WO2017143860A1 - 基于交互式电子白板的触摸操作方法及其*** - Google Patents

基于交互式电子白板的触摸操作方法及其*** Download PDF

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WO2017143860A1
WO2017143860A1 PCT/CN2016/113201 CN2016113201W WO2017143860A1 WO 2017143860 A1 WO2017143860 A1 WO 2017143860A1 CN 2016113201 W CN2016113201 W CN 2016113201W WO 2017143860 A1 WO2017143860 A1 WO 2017143860A1
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touch
data
electronic whiteboard
interactive electronic
detected
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PCT/CN2016/113201
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English (en)
French (fr)
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程遥
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广州视睿电子科技有限公司
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Priority to JP2018562398A priority Critical patent/JP6697100B2/ja
Priority to EP16891308.5A priority patent/EP3418867A4/en
Priority to US16/078,056 priority patent/US20190018585A1/en
Publication of WO2017143860A1 publication Critical patent/WO2017143860A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • 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
    • G06F3/04883Interaction 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 for inputting data by handwriting, e.g. gesture or text
    • 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]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range

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  • the present invention relates to the field of electronic whiteboard technology, and in particular to a touch operation method based on an interactive electronic whiteboard and a system thereof.
  • the interactive whiteboard can communicate with the computer, connect the electronic whiteboard to the computer, and use the projector to project the contents of the computer onto the electronic whiteboard screen.
  • a large screen can be constructed and interacted with. Collaborative meeting or teaching environment.
  • the four most commonly used functions include writing, erasing, page movement, and page element movement.
  • the electronic whiteboard generally provides four corresponding touch buttons to enable the user to manually switch four different functional states.
  • this solution requires the user to frequently click on the four buttons when using the electronic whiteboard, which is inconvenient to operate, resulting in a user experience that is not smooth enough.
  • the present invention provides a touch operation method and system based on an interactive electronic whiteboard, which can reduce operational steps, thereby improving operational convenience and enhancing user experience.
  • the interactive electronic whiteboard-based touch operation method of the present invention has the following technical solutions, including:
  • touch operation data being pressure sensitive data, touch width data, and touch coordinate data
  • the control command is issued to the interactive whiteboard.
  • the interactive electronic whiteboard-based touch operating system of the present invention comprises:
  • a detecting module configured to receive touch operation data through the interactive electronic whiteboard, the touch operand According to pressure sensitive data, touch width data and touch coordinate data;
  • An identification module configured to identify the touch operation data as a corresponding control instruction according to a setting algorithm
  • a response module configured to issue the control instruction to the interactive electronic whiteboard.
  • the method and the system thereof touch the operation data by detecting the pressure sensitive data, the touch width data, the touch coordinate data, and the like, and then identify the touch operation data as a corresponding control command according to the setting algorithm, and issue the control to the interactive electronic whiteboard.
  • the instruction enables the user to directly operate on the interactive electronic whiteboard without clicking on each function button, thereby improving the operation convenience and enhancing the user experience.
  • FIG. 1 is a schematic flow chart of a touch operation method based on an interactive electronic whiteboard according to an embodiment
  • FIG. 2 is a schematic flow chart of an algorithm of a touch operation method based on an interactive electronic whiteboard according to a preferred implementation
  • FIG. 3 is a schematic structural diagram of an interactive electronic whiteboard-based touch operating system according to an embodiment.
  • S101 Receive touch operation data through an interactive electronic whiteboard, the touch operation data being pressure sensitive data, touch width data, and touch coordinate data.
  • the pressure sensitive data is a pressure when the touch pressure reaches a preset pressure value;
  • the touch width data is a maximum distance between coordinates of any two points in a point coordinate touched on the touch screen at the same time;
  • the touch coordinate data is a coordinate value when the touch point coordinates are within a preset range value.
  • the interactive electronic whiteboard includes a touch frame; the pressure sensitive data is detected by a pressure sensor, the pressure sensitive data is transmitted to the interactive electronic whiteboard, and the touch width data is detected by the touch frame And touch coordinate data.
  • the pressure sensor can be a pressure sensitive pen, A sensor capable of detecting pressure data, such as a pressure sensitive screen. The pressure sensor senses the pressure and transmits the pressure data wirelessly to the interactive whiteboard.
