意图。该终端的触摸屏和显示屏集成于屏幕结构中,屏幕800包括:
盖板801、显示屏802和金属中框803,其中,所述显示屏802位于所述盖板801和所述金属中框803之间,所述金属中框803接地,所述终端屏幕800还包括:
导电层804,所述导电层804贴合于所述显示屏802的下表面8020;
如图8所示,可以理解的是,从终端顶层到终端底层的垂直方向上看,显示屏的上表面与盖板贴合,而导电层与显示屏的下表面贴合。
与现有技术不同的是,本发明实施例中导电层所需的材料比较普遍,只需要具有导电性即可,因此,可以有效利用现有的一些导电材料,而不需要专用的压力材料,从而在很大程度上节约了材料成本。
进一步,将导电层贴合在显示屏的下表面。
如图8所示,所述导电层804和所述金属中框803之间存在至少一个间隙(如图8中导电层与金属中框之间的空白区域),其中,所述导电层804、所述金属中框803和所述至少一个间隙形成至少一个电容器,其中,所述至少一个电容器的电容变化反应出作用于所述盖板801上的至少一个压力的大小。
可以理解的是,导电层、金属中框和至少一个间隙形成至少一个电容器,导电层可看作电容器的一个极板,金属中框可看作电容器的另一个极板,该电容器可作为压力感应器,比如:用户在盖板上按压时产生一定的力,力的作用导致导电层发生形变,使得电容器的两个极板之间的距离发生改变,从而电容器的电容发生变化,进一步可通过电容器的电容的变化反映出作用在盖板上的压力的大小,比如,该结构的电容器作为压力感应器,可以感应出从轻按到重压之间的6万阶的压力,从而可以识别出不同阶的压力。
可以理解的是,电容器的电容的变化与压力的大小成正比例关系,比如,电容器的电容的变化越大,则反应出作用于所述盖板上的压力越大,或者作用于所述盖板上的压力越大,则导致电容器的电容的变化越大。
请参阅图1,本发明实施例中转场帧的显示方法的一个实施例,主要包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;所述终端将确定的所述转场帧进行显示。具体过程如下:
101、终端获取用户作用于转场激活区域内的压力值;
其中,当用户按压终端的转场激活区域时,所述终端可以检测出用户在预设的转场激活区域内按压的力的大小,其中,转场激活区域表示通过压力可激活转场帧进行显示的活动区域:该区域的位置可以与现有技术相同,比如是一个按键或操作条等;比如:转场帧用以表示从一个界面到另一个界面的画面帧时,对应的转场激活区域可以是整个终端屏幕上的触摸感应区域;比如:转场帧用以表示从一个状态到另一个状态的变化帧时,对应的转场激活区域可以为整个链接所在的触摸感应区域。在本发明实施例中,转场用于表示上一个界面到下一个界面,或者是同一个界面上从上一个状态到下一个状态的变化过程。例如在短消息界面或社交APP的聊天界面中点击一个链接,就可以打开一个对应的网页。离开短消息界面或社交APP的聊天界面之后,进入网页界面之前,终端所显示的就是转场内容。转场内容由转场帧组成,转场内容可以是由多个转场帧构成的动画,也可以是由一个转场帧体现的图片文字等。
102、当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;
其中,终端预先设置有转场开启阈值,当用户作用于转场激活区域内的压力值大于预设转场开启阈值时,才能启动转场帧的显示,进一步,终端根据预设规则确定压力值对应的转账帧,其中,该压力值可以对应一个转场帧,也可以对应多个转场帧,在实际应用中,还可设置多个压力值对应一个转场帧。具体根据预设规则来确定压力值对应的转场帧,此处不做具体限定。
103、所述终端将确定的所述转场帧进行显示。
进一步,当终端确定压力值对应的转场帧后,将确定的转场帧进行显示,其中,当确定的转场帧是一个转场帧时,直接显示该个转场帧,当确定的转场帧是多个转场帧时,可按照预设速度和预设顺序对多个转场帧进行显示。具体可根据实际应用而定,此处不做具体限定。
与现有技术不同的是,本发明实施例中的转场帧与用户作用于转场激活区域内的压力值相关,比如压力从2牛到达5牛,用户A压按比较快如用时0.5s,用户B压按比较慢如用时2s,则用户A看到的在0.5s内播完全部转场帧;而用户B则看到的是2s内显示完全部转场帧。如果用户C在转场激活区域内施加了一个4牛的压力,则看到的就是这个压力对应的特定转场帧,比如转场帧 B,且显示停留在该转场帧B不动,如果用户在屏幕的任意位置(这个情形下的转场激活区域)上再次施加一个力,例如5牛,则显示该5牛对应的转场帧,例如转场帧L。从而增加了终端与用户之间的互动,而不是单纯的通过固定的转场帧进行显示,从而逼真地呈现出用户压按过程中的压力值大小,变化,有效提高人机交互的智能性。
在图1所示实施例的基础上,请参阅图2-a,本发明实施例中转场帧的显示方法的另一个实施例,该实施例详细地对转场帧的显示方法进行描述,主要包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;所述终端将确定的所述一个转场帧进行显示。具体过程如下:
201、终端获取用户作用于转场激活区域内的压力值;
其中,步骤201与图1所示实施例中的步骤101相同或者相似,具体可参阅步骤101,此处不再赘述。
