WO2015100691A1 - 便于修改的手写输入设备快速输入法 - Google Patents

便于修改的手写输入设备快速输入法 Download PDF

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WO2015100691A1
WO2015100691A1 PCT/CN2014/000908 CN2014000908W WO2015100691A1 WO 2015100691 A1 WO2015100691 A1 WO 2015100691A1 CN 2014000908 W CN2014000908 W CN 2014000908W WO 2015100691 A1 WO2015100691 A1 WO 2015100691A1
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input
input area
current
sub
area
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PCT/CN2014/000908
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English (en)
French (fr)
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朱海威
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朱海威
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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
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials
    • G06F3/023Arrangements for converting discrete items of information into a coded form, e.g. arrangements for interpreting keyboard generated codes as alphanumeric codes, operand codes or instruction codes
    • G06F3/0233Character input methods
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/22Character recognition characterised by the type of writing
    • G06V30/226Character recognition characterised by the type of writing of cursive writing
    • G06V30/2268Character recognition characterised by the type of writing of cursive writing using stroke segmentation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/24Character recognition characterised by the processing or recognition method
    • G06V30/242Division of the character sequences into groups prior to recognition; Selection of dictionaries
    • G06V30/244Division of the character sequences into groups prior to recognition; Selection of dictionaries using graphical properties, e.g. alphabet type or font
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/24Character recognition characterised by the processing or recognition method
    • G06V30/242Division of the character sequences into groups prior to recognition; Selection of dictionaries
    • G06V30/246Division of the character sequences into groups prior to recognition; Selection of dictionaries using linguistic properties, e.g. specific for English or German language
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition
    • G06V30/32Digital ink
    • G06V30/333Preprocessing; Feature extraction
    • G06V30/347Sampling; Contour coding; Stroke extraction
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V30/00Character recognition; Recognising digital ink; Document-oriented image-based pattern recognition
    • G06V30/10Character recognition