  • the pressure sensitive data can be detected by the pressure sensor of the pen tip
  • the touch width data and the touch coordinate data can be detected by the touch frame in the electronic whiteboard
  • the three kinds of data respectively correspond to the touch pressure, the touch area, and the touch point movement of the touch behavior. And other information.
  • the pressure sensitive data, the touch width data and the touch coordinate data detected in step S101 are recognized as corresponding control commands by the set algorithm, so that the electronic whiteboard can generate corresponding correspondence according to different touch operation data without clicking each function button.
  • Control instructions reduce the number of steps.
  • the step S102 can be implemented by: determining whether the touch coordinate data is detected, determining whether the pressure sensitive data is detected if the touch coordinate data is detected; and outputting the writing control command if the pressure sensitive data is detected, if not detecting Go to the pressure sensitive data, determine whether the touch width data is detected; if the touch width data is detected, and the touch width data is greater than a preset threshold, output an erase control command, if no touch width data is detected or the touch width data is less than Is equal to a preset threshold, determining whether the touch coordinate data is within a preset range; if the touch coordinate data is within a preset range, outputting a page element movement control instruction; if the touch coordinate data is not within a preset range, Then the page movement control instruction is output.
  • This step realizes the corresponding operation on the interactive electronic whiteboard by issuing each of the control commands to the interactive electronic whiteboard, so that the user can enter the corresponding operation mode to complete the corresponding operation without clicking each function button, thereby improving the operation convenience. Sex, enhance the user experience.
  • step S103 further comprising: controlling the interactive electronic whiteboard to respond to the control instruction: controlling, according to the writing control instruction, a response of the interactive electronic whiteboard to perform a writing operation, and controlling according to the erasing control instruction
  • the interactive electronic whiteboard performs a response to the erasing operation, controls the interactive electronic whiteboard to perform a response of the page element moving operation according to the page element movement control instruction, and controls the interactive electronic according to the page movement control instruction
  • the whiteboard responds to the page move operation.
  • the page element movement operation includes movement, scaling, and rotation of the page element
  • Page move operations include page movement, scaling, and rotation.
  • the response of the writing operation causes the interactive electronic whiteboard to enter the writing mode
  • the response of the erasing operation causes the interactive electronic whiteboard to enter the erasing mode
  • the response of the page moving operation causes the interactive electronic whiteboard to enter the page mode
  • the page element moving operation causes the interactive whiteboard to enter the page element mode.
  • This step further responds to the respective control commands, so that the user can directly enter the corresponding operation mode by the touch operation, thereby further improving the convenience of the operation.
  • the method further includes storing the control instruction, and responding to the control instruction corresponding to the touch operation data when the touch operation data is detected.
  • the control command when the touch operation data is detected, the control command corresponding to the touch operation data is directly responded, thereby shortening the response time of the operation and improving the fluency of the operation.
  • the control is issued to the interactive electronic whiteboard.
  • the instruction enables the user to directly operate on the interactive electronic whiteboard without clicking on each function button, thereby improving the operation convenience and enhancing the user experience.
  • Step 1 Write on the electronic whiteboard through the tip of the pen.
  • Step 2 The pressure sensor of the pen tip detects the pressure sensitive data, and the touch frame of the electronic whiteboard detects the touch width data and the touch coordinate data. These three kinds of data respectively reflect information such as touch pressure, touch area, and touch point movement of the user's touch behavior.
  • Step 3 According to the detected pressure sensitive data, touch width data, and touch coordinate data, the actual operation (writing, erasing, page element movement, page movement, etc.) of the user is determined by the set algorithm. The calculation result is then passed to the software UI (User Interface) interaction layer.
  • the software UI User Interface
  • FIG. 2 is a schematic flowchart of an algorithm for a touch operation method based on an interactive electronic whiteboard according to a preferred embodiment of the present invention: determining whether touch coordinate data is detected, and if touch coordinate data is detected, determining whether pressure sensitive data is detected; Number of pressure senses detected According to the output control command, if the pressure sensitive data is not detected, it is determined whether the touch width data is detected; if the touch width data is detected, and the touch width data is greater than the preset threshold, the erase control command is output, if If the touch width data is not detected or the touch width data is less than or equal to a preset threshold, determining whether the touch coordinate data is within a preset range; if the touch coordinate data is within a preset range, outputting a page element movement control instruction; If the touch coordinate data is not within the preset range, the page movement control instruction is output.
