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    • 1. 发明申请
    • Selective input system based on tracking of motion parameters of an input device
    • 基于输入设备运动参数跟踪的选择性输入系统
    • US20050052406A1
    • 2005-03-10
    • US10881819
    • 2004-06-28
    • James StephanickChristina JamesEthan BradfordMichael Longe
    • James StephanickChristina JamesEthan BradfordMichael Longe
    • G06F20060101G06F3/023G06F3/033G06F3/048G09G5/00
    • G06F3/04886G06F3/0236G06F3/04883
    • A selective input system and associated method is provided which tracks the motion of a pointing device over a region or area. The pointing device can be a touchpad, a mouse, a pen, or any device capable of providing two or three-dimensional location. The region or area is preferably augmented with a printed or actual keyboard/pad. Alternatively, a representation of the location of the pointing device over a virtual keyboard/pad can be dynamically shown on an associated display. The system identifies selections of items or characters by detecting parameters of motion of the pointing device, such as length of motion, a change in direction, a change in velocity, and or a lack of motion at locations that correspond to features on the keyboard/pad. The input system is preferably coupled to a text disambiguation system such as a T9® or Sloppytype™ system, to improve the accuracy and usability of the input system.
    • 提供了选择性输入系统和相关联的方法,其跟踪指示设备在区域或区域上的运动。 指点设备可以是触摸板,鼠标,笔或能够提供两维或三维位置的任何设备。 该区域或区域优选地用印刷或实际的键盘/垫增强。 或者,可以在相关联的显示器上动态地显示指示设备在虚拟键盘/平板上的位置的表示。 该系统通过检测指示装置的运动参数来识别项目或字符的选择,诸如对应于键盘上的特征的位置处的运动长度,方向改变,速度变化和/或运动缺乏, 垫。 输入系统优选地耦合到诸如T9或Sloppytype(TM)系统的文本消歧系统,以提高输入系统的准确性和可用性。
    • 7. 发明申请
    • Virtual Keyboard Systems with Automatic Correction
    • 具有自动校正功能的虚拟键盘系统
    • US20060274051A1
    • 2006-12-07
    • US11379006
    • 2006-04-17
    • Michael LongePim Meurs
    • Michael LongePim Meurs
    • G09G5/00
    • G06F17/28G06F3/0237G06F3/0238G06F3/0488G06F3/04886G06F3/0489G06F17/273G06F17/276
    • There is disclosed an enhanced text entry system which uses word-level analysis to correct inaccuracies automatically in user keystroke entries on reduced-size or virtual keyboards. A method and system are defined which determine one or more alternate textual interpretations of each sequence of inputs detected within a designated auto-correcting region. The actual interaction locations for the keystrokes may occur outside the boundaries of the specific keyboard key regions associated with the actual characters of the word interpretations proposed or offered for selection, where the distance from each interaction location to each corresponding intended character may in general increase with the expected frequency of the intended word in the language or in a particular context. Likewise, in a virtual keyboard system, the keys actuated may differ from the keys actually associated with the letters of the word interpretations. Each such sequence corresponds to a complete word, and the user can easily select the intended word from among the generated interpretations. Additionally, when the system cannot identify a sufficient number of likely word interpretation candidates of the same length as the input sequence, candidates are identified whose initial letters correspond to a likely interpretation of the input sequence.
    • 公开了一种增强的文本输入系统,其使用字级分析来在缩小尺寸或虚拟键盘上的用户按键条目中自动校正不准确度。 定义了确定在指定的自动校正区域内检测到的每个输入序列的一个或多个替代文本解释的方法和系统。 击键的实际交互位置可以发生在与提出或提供用于选择的单词解释的实际字符相关联的特定键盘键区域的边界之外,其中从每个交互位置到每个对应的预期字符的距离通常可以随着 语言或特定语境中预期词语的预期频率。 同样,在虚拟键盘系统中,致动的键可能与实际上与字解释字母相关联的键可能不同。 每个这样的序列对应于一个完整的单词,并且用户可以容易地从生成的解释中选择预期的单词。 此外,当系统不能识别足够数量的与输入序列相同长度的可能的词解释候选时,识别候选,其初始字母对应于输入序列的可能解释。
    • 8. 发明申请
    • Keyboard System with Automatic Correction
    • US20080100579A1
    • 2008-05-01
    • US11853320
    • 2007-09-11
    • B. RobinsonMichael LongeDavid KayGordon Waddell
    • B. RobinsonMichael LongeDavid KayGordon Waddell
    • G09G5/00
    • G06F3/0219G06F3/0233G06F3/0237G06F3/0238G06F3/04886G06F3/0489G06F3/14G06F17/273G09G2354/00
    • There is disclosed an enhanced text entry system which uses word-level analysis to automatically correct inaccuracies in user keystroke entries on reduced keyboards such as those implemented on a touch-sensitive panel or display screen, or on mechanical keyboard systems. A method and system are defined which determine one or more alternate textual interpretations of each sequence of inputs detected within a designated auto-correcting keyboard region. The actual contact locations for the keystrokes may occur outside the boundaries of the specific keyboard key regions associated with the actual characters of the word interpretations proposed or offered for selection, where the distance from each contact location to each corresponding intended character may in general increase with the expected frequency of the intended word in the language or in a particular context. Likewise, in a mechanical keyboard system, the keys actuated may differ from the keys actually associated with the letters of the word interpretations. Each such sequence corresponds to a complete word, and the user can easily select the intended word from among the generated interpretations. Additionally, when the system cannot identify a sufficient number of likely word interpretation candidates of the same length as the input sequence, candidates are identified whose initial letters correspond to a likely interpretation of the input sequence. The approach utilizes the information contained in the entire sequence of keystrokes corresponding to a word in order to determine the user's likely intention for each character of the sequence. The system also accommodates punctuation characters such as hyphens or apostrophes that are commonly embedded in words such as hyphenated compounds and contractions in English, and characters with special diacritics such as are commonly found in various European languages, e.g., diacritic accent. Special functions may be applied depending on where the user touches the intended string in a displayed word selection list. Once the user selects the desired string, it is automatically “accepted” for output and the next input detected starts a new input sequence corresponding to the entry of a next word.
