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    • 11. 发明授权
    • Operating a network using relational database methodology
    • 使用关系数据库方法来运行网络
    • US08682940B2
    • 2014-03-25
    • US12830154
    • 2010-07-02
    • Jacobus E Van de MerweXu ChenYun MaoZhuoqing M Mao
    • Jacobus E Van de MerweXu ChenYun MaoZhuoqing M Mao
    • G06F17/30
    • H04L41/145G06F17/30371G06F17/30383
    • The disclosed technology involves the use of relational databases in conjunction with declarative language and network-wide, database abstractions to manage and operate networks. The data model creates a logically centralized database abstraction and access point for managing data relevant to network management. Exemplary managed data includes router configurations, network status and provisioning data. This information resides in a single database system which is tightly integrated with the operational network. Transactional write operations are used to change network configurations, and enforce constraints to detect and prevent policy violations during operation. In accordance with one aspect of the disclosed technology, a network operation is implemented by means of a series of database commands—read and/or write—from and to database view tables.
    • 所公开的技术涉及使用关系数据库结合声明性语言和网络范围的数据库抽象来管理和操作网络。 数据模型创建了一个逻辑上集中的数据库抽象和接入点,用于管理与网络管理相关的数据。 示例性管理数据包括路由器配置,网络状态和供应数据。 该信息位于与操作网络紧密集成的单个数据库系统中。 事务性写入操作用于更改网络配置,并强制实施约束,以便在运行期间检测和防止策略违规。 根据所公开的技术的一个方面,通过一系列数据库命令(读取和/或写入数据库视图表)实现网络操作。
    • 14. 发明授权
    • Method for fast scene matching
    • 快速场景匹配的方法
    • US08548256B2
    • 2013-10-01
    • US12828330
    • 2010-07-01
    • Alexander C. LouiMadirakshi DasXu Chen
    • Alexander C. LouiMadirakshi DasXu Chen
    • G06K9/68
    • G06K9/00677
    • A method for identifying digital images having matching backgrounds from a collection of digital images, comprising using a processor to perform the steps of: determining a set of one or more feature values for each digital image in the collection of digital images, wherein the set of feature values includes an edge compactness feature value that is an indication of the number of objects in the digital image that are useful for scene matching; determining a subset of the collection of digital images that are good candidates for scene matching by applying a classifier responsive to the determined feature values; applying a scene matching algorithm to the subset of the collection of digital images to identify groups of digital images having matching backgrounds; and storing an indication of the identified groups of digital images having matching backgrounds in a processor-accessible memory.
    • 一种用于从数字图像集合中识别具有匹配背景的数字图像的方法,包括使用处理器执行以下步骤:确定数字图像集合中的每个数字图像的一个或多个特征值的集合,其中所述一组 特征值包括边缘紧凑特征值,其是数字图像中用于场景匹配的对象的数量的指示; 通过响应于所确定的特征值应用分类器来确定数字图像的集合的子集,其是场景匹配的良好候选; 将场景匹配算法应用于数字图像集合的子集,以识别具有匹配背景的数字图像组; 以及将所识别的具有匹配背景的数字图像组的指示存储在处理器可访问存储器中。
    • 18. 发明授权
    • Array substrate and manufacturing method
    • 阵列基板及制造方法
    • US08236628B2
    • 2012-08-07
    • US12888171
    • 2010-09-22
    • Xiang LiuZhenyu XieXu Chen
    • Xiang LiuZhenyu XieXu Chen
    • H01L21/00H01L21/84
    • H01L33/08H01L27/124
    • A method of manufacturing an array substrate comprising: forming a data line and a gate line which are crossed with each other and a gate electrode on a base substrate, and the data line is discontinuously disposed so as to be separated from the gate line or the gate line is discontinuously disposed so as to be separated from the data line; forming an active layer and a gate insulating layer including bridge via holes and a source electrode via hole on the base substrate, and the bridge via holes are located at positions respectively corresponding to adjacent discontinuous sections of the data line or adjacent discontinuous sections of the gate line, and the source electrode via hole is located at a position corresponding to the data line; and forming a pixel electrode, a source electrode, a drain electrode and a bridge line on the base substrate, and the pixel electrode and the drain electrode are formed integrally, and the source electrode is connected to the data line through the source electrode via hole, and the bridge line connects the adjacent discontinuous sections of the data line or the adjacent discontinuous sections of the gate line through the bridge via holes.
