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    • 4. 发明授权
    • Method for controlling security channel in MAC security network and terminal using the same
    • 用于控制MAC安全网络和终端中安全通道的方法
    • US07724899B2
    • 2010-05-25
    • US11634995
    • 2006-12-07
    • Kyeong Soo HanJee Sook EunYool Kwon
    • Kyeong Soo HanJee Sook EunYool Kwon
    • G06F11/00H04L9/00G06F7/04
    • H04L9/12H04L63/068H04L63/164
    • A method for controlling a security channel for reducing system load by extending the use period of a security association key is provided. In this method, an upper bit initial value of an initialization vector of an encryption algorithm and a using range thereof are shared between a transmitting side and a receiving side when a security channel is created. Then, a secure association is created between a transmitting side and a receiving side by setting an association number, a next packet number which is a lower bit value of an initialization vector, and a secure association key. Afterward, a packet number is modified whenever a frame is transmitted until all of packet numbers are used. When all packet numbers are used, the upper bit value of the initialization vector changes.
    • 提供了一种通过扩展安全关联密钥的使用周期来控制用于减少系统负载的安全信道的方法。 在该方法中,当创建安全信道时,在发送侧和接收侧之间共享加密算法的初始化向量的高位初始值及其使用范围。 然后,通过设置关联号码,作为初始化向量的较低位值的下一个分组号码和安全关联密钥,在发送侧和接收侧之间建立安全关联。 之后,每当发送帧直到使用所有分组号时,分组号被修改。 当使用所有分组号时,初始化向量的高位值变化。
    • 5. 发明申请
    • EPON bridge apparatus and method for forwarding thereof
    • EPON桥接装置及其转发方法
    • US20080198857A1
    • 2008-08-21
    • US11514561
    • 2006-09-01
    • Chan KimTae Whan YooYool KwonBong-Tae Kim
    • Chan KimTae Whan YooYool KwonBong-Tae Kim
    • H04L12/66H04B10/00
    • H04Q11/0067H04Q11/0071H04Q2011/0064
    • The invention relates to an EPON bridge apparatus and a forwarding method thereof. In case of receiving frame from the network port or the PON port, the apparatus associates the port having the received frame inputted with source MAC address of the received frame to learn the information in an FDB table which manages port information for the learned MAC address. Then the apparatus refers to the FDB table to remove LLID from upstream frame, and then forwards the upstream frame to the network port, while attaching LLID corresponding to destination MAC address to downstream frame to transmit to the PON port. Bridging between ONUs are possible with flooding capability using anti-LLID. It provides VLAN-LLID translation mode with support for VLAN tag addition/removal at the ONU side. It also provides multicast pruning function for the downstream.
    • 本发明涉及一种EPON桥接装置及其转发方法。 在从网络端口或PON端口接收帧的情况下,该装置将输入的接收帧的端口与接收到的帧的源MAC地址相关联,以学习管理学习MAC地址的端口信息的FDB表中的信息。 然后设备参考FDB表从上行帧删除LLID,然后将上行帧转发到网络端口,同时将对应于目的MAC地址的LLID连接到下游帧,以发送给PON端口。 ONU之间的桥接可以通过使用反向LLID的洪泛功能进行。 它提供VLAN-LLID转换模式,支持ONU侧的VLAN Tag添加/删除。 它还为下游提供组播剪枝功能。
    • 7. 发明申请
    • Dynamic bandwidth allocation apparatus and method in Ethernet Passive Optical Network, and EPON master apparatus using the same
    • 以太网无源光网络中的动态带宽分配装置和方法,以及使用其的EPON主设备
    • US20070019957A1
    • 2007-01-25
    • US11488868
    • 2006-07-18
    • Chan KimTae YooYool KwonBong-Tae Kim
    • Chan KimTae YooYool KwonBong-Tae Kim
    • H04J14/00
    • H04Q11/0067H04Q11/0066H04Q2011/0064H04Q2011/0086H04Q2011/0088
    • The invention provides a method and apparatus for allocating a dynamic band width of an EPON and an EPON master apparatus using the same. The bandwidth allocation is cycle based where every predetermined cycle, static gates are generated for all ONUs and dynamic gates are generated according to the reports using the remaining grant resource. The method for allocating an upstream bandwidth to transmit data from the ONUs to an OLT is as follows. A total allocatable grant length is calculated for the given cycle. A requested amount of grant length needed to transmit upstream data in each ONU is set based on report values collected from the report frames from all ONUs in the EPON. Then, distribution is made sequentially and repeatedly in a cycle by taking a basic unit from the total grant length and adding it to the grant length of the ONUs until the total allocatable grant length becomes 0 or the grant length allocated to all ONUs satisfy the requested amount of the grant length set in all ONUs.