Definitions

  • the invention relates to a quick input method for a handwriting input device which is easy to modify, and particularly relates to a method for spacing characters by adding a dynamic separator on a handwriting input device, thereby improving handwriting input speed and recognition accuracy.
  • handwriting input has been widely used in mobile devices such as mobile phones and handheld computers.
  • Most of the existing handwriting input devices allow users to write a text (or word) each time, and then handwritten text through an internal recognition system ( Or word) converted to a standard font recognized by the phone on the phone screen.
  • Or word an internal recognition system
  • the disadvantage of this method is that only one text (or word) can be input at a time when handwriting, and it is necessary to pause for text recognition, unable to write without interruption, and cannot save the original handwriting input by handwriting.
  • some handwriting input devices begin to support multi-text (or multi-word) continuous writing input.
  • This technique does not require the system to recognize a single word (or word), and can input multiple words (or words) at a time, and the handwriting speed is greatly improved.
  • the prior art also has a drawback: it is not possible to accurately divide the handwriting input into a single character (or word) when continuously inputting a plurality of characters (or words). This causes multiple characters to be recognized as one word when text recognition is performed, or multiple words are recognized as one word, and thus cannot be correctly recognized. If the input device does not perform text recognition, but reduces multiple characters into one image and saves them in a file, multiple words (or words) can only be processed as one unit when editing the file, rather than being processed as multiple units.
  • the problem to be solved by the present invention is how to overcome the above-mentioned drawbacks of the prior art, and provide a quick input method for handwriting input devices that is easy to modify.
  • the invention facilitates the modification of the handwriting input device fast input method, comprising the following steps:
  • the dynamic separator maintains A horizontal axis unit with the left side of the current input area; the left side of the dynamic separator is the current sub-input area, and the right side of the dynamic separator is the next sub-field. Input area,
  • the processing component of the touch screen input device first determines whether there is a new track point input in the current input area within a predetermined time T:
  • the processing component of the touch screen input device stores the handwritten image in the current sub-input area as a whole, and after being recognized or scaled down, displayed in the to-be-displayed cell, the to-be-displayed cell is converted into the current display cell, and A new to-be-displayed cell is generated on the right side, which is represented by the current display cell and the right to be displayed cell; the image in the current sub-input area is cleared and/or the dynamic delimiter is converted into a static delimiter, and on the right side thereof A new current sub-input area, a new dynamic delimiter, and a new next sub-input area are sequentially generated, as follows: the current sub-input area, the dynamic delimiter, and the next sub-input area are shifted to the right, and then the first step is returned;
  • step 2 If the new stroke is located to the right of the dynamic separator, that is, the new track point is located in the next sub-input area, then return to step 2;
  • the processing component of the touch screen input device continuously finds the rightmost right in the current sub-input area. Track points and keep the dynamic separators to the right, ensuring that the dynamic separator and the rightmost track point of the current sub-input area always maintain B horizontal axis units, and then return to step 1;
  • next display line is automatically transferred; when the current sub-input area, dynamic separator, or next sub-input area is right-shifted to the far right of the current input area, the automatic rotation is automatically performed.
  • the next input area where M, N, A, and B are positive integers, and T is a positive number. T generally takes 0.3 to 2 seconds, M, N, and A generally take 8 to 10, and B generally takes 4 to 6.
  • the current sub-input area can be automatically extended with the user's continuous handwriting input, satisfying the user. demand.
  • the dynamic separator is in a vertical line shape. So designed, the separator has a simple structure and a small footprint.
  • the current display line also has a dynamic separator.
  • the dynamic separator is shifted to the right, and the dynamic separator is always located between the current display grid and the grid to be displayed. So designed, this dynamic separator is like the mouse in the existing input device indicating the input position.