    • 一种制造阵列基板的方法,包括:形成彼此交叉的数据线和栅极线以及在基底基板上的栅电极,并且数据线被不连续地设置成与栅极线或 栅极线不连续地设置成与数据线分离; 形成有源层和栅极绝缘层,栅极绝缘层包括基底基板上的桥接通孔和源极电极通孔,桥接通孔分别位于数据线的相邻不连续部分或栅极的相邻不连续部分 源极电极通孔位于与数据线对应的位置; 并且在基底基板上形成像素电极,源电极,漏电极和桥接线,并且像素电极和漏电极一体地形成,源电极通过源电极通孔连接到数据线 并且桥接线通过桥式通孔连接数据线的相邻不连续部分或栅极线的相邻不连续部分。
    • 19. 发明授权
    • TFT-LCD array substrate and method of manufacturing the same
    • TFT-LCD阵列基板及其制造方法
    • US08199270B2
    • 2012-06-12
    • US12648480
    • 2009-12-29
    • Xiang LiuSeung Moo RimXu ChenZhenyu Xie
    • Xiang LiuSeung Moo RimXu ChenZhenyu Xie
    • G02F1/136
    • H01L27/1288H01L29/78618H01L29/78696
    • The present invention relates to a method of manufacturing an array substrate of TFT-LCD. The method includes the following steps. In step 1, a gate metal thin film is deposited on a substrate and patterned into gate electrodes and gate lines by a first patterning process. In step 2, a gate insulation layer, a semiconductor layer and a barrier layer are subsequently deposited on the resultant structure of step 1 and are patterned into gate insulation layer pattern, semiconductor layer pattern and barrier layer pattern by a second patterning process, wherein the barrier layer is used for preventing the semiconductor layer at the TFT channel from being etched. In step 3, an ohmic contact layer, a transparent conductive layer, a source drain metal layer and a passivation layer are subsequently deposited on the resultant structure of step 2, and are patterned into ohmic contact layer pattern, pixel electrodes, data lines, source electrodes, drain electrodes and passivation layer pattern in a patterning process.
    • 本发明涉及TFT-LCD阵列基板的制造方法。 该方法包括以下步骤。 在步骤1中,栅极金属薄膜沉积在衬底上并通过第一图案化工艺图案化成栅电极和栅极线。 在步骤2中,随后将栅极绝缘层,半导体层和阻挡层沉积在步骤1的结果上,并通过第二图案化工艺图案化为栅极绝缘层图案,半导体层图案和势垒层图案,其中 阻挡层用于防止TFT沟道处的半导体层被蚀刻。 在步骤3中,随后在步骤2的合成结构上沉积欧姆接触层,透明导电层,源极漏极金属层和钝化层,并将其图案化为欧姆接触层图案,像素电极,数据线,源极 电极,漏电极和钝化层图案。
    • 20. 发明申请
    • QUICK JOINT IN HYDRAULIC PIPELINE
    • 液压管路快速接头
    • US20120025523A1
    • 2012-02-02
    • US13177193
    • 2011-07-06
    • Zongyuan ZhuXu Chen
    • Zongyuan ZhuXu Chen
    • F16L37/30F16L21/02F16L37/00
    • F16L37/34F16L37/088
    • A quick joint in a hydraulic pipeline, more particularly, a quick pipeline joint applied to a hydraulic system, where frequent disconnection or connection of liquid pipelines is required. In one embodiment, the quick joint in the hydraulic pipeline includes an outer joint and an inner joint. The outer joint includes an oil pipe joint, O-rings, a block, a spring, a valve rod, a plunger, a joint sleeve and other parts. The inner joint includes a plurality of O-rings, a spring seat, a joint sleeve, a spring, an oil pipe joint and other parts. The outer joint and the inner joint can be connected or disconnected easily through insertion and pull-out of a circlip.
    • 液压管道中的快速接头,更具体地说,应用于液压系统的快速管道接头,其中需要频繁地断开或连接液体管道。 在一个实施例中,液压管道中的快速接头包括外接头和内接头。 外接头包括油管接头,O形圈,块体,弹簧,阀杆,柱塞,接头套等部件。 内接头包括多个O形环,弹簧座,接头套,弹簧,油管接头等部件。 外接头和内接头可以通过弹簧的插入和拉出而容易地连接或断开。