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    • 2. 发明申请
    • COMMUNICATION NODE AND COMMUNICATION SYSTEM
    • 通信节点和通信系统
    • US20130003525A1
    • 2013-01-03
    • US13611288
    • 2012-09-12
    • Machiko ASAIEKazuhiro KUSAMANaomichi NONAKA
    • Machiko ASAIEKazuhiro KUSAMANaomichi NONAKA
    • H04L12/26H04L29/14
    • G06F11/1443H04L41/0654H04L41/0677
    • Communication node including a transmission equipment which communicates user data with transmission equipment of an adjacent node, and a controller which communicates a message with a controller of the adjacent node and which manages the transmission equipment of its own node, wherein: a controller of the node detects existence or nonexistence of fault of a controller of the adjacent node on the basis of situation of receiving a message sent from the controller of the adjacent node; when the controller of the node detects the fault of the controller of the adjacent node, the controller of the node issues a state reference notice to a transmission equipment of its own node and checks existence or nonexistence of fault alert detection; in a case where the fault alert detection of the transmission equipment of the node does not exist, the controller of the node maintains a path state of the node.
    • 通信节点包括将用户数据与相邻节点的传输设备进行通信的传输设备,以及与邻接节点的控制器通信消息并管理其自身节点的传输设备的控制器,其中:节点的控制器 基于接收从相邻节点的控制器发送的消息的情况,检测相邻节点的控制器的故障的存在或不存在; 当节点的控制器检测到相邻节点的控制器的故障时,节点的控制器向其自身节点的传输设备发出状态参考通知,并检查故障警报检测的存在或不存在; 在不存在节点的传输设备的故障警报检测的情况下,节点的控制器维护节点的路径状态。
    • 4. 发明授权
    • Communication node and communication system
    • 通信节点和通信系统
    • US08988989B2
    • 2015-03-24
    • US13611288
    • 2012-09-12
    • Machiko AsaieKazuhiro KusamaNaomichi Nonaka
    • Machiko AsaieKazuhiro KusamaNaomichi Nonaka
    • G01R31/08G06F11/14H04L12/24
    • G06F11/1443H04L41/0654H04L41/0677
    • Communication node including a transmission equipment which communicates user data with transmission equipment of an adjacent node, and a controller which communicates a message with a controller of the adjacent node and which manages the transmission equipment of its own node, wherein: a controller of the node detects existence or nonexistence of fault of a controller of the adjacent node on the basis of situation of receiving a message sent from the controller of the adjacent node; when the controller of the node detects the fault of the controller of the adjacent node, the controller of the node issues a state reference notice to a transmission equipment of its own node and checks existence or nonexistence of fault alert detection; in a case where the fault alert detection of the transmission equipment of the node does not exist, the controller of the node maintains a path state of the node.
    • 通信节点包括将用户数据与相邻节点的传输设备进行通信的传输设备,以及与邻接节点的控制器通信消息并管理其自身节点的传输设备的控制器,其中:节点的控制器 基于接收从相邻节点的控制器发送的消息的情况,检测相邻节点的控制器的故障的存在或不存在; 当节点的控制器检测到相邻节点的控制器的故障时,节点的控制器向其自身节点的传输设备发出状态参考通知,并检查故障警报检测的存在或不存在; 在不存在节点的传输设备的故障警报检测的情况下,节点的控制器维护节点的路径状态。
    • 6. 发明授权
    • Communication node and communication system
    • 通信节点和通信系统
    • US08279758B2
    • 2012-10-02
    • US12482593
    • 2009-06-11
    • Machiko AsaieKazuhiro KusamaNaomichi Nonaka
    • Machiko AsaieKazuhiro KusamaNaomichi Nonaka
    • G01R31/08
    • G06F11/1443H04L41/0654H04L41/0677
    • In a network wherein a data plane for communicating user data, and a control plane for managing data forwarders are configured of different media, the path teardown of the data plane which is forwarding the data is prevented when a fault has occurred in only the control plane. When the GMPLS controller of the control plane has detected refresh timeout with respect to an adjacent node (101 in FIG. 1), it checks whether or not a transmission equipment corresponding to a faulty controller has a fault (102), and it maintains a path state (103) in a case where the fault is limited to the control plane. Thus, the exchange of refresh messages with the adjacent node is continued without cleaning up the resources of the transmission equipment (104 through 107).
