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    • 2. 发明授权
    • Optical transmission system and optical transmission method
    • 光传输系统和光传输方式
    • US08699884B2
    • 2014-04-15
    • US13137933
    • 2011-09-21
    • Takashi ToyomakiMotoyoshi Sekiya
    • Takashi ToyomakiMotoyoshi Sekiya
    • H04J14/02
    • H04B10/0773H04B2210/074H04J14/0212H04J14/0227H04J14/0258H04J14/0276
    • An optical transmission system includes a plurality of optical nodes that transmits wavelength multiplexing light including a plurality of signal light components having different wavelengths, wherein each of the optical nodes includes superimposed signal light generation circuit which superimposes a low frequency signal having a common frequency on a corresponding signal light component included in the wavelength multiplexing light; low frequency signal extraction circuit which extracts a low frequency signal having a frequency of a given range from a corresponding signal light component; and pass-through node number measurement circuit which measures, for each of the signal light components, a pass-through node number based on the frequency of the low frequency signal extracted by the low frequency signal extraction circuit, the pass-through node number being the number of optical nodes through which the signal light component has passed before being transmitted to a specific optical node.
    • 一种光传输系统包括多个发送包括具有不同波长的多个信号光分量的波分复用光的光节点,其中每个光节点包括叠加信号光生成电路,该电路将具有共同频率的低频信号叠加在 包括在波长复用光中的相应信号光分量; 低频信号提取电路,从对应的信号光分量中提取具有给定范围的频率的低频信号; 以及直通节点号测量电路,对于每个信号光分量,测量基于由低频信号提取电路提取的低频信号的频率的直通节点数,直通节点数为 信号光分量在被传输到特定光节点之前经过的光节点的数量。
    • 5. 发明申请
    • Optical transmission system and optical transmission method
    • 光传输系统和光传输方式
    • US20120008957A1
    • 2012-01-12
    • US13137933
    • 2011-09-21
    • Takashi ToyomakiMotoyoshi Sekiya
    • Takashi ToyomakiMotoyoshi Sekiya
    • H04J14/02
    • H04B10/0773H04B2210/074H04J14/0212H04J14/0227H04J14/0258H04J14/0276
    • An optical transmission system includes a plurality of optical nodes that transmits wavelength multiplexing light including a plurality of signal light components having different wavelengths, wherein each of the optical nodes includes superimposed signal light generation circuit which superimposes a low frequency signal having a common frequency on a corresponding signal light component included in the wavelength multiplexing light; low frequency signal extraction circuit which extracts a low frequency signal having a frequency of a given range from a corresponding signal light component; and pass-through node number measurement circuit which measures, for each of the signal light components, a pass-through node number based on the frequency of the low frequency signal extracted by the low frequency signal extraction circuit, the pass-through node number being the number of optical nodes through which the signal light component has passed before being transmitted to a specific optical node.
    • 一种光传输系统包括多个发送包括具有不同波长的多个信号光分量的波分复用光的光节点,其中每个光节点包括叠加信号光生成电路,该电路将具有共同频率的低频信号叠加在 包括在波长复用光中的相应信号光分量; 低频信号提取电路,从对应的信号光分量中提取具有给定范围的频率的低频信号; 以及直通节点号测量电路,对于每个信号光分量,测量基于由低频信号提取电路提取的低频信号的频率的直通节点数,直通节点数为 信号光分量在被传输到特定光节点之前经过的光节点的数量。
    • 8. 发明授权
    • Systems and methods for multi-layer traffic grooming
    • 多层交通梳理的系统和方法
    • US08346965B2
    • 2013-01-01
    • US12942586
    • 2010-11-09
    • Qiong ZhangPaparao PalacharlaQingya SheXi WangMotoyoshi Sekiya
    • Qiong ZhangPaparao PalacharlaQingya SheXi WangMotoyoshi Sekiya
    • G06F15/16
    • H04J14/0257H04J14/0212
    • A method may include constructing an auxiliary graph for a network comprising a plurality of network elements, the network elements having an Internet Protocol layer, a lower layer, and a wavelength layer, the auxiliary graph