202、当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
在一种可能的实现方式中,当所述压力值大于预设转场开启阈值且不超过预设转场结束阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧。当所述压力值大于所述预设转场结束阈值时,所述终端将预设转场结束阈值对应的一个转场帧确定为所述压力值对应的一个转场帧。
在另一种可能的实现方式中,当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧,其中,该预设的压力值与转场帧之间的对应关系中包含:大于预设转场结束阈值的压力值对应的一个转场帧为该预设转场结束阈值对应的转场帧,例如预设的转场结束阈值为10牛,对应转场帧为转场帧X,则预设的压力值与转场帧之间的对应关系中限定压力值>=10牛对应转场帧为转场帧X,那么当用户施加的压力值为12牛时,根据预设的压力值与转场帧之间的对应关系,确定对应的转场帧为转场帧X。
又比如:当所述预设的转场开启阈值为3.8牛,预设的转场结束阈值为5.0牛,终端根据转场开启阈值,转场结束阈值以及压力敏感度预先确定所有的转场帧数,比如当压力敏感度为0.1时,那么确定所有的转场帧数Z=(5.0-3.8)/0.1,具体如下表:
Figure PCTCN2015088777-appb-000001
其中,A到L分别代表一个转场帧,当压力值大于5.0牛时,该压力值对应的转场帧都是预设转场结束阈值对应的转场帧,即:转场帧L。
203、所述终端将确定的所述一个转场帧进行显示。
进一步,在步骤202中确定一个转场帧后,终端将确定的一个转场帧进行显示。
与现有技术不同的是,整个转场帧的显示和用户作用于转场激活区域上的压力相关,比如:转场帧的方向(比如前进或者后退),转场帧显示的快慢完全与用户作用于转场激活区域上的压力相关,很好地呈现出压力操控的真实感。
在实际应用中,如图2-b所示,终端预先设置好压力值与转场帧之间的对应关系,进一步,整个转场帧的显示与用户作用于转场激活区域上的压力相关,比如,用户从3.8牛到5.0用了0.5s,具体的转场帧的显示如图2-c所示;用户从3.8牛到5.0用了1s,具体的转场帧的显示如图2-d所示。其中,图2-b和2-c中显示的阴影部分为转场帧中的可变部分,在每个转场帧中还可包含不可变的其他部分。可见,根据用户作用在转场激活区域的压力值来确定转场帧的显示,很好地还原真实世界的操作体验,增加人机交互的智能性。
在图1和图2-a所示实施例的基础上,请参阅图3,本发明实施例中转场 帧的显示方法的另一个实施例,该实施例详细地对转场帧的显示方法进行描述,主要包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;所述终端将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。具体过程如下:
301、终端获取用户作用于转场激活区域内的压力值;
其中,步骤301与图1所示实施例中的步骤101相同或者相似,具体可参阅步骤101,此处不再赘述。
302、当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧;
其中,,所述一组转场帧包含至少两个转场帧,该一组转场帧可以是预设连续的多个转场帧,也可以是预设不连续的多个转场帧,此处不做具体限定。
在一种可能的实现方式中,当所述压力值大于预设转场开启阈值且不超过预设转场结束阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧。当所述压力值大于所述预设转场结束阈值时,所述终端将所述预设转场结束阈值对应的一组转场帧确定为所述压力值对应的一组转场帧。
在另一种可能的实现方式中,当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,其中,该压力值有可能大于预设转场结束阈值,有可能小于预设转场结束阈值,当该压力值大于预设转场结束阈值时,根据预设的压力值与转场帧之间的对应关系确定该压力值对应的一组转场帧就是该预设转场结束阈值对应的一组转场帧。比如:当所述预设转场开启阈值为3.8牛,预设转场结束阈值为4.2牛,终端根据转场开启阈值,转场结束阈值以及压力敏感度预先确定所有的转场帧数,比如当压力敏感度为0.1时,那么确定所有的转场帧数Z=(4.2-3.8)/(0.1*k),当k=0.5时(k为预设系数,例如当k=0.25时每个压力值对应四个转场帧),具体如下表:
压力值 3.8 3.9 4.0 4.1 4.2 4.3 4.4
转场帧 A,B C,D E,F G,H G,H G,H
其中,A到H分别代表一个转场帧,一个压力值对应一组转场帧,每组转场帧包含两个转场帧,当压力值大于4.2牛时,该压力值对应的转场帧都是预设转场结束阈值对应的转场帧,即:G和H组成的这组转场帧。
303、所述终端将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