  • the dynamic separator of step 2 when the dynamic separator of step 2 is shifted to the right, it is produced as a static delimiter in situ. Click on a static delimiter to insert the handwritten input at the static separator, or delete the left or right side. Input the image by hand. Designed to be easy to edit.
  • the core of the invention is to separate the current input area by adding a dynamic separator.
  • a current sub-input area that can be extended as needed and a next sub-input area that can be continuously shifted to the right.
  • the text that has just been written can be spooled (temporary or temporary and recognized).
  • the current sub-input area can be conveniently extended according to needs, and the character arrangement is convenient and convenient for reference for the user to write later;
  • the present invention supports fast word-by-word (or word) input, and also allows the user to input multiple characters (or words) at a time.
  • the invention is suitable for inputting Chinese characters in Chinese, Japanese, Korean, etc., input processing of alphabetic characters such as English, French, German, and input processing of various punctuation marks. It is suitable for various terminal devices that support external input, such as personal computers, smart phones, and PDAs.
  • FIG. 1 is a flow chart of a quick input method of a handwriting input device which is easy to modify in the present invention
  • FIG. 2 is a schematic diagram of multi-word input effect in a conventional handwriting input device (no dynamic separator);
  • FIG. 3 is a schematic diagram showing the effect of displaying the current input area when a stroke is input
  • Figure 4 is a schematic diagram showing the effect of the current input area display when a letter is input
  • Figure 5 is a schematic diagram showing the effect of the current input area display when a word is input
  • FIG. 6 is a schematic diagram showing the effect of displaying the current display grid when a plurality of words are input in the current input area
  • Fig. 7 is a schematic diagram showing the effect of displaying the current display grid when a plurality of Chinese characters are input in the current input area.
  • 1 is a dynamic separator and 2 is a static separator.
  • the handwriting input device quick input method which is convenient for modification includes the following steps:
  • the dynamic separator 1 maintains A horizontal axis unit with the left side of the current input area; the left side of the dynamic separator 1 is the current sub-input area, and the right side of the dynamic separator is Next sub-input area,
  • the processing component of the touch screen input device first determines whether there is a new track point input in the current input area within a predetermined time T:
  • the processing component of the touch screen input device stores the handwritten image in the current sub-input area as a whole, and after being recognized or scaled down, displayed in the to-be-displayed cell, the to-be-displayed cell is converted into the current display cell, and A new to-be-displayed cell is generated on the right side, which is represented by the current display cell and the right to be displayed cell; the image in the current sub-input area is emptied and/or the dynamic delimiter 1 is converted into a static delimiter 2, and On the right side, a new current sub-input area, a new dynamic delimiter 1 and a new next sub-input area are sequentially generated, which are represented by the current sub-input area, the dynamic delimiter and the next sub-input area being shifted to the right, and then returned to the first step;
  • step 2 If the new stroke is located to the right of the dynamic separator 1, that is, the new track point is located in the next sub-input area, then return to step 2;
  • the processing component of the touch screen input device continuously finds the rightmost right in the current sub-input area. Track points and keep the dynamic separators to the right, ensuring that the dynamic separator and the rightmost track point of the current sub-input area always maintain B horizontal axis units, and then return to step 1;
  • next display line is automatically transferred; when the current sub-input area, dynamic separator, or next sub-input area is right-shifted to the far right of the current input area, the automatic rotation is automatically performed.
  • the next input area where M, N, A, and B are positive integers, and T is a positive number. T generally takes 0.3 to 2 seconds, M, N, and A generally take 8 to 10, and B generally takes 4 to 6.
  • the dynamic separator 1 is in the form of a vertical line.
  • the dynamic display separator 1 is also provided in the current display line. When the current display grid and the grid to be displayed are shifted to the right, the dynamic separator 1 is shifted to the right, and the dynamic separator 1 is always located between the current display grid and the grid to be displayed.
  • Step 2 When the dynamic separator 1 is shifted to the right, it is produced as a static separator 2 in its original position. Click on a static separator 2 to insert the handwritten input at the static separator 2, or delete the left side or Handwriting input images on the right side.

