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    • 62. 发明申请
    • Flexible Open Ring Optical Network and Method
    • 灵活开环光网络和方法
    • US20070223371A1
    • 2007-09-27
    • US11745946
    • 2007-05-08
    • Susumu KinoshitaKoji TakeguchiSatoru OdateCechan Tian
    • Susumu KinoshitaKoji TakeguchiSatoru OdateCechan Tian
    • G06F11/00
    • H04J14/0291H04J14/0204H04J14/0205H04J14/0206H04J14/0212H04J14/0227H04J14/0241H04J14/0283
    • A flexible open ring optical network includes a plurality of nodes connected by twin or other suitable optical rings. Each node is operable to passively add and passively drop traffic from the rings. The nodes may include a transport element for each ring. The transport elements include an optical splitter element and an optical combiner element. The optical splitter element is operable to passively combine an add signal including local add traffic and a first transport signal including ingress traffic from a coupled optical ring to generate a second transport signal including egress traffic for transmission on the coupled optical ring. The optical combiner element is coupled to the optical splitter element and is operable to passively split a third transport signal including the ingress traffic to generate a drop signal including local drop traffic and a fourth transport signal including the ingress traffic. Protection switching may be provided by selectively openable switches disposed in and distributed around the rings.
    • 柔性开环光网络包括通过双或其它合适的光环连接的多个节点。 每个节点都可以被动地添加和被动地从环中删除流量。 节点可以包括用于每个环的传输元件。 传输元件包括光分路器元件和光组合器元件。 光分路器元件可操作地被动组合包括本地增加业务的添加信号和包括来自耦合光环路的入口业务的第一传输信号,以产生包括用于在耦合的光环上传输的出口业务的第二传输信号。 光学组合器元件耦合到光分路器元件,并且可操作以被动地分裂包括入口业务的第三传输信号,以产生包括本地丢弃业务的丢弃信号和包括入口业务的第四传输信号。 可以通过设置在环中并分布在环周围的选择性可开启的开关来提供保护切换。
    • 63. 发明授权
    • Coupler-based optical cross-connect
    • 基于耦合器的光交叉连接
    • US07266294B2
    • 2007-09-04
    • US10726167
    • 2003-12-02
    • Yasuhiko AokiSusumu KinoshitaKoji Takeguchi
    • Yasuhiko AokiSusumu KinoshitaKoji Takeguchi
    • H04J14/02
    • H04Q11/0005H04J14/0204H04J14/0205H04J14/021H04J14/0217H04J14/0219H04Q2011/0009H04Q2011/0015
    • An optical cross-connect includes multiple input ports that each receives an optical input signal and multiple output ports that each output an optical output signal. The optical cross-connect also includes a distributing amplifier associated with each input port that generates multiple copies of the input signal received at the associated input port and multiple filter units that receive one or more of the copies and forward traffic in selected channels of particular copies. In addition, the optical cross-connect includes a combining amplifier associated with each output port that receives the traffic forwarded by one or more of the filter units and combines the received traffic into an output signal. Moreover, the optical cross-connect includes at least one upgrade input port and at least one upgrade output port expanding the capacity of the optical cross-connect, as well as associated upgrade distributing and combining amplifiers and upgrade filter units.
    • 光交叉连接包括多个输入端口,每个输入端口接收光输入信号和多个输出端口,每个输出端口输出光输出信号。 光学交叉连接还包括与每个输入端口相关联的分配放大器,其生成在相关联的输入端口处接收的输入信号的多个副本,以及多个滤波器单元,其接收特定副本的所选频道中的一个或多个复制和转发业务 。 此外,光交叉连接包括与每个输出端口相关联的组合放大器,其接收由一个或多个滤波器单元转发的业务,并将接收到的业务组合成输出信号。 此外,光交叉连接包括至少一个升级输入端口和至少一个升级输出端口,扩展了光交叉连接的容量,以及相关的升级分配和组合放大器和升级过滤器单元。
    • 64. 发明授权
    • Directing optical channels using a reflective device
    • 使用反射装置引导光通道
    • US07254292B2
    • 2007-08-07
    • US11015210
    • 2004-12-17
    • Cechan TianSusumu Kinoshita
    • Cechan TianSusumu Kinoshita
    • G02B6/26
    • G02B6/29383G02B6/29394G02B6/3518G02B6/356
    • A device for directing one or more optical channels includes one or more micromirror elements. A micromirror element has a mirror and a mirror controller. The mirror is operable to reflect light at a first interaction area to yield a first passband for an optical channel, and to reflect light at a second interaction area to yield a second passband for the optical channel. The mirror controller operates to position the mirror at a first position at which light interacts with the first interaction area to yield the first passband, and to position the mirror at a second position at which light interacts with the second interaction area to yield the second passband.
    • 用于引导一个或多个光通道的装置包括一个或多个微镜元件。 微镜元件具有反射镜和反射镜控制器。 反射镜可操作以在第一相互作用区域反射光以产生用于光学通道的第一通带,并且在第二相互作用区域反射光以产生用于光学通道的第二通带。 反射镜控制器操作以将反射镜定位在第一位置处,在该位置光与第一相互作用区域相互作用以产生第一通带,并将反射镜定位在第二位置处,在该位置光与第二相互作用区域相互作用以产生第二通带 。
    • 66. 发明申请
    • Method and system for establishing transmission priority for optical light-trails
    • 确定光路径传输优先级的方法和系统
    • US20060210268A1
    • 2006-09-21
    • US11080051
    • 2005-03-15
    • Ashwin GumasteSusumu Kinoshita
    • Ashwin GumasteSusumu Kinoshita
    • H04B10/08
    • H04J14/0227H04J14/0238H04J14/0246H04J14/0283H04J14/0284
    • An optical network is operable to carry optical traffic in a plurality of wavelengths between a plurality of nodes. The optical network includes a light-trail, a convener node, one or more intervening nodes, and an end node. The light-trail is established in the optical network between the convener node and the end node and couples the convener node, the intervening nodes, and the end node. Furthermore, the light-trail is associated with one of a plurality of wavelengths. The convener node and the intervening nodes are each operable to determine whether another node having a higher priority is transmitting optical traffic on the light-trail and, in response to determining that no node having a higher priority is transmitting on the light-trail, transmit optical traffic to one of the nodes in the light-trail. The convener node and the intervening nodes are each further operable to indicate to one or more nodes on the light-trail that optical traffic is being transmitted on the light-trail.