  • Step 4 The software UI interaction layer receives the output control command and responds to the user's operation. Specifically, the following is: controlling, according to the writing control instruction, the response of the interactive electronic whiteboard to perform a writing operation, controlling the response of the interactive electronic whiteboard to perform an erasing operation according to the erasing control instruction, and controlling the movement according to the page element
  • the instruction controls the interactive whiteboard to respond to the page element moving operation, and controls the interactive whiteboard to perform a page moving operation response according to the page movement control instruction.
  • the electronic whiteboard when writing on the screen with an electronic pen, the electronic whiteboard enters the writing mode, and the user can directly write on the screen; when the user touches the screen with the finger, the electronic whiteboard enters the page or page element mode, and the user can move and zoom. Rotate the page or a single page element therein; when the user touches the screen with the palm of the hand, the electronic whiteboard enters the erase mode, and the user can erase the handwriting directly on the screen.
  • the method detects the touch operation data, the touch width data, the touch coordinate data, and the like by touching the operation data, and then identifying the touch operation data as a corresponding control command according to the setting algorithm, and issuing the control instruction to the interactive electronic whiteboard. Therefore, the user can directly perform corresponding operations by touching the interactive electronic whiteboard without clicking each function button, thereby improving the convenience of operation and enhancing the user experience.
  • the present invention also provides an interactive electronic whiteboard-based touch operating system.
  • the structure includes a detection module 301, an identification module 302, and a control module. 303.
  • the detecting module 301 is configured to receive touch operation data through an interactive electronic whiteboard, the touch operation data is pressure sensitive data, touch width data, and touch coordinate data; the identification module 302 is configured to use the touch according to a setting algorithm.
  • the operation data is identified as a corresponding control instruction; and the control module 303 is configured to issue the control instruction to the interactive electronic whiteboard.
  • the control is issued to the interactive electronic whiteboard.
  • the instruction enables the user to directly operate on the interactive electronic whiteboard without clicking on each function button, thereby improving the operation convenience and enhancing the user experience.
  • the interactive electronic whiteboard includes a touch frame;
  • the detection module 301 includes a detection submodule for detecting the pressure sensitive data by a pressure sensor, and transmitting the pressure sensitive data to the interaction An electronic whiteboard, and detecting the touch width data and touch coordinate data through the touch frame.
  • the identification module 302 includes a determination sub-module for determining whether the touch coordinate data is detected, and if the touch coordinate data is detected, determining whether the pressure sensitive data is detected; the first instruction output sub-module, If the pressure sensitive data is detected, the writing control command is output, if the pressure sensitive data is not detected, it is determined whether the touch width data is detected; the second command output sub-module is configured to detect the touch width data, and the touch If the width data is greater than the preset threshold, outputting an erasure control command, if no touch width data is detected or the touch width data is less than or equal to a preset threshold, determining whether the touch coordinate data is within a preset range; the third instruction output submodule For outputting a page element movement control instruction if the touch coordinate data is within a preset range; and a fourth instruction output sub-module for outputting a page movement control if the touch coordinate data is not within a preset range instruction.
  • the interactive whiteboard-based touch operating system further includes a response module configured to control, according to the writing control instruction, a response of the interactive electronic whiteboard to perform a writing operation, according to the erasing control Commanding to control a response of the interactive electronic whiteboard to perform an erase operation, controlling a response of the interactive electronic whiteboard to perform a page element moving operation according to the page element movement control instruction, and controlling the interaction according to the page movement control instruction
  • the whiteboard responds to the page move operation.
  • the page element moving operation includes moving and scaling of the page element to And rotating; the page moving operation includes movement, scaling, and rotation of the page.
  • the interactive electronic whiteboard-based touch operating system further includes: a storage module, configured to store the control instruction, and respond to control corresponding to the touch operation data when the touch operation data is detected instruction.
  • the storage module can shorten the response time of the operation and improve the fluency of the operation.