    • 在用于传送用户数据的数据平面和用于管理数据转发器的控制平面由不同的媒体构成的网络中,在仅在控制平面中发生故障时,防止转发数据的数据平面的路径拆除 。 当控制平面的GMPLS控制器相对于相邻节点(图1中的101)检测到刷新超时时,它检查与故障控制器相对应的传输设备是否具有故障(102),并且维持 在故障被限制到控制平面的情况下的路径状态(103)。 因此,在不清理传输设备(104至107)的资源的情况下,继续与相邻节点进行刷新消息的交换。
    • 7. 发明申请
    • MANAGEMENT SERVER DEVICE FOR MANAGING VIRTUAL STORAGE DEVICE, AND METHOD FOR MANAGING VIRTUAL STORAGE DEVICE
    • 用于管理虚拟存储设备的管理服务器设备,以及用于管理虚拟存储设备的方法
    • US20100274984A1
    • 2010-10-28
    • US12501854
    • 2009-07-13
    • Hirofumi INOMATATomoki SEKIGUCHIFutoshi HAGAMachiko ASAIETakayuki NAGAINorio SHIMOZONO
    • Hirofumi INOMATATomoki SEKIGUCHIFutoshi HAGAMachiko ASAIETakayuki NAGAINorio SHIMOZONO
    • G06F12/16G06F12/00
    • G06F3/0647G06F3/0605G06F3/067
    • The computer system has a plurality of physical server devices, a plurality of physical storage devices, and a management server device, and when migrating at least one of a plurality of first virtual server devices to another physical server device, the management server device compares at least one physical server device in which the plurality of first virtual server devices are disposed after the migration, with at least one physical server device in which a plurality of second virtual server devices are disposed, to calculate a first evaluation value, and also compares at least one physical server device in which the plurality of first virtual server devices are disposed after the migration, with at least one physical server device in which a plurality of third virtual server devices are disposed, to calculate a second evaluation value. Based on the first evaluation value and the second evaluation value, the management server device issues an instruction to migrate the first virtual storage device to the other physical storage device.
    • 计算机系统具有多个物理服务器设备,多个物理存储设备和管理服务器设备,并且当将多个第一虚拟服务器设备中的至少一个迁移到另一物理服务器设备时,管理服务器设备 至少一个物理服务器设备,其中在迁移之后设置多个第一虚拟服务器设备,其中设置有多个第二虚拟服务器设备的至少一个物理服务器设备来计算第一评估值,并且还在 至少一个物理服务器设备,其中在迁移之后设置多个第一虚拟服务器设备,其中设置有多个第三虚拟服务器设备的至少一个物理服务器设备来计算第二评估值。 基于第一评估值和第二评估值,管理服务器装置发出将第一虚拟存储装置迁移到另一物理存储装置的指示。
    • 9. 发明授权
    • Management server device for managing virtual storage device, and method for managing virtual storage device
    • 用于管理虚拟存储设备的管理服务器设备,以及用于管理虚拟存储设备的方法
    • US08359440B2
    • 2013-01-22
    • US12501854
    • 2009-07-13
    • Hirofumi InomataTomoki SekiguchiFutoshi HagaMachiko AsaieTakayuki NagaiNorio Shimozono
    • Hirofumi InomataTomoki SekiguchiFutoshi HagaMachiko AsaieTakayuki NagaiNorio Shimozono
    • G06F12/00
    • G06F3/0647G06F3/0605G06F3/067
    • The computer system has a plurality of physical server devices, a plurality of physical storage devices, and a management server device, and when migrating at least one of a plurality of first virtual server devices to another physical server device, the management server device compares at least one physical server device in which the plurality of first virtual server devices are disposed after the migration, with at least one physical server device in which a plurality of second virtual server devices are disposed, to calculate a first evaluation value, and also compares at least one physical server device in which the plurality of first virtual server devices are disposed after the migration, with at least one physical server device in which a plurality of third virtual server devices are disposed, to calculate a second evaluation value. Based on the first evaluation value and the second evaluation value, the management server device issues an instruction to migrate the first virtual storage device to the other physical storage device.
    • 计算机系统具有多个物理服务器设备,多个物理存储设备和管理服务器设备,并且当将多个第一虚拟服务器设备中的至少一个迁移到另一物理服务器设备时,管理服务器设备 至少一个物理服务器设备,其中在迁移之后设置多个第一虚拟服务器设备,其中设置有多个第二虚拟服务器设备的至少一个物理服务器设备来计算第一评估值,并且还在 至少一个物理服务器设备,其中在迁移之后设置多个第一虚拟服务器设备,其中设置有多个第三虚拟服务器设备的至少一个物理服务器设备来计算第二评估值。 基于第一评估值和第二评估值,管理服务器装置发出将第一虚拟存储装置迁移到另一物理存储装置的指示。
    • 10. 发明申请
    • Communication Node and Communication System
    • 通信节点和通信系统
    • US20090310482A1
    • 2009-12-17
    • US12482593
    • 2009-06-11
    • Machiko ASAIEKazuhiro KusamaNaomichi Nonaka
    • Machiko ASAIEKazuhiro KusamaNaomichi Nonaka
    • G06F11/00
    • G06F11/1443H04L41/0654H04L41/0677
    • In a network wherein a data plane for communicating user data, and a control plane for managing data forwarders are configured of different media, the path teardown of the data plane which is forwarding the data is prevented when a fault has occurred in only the control plane. When the GMPLS controller of the control plane has detected refresh timeout with respect to an adjacent node (101 in FIG. 1), it checks whether or not a transmission equipment corresponding to a faulty controller has a fault (102), and it maintains a path state (103) in a case where the fault is limited to the control plane. Thus, the exchange of refresh messages with the adjacent node is continued without cleaning up the resources of the transmission equipment (104 through 107).
    • 在用于传送用户数据的数据平面和用于管理数据转发器的控制平面由不同的媒体构成的网络中,在仅在控制平面中发生故障时,防止转发数据的数据平面的路径拆除 。 当控制平面的GMPLS控制器相对于相邻节点(图1中的101)检测到刷新超时时,它检查与故障控制器相对应的传输设备是否具有故障(102),并且维持 在故障被限制到控制平面的情况下的路径状态(103)。 因此,在不清理传输设备(104至107)的资源的情况下,继续与相邻节点进行刷新消息的交换。