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    • 41. 发明授权
    • Packet flow control method and device
    • 分组流控制方法和设备
    • US07039013B2
    • 2006-05-02
    • US10029976
    • 2001-12-31
    • Jussi RuutuDongmei ZhangYu ShiRenaud CunyJlan MaKhiem LeGhassan Naim
    • Jussi RuutuDongmei ZhangYu ShiRenaud CunyJlan MaKhiem LeGhassan Naim
    • H04L1/00
    • H04W28/14H04L47/762H04L49/9084H04W28/0205H04W28/08H04W72/04H04W72/12H04W84/04
    • The present invention relates to a method and network node for controlling packet flow in a buffer means (13; 14) of a network node of a data network, wherein a nominal capacity is assigned to each data flow, and an additional or free capacity is shifted from a first flow portion to a second flow portion when a new data packet of said second flow portion has been received and said nominal capacity has been exceeded. The nominal capacity may be an upper buffer memory limit used for controlling queuing of data packets in a buffer memory (13) of said buffer means, wherein the memory space of the buffer memory (13) is shared between a plurality of channels allocated to respective packet data connections. Then, the free capacity corresponds to a memory space shifted from a first channel to a second channel, when a new data packet of the second channel has been received and not enough memory space is available for the second channel. Thus, a dynamic buffer-sharing mechanism is provided which reduces the number of packet drops in the buffer memory (13) during congestion and improves network throughput. Alternatively, the nominal capacity may be a nominal flow rate at which data flow traffic is guaranteed in a QoS scheduling algorithm. Then, a residual rate corresponding to the difference between the nominal flow rate and an instantaneous traffic is shifted between flow portions of a buffer means controlled by the scheduling algorithm to maximize total system throughput.
    • 本发明涉及一种用于控制数据网络的网络节点的缓冲器装置(13; 14)中的分组流的方法和网络节点,其中标称容量被分配给每个数据流,并且附加或空闲容量是 当已经接收到所述第二流部分的新数据分组并且已经超过了所述额定容量时,从第一流部分移动到第二流部分。 标称容量可以是用于控制所述缓冲器装置的缓冲存储器(13)中的数据分组排队的高缓冲存储器限制,其中缓冲存储器(13)的存储器空间在分配给相应的多个通道之间共享 分组数据连接。 然后,当接收到第二信道的新数据分组并且没有足够的存储器空间可用于第二信道时,可用容量对应于从第一信道移动到第二信道的存储器空间。 因此,提供了一种动态缓冲器共享机制,其减少了拥塞期间缓冲存储器(13)中的分组丢弃数量,并且提高了网络吞吐量。 或者,标称容量可以是在QoS调度算法中保证数据流业务的标称流量。 然后,与由调度算法控制的缓冲装置的流量部分之间,与标称流量和瞬时流量之间的差值相对应的剩余率在总体系统吞吐量最大化之间移动。
    • 42. 发明申请
    • Creation of image based video using step-images
    • 使用步骤图像创建基于图像的视频
    • US20060072017A1
    • 2006-04-06
    • US10959385
    • 2004-10-06
    • Dongmei ZhangMehul Shah
    • Dongmei ZhangMehul Shah
    • H04N5/225H04N9/04
    • H04N19/59H04N19/103H04N19/132H04N19/137H04N19/154H04N19/156H04N19/17H04N19/192
    • The subject invention provides a system and/or method that facilitates encoding a source image associated with a motion vector by employing at least one step image, wherein such step image provides a reduction in the amount of stored video. A step image component determines the maximum step image size and appropriate number of step images to simulate a smooth motion based upon an input component receiving data such as, but not limited to, a motion parameter and a computer environment parameter. Moreover, the step image component can utilize a motion controller component that facilitates the visual perception of smooth video during a zoom motion. Additionally, the step image component can utilize an encoder component providing specialized techniques in encoding with step images.