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  • General Engineering & Computer Science (AREA)
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Abstract

基于交互式电子白板的触摸操作方法及其***,通过检测压感数据、触摸宽度数据以及触摸坐标数据等触摸操作数据,再根据设定算法将所述触摸操作数据识别为对应的控制指令,对交互式电子白板发出所述控制指令,从而使得用户无需点击各个功能按钮,直接在交互式电子白板上触摸即能实现相应的操作,提高操作便利性,增强用户体验。

Description

基于交互式电子白板的触摸操作方法及其*** 技术领域
本发明涉及电子白板技术领域,特别是一种基于交互式电子白板的触摸操作方法及其***。
背景技术
交互式电子白板可以与电脑进行信息通讯,将电子白板连接到计算机,并利用投影机将计算机上的内容投影到电子白板屏幕上,在专门的应用程序的支持下,可以构造一个大屏幕、交互式的协作会议或教学环境。利用特定的定位笔代替鼠标在白板上进行操作,可以运行应用程序,可以对文件进行编辑、注释、保存等在计算机上利用键盘及鼠标可以实现的操作。
在电子白板中,最常用的4个功能包括书写、擦除、页面移动、页面元素移动。传统的方案中,电子白板一般会提供4个对应的触摸按钮,以使用户手动切换4个不同的功能状态。但是,这种方案需要用户在使用电子白板时频繁地点击这4个按钮,不便于操作,导致用户体验不够流畅。
发明内容
针对上述现有技术中存在的问题,本发明提供一种基于交互式电子白板的触摸操作方法及其***,能够减少操作步骤,从而提高操作便利性,增强用户体验。
本发明的基于交互式电子白板的触摸操作方法,技术方案如下,包括:
通过交互式电子白板接收触摸操作数据,所述触摸操作数据为压感数据、触摸宽度数据以及触摸坐标数据;
根据设定算法将所述触摸操作数据识别为对应的控制指令;
对交互式电子白板发出所述控制指令。
本发明的基于交互式电子白板的触摸操作***,包括:
检测模块,用于通过交互式电子白板接收触摸操作数据,所述触摸操作数 据为压感数据、触摸宽度数据以及触摸坐标数据;
识别模块,用于根据设定算法将所述触摸操作数据识别为对应的控制指令;
响应模块,用于对交互式电子白板发出所述控制指令。
本方法及其***通过检测压感数据、触摸宽度数据以及触摸坐标数据等触摸操作数据,再根据设定算法将所述触摸操作数据识别为对应的控制指令,对交互式电子白板发出所述控制指令,从而使得用户无需点击各个功能按钮,直接在交互式电子白板上触摸即能实现相应的操作,提高操作便利性,增强用户体验。
附图说明
图1为一个实施例的基于交互式电子白板的触摸操作方法的流程示意图;
图2为一个较佳实现方式的基于交互式电子白板的触摸操作方法的算法流程示意图;
图3为一个实施例的基于交互式电子白板的触摸操作***的结构示意图。
具体实施方式
为了使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明作进一步地详细描述。
请参阅图1中一个实施例的基于交互式电子白板的触摸操作方法的流程示意图,包括步骤S101至步骤S103:
S101,通过交互式电子白板接收触摸操作数据,所述触摸操作数据为压感数据、触摸宽度数据以及触摸坐标数据。
其中,所述压感数据为触摸压力达到预设压力值时的压力大小;所述触摸宽度数据为触摸屏上被同时触摸到的点坐标中,任意两个点坐标之间的最大距离;以及所述触摸坐标数据为触摸点坐标在预设范围值内时的坐标值。
进一步地,所述交互式电子白板包括触摸框;通过压力传感器检测所述压感数据,将所述压感数据发送至所述交互式电子白板,以及通过所述触摸框检测所述触摸宽度数据以及触摸坐标数据。其中,所述压力传感器可以是压感笔、 压感屏等能够检测压力数据的传感器。通过压力传感器感知压力大小,并把压力数据通过无线传输到交互式电子白板。
例如,可通过压感笔笔尖的压力传感器检测压感数据,通过电子白板中的触摸框检测触摸宽度数据以及触摸坐标数据,这三种数据分别对应触摸行为的触摸压力、触摸面积、触摸点移动等信息。