进一步,在步骤302中确定一组转场帧后,终端将确定的一组转场帧按照预设的顺序和预设的速度进行显示。
需要说明的是,可以预设终端显示每一组转场帧的速度是相同的,且按照预设的顺序,比如A和B之间的间隔时间和C,D之间,E,F之间,G,H之间的间隔时间是一样的,并且显示顺序都是按字母顺序显示。当然,终端也可以根据预设的用户压力值所对应的显示顺序和速度对确定的一组转场帧进行显示,例如压力值3.9对应显示速度V1,压力值4.0对应显示速度V2,压力值4.1对应显示速度V3,显示顺序为按字母顺序显示;或者压力值3.9和4.0对应显示速度V1;压力值4.1和4.2对应显示速度V2,显示顺序为按逆字母顺序显示等。此处不做具体限定。
可见,通过用户作用的压力值来确定对应的一组转场帧,可以体现用户真实的压力操作,增加了终端与用户之间的互动,而不是只显示固定不变的转场帧,从而逼真地呈现出用户压按过程的压力操作,增加人机交互的智能性。
在图1至图3所示实施例的基础上,请参阅图4,本发明实施例中转场帧显示方法的另一个实施例,该实施例详细地对转场帧的显示方法进行描述,主要包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧;所述终端将确定的所述转场帧进行显示。具体过程如下:
401、终端获取用户作用于转场激活区域内的压力值;
其中,步骤401与图1所示实施例中的步骤101相同或者相似,具体可参阅步骤101,此处不再赘述。
402、当所述压力值大于预设转场开启阈值时,所述终端根据预设压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
类似步骤202,在一种可能的实现方式中,当所述压力值大于预设转场开启阈值且不超过预设转场结束阈值时,所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数。当所述压力值大于所述预设转场结束阈值时,所述终端将所述预设转场结束阈值对应的转场参数确定为所述压力值对应的转场参数。在另一种可能的实现方式中,当所述压力值大于预设转场开启阈值时,所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数,其中,该压力值有可能大于预设转场结束阈值,有可能小于预设转场结束阈值,当该压力值大于预设转场结束阈值时,根据预设的压力值与转场帧之间的对应关系确定该压力值对应的转场参数就是该预设转场结束阈值对应的转场参数。
所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。具体的,转场变量可以为转场帧中一个或多个特定的对象或者内容。
需要说明的是,转场参数除了上述几种外,还可以是其他参数,比如速度等,此处不做具体限定。例如转场帧中特定对象的长度,转场帧整体或局部内容的显示颜色或者转场帧中特定对象的显示颜色,转场帧整体或局部内容的显示亮度或特定对象的显示亮度,转场帧特定对象的显示粘度,转场帧整体或局部内容的显示透明度或特定对象的显示透明度;转场帧中特定对象的显示面积;转场帧中特定对象的显示体积;转场帧中特定对象的显示厚度;转场帧中特定内容的显示高度或者特定对象的显示高度;转场帧中特定对象的显示速度等等。
需要说明的是,在实际应用中,转场参数可以是一个参数,或者转场参数是多个参数的任意组合,比如,转场参数是速度和半径的组合,当压力值发生改变时对应的转场帧的显示速度和半径都随着发生改变。
403、所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧;
进一步,终端确定压力值对应的转场参数后根据预设的转场参数与转场帧 之间的对应关系,确定所述压力值对应的转场帧。
结合步骤402和步骤403,比如:当所述预设转场开启阈值为3.8牛,预设转场结束阈值为4.5牛,终端根据转场开启阈值,转场结束阈值预先确定所有的转场参数,再根据预设的转场参数与转场帧之间的对应关系确定所有的转场帧,具体如下表:
Figure PCTCN2015088777-appb-000002
其中,A到G分别代表一个转场帧,当压力值大于4.5牛时,该压力值对应的转场帧都是预设转场结束阈值对应的转场帧。
因此如果用户施加的压力为4.0牛,则根据上表可确定转场参数是b(b例如代表显示亮度为2级;b例如代表面积为30%;b例如代表颜色为浅紫色),则根据上表可确定转场帧为B(例如B表示一个转场帧,在该转场帧中特定的对象,如一组卡通人物,的显示亮度为2级;例如B表示一个转场帧,在该转场帧中特定对象,如一个圆形,的显示面积为30%;例如B表示一个转场帧,在该转场帧中显示内容,如整个转场帧,的显示颜色为浅紫色)。
404、所述终端将确定的所述转场帧进行显示。