    • 本发明提供了一种用于分配EPON的动态带宽和使用其的EPON主设备的方法和装置。 带宽分配是基于周期的,其中针对所有ONU生成每个预定周期的静态门,并且根据使用剩余授权资源的报告生成动态门。 用于分配上行带宽以从ONU向OLT发送数据的方法如下。 计算给定周期的总可分配授权长度。 根据从EPON中所有ONU的报告帧收集的报告值,设置在每个ONU中发送上行数据所需的所需授权长度。 然后,通过从总授权长度中取一个基本单元并将其添加到ONU的授权长度,直到总可分配授权长度变为0或分配给所有ONU的授权长度满足所请求的 在所有ONU中设置的授权长度的数量。
    • 8. 发明授权
    • Edge extracting method and apparatus using diffusion neural network
    • 边缘提取方法和装置使用扩散神经网络
    • US5548662A
    • 1996-08-20
    • US156716
    • 1993-11-24
    • Yool Kwon
    • Yool Kwon
    • G06T1/40G06T5/00G06K9/62
    • G06T7/2006G06T2207/20084
    • Edge extracting method and apparatus using a neural network performing a function of diffusing an excitation. The method and apparatus continuously detect a variety of intensity changes of an image via a function having a variety of frequency characteristics. An edge of a fixed object is detected from images continuously input, and an edge of a moving object is selectively detected from the images. The edge extracting apparatus includes a first neural network which receives an image signal. The first neural network derives a Gaussian function representing the regularity of an excitatory response and an inhibitory response to a spot excitation of the image signal. The apparatus also includes a second neural network which detects edges of an image represented by the image signal by convolving the Gaussian function and the image signal.
    • 使用执行扩散激励功能的神经网络的边缘提取方法和装置。 该方法和装置通过具有各种频率特性的功能连续地检测图像的各种强度变化。 从连续输入的图像中检测固定物体的边缘,并且从图像中选择性地检测移动物体的边缘。 边缘提取装置包括接收图像信号的第一神经网络。 第一神经网络导出表示兴奋性反应的规律性和对图像信号的点激发的抑制响应的高斯函数。 该装置还包括第二神经网络,其通过卷积高斯函数和图像信号来检测由图像信号表示的图像的边缘。
    • 9. 发明授权
    • Connection management server, OLT, ONU/ONT and the system and method for providing ethernet-based PTL-PON
    • 连接管理服务器,OLT,ONU / ONT以及提供以太网PTL-PON的系统和方法
    • US08837945B2
    • 2014-09-16
    • US13330717
    • 2011-12-20
    • Yool KwonHong Ju KimByung Ho YaeKyung Gyu ChunYoung Boo Kim
    • Yool KwonHong Ju KimByung Ho YaeKyung Gyu ChunYoung Boo Kim
    • H04J14/00H04L12/28H04Q11/00
    • H04L12/2861H04Q11/0067H04Q2011/0079
    • Provided is a passive optical network (PON) providing system of an Ethernet-based packet transport layer (PTL) scheme, including: a connection management server to manage a unified PTL connection overall over the network by establishing a PTL connection between an optical network unit (ONU)/optical network terminal (ONT) of a customer termination of one party and an ONU/ONT of a customer termination of another party, and by applying a PTL-PON scheme to a PON section between the ONU/ONT and an optical line termination (OLT); an OLT to manage a connection of a received packet, and to convert a format of the packet according to a transmission direction of the packet and thereby transmit the packet; and an ONU/ONT becoming an end point of the PTL connection to convert the format of the packet according to the transmission direction of the received packet and to thereby transmit the packet to a customer terminal or the OLT.
    • 提供了一种基于以太网的分组传输层(PTL)方案的无源光网络(PON)提供系统,包括:连接管理服务器,通过在光网络单元之间建立PTL连接来管理整个网络上的统一PTL连接 (ONU)/光网络终端(ONT)和另一方的客户终端的ONU / ONT,以及通过对ONU / ONT与光端机之间的PON部分应用PTL-PON方案 线路终端(OLT); OLT管理接收到的分组的连接,并根据分组的传输方向转换分组的格式,从而发送分组; 并且ONU / ONT成为PTL连接的终点,以根据接收到的分组的传输方向转换分组的格式,从而将分组发送到客户终端或OLT。