S102,根据设定算法将所述触摸操作数据识别为对应的控制指令。
通过设定的算法将步骤S101中检测到的压感数据、触摸宽度数据以及触摸坐标数据识别为对应的控制指令,从而使得电子白板无需点击各个功能按钮,即可根据不同的触摸操作数据产生对应的控制指令,减少了操作步骤。
进一步地,步骤S102可通过以下方式实现:判断是否检测到触摸坐标数据,若检测到触摸坐标数据,判断是否检测到压感数据;若检测到压感数据,则输出书写控制指令,若没有检测到压感数据,判断是否检测到触摸宽度数据;若检测到触摸宽度数据,而且所述触摸宽度数据大于预设阈值,则输出擦除控制指令,若没有检测到触摸宽度数据或者触摸宽度数据小于等于预设阈值,判断所述触摸坐标数据是否在预设范围内;若所述触摸坐标数据在预设范围内,则输出页面元素移动控制指令;若所述触摸坐标数据不在预设范围内,则输出页面移动控制指令。
S103,对交互式电子白板发出所述控制指令。
本步骤通过对交互式电子白板发出各个所述控制指令,在交互式电子白板上实现相应的操作,从而使得用户无需通过点击各个功能按钮即能进入相应的操作模式完成相应的操作,提高操作便利性,增强用户体验。
进一步地,步骤S103之后还包括控制所述交互式电子白板响应所述控制指令的步骤:根据所述书写控制指令控制所述交互式电子白板进行书写操作的响应,根据所述擦除控制指令控制所述交互式电子白板进行擦除操作的响应,根据所述页面元素移动控制指令控制所述交互式电子白板进行页面元素移动操作的响应,以及根据所述页面移动控制指令控制所述交互式电子白板进行页面移动操作的响应。
其中,所述页面元素移动操作包括页面元素的移动、缩放以及旋转;所述 页面移动操作包括页面的移动、缩放以及旋转。所述书写操作的响应使得交互式电子白板进入书写模式,擦除操作的响应使得交互式电子白板进入擦除模式,页面移动操作的响应使得交互式电子白板进入页面模式,以及页面元素移动操作的响应使得交互式电子白板进入页面元素模式。本步骤通过响应各个控制指令,使得可通过用户的触摸操作而直接进入相应的操作模式,从而进一步提高操作的便利性。
进一步地,步骤S103之后还包括存储所述控制指令,当检测到触摸操作数据时,响应与所述触摸操作数据相应的控制指令。通过存储控制指令,当检测到触摸操作数据时直接响应与所述触摸操作数据相应的控制指令,从而缩短操作的响应时间,提高操作流畅性。
本实施例中,通过检测压感数据、触摸宽度数据以及触摸坐标数据等触摸操作数据,再根据设定算法将所述触摸操作数据识别为对应的控制指令,对交互式电子白板发出所述控制指令,从而使得用户无需点击各个功能按钮,直接在交互式电子白板上触摸即能实现相应的操作,提高操作便利性,增强用户体验。
以下为本发明的基于交互式电子白板的触摸操作方法的一个较佳实现方式,包括步骤一至步骤四:
步骤一:通过压感笔笔尖在电子白板上书写。
步骤二:笔尖的压力传感器检测压感数据,电子白板的触摸框检测触摸宽度数据以及触摸坐标数据。这三种数据分别反映了用户触摸行为的触摸压力、触摸面积、触摸点移动等信息。
步骤三:根据检测的压感数据、触摸宽度数据、触摸坐标数据,通过设定的算法,判断出用户实际进行的操作(书写、擦除、页面元素移动以及页面移动等)。随后将计算结果传递给软件UI(User Interface,用户界面)交互层。
具体地,根据以下的算法,将压感数据、触摸宽度数据、触摸坐标数据整合、识别成为一个用户期望的操作指令。如图2所示的一个较佳实现方式的基于交互式电子白板的触摸操作方法的算法流程示意图:判断是否检测到触摸坐标数据,若检测到触摸坐标数据,判断是否检测到压感数据;若检测到压感数 据,则输出书写控制指令,若没有检测到压感数据,判断是否检测到触摸宽度数据;若检测到触摸宽度数据,而且所述触摸宽度数据大于预设阈值,则输出擦除控制指令,若没有检测到触摸宽度数据或者触摸宽度数据小于等于预设阈值,判断所述触摸坐标数据是否在预设范围内;若所述触摸坐标数据在预设范围内,则输出页面元素移动控制指令;若所述触摸坐标数据不在预设范围内,则输出页面移动控制指令。通过此算法,可以输出一个输出操作指令(书写、擦除、页面元素移动、页面移动其中的一种)。需要指出的是,该算法中,判断是否检测到触摸坐标数据之后的,是否检测到压感数据、是否检测到触摸宽度数据以及触摸坐标数据是否在预设范围内的判断可以并发进行,从而提高判断效率。