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  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Vision & Pattern Recognition (AREA)
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  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Computational Linguistics (AREA)
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Abstract

 本发明涉及一种便于修改的手写输入设备快速输入法。现有手写输入设备连续输入多个文字(或单词)时无法准确地分割、处理。为此,本发明便于修改的手写输入设备快速输入法,通过增设动态分隔符,在当前输入区域中分隔出一个长度可以根据需要不断延长的当前子输入区域和一个可以不断右移的下一子输入区,当用户需要时,只需笔尖或指头跨过动态分隔符,进入下一子输入区书写,就可使刚刚书写完成的文字得到后台处理。本发明具有步骤少、速度快、效率高的优点,适合处理汉语、日语、韩语等字符文字,也适合处理英语、法语、德语等字母文字以及各种标点符号,适用于个人电脑、智能手机、掌上电脑等各种支持外部输入的终端设备。

Description

便于修改的手写输入设备快速输入法 技术领域
本发明涉及一种便于修改的手写输入设备快速输入法,具体涉及一种在手写输入设备上通过增设动态分隔符来间隔字符,借以提高手写输入速度和识别准确度的方法。
背景技术
近年来,手写输入已广泛应用于移动电话、掌上电脑等移动设备,现有大部分的手写输入设备是让用户每次书写一个文字(或单词),再通过内部的识别***将手写的文字(或单词)转换为手机可识别的标准字体显示在手机屏幕上。但是此种方式的缺点是手写时一次只能输入一个文字(或单词),并且必须停顿下来等待文字识别,无法不间断书写,也无法保存手写输入的原笔迹。
为了改善用户体验,有的手写输入设备开始支持多文字(或多单词)连续书写输入。这种技术不需要等待***对单个文字(或单词)进行识别,能一次连续输入多个文字(或单词),手写速度大大提高。但是现有技术也有一个缺陷:连续输入多个文字(或单词)时无法准确地将手写输入分割成单个文字(或单词)。这会导致在进行文字识别时将多个文字作为一个文字进行识别,或者将多个单词作为一个单词进行识别,进而不能正确识别。如果输入设备不进行文字识别,而是将多个字符缩小成一个图像保存在文件中,在编辑文件时多个文字(或单词)只能作为一个单元处理,而不是作为多个单元处理。
发明内容
本发明要解决的问题是如何克服现有技术的上述缺陷,提供一种便于修改的手写输入设备快速输入法。
本发明便于修改的手写输入设备快速输入法,包括下述步骤:
(1)在触屏输入装置上定义坐标系;
(2)通过坐标将触屏分成M个显示行,手写输入时,其中一显示行处于激活状态,为当前显示行,当前显示行内设有当前显示格和待显示格,上次手写信息在当前显示格内显示,即将输入的信息将在待显示格内显示,同时将触屏区域分为N个输入区域,至少一个输入区域为当前输入区域;
(3)当前输入区域内设有动态分隔符,该动态分隔符与当前输入区域左边侧保持A个横轴单位;动态分隔符左侧为当前子输入区,动态分隔符右侧为下一子输入区,
①.每次手写输入时,触屏输入装置的处理部件首先判断在预定时间T内,当前输入区域是否有新的轨迹点输入:
若超过预定时间T,当前输入区域仍没有新轨迹点输入,判断本次手写输入结束,
②.触屏输入装置的处理部件将当前子输入区内的手写影像作为整体存贮,识别后或按比例缩小后显示在待显示格内,该待显示格转化为当前显示格,并在其右侧生成新的待显示格,具体表现为当前显示格和待显示格右移;同时将当前子输入区内的影像清空和/或将动态分隔符转化为静态分隔符,并在其右侧依次生成新的当前子输入区、新的动态分隔符和新的下一子输入区,具体表现为当前子输入区、动态分隔符和下一子输入区右移,然后返还第①步;
若在预定时间T内,当前输入区域内有新轨迹点输入,则进一步判断该新轨迹点位于动态分隔符左侧还是右侧,即判断新轨迹点位于当前子输入区还是位于下一子输入区,
若新笔划位于动态分隔符右侧,即新轨迹点位于下一子输入区,则返还第②步;
若新笔划位于动态分隔符左侧,即新轨迹点位于当前子输入区,则判定本次手写输入尚未结束,所述触屏输入装置的处理部件不断找出当前子输入区内最靠右的轨迹点,并使动态分隔符不断右移,确保动态分隔符与当前子输入区最靠右的轨迹点始终保持B个横轴单位,然后返还第①步;
当前显示格、待显示格右移至显示行最右端时,自动转下一显示行;当前子输入区、动态分隔符或下一子输入区右移至当前输入区域最右侧时,自动转下一输入区域,其中M、N、A、B均为正整数,T为正数。T一般取0.3~2秒,M、N、A一般取8~10,B一般取4~6。