    • 9. 发明申请
    • Keyboard system with automatic correction
    • US20050174333A1
    • 2005-08-11
    • US11090464
    • 2005-03-25
    • B. RobinsonMichael Longe
    • B. RobinsonMichael Longe
    • G06F17/22G06F3/023G06F3/033G06F3/041G06F3/048G06F17/27G09G5/00H03K17/94H03M11/04
    • G06F3/0219G06F3/0233G06F3/0237G06F3/0238G06F3/04886G06F3/0489G06F3/14G06F17/273G09G2354/00
    • There is disclosed an enhanced text entry system which uses word-level analysis to automatically correct inaccuracies in user keystroke entries on reduced keyboards such as those implemented on a touch-sensitive panel or display screen, or on mechanical keyboard systems. A method and system are defined which determine one or more alternate textual interpretations of each sequence of inputs detected within a designated auto-correcting keyboard region. The actual contact locations for the keystrokes may occur outside the boundaries of the specific keyboard key regions associated with the actual characters of the word interpretations proposed or offered for selection, where the distance from each contact location to each corresponding intended character may in general increase with the expected frequency of the intended word in the language or in a particular context. Likewise, in a mechanical keyboard system, the keys actuated may differ from the keys actually associated with the letters of the word interpretations. Each such sequence corresponds to a complete word, and the user can easily select the intended word from among the generated interpretations. Additionally, when the system cannot identify a sufficient number of likely word interpretation candidates of the same length as the input sequence, candidates are identified whose initial letters correspond to a likely interpretation of the input sequence. The approach utilizes the information contained in the entire sequence of keystrokes corresponding to a word in order to determine the user's likely intention for each character of the sequence. The system also accommodates punctuation characters such as hyphens or apostrophes that are commonly embedded in words such as hyphenated compounds and contractions in English, and characters with special diacritics such as are commonly found in various European languages, e.g., diacritic accent. Special functions may be applied depending on where the user touches the intended string in a displayed word selection list. Once the user selects the desired string, it is automatically “accepted” for output and the next input detected starts a new input sequence corresponding to the entry of a next word.
    • 10. 发明授权
    • Facilitating messaging between a mobile device and a user
    • 促进移动设备和用户之间的消息传递
    • US08019363B2
    • 2011-09-13
    • US10773064
    • 2004-02-04
    • B. Alex RobinsonCharles A. CareyMichael LongeJoe Parr
    • B. Alex RobinsonCharles A. CareyMichael LongeJoe Parr
    • H04W4/00H04M1/725G06F15/173G06F15/16
    • H04W88/184H04L51/04H04L51/28H04L51/38H04W4/12
    • A method, system and computer program product for instant message communication in a wireless and non-wireless environment. The invented system includes an apparatus that facilitates conversation with individuals not included in the user's buddy group, non-buddies. The system includes at least one additional routing code reserved for conversing with non-buddies. The first time during a user session that the system receives a message originating from or destined for a non-buddy, before routing the message, the non-buddy's personal identifier is associated with one of the reserved routing codes. The mobile user can then reply to the message using the same automated ‘reply’ function available for replies to buddies. The non-buddy routing code assignment is only for the duration of a user session. When the mobile user signs off from the system, the routing code becomes available for reassignment.
    • 一种用于在无线和非无线环境中即时消息通信的方法,系统和计算机程序产品。 本发明的系统包括便利与不包括在用户的伙伴组中的个人进行对话的装置,非伙伴。 该系统包括至少一个额外的路由代码,用于与非伙伴进行交谈。 在用户会话期间,在系统接收到来自或去往非伙伴的消息之前的第一次,在路由消息之前,非伙伴的个人标识符与保留的路由代码之一相关联。 然后,移动用户可以使用与回复伙伴相同的自动“回复”功能来回复消息。 非伙伴路由代码分配仅在用户会话的持续时间内。 当移动用户从系统中注销时,路由代码可用于重新分配。