步骤四:软件UI交互层接收到输出的控制指令,并响应用户的操作。具体如下:根据所述书写控制指令控制所述交互式电子白板进行书写操作的响应,根据所述擦除控制指令控制所述交互式电子白板进行擦除操作的响应,根据所述页面元素移动控制指令控制所述交互式电子白板进行页面元素移动操作的响应,以及根据所述页面移动控制指令控制所述交互式电子白板进行页面移动操作的响应。例如:当使用电子笔在屏幕上书写时,电子白板进入书写模式,用户可直接在屏幕上书写;当用户使用手指在屏幕上触摸时,电子白板进入页面或页面元素模式,用户可以移动、缩放、旋转页面或其中的单个页面元素;当用户使用手掌在屏幕上触摸时,电子白板进入擦除模式,用户可直接在屏幕上擦除笔迹。
可见,本方式通过检测压感数据、触摸宽度数据以及触摸坐标数据等触摸操作数据,再根据设定算法将所述触摸操作数据识别为对应的控制指令,对交互式电子白板发出所述控制指令,从而使得用户无需点击各个功能按钮,直接在交互式电子白板上触摸即能实现相应的操作,提高操作便利性,增强用户体验。
本发明还提供了一种基于交互式电子白板的触摸操作***,请参阅图3的一个实施例的基于交互式电子白板的触摸操作***的结构示意图,包括检测模块301、识别模块302以及控制模块303。
所述检测模块301用于通过交互式电子白板接收触摸操作数据,所述触摸操作数据为压感数据、触摸宽度数据以及触摸坐标数据;所述识别模块302用于根据设定算法将所述触摸操作数据识别为对应的控制指令;以及所述控制模块303用于对交互式电子白板发出所述控制指令。
本实施例中,通过检测压感数据、触摸宽度数据以及触摸坐标数据等触摸操作数据,再根据设定算法将所述触摸操作数据识别为对应的控制指令,对交互式电子白板发出所述控制指令,从而使得用户无需点击各个功能按钮,直接在交互式电子白板上触摸即能实现相应的操作,提高操作便利性,增强用户体验。
在其中一个实施例中,所述交互式电子白板包括触摸框;所述检测模块301包括检测子模块,用于通过压力传感器检测所述压感数据,将所述压感数据发送至所述交互式电子白板,以及通过所述触摸框检测所述触摸宽度数据以及触摸坐标数据。
在其中一个实施例中,所述识别模块302包括判断子模块,用于判断是否检测到触摸坐标数据,若检测到触摸坐标数据,判断是否检测到压感数据;第一指令输出子模块,用于若检测到压感数据,则输出书写控制指令,若没有检测到压感数据,判断是否检测到触摸宽度数据;第二指令输出子模块,用于若检测到触摸宽度数据,而且所述触摸宽度数据大于预设阈值,则输出擦除控制指令,若没有检测到触摸宽度数据或者触摸宽度数据小于等于预设阈值,判断所述触摸坐标数据是否在预设范围内;第三指令输出子模块,用于若所述触摸坐标数据在预设范围内,则输出页面元素移动控制指令;以及第四指令输出子模块,用于若所述触摸坐标数据不在预设范围内,则输出页面移动控制指令。
在其中一个实施例中,所述基于交互式电子白板的触摸操作***还包括响应模块,用于根据所述书写控制指令控制所述交互式电子白板进行书写操作的响应,根据所述擦除控制指令控制所述交互式电子白板进行擦除操作的响应,根据所述页面元素移动控制指令控制所述交互式电子白板进行页面元素移动操作的响应,以及根据所述页面移动控制指令控制所述交互式电子白板进行页面移动操作的响应。其中,所述页面元素移动操作包括页面元素的移动、缩放以 及旋转;所述页面移动操作包括页面的移动、缩放以及旋转。
在其中一个实施例中,所述基于交互式电子白板的触摸操作***还包括:存储模块,用于存储所述控制指令,当检测到触摸操作数据时,响应与所述触摸操作数据相应的控制指令。通过所述存储模块能够缩短操作的响应时间,提高操作流畅性。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 基于交互式电子白板的触摸操作方法,其特征在于,包括:
    通过交互式电子白板接收触摸操作数据,所述触摸操作数据为压感数据、触摸宽度数据以及触摸坐标数据;
    根据设定算法将所述触摸操作数据识别为对应的控制指令;
    对交互式电子白板发出所述控制指令。
  2. 根据权利要求1所述的基于交互式电子白板的触摸操作方法,其特征在于,所述交互式电子白板包括触摸框;
