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    • 31. 发明授权
    • Layer-based context quantization with context partitioning
    • 基于层次的上下文量化与上下文分区
    • US07587092B2
    • 2009-09-08
    • US11287054
    • 2005-11-25
    • Hua CaiJiang Li
    • Hua CaiJiang Li
    • G06K9/36G06K9/46
    • H04N19/91H04N19/13H04N19/196H04N19/30H04N19/46H04N19/463H04N19/60H04N19/63
    • Conditioning states are selected for coding a source from a plurality of potential conditioning states. The potential conditioning states represent a series of context events, such as a plurality of binary context events. According to a rule, potential conditioning states are partitioned into groups, such as by partitioning the potential conditioning states according to the number or significant context events in each of the conditioning states. The conditioning states within each of the groups are then collected into layers, and then the conditioning states in the layer are quantized to form a next layer of collective conditioning states. Coding efficiency indicators, such as context quantization efficiencies, are calculated for each of the layers. Based on the context quantization efficiencies, layers in each of the groups are selected for use in a context model for coding the source.
    • 选择调节状态用于从多个潜在调节状态对源编码。 潜在的调理状态表示一系列的上下文事件,诸如多个二进制上下文事件。 根据规则,潜在的调理状态被划分成组,例如通过根据每个调节状态中的数量或重要的上下文事件划分潜在的调节状态。 然后将每个组内的调理状态收集到层中,然后将层中的调节状态量化以形成下一层的集体调理状态。 为每个层计算编码效率指标,例如上下文量化效率。 基于上下文量化效率,选择每个组中的层用于用于对源编码的上下文模型。
    • 32. 发明申请
    • System and method for on-line multi-view video compression
    • 用于在线多视图视频压缩的系统和方法
    • US20060023787A1
    • 2006-02-02
    • US10922743
    • 2004-08-19
    • Hua CaiJiang LiJianguang Lou
    • Hua CaiJiang LiJianguang Lou
    • H04N11/02H04N11/04H04N7/12H04B1/66
    • H04N19/137H04N19/105H04N19/107H04N19/109H04N19/159H04N19/51H04N19/597
    • Interactive multi-view video presents new types of video capture systems, video formats, video compression algorithms, and services. Many video cameras are allocated to capture an event from various related locations and directions. The captured videos are compressed and are sent to a server in real-time. A big difference from the conventional schemes and the on-line compression of the interactive multi-view video system of the invention lies in a unique “STATIC” mode that is introduced to speed up the predictive coding. To find the STATIC mode, it is necessary to calculate the difference between the original image and a reference image. To further reduce the computing complexity, the decision of whether to use this STATIC mode or not is determined jointly among all views. In the STATIC mode, the involved macroblock (MB) will be coded like the traditional INTER mode, while its corresponding reference image, which will be used by the next frame for temporal prediction, is simply copied from its previous reconstructed image. As a result, none of de-quantization, inverse DCT and motion compensation is required for creating the reference image of this MB. In addition to the new coding mode, joint motion estimation (ME) is also applied to reduce the complexity of ME.
    • 交互式多视图视频呈现新型的视频捕获系统,视频格式,视频压缩算法和服务。 许多摄像机被分配以捕获来自各种相关位置和方向的事件。 捕获的视频被压缩并被实时发送到服务器。 与传统方案和本发明的交互式多视图视频系统的在线压缩的巨大差异在于引入了独特的“静态”模式,以加速预测编码。 要找到STATIC模式,需要计算原始图像和参考图像之间的差异。 为了进一步降低计算复杂度,在所有视图中联合确定是否使用该STATIC模式的决定。 在静态模式中,所涉及的宏块(MB)将像传统的INTER模式一样进行编码,而将由下一帧用于时间预测的相应参考图像从其先前的重建图像中简单地复制。 因此,为了创建该MB的参考图像,不需要去量化,逆DCT和运动补偿。 除了新的编码模式之外,还应用联合运动估计(ME)来降低ME的复杂度。
    • 37. 发明授权
    • Network address translators (NAT) type detection techniques
    • 网络地址转换器(NAT)类型检测技术
    • US09160794B2
    • 2015-10-13
    • US12328296
    • 2008-12-04
    • Qingwei LinJiang LiJian-guang LouYusuo HuFan Li
    • Qingwei LinJiang LiJian-guang LouYusuo HuFan Li
    • G06F15/16H04L29/08H04L12/26H04L29/12H04L12/24H04L29/06
    • H04L67/104H04L29/12339H04L41/12H04L43/50H04L61/2503H04L69/28
    • Techniques described herein enable peers to determine each peer's NAT type much more efficiently and quickly than when compared with existing techniques. To do so, a peer simultaneously sends multiple test messages to a server. The peer then waits to either receive a response for each of the multiple test messages or may store an indication that no response has been received after a predetermined timeout period. The peer then analyzes the received responses and/or the stored timeout indications to determine the peer's NAT type or to determine that the peer is operating free from concealment by a NAT/firewall device. By simultaneously sending the multiple test messages, the peer may determine the NAT type within a maximum time defined by the predetermined timeout period or a roundtrip time period that is required for communication between the peer and the server. As such, the tools allow for efficient NAT-type detection.
    • 本文描述的技术使得对等体能够比与现有技术相比更有效和快速地确定每个对等体的NAT类型。 为此,对等体同时向服务器发送多个测试消息。 然后,对等体等待接收多个测试消息中的每一个的响应,或者可以存储在预定的超时时段之后没有接收到响应的指示。 对等体然后分析接收到的响应和/或存储的超时指示以确定对等体的NAT类型或者确定对等体正在从NAT /防火墙设备的隐藏中运行。 通过同时发送多个测试消息,对等体可以在由对等体和服务器之间的通信所需的预定超时时间段或往返时间周期限定的最大时间内确定NAT类型。 因此,这些工具允许有效的NAT类型检测。
    • 40. 发明授权
    • Charging connector
    • 充电连接器
    • US08475212B1
    • 2013-07-02
    • US13401760
    • 2012-02-21
    • Jiang LiMing-Han LinLi-Jun Xu
    • Jiang LiMing-Han LinLi-Jun Xu
    • H01R13/648
    • H01R24/38H01R4/023
    • A charging connector adapted for connecting between a mated connector and a cable includes an insulating housing, a terminal and a shielding shell surrounding the insulating housing. The insulating housing has a base body, and a protruding portion protruding upward from a top surface of the base body. The insulating housing defines a terminal groove. The terminal has a locating piece located on the top surface of the base body. A front of the locating piece defines a contact piece disposed in the terminal groove with a front thereof electrically contacting with the mated connector. A rear of the locating piece defines a soldering piece disposed to a rear of the insulating housing to be soldered with the cable. A side of the shielding shell defines a soldering plate disposed to one side of the insulating housing to be soldered with the cable.
    • 适于连接在配合连接器和电缆之间的充电连接器包括绝缘壳体,端子和围绕绝缘壳体的屏蔽壳。 绝缘壳体具有基体和从基体的顶面向上突出的突出部。 绝缘壳体限定端子槽。 端子具有位于基体顶面的定位片。 定位件的前部限定了设置在端子槽中的接触片,其前端与配合连接器电接触。 定位件的后部限定了设置在绝缘壳体的后部以与电缆焊接的焊件。 屏蔽壳的一侧限定了一个焊接板,该焊盘设置在待与电缆焊接的绝缘壳体的一侧。