进一步,步骤402中确定转场参数对应的转场帧后,终端将确定的转场帧进行显示。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的转场参数,进一步通过预设的转场参数与转场帧之间的对应关系,例如接收用户施加的4.0牛的压力,则显示转场帧B,如果用户在转场帧B界面上再施加一个3.9牛的压力,则显示转场帧A,如果在转场帧A界面上再持续施加一个3.9-4.5牛的压力,则对应显示转场帧A-G。如果转场帧A-G构成一个转场动画,那从用户看来,施加不同的压力能看到不同的显示效果,压力增大的速度越快动画播放速度越快,压力变小则动画回放。因此增加了终端与用户之间的互动,不再是显示固定不变的转场帧,从而逼真地呈现出用户压力操控的真实效果,增加人机交互的智能性。
在图1至图4所示实施例的基础上,请参阅图5-a,本发明实施例中转场帧的显示方法的另一个实施例,该实施例详细地对转场帧的显示方法进行描述,主要包括:终端获取用户作用于转场激活区域内的压力值;当所述压力值大于预设转场开启阈值时,所述终端根据预设目标函数确定所述压力值对应的转场参数RX;所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧;所述终端将确定的所述转场帧进行显示。具体过程如下:
501、终端获取用户作用于转场激活区域内的压力值;
其中,步骤501与图1所示实施例中的步骤101相同或者相似,具体可参阅步骤101,此处不再赘述。
502、当所述压力值大于预设转场开启阈值时,所述终端根据预设目标函数确定所述压力值对应的转场参数;
所述终端根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,所述Y2表示所述预设转场结束阈值,所述R1表示所述预设转场开启阈值对应的转场参数,所述R2表示所述Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述Y2的比值,X表示所述压力值。
比如:以转场参数是半径为例,R1是1mm,R2是3mm,Y2是5牛,K是0.6,将R1是1mm,R2是3mm,Y2是5牛,K是0.6代入目标函数,得到新的目标函数为RX=X-2。另外,也可以用对应关系表的形式确定转场参数,具体如下表:
Figure PCTCN2015088777-appb-000003
其中,所述Y2为用户定义的转场结束阈值。由于K是终端预先设置的,当用户自定义调整Y2时,对应的预设转场开启阈值也随着改变,可见,用户可以根据自身的手指力的大小自行调整转场开启和结束阈值,从而有效提高了用户体验。
相反地,由于K是终端预先设置的,当用户自定义调整预设转场开启阈值时,对应的预设转场结束阈值也随着改变。
其中,所述转场参数包含转场参数的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
需要说明的是,转场参数除了上述几种外,还可以是其他参数,比如速度等,此处不做具体限定。可以参照以上实施例的描述。
需要说明的是,转场参数可以是一个参数,或者几个参数的任意组合,比如转场参数是速度和半径的组合,当压力值发生改变时对应的转场帧的显示速度和半径都随着发生改变。
503、所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧;
进一步,终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
比如,结合步骤502,仍然以转场参数是半径为例,具体如下表:
Figure PCTCN2015088777-appb-000004
其中,A到G分别代表一个转场帧,当压力值大于5.0牛时,该压力值对应的转参数都是预设转场结束阈值对应的转场参数,因此,根据预设的转场参数与转场帧之间的对应关系可知,压力值大于5.0牛时,转场参数对应的转场帧都是预设转场结束阈值对应的转场参数所对应的转场帧,比如转场帧G。
504、所述终端将确定的所述转场帧进行显示。
进一步,步骤503中确定转场参数对应的转场帧后,终端将确定的转场帧进行显示。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的转场参数,进一步通过预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧,从而增加了终端与用户之间的互动,而不再是显示固定不变 的转场帧,从而逼真地呈现出用户压力操控的真实效果,增加人机交互的智能性。
在实际应用中,以转场参数是半径为例,如图5-b所示,在一定范围内,压力值越大,对应的半径越大,而转场参数与转场帧存在对应关系,即压力值越大,显示对应的半径所对应的转场帧,因此,根据用户作用在转场激活区域的压力值来确定转场帧的显示,很好地呈现出压力操作对应的效果。
如图5-c所示,当终端检测出用户作用于转场激活区域的一个压力值时,进一步,当该压力值大于预设转场开启阈值时,在终端界面上显示所述压力值对应半径所对应的转场帧,如图5-c中的较大的白色圆圈部分A(即:没有完全成型的白色圆圈),其中,当用户施加的压力值大于或者等于预设的转场结束阈值时,该圆圈A与圆圈B(即:较小的白色圆圈)外切,当用户施加的压力值小于预设的转场技术阈值时,对应的圆圈的半径比较小(即还没有和圆圈B相外切)。
