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    • 5. 发明授权
    • Tuning cell sizes in interpolated lookup tables
    • 在内插查找表中调整单元格大小
    • US08035654B1
    • 2011-10-11
    • US11840851
    • 2007-08-17
    • Lars U. Borg
    • Lars U. Borg
    • G09F5/02
    • H04N1/6019
    • Tuning sizes of cells of an interpolated lookup table may be performed based at least in part on an area specific behavior of a quality metric. A weighted input shaper curve may be determined to reduce interpolation errors in a multi-dimensional color lookup table. An initial input shaper curve may be applied to a color lookup table to create an interpolation result. The interpolation result may then be assessed for accuracy. The accuracy assessment may include comparing the interpolation result with a reference representation. An interpolation error may be calculated as the error between one or more intervals in a prospective color lookup table as compared to a reference representation. The weighted input shaper curve may be based at least in part on the calculated interpolation error.
    • 可以至少部分地基于质量度量的区域具体行为来执行内插查找表的单元的调整大小。 可以确定加权输入整形器曲线以减少多维颜色查找表中的插值误差。 可以将初始输入整形器曲线应用于颜色查找表以创建插值结果。 然后可以评估插值结果的准确性。 精度评估可以包括将插值结果与参考表示进行比较。 与参考表示相比,内插误差可以被计算为预期颜色查找表中的一个或多个间隔之间的误差。 加权输入整形器曲线可以至少部分地基于所计算的插值误差。
    • 6. 发明授权
    • Method and system for continuous interactive communication in an electronic network
    • 电子网络中连续交互式通信的方法和系统
    • US07155477B2
    • 2006-12-26
    • US09896017
    • 2001-06-28
    • John BlairRobert Pasker
    • John BlairRobert Pasker
    • G06F15/16G06F12/14G06F13/00G09F5/02
    • H04L67/36H04L29/06H04L29/12801H04L51/28H04L51/36H04L61/6004H04L67/14H04L67/322H04L69/329H04N7/173
    • A method and system are disclosed for providing continuous, interactive communication among devices on an electronic network (110). A permanent, dedicated symmetric connection is provided between a server application and a client device (164). Both client and server can therefore communicate bi-directionally. Message storage is provided for allowing messages to be stored (166,178) while the client is offline or otherwise unavailable. The method and system is operable with any addressable device (164, 174, 174) on the electronic network. The invention can be used as an alternative to, or in conjunction with, prior art electronic network communication methods. The invention implements an advanced message routing system. A set of base capabilities are built on top of the message routing system. The communication method and system according to the present invention use a graphical user interface to virtually represent the applications that are used to interact with the electronic network. These graphical representations (276) are used to facilitate the transmission and receipt of messages across the electronic network. Applications according to the present invention are grouped into different levels according to their increasing levels of power and specificity. An interface (384, 472) is also provided to iconically represent the underlying interactive connections of the communication system. The present invention provides a one-to-one connection for bi-directionally publishing and receiving messages and a one-to-many connection. This interface enables applications to interact and deliver any type of focused functionality.
    • 公开了用于在电子网络(110)上的设备之间提供连续的交互式通信的方法和系统。 在服务器应用和客户端设备之间提供永久的专用对称连接(164)。 客户端和服务器都可以双向通信。 提供了消息存储,用于在客户端脱机或不可用时允许存储消息(166,178)。 该方法和系统可与电子网络上的任何可寻址设备(164,174,174)一起操作。 本发明可以用作与现有技术的电子网络通信方法的替代或结合使用。 本发明实现了高级消息路由系统。 一组基本功能构建在消息路由系统之上。 根据本发明的通信方法和系统使用图形用户界面来虚拟地表示用于与电子网络交互的应用。 这些图形表示(276)用于促进跨越电子网络的消息的发送和接收。 根据本发明的应用根据其功率和特异性的增加而被分组成不同的级别。 还提供了一个接口(384,472),用于图标地表示通信系统的底层交互式连接。 本发明提供用于双向发布和接收消息和一对多连接的一对一连接。 该界面使应用程序能够交互并提供任何类型的重点功能。