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    • 3. 发明申请
    • COMMUNICATION DEVICE, NETWORK SYSTEM, PATH MANAGEMENT METHOD, AND PROGRAM
    • 通信设备,网络系统,路径管理方法和程序
    • US20090190469A1
    • 2009-07-30
    • US12356012
    • 2009-01-19
    • Masamichi KIMURAShuichi IIDA
    • Masamichi KIMURAShuichi IIDA
    • G06F11/00G06F11/30
    • H04J3/14H04J2203/0057H04J2203/006H04L41/0654H04L45/02H04L45/22H04L45/28H04L45/50
    • This is invention is to provide a communication device, a network system, a path management method, and a program in which a state of a path which has been set can be recognized in a case where the path has been set by autonomous distributed control via an autonomous distributed control non-supporting device in a network including both an autonomous distributed control supporting device and an autonomous distributed control non-supporting device. An autonomous distributed control supporting device as a main component includes virtual link information managing means for managing virtual link information indicating a virtual link in association with alarm information indicating a state of the virtual link, the virtual link being a route through an autonomous distributed control supporting device and an autonomous distributed control non-supporting device, path setting means for setting an autonomous distributed control path in the virtual link, collecting means for collecting POH information or SOH information of SONET/SDH from the autonomous distributed control path, and updating means for updating the alarm information managed by the virtual link information managing means based on alarm information included in the POH information or SOH information collected by the collecting means.
    • 本发明的目的在于提供一种通信装置,网络系统,路径管理方法以及在通过自主分散控制设定了路径的情况下可以识别已经设定的路径的状态的程序,经由 一种包括自主分布式控制支持装置和自主分散控制非支持装置的网络中的自主分布式控制不支持装置。 作为主要部件的自主分布式控制支援装置包括虚拟链接信息管理装置,用于与指示虚拟链路的状态的报警信息相关联地管理指示虚拟链路的虚拟链路信息,虚拟链路是通过自主分布控制支持的路由 设备和自主分布控制不支持设备,用于在虚拟链路中设置自主分布控制路径的路径设置装置,用于从自主分布控制路径收集SONET / SDH的POH信息或SOH信息的收集装置,以及用于 基于由收集装置收集的POH信息或SOH信息中包含的报警信息来更新由虚拟链接信息管理装置管理的报警信息。
    • 5. 发明授权
    • Device and method for selecting time slots based on resource use state
    • 基于资源使用状态选择时隙的设备和方法
    • US08311056B2
    • 2012-11-13
    • US12171439
    • 2008-07-11
    • Masamichi KimuraMakoto KawamichiShuichi IidaTomoshige Funasaki
    • Masamichi KimuraMakoto KawamichiShuichi IidaTomoshige Funasaki
    • H04L12/43
    • H04J3/1611H04J3/1682H04L45/50H04L45/62
    • A time slot selection device is provided that can consider resource use states on its own and allocate time slots. The time slot selection device performs time slot allocation, based on data link identifiers that identify a group of data links specified by a path setup request, a time slot size that is information about a required band, and a required number that is the number of contiguous time slots required. In this time slot selection device, a resource allocation section performs time slot selection, based on the resource use state of each time slot. By the time slot selection with consideration given to the use state of each time slot in the group of data links, time slots to be used can be selected so that a maximum number of contiguous usable time slots will be left. Thus, it is possible to efficiently use resources.
    • 提供了可以自行考虑资源使用状态并分配时隙的时隙选择设备。 时隙选择装置基于标识由路径建立请求指定的一组数据链路的数据链路标识符,作为所需频带的信息的时隙大小和作为所需频带的数量的所需数量来执行时隙分配 需要连续的时隙。 在该时隙选择装置中,资源分配部根据各时隙的资源使用状态进行时隙选择。 通过考虑到数据链路组中的每个时隙的使用状态的时隙选择,可以选择要使用的时隙,使得可以剩余最大数量的连续可用时隙。 因此,可以有效地使用资源。
    • 6. 发明申请
    • Method and system for verifying connectivity of logical link
    • 验证逻辑链路连通性的方法和系统
    • US20080117827A1
    • 2008-05-22
    • US11984359
    • 2007-11-16
    • Takehiko MatsumotoShuichi IidaTomoshige Funasaki
    • Takehiko MatsumotoShuichi IidaTomoshige Funasaki
    • G01R31/08
    • H04L45/50H04L43/0811H04L43/50H04L45/04
    • Verification of the connectivity of a logical link can be accomplished even in a network including a plurality of nodes that are connected through data link(s) and a control channel between adjacent nodes. A node that is the start point of a logical link to be verified transmits a logical link verification request message, over a control channel, to a node that is the end point of the logical link to be verified, thereby notifying that a connectivity verification test will begin. Thereafter, the start-point node transmits a physical link verification message (verification data) over the logical link to be verified. When notified through the control channel that the test will begin, the end-point node carries out the connectivity verification test, based on whether or not it can receive the verification data through the logical link to be verified. The end-point node returns a test result message to the start-point node.
    • 即使在包括通过数据链路连接的多个节点的网络和相邻节点之间的控制信道的情况下,也可以实现逻辑链路的连接性的验证。 作为要验证的逻辑链路的起始点的节点通过控制信道将逻辑链路验证请求消息发送到作为要验证的逻辑链路的终点的节点,从而通知连接验证测试 将开始。 此后,起点节点通过要验证的逻辑链路发送物理链路验证消息(验证数据)。 当通过控制通道通知测试将开始时,端点节点根据是否可以通过待验证的逻辑链路接收验证数据来执行连通性验证测试。 终点节点将测试结果消息返回给起点节点。
    • 9. 发明授权
    • Array substrate and display apparatus and method for manufacturing display apparatus
    • 阵列基板及显示装置及其制造方法
    • US07518601B2
    • 2009-04-14
    • US11044279
    • 2005-01-28
    • Akio NakayamaShuichi Iida
    • Akio NakayamaShuichi Iida
    • G09G5/00
    • G09G3/006
    • An array substrate according to the invention includes an external terminal formed in the vicinity of an end portion of an insulating substrate so as to supply electric potential from the exterior to a driving circuit, a signal line monitoring terminal formed in parallel with the external terminal, a signal line branch terminal formed in such a way as to be connected to a signal line or to a signal line terminal, and an internal terminal associated with the signal line monitoring terminal, which is connected to the signal line monitoring terminal and connectable to a signal line branch terminal by an electrically conductive material and a bump of the driving circuit.
    • 根据本发明的阵列基板包括形成在绝缘基板的端部附近的外部端子,以从外部向驱动电路提供电势,与外部端子并联形成的信号线监视端子, 信号线分支端子以与信号线或信号线端子连接的方式形成,以及与信号线监视端子相关联的内部端子,其连接到信号线监视端子并可连接到信号线 信号线分支端子由导电材料和驱动电路的凸块组成。