但是,用户施加的压力值在大于预设转场开启阈值,小于等于预设的转场结束阈值的范围内,压力值越大,半径越大,如图5-d所示,其中,当用户施加的压力值小于预设的转场结束阈值时,压力值对应的半径对应的转场帧,如圆圈C(即:离圆圈B最远的颜色比较淡的圆圈),其中,圆圈B(即:较小的白色圆圈),当用户施加的压力值再大一些,对应的半径越大,即对应的圆圈A,如图5-d中离圆圈B最近的圆圈,当用户施加的压力值大于或者等于预设的转场结束阈值时,该圆圈A与圆圈B(即:较小的白色圆圈)外切,可见,从用户看来,施加不同的压力能看到不同的显示效果,因此增加了终端与用户之间的互动,不再是显示固定不变的转场帧,从而逼真地呈现出用户压力操控的真实效果,增加人机交互的智能性。
为便于更好的实施本发明实施例的上述相关方法,下面还提供用于配合上述方法的相关装置。
请参阅图6,本发明实施例中终端600的一个实施例,包括:获取模块601,确定模块602以及显示模块603。
获取模块601,用于获取用户作用于转场激活区域内的压力值;
确定模块602,用于当所述压力值大于预设转场开启阈值时,根据预设规 则确定所述压力值对应的转场帧;
显示模块603,用于将所述确定模块602确定的所述转场帧进行显示。
与现有技术不同的是,本发明实施例中的转场帧与用户作用于转场激活区域内的压力值相关,比如压力从2牛到达5牛,用户A压按比较快如用时0.5s,用户B压按比较慢如用时2s,则用户A看到的在0.5s内播完全部转场帧;而用户B则看到的是2s内显示完全部转场帧。如果用户C在转场激活区域内施加了一个4牛的压力,则看到的就是这个压力对应的特定转场帧,比如转场帧B,且显示停留在该转场帧B不动,如果用户在屏幕的任意位置(这个情形下的转场激活区域)上再次施加一个力,例如5牛,则显示该5牛对应的转场帧,例如转场帧L。从而增加了终端与用户之间的互动,而不是单纯的通过固定的转场帧进行显示,从而逼真地呈现出用户压按过程中的压力值大小,变化,有效提高人机交互的智能性。
进一步,所述确定模块602,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
所述显示模块603,具体用于将所述确定模块602确定的所述一个转场帧进行显示。
与现有技术不同的是,整个转场帧的显示和用户作用于转场激活区域上的压力相关,比如:转场帧的方向(比如前进或者后退),转场帧显示的快慢完全与用户作用于转场激活区域上的压力相关,很好地还原真实世界的操作体验,增加人机交互的智能性。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的一个转场帧,从而增加了终端与用户之间的互动,而不是只显示通过固定不变的转场帧,从而逼真地呈现出用户压按过程中的压力操作,增加人机交互的智能性。
在一些可选的实施例中,所述确定模块602,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
所述显示模块603,具体用于将所述确定模块602确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的一组转场帧,可以体现用户真实的压力操作,从而增加了终端与用户之间的互动,而不是只显示固定不变的转场帧,从而逼真地呈现出用户压按过程中的压力操作,增加人机交互的智能性。
在一些可选的实施例中,所述确定模块602,具体用于根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。具体的,转场变量可以为转场帧中一个或多个特定的对象或者内容。
需要说明的是,转场参数除了上述几种外,还可以是其他参数,比如速度等,此处不做具体限定。例如转场帧中特定对象的长度,转场帧整体或局部内容的显示颜色或者转场帧中特定对象的显示颜色,转场帧整体或局部内容的显示亮度或特定对象的显示亮度,转场帧特定对象的显示粘度,转场帧整体或局部内容的显示透明度或特定对象的显示透明度;转场帧中特定对象的显示面积;转场帧中特定对象的显示体积;转场帧中特定对象的显示厚度;转场帧中特定内容的显示高度或者特定对象的显示高度;转场帧中特定对象的显示速度等等。
需要说明的是,在实际应用中,转场参数可以是一个参数,或者转场参数是多个参数的任意组合,比如,转场参数是速度和半径的组合,当压力值发生改变时对应的转场帧的显示速度和半径都随着发生改变。
所述确定模块602,具体还用于根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
所述显示模块603,用于将所述确定模块602确定的所述转场帧进行显示。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的转场参数,进一步通过预设的转场参数与转场帧之间的对应关系,例如接收用户施加的4.0牛的压力,则显示转场帧B,如果用户在转场帧B界面上再施加一个3.9牛的压力,则显示转场帧A,如果在转场帧A界面上再持续施加一个3.9-4.5牛的压力,则对应显示转场帧A-G。如果转场帧A-G构成一个转场动画,那从用户看来,施加不同的压力能看到不同的显示效果,压力增大的速度 越快动画播放速度越快,压力变小则动画回放。因此增加了终端与用户之间的互动,不再是显示固定不变的转场帧,从而逼真地呈现出用户压力操控的真实效果,增加人机交互的智能性。