    • 光网络可操作以承载多个节点之间的多个波长的光业务。 光网络包括光路,召集节点,一个或多个中间节点和端节点。 光路径在光网络中建立在聚合节点和终端节点之间,并且耦合节点节点,中间节点和终端节点。 此外,光轨与多个波长中的一个相关联。 所述召集节点和所述中间节点各自可操作以确定具有较高优先级的另一节点是否在所述光轨上传输光业务,并且响应于确定没有较高优先级的节点在所述光路上进行传输, 光通信到光轨中的一个节点。 所述召集节点和所述中间节点各自进一步可操作以向所述光路上的一个或多个节点指示在所述光轨上正在传输光业务。
    • 69. 发明申请
    • System and method for conserving resources in an optical storage area network
    • 用于节省光存储区域网络资源的系统和方法
    • US20060159456A1
    • 2006-07-20
    • US11037943
    • 2005-01-18
    • Ashwin GumastePaparao PalacharlaSusumu Kinoshita
    • Ashwin GumastePaparao PalacharlaSusumu Kinoshita
    • H04B10/20
    • H04J14/0284H04J14/0204H04J14/0205H04J14/0206H04J14/021H04J14/0227H04J14/0238H04J14/0283H04J14/0294
    • A method for providing a storage area network includes receiving, at a data storage node, data from a number of storage area network (SAN) servers via associated local nodes coupled to a optical network. The data is received at a plurality of transmitting wavelengths, where each local node is assigned a different transmitting wavelength. The method also includes storing the received data at the data storage node and sending acknowledgement messages to SAN servers to indicate receipt of the data. The acknowledgement messages are sent via the local nodes at a single receiving wavelength and each local node is configured to receive this receiving wavelength. The method may also include receiving, at the data storage node, a request for data stored at the data storage node from any of SAN servers via the associated local node at the assigned transmitting wavelength of the associated local node. Furthermore, the method may include sending the requested data from the data storage node to the requesting SAN sever via the associated local node at the receiving wavelength.
    • 提供存储区域网络的方法包括在数据存储节点处经由耦合到光网络的相关联的本地节点从多个存储区域网络(SAN)服务器接收数据。 以多个发送波长接收数据,其中每个本地节点被分配不同的发送波长。 该方法还包括将接收到的数据存储在数据存储节点处,并向SAN服务器发送确认消息以指示数据的接收。 确认消息通过本地节点以单个接收波长发送,并且每个本地节点被配置为接收该接收波长。 该方法还可以包括在数据存储节点处经由相关联的本地节点的分配的发送波长的经由相关联的本地节点的任何SAN服务器从数据存储节点处存储对数据的请求。 此外,该方法可以包括经由所接收波长的相关联的本地节点将所请求的数据从数据存储节点发送到请求的SAN服务器。
    • 70. 发明申请
    • SYSTEM AND METHOD FOR PROTECTING TRAFFIC IN A HUBBED OPTICAL RING NETWORK
    • 用于保护HUBBED光环网络中的交通的系统和方法
    • US20060147209A1
    • 2006-07-06
    • US11031639
    • 2005-01-06
    • Cechan TianSusumu Kinoshita
    • Cechan TianSusumu Kinoshita
    • H04B10/20
    • H04J14/0291H04J14/0283
    • An optical access network includes a first ring and a second ring communicating optical signals in opposite directions. The network also includes an access node coupled to both rings that adds traffic in a first wavelength of a first optical signal communicated on the first ring. Furthermore, the network includes a hub node coupled to each ring and coupled to an optical core network. The hub node receives the first optical signal, forwards a first copy of the signal to a first wavelength blocking unit that terminates the traffic in the first wavelength, and forwards a second copy of the signal to a first network interconnection element that forwards the traffic in the first wavelength to the core network. Furthermore, upon detection of an interruption of the traffic in the first wavelength on the first ring, the access node adds the traffic in a second wavelength of a second optical signal communicated on the second ring. In addition, the hub node receives the second optical signal, forwards a first copy of the signal to a second wavelength blocking unit that terminates the traffic in the second wavelength, and forwards a second copy of the signal to a second network interconnection element that forwards the traffic in the second wavelength to the core network.
    • 光接入网络包括在相反方向上传送光信号的第一环和第二环。 网络还包括耦合到两个环的接入节点,其增加在第一环上传送的第一光信号的第一波长的业务。 此外,网络包括耦合到每个环并耦合到光核心网络的集线器节点。 集线器节点接收第一光信号,将信号的第一拷贝转发到终止第一波长的业务的第一波长阻塞单元,并将该信号的第二副本转发给转发业务的第一网络互连元件 第一波长到核心网。 此外,在检测到第一环上的第一波长的业务中断时,接入节点将业务加到在第二环上传送的第二光信号的第二波长。 此外,集线器节点接收第二光信号,将信号的第一拷贝转发到终止第二波长的业务的第二波长阻塞单元,并将信号的第二副本转发到转发的第二网络互连元件 流量在第二波长到核心网。