    • 本发明提供了一种通过采用至少一个步骤图像来促进对与运动矢量相关联的源图像进行编码的系统和/或方法,其中这种步进图像提供了所存储的视频量的减少。 步进图像部件基于输入部件接收诸如但不限于运动参数和计算机环境参数的数据来确定最大步长图像尺寸和适当数量的步长图像以模拟平滑运动。 此外,步进图像分量可以利用运动控制器组件,其在缩放运动期间促进平滑视频的视觉感知。 此外,步进图像分量可以利用提供用步进图像编码的专门技术的编码器组件。
    • 48. 发明授权
    • Relay node authentication method, apparatus, and system
    • 中继节点认证方法,设备和系统
    • US09027111B2
    • 2015-05-05
    • US13564173
    • 2012-08-01
    • Dongmei ZhangAiqin ZhangXiaoyu BiJing Liu
    • Dongmei ZhangAiqin ZhangXiaoyu BiJing Liu
    • H04L29/06H04K1/00H04W12/06H04L9/32H04W76/02G06F15/16G06F17/30
    • H04W12/06H04L9/3263H04L63/0823H04W76/15
    • Embodiments of the present invention disclose a relay node authentication method, apparatus, and system. The method provided in an embodiment of the present invention includes: sending, by a relay node, an authentication request message to a peer node, where the authentication request message includes a certificate of the relay node, so that the peer node authenticates the relay node according to the certificate of the relay node, where the peer node is a network side node or a security gateway in a security domain where the network side node is located; and receiving, by the relay node, an authentication response message sent by the peer node, where the authentication response message includes a certificate of the peer node, and authenticating the peer node according to the certificate of the peer node.
    • 本发明的实施例公开了一种中继节点认证方法,装置和系统。 本发明实施例提供的方法包括:由中继节点将认证请求消息发送给对等节点,其中认证请求消息包括中继节点的证书,使得对等节点认证中继节点 根据中继节点的证书,其中对等节点是网络侧节点或网络侧节点所在的安全域中的安全网关; 并且由所述中继节点接收由所述对等节点发送的认证响应消息,所述认证响应消息包括所述对等节点的证书,并且根据所述对等节点的证书认证所述对等节点。
    • 49. 发明授权
    • Error report processing using call stack similarity
    • 使用调用堆栈相似性的错误报告处理
    • US08949675B2
    • 2015-02-03
    • US12957090
    • 2010-11-30
    • Dongmei ZhangYingnong DangSong Ge
    • Dongmei ZhangYingnong DangSong Ge
    • G06F11/00G06F11/07
    • G06F11/0781G06F11/0775G06F11/0778G06F11/0787
    • Techniques for error report processing are described herein. Error reports, received by a developer due to program crashes, may be organized into a plurality of “buckets.” The buckets may be based in part on a name and a version of the application associated with a crash. Additionally, a call stack of the computer on which the crash occurred may be associated with each error report. The error reports may be “re-bucketed” into meta-buckets to provide additional information to programmers working to resolve software errors. The re-bucketing may be based in part on measuring similarity of call stacks of a plurality of error reports. The similarity of two call stacks—a measure of likelihood that two error reports were caused by a same error—may be based in part on functions in common, a distance of those functions from the crash point, and an offset distance between the common functions.
    • 这里描述了用于错误报告处理的技术。 开发人员由于程序崩溃而收到的错误报告可以被组织成多个“桶”。桶可以部分地基于与崩溃相关联的应用的名称和版本。 此外,发生崩溃的计算机的调用堆栈可能与每个错误报告相关联。 错误报告可能会重新分级到元数据桶中,以便为解决软件错误的程序员提供更多信息。 可以部分地基于测量多个错误报告的调用堆栈的相似度来重新估计。 两个调用堆栈的相似性 - 两个错误报告由相同错误引起的可能性的度量可能部分地基于共同的功能,这些功能与碰撞点的距离以及公共功能之间的偏移距离 。