在一些可选的实施例中,所述确定模块602,具体用于根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示所述预设的转场结束阈值,R1表示所述预设转场开启阈值对应的转场参数,所述R2表示所述预设的转场结束阈值Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
所述显示模块603,用于将所述确定模块602确定的所述转场帧进行显示。
在一些可选的实施例中,所述Y2为用户定义的转场结束阈值。
在一些可选的实施例中,所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
需要说明的是,转场参数除了上述几种外,还可以是其他参数,比如速度等,此处不做具体限定。可以参照图4所示实施例中的描述。
需要说明的是,转场参数可以是一个参数,或者几个参数的任意组合,比如转场参数是速度和半径的组合,当压力值发生改变时对应的转场帧的显示速度和半径都随着发生改变。
可见,通过根据用户作用在转场激活区域的压力值来确定该压力值对应的转场参数,进一步通过预设的转场参数与转场帧之间的对应关系确定压力值对应的转场帧,从而增加了终端与用户之间的互动,而不是显示固定不变的转场帧,从而逼真地呈现出用户压力操控的真实效果,增加人机交互的智能性。
图6所示的实施例从功能模块的角度对终端的具体结构进行了说明,以下结合图6的实施例从硬件角度对终端的具体结构进行说明:一种终端700,包括:存储器701,处理器702,发射器703与接收器704以及显示器705;其中,所述存储器701与所述处理器702连接,所述处理器702与所述发射器703连接,所述处理器702与所述接收器704连接,所述显示器705与所述处理器702连接;
通过调用所述存储器701中存储的操作指令,所述处理器702用于执行如 以上方法实施例所记载的方案,例如:
获取用户作用于转场激活区域内的压力值;
当所述压力值大于预设转场开启阈值时,所述处理器702根据预设规则确定所述压力值对应的转场帧;
所述显示器705将确定的所述转场帧进行显示。
所述处理器702根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
所述显示器705将确定的所述转场帧进行显示具体为:
所述显示器705将确定的所述一个转场帧进行显示。
其中,所述处理器702根据预设规则确定所述压力值对应的转场帧具体为:
所述处理器702根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
所述显示器705将确定的所述转场帧进行显示具体为:
所述显示器705将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
其中,所述处理器702根据预设规则确定所述压力值对应的转场帧包括:
所述处理器702根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
所述处理器702根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
其中,所述处理器702根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数包括:
所述处理器702根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示所述预设的转场结束阈值,R1表示所述预设转场开启阈值对应的转场参数,R2表示所述预设的转场结束阈值Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
所述处理器702根据预设的转场参数与转场帧之间的对应关系确定所述 压力值对应的转场帧。
可见,本发明实施例中的转场帧与用户作用于转场激活区域内的压力值相关,用户施加的压力大小不同,对应显示的转场帧也就不相同,从而增加了与用户之间的互动,而不再是显示固定不变的转场帧,从而逼真地呈现出用户压按的压力值,增加了人机交互的智能性。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,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,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的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,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者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者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,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,也可以采用软件功能单元的形式实现。