如此设计,如果用户需要连续输入较长的字符串或单词,可以在当前子输入区内连续书写,这种情况下,当前子输入区可以不断随着用户的持续手写输入而自动伸展,满足用户需求。
用户写完一个词组或单词后,只需移动很小距离,跨过动态分隔符,进入下一子输入区内书写,刚写完的词组或单词就可进入后台处理,十分方便。
作为优化,所述动态分隔符呈竖线状。如此设计,分隔符结构简单,占用面积小。
作为优化,当前显示行中也设有动态分隔符,当前显示格和待显示格右移时,动态分隔符随同右移,该动态分隔符始终位于当前显示格和待显示格之间。如此设计,该动态分隔符如同现有输入设备中的指示输入位置的鼠标。
作为优化,第②步动态分隔符右移时,其原位上生产成一个静态分隔符,点击某一静态分隔符,可在该静态分隔符处***手写输入,也可删除其左侧或右侧手写输入影像。如此设计,便于编辑。
本发明的核心在于:通过增设动态分隔符,在当前输入区域中分隔出 一个长度可以根据需要不断延长的当前子输入区域和一个可以不断右移的下一子输入区,当用户需要时,只需笔尖或指头跨过动态分隔符,进入下一子输入区书写,就可使刚刚书写完成的文字得到后台处理(暂存或者暂存和识别)。
与现有技术相比,本发明的优点在于:
(1).步骤少、速度快、效率高;
(2).有助于提高字迹识别率;
(3).便于后期编辑;
(4).当前子输入区可以方便地根据需要延行,字符排布疏密控制方便,供用户后续书写时参考;
(5).本发明支持快速逐个字(或单词)输入,也可支持用户一次输入多个字符(或单词)。
本发明适用于汉语、日语、韩语等方块文字输入,英语、法语、德语等字母文字的输入处理,以及各种标点符号的输入处理。适合个人电脑、智能手机、掌上电脑等各种支持外部输入的终端设备使用。
附图说明
下面结合附图对本发明便于修改的手写输入设备快速输入法作进一步说明:
图1是在本发明便于修改的手写输入设备快速输入法的流程图;
图2是在传统手写输入设备的多单词输入效果示意图(无动态分隔符);
图3是输入一个笔划时当前输入区域显示的效果示意图;
图4是输入一个字母时当前输入区域显示的效果示意图;
图5是输入一个单词时当前输入区域显示的效果示意图;
图6是在当前输入区域输入多个单词时当前显示格显示的效果示意图;
图7是在当前输入区域输入多个汉字时当前显示格显示的效果示意图。
图中:1为动态分隔符、2为静态分隔符。
具体实施方式
具体实施方式:如图1所示,本便于修改的手写输入设备快速输入法,包括下述步骤:
(1)在触屏输入装置上定义坐标系;
(2)通过坐标将触屏分成M个显示行,手写输入时,其中一显示行处于激活状态,为当前显示行,当前显示行内设有当前显示格和待显示格,上次手写信息在当前显示格内显示,即将输入的信息将在待显示格内显示,同时将触屏区域分为N个输入区域,至少一个输入区域为当前输入区域;
(3)当前输入区域内设有动态分隔符1,该动态分隔符1与当前输入区域左边侧保持A个横轴单位;动态分隔符1左侧为当前子输入区,动态分隔符右侧为下一子输入区,
①.每次手写输入时,触屏输入装置的处理部件首先判断在预定时间T内,当前输入区域是否有新的轨迹点输入:
若超过预定时间T,当前输入区域仍没有新轨迹点输入,判断本次手写输入结束,
②.触屏输入装置的处理部件将当前子输入区内的手写影像作为整体存贮,识别后或按比例缩小后显示在待显示格内,该待显示格转化为当前显示格,并在其右侧生成新的待显示格,具体表现为当前显示格和待显示格右移;同时将当前子输入区内的影像清空和/或将动态分隔符1转化为静态分隔符2,并在其右侧依次生成新的当前子输入区、新的动态分隔符1和新的下一子输入区,具体表现为当前子输入区、动态分隔符和下一子输入区右移,然后返还第①步;
若在预定时间T内,当前输入区域内有新轨迹点输入,则进一步判断该新轨迹点位于动态分隔符左侧还是右侧,即判断新轨迹点位于当前子输入区还是位于下一子输入区,
若新笔划位于动态分隔符1右侧,即新轨迹点位于下一子输入区,则返还第②步;
若新笔划位于动态分隔符左侧,即新轨迹点位于当前子输入区,则判定本次手写输入尚未结束,所述触屏输入装置的处理部件不断找出当前子输入区内最靠右的轨迹点,并使动态分隔符不断右移,确保动态分隔符与当前子输入区最靠右的轨迹点始终保持B个横轴单位,然后返还第①步;
当前显示格、待显示格右移至显示行最右端时,自动转下一显示行;当前子输入区、动态分隔符或下一子输入区右移至当前输入区域最右侧时,自动转下一输入区域,其中M、N、A、B均为正整数,T为正数。T一般取0.3~2秒,M、N、A一般取8~10,B一般取4~6。
所述动态分隔符1呈竖线状。
当前显示行中也设有动态分隔符1,当前显示格和待显示格右移时,动态分隔符1随同右移,该动态分隔符1始终位于当前显示格和待显示格之间。
第②步动态分隔符1右移时,其原位上生产成一个静态分隔符2,点击某一静态分隔符2,可在该静态分隔符2处***手写输入,也可删除其左侧或右侧手写输入影像。