    所述通过交互式电子白板接收触摸操作数据,包括:
    通过压力传感器检测所述压感数据,将所述压感数据发送至所述交互式电子白板,以及通过所述触摸框检测所述触摸宽度数据以及触摸坐标数据。
  3. 根据权利要求1所述的基于交互式电子白板的触摸操作方法,其特征在于,所述根据设定算法将所述触摸操作数据识别为对应的控制指令,包括:
    判断是否检测到触摸坐标数据,若检测到触摸坐标数据,判断是否检测到压感数据;
    若检测到压感数据,则输出书写控制指令,若没有检测到压感数据,判断是否检测到触摸宽度数据;
    若检测到触摸宽度数据,而且所述触摸宽度数据大于预设阈值,则输出擦除控制指令,若没有检测到触摸宽度数据或者触摸宽度数据小于等于预设阈值,判断所述触摸坐标数据是否在预设范围内;
    若所述触摸坐标数据在预设范围内,则输出页面元素移动控制指令;
    若所述触摸坐标数据不在预设范围内,则输出页面移动控制指令。
  4. 根据权利要求3所述的基于交互式电子白板的触摸操作方法,其特征在于,还包括控制所述交互式电子白板响应所述控制指令的步骤:
    根据所述书写控制指令控制所述交互式电子白板进行书写操作的响应,根据所述擦除控制指令控制所述交互式电子白板进行擦除操作的响应,根据所述页面元素移动控制指令控制所述交互式电子白板进行页面元素移动操作的响应,以及根据所述页面移动控制指令控制所述交互式电子白板进行页面移动操 作的响应。
  5. 根据权利要求4所述的基于交互式电子白板的触摸操作方法,其特征在于,所述页面元素移动操作包括页面元素的移动、缩放以及旋转;所述页面移动操作包括页面的移动、缩放以及旋转。
  6. 基于交互式电子白板的触摸操作***,其特征在于,包括:
    检测模块,用于通过交互式电子白板接收触摸操作数据,所述触摸操作数据为压感数据、触摸宽度数据以及触摸坐标数据;
    识别模块,用于根据设定算法将所述触摸操作数据识别为对应的控制指令;
    控制模块,用于对交互式电子白板发出所述控制指令。
  7. 根据权利要求1所述的基于交互式电子白板的触摸操作***,其特征在于,所述交互式电子白板包括触摸框;
    所述检测模块包括:
    检测子模块,用于通过压力传感器检测所述压感数据,将所述压感数据发送至所述交互式电子白板,以及通过所述触摸框检测所述触摸宽度数据以及触摸坐标数据。
  8. 根据权利要求1所述的基于交互式电子白板的触摸操作***,其特征在于,所述识别模块包括:
    判断子模块,用于判断是否检测到触摸坐标数据,若检测到触摸坐标数据,判断是否检测到压感数据;
    第一指令输出子模块,用于若检测到压感数据,则输出书写控制指令,若没有检测到压感数据,判断是否检测到触摸宽度数据;
    第二指令输出子模块,用于若检测到触摸宽度数据,而且所述触摸宽度数据大于预设阈值,则输出擦除控制指令,若没有检测到触摸宽度数据或者触摸宽度数据小于等于预设阈值,判断所述触摸坐标数据是否在预设范围内;
    第三指令输出子模块,用于若所述触摸坐标数据在预设范围内,则输出页面元素移动控制指令;以及
    第四指令输出子模块,用于若所述触摸坐标数据不在预设范围内,则输出页面移动控制指令。
  9. 根据权利要求6所述的基于交互式电子白板的触摸操作***,其特征在于,还包括:
    响应模块,用于根据所述书写控制指令控制所述交互式电子白板进行书写操作的响应,根据所述擦除控制指令控制所述交互式电子白板进行擦除操作的响应,根据所述页面元素移动控制指令控制所述交互式电子白板进行页面元素移动操作的响应,以及根据所述页面移动控制指令控制所述交互式电子白板进行页面移动操作的响应。
  10. 根据权利要求9所述的基于交互式电子白板的触摸操作***,其特征在于,所述页面元素移动操作包括页面元素的移动、缩放以及旋转;所述页面移动操作包括页面的移动、缩放以及旋转。
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JP6697100B2 (ja) 2020-05-20
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