集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质 中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上对本发明所提供的一种终端、服务器、用户识别的系统及方法进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上,本说明书内容不应理解为对本发明的限制。

Claims (14)

  1. 一种转场帧的显示方法,其特征在于,包括:
    终端获取用户作用于转场激活区域内的压力值;
    当所述压力值大于预设转场开启阈值时,所述终端根据预设规则确定所述压力值对应的转场帧;
    所述终端将确定的所述转场帧进行显示。
  2. 根据权利要求1所述的显示方法,其特征在于,所述终端根据预设规则确定所述压力值对应的转场帧具体为:
    所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
    所述终端将确定的所述转场帧进行显示具体为:
    所述终端将确定的所述一个转场帧进行显示。
  3. 根据权利要求1所述的显示方法,其特征在于,所述终端根据预设规则确定所述压力值对应的转场帧具体为:
    所述终端根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
    所述终端将确定的所述转场帧进行显示具体为:
    所述终端将确定的所述一组转场帧按照预设顺序和预设速度进行显示。
  4. 根据权利要求1所述的显示方法,其特征在于,所述终端根据预设规则确定所述压力值对应的转场帧包括:
    所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
    所述终端根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
  5. 根据权利要求4所述的显示方法,其特征在于,所述终端根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数包括:
    所述终端根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示预设的转场结束阈值,R1表示所述预设转场开启阈值对应的转场参数,R2表示预设的转场结束阈值Y2对应的转 场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
  6. 根据权利要求5所述的显示方法,其特征在于,所述Y2为用户定义的转场结束阈值。
  7. 根据权利要求4-6任一所述的显示方法,其特征在于,所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
  8. 一种终端,其特征在于,包括:
    获取模块,用于获取用户作用于转场激活区域内的压力值;
    确定模块,用于当所述压力值大于预设转场开启阈值时,根据预设规则确定所述压力值对应的转场帧;
    显示模块,用于将确定的所述转场帧进行显示。
  9. 根据权利要求8所述的终端,其特征在于,
    所述确定模块,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一个转场帧;
    所述显示模块,具体用于将确定的所述一个转场帧进行显示。
  10. 根据权利要求8所述的终端,其特征在于,
    所述确定模块,具体用于根据预设的压力值与转场帧之间的对应关系确定所述压力值对应的一组转场帧,所述一组转场帧包含至少两个转场帧;
    所述显示模块,具体用于将确定的所述一组转场帧按照预设的顺序和预设速度进行显示。
  11. 根据权利要求8所述的终端,其特征在于,
    所述确定模块,具体用于根据预设的压力值与转场参数之间的对应关系确定所述压力值对应的转场参数;
    所述确定模块,具体还用于根据预设的转场参数与转场帧之间的对应关系确定所述压力值对应的转场帧。
  12. 根据权利要求11所述的终端,其特征在于,所述确定模块,具体用于根据预设目标函数RX=((R2-R1)/(1-K)*Y2)*(X-K*Y2)+R1确定所述压力值对应的转场参数RX,其中,Y2表示预设的转场结束阈值,R1表示所述预设转场 开启阈值对应的转场参数,R2表示预设的转场结束阈值Y2对应的转场参数,K表示预设的所述预设转场开启阈值与所述预设的转场结束阈值Y2的比值,X表示所述压力值。
  13. 根据权利要求12所述的终端,其特征在于,所述Y2为用户定义的转场结束阈值。
  14. 根据权利要求11-13任一所述的终端,其特征在于,所述转场参数包含转场变量的长度、颜色、亮度、粘度、透明度、面积、体积、厚度、高度、速度中的至少一个。
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