Claims (4)

  1. 一种便于修改的手写输入设备快速输入法,包括下述步骤:
    (1)在触屏输入装置上定义坐标系;
    (2)通过坐标将触屏分成M个显示行,手写输入时,其中一显示行处于激活状态,为当前显示行,当前显示行内设有当前显示格和待显示格,上次手写信息在当前显示格内显示,即将输入的信息将在待显示格内显示,同时将触屏区域分为N个输入区域,至少一个输入区域为当前输入区域;
    (3)当前输入区域内设有动态分隔符,该动态分隔符与当前输入区域左边侧保持A个横轴单位;动态分隔符左侧为当前子输入区,动态分隔符右侧为下一子输入区,
    ①.每次手写输入时,触屏输入装置的处理部件首先判断在预定时间T内,当前输入区域是否有新的轨迹点输入:
    若超过预定时间T,当前输入区域仍没有新轨迹点输入,判断本次手写输入结束,
    ②.触屏输入装置的处理部件将当前子输入区内的手写影像作为整体存贮,识别后或按比例缩小后显示在待显示格内,该待显示格转化为当前显示格,并在其右侧生成新的待显示格,具体表现为当前显示格和待显示格右移;同时将当前子输入区内的影像清空和/或将动态分隔符转化为静态分隔符,并在其右侧依次生成新的当前子输入区、新的动态分隔符和新的下一子输入区,具体表现为当前子输入区、动态分隔符和下一子输入区右移,然后返还第①步;
    若在预定时间T内,当前输入区域内有新轨迹点输入,则进一步判断该新轨迹点位于动态分隔符左侧还是右侧,即判断新轨迹点位于当前子输入区还是位于下一子输入区,
    若新笔划位于动态分隔符右侧,即新轨迹点位于下一子输入区,则返还第②步;
    若新笔划位于动态分隔符左侧,即新轨迹点位于当前子输入区,则判定本次手写输入尚未结束,所述触屏输入装置的处理部件不断找出当前子输入区内最靠右的轨迹点,并使动态分隔符不断右移,确保动态分隔符与当前子输入区最靠右的轨迹点始终保持B个横轴单位,然后返还第①步;
    当前显示格、待显示格右移至显示行最右端时,自动转下一显示行;当前子输入区、动态分隔符或下一子输入区右移至当前输入区域最右侧时,自动转下一输入区域,其中M、N、A、B均为正整数,T为正数。
  2. 根据权利要求1所述的便于修改的手写输入设备快速输入法,其特征在于:所述动态分隔符呈竖线状。
  3. 根据权利要求1所述的便于修改的手写输入设备快速输入法,其特征在于:当前显示行中也设有动态分隔符,当前显示格和待显示格右移时,动态分隔符随同右移,该动态分隔符始终位于当前显示格和待显示格之间。
  4. 根据权利要求3所述的便于修改的手写输入设备快速输入法,其特征在于:第②步动态分隔符右移时,其原位上生产成一个静态分隔符,点击某一静态分隔符,可在该静态分隔符处***手写输入,也可删除其左侧或右侧手写输入影像。
PCT/CN2014/000908 2014-01-02 2014-10-14 便于修改的手写输入设备快速输入法 WO2015100691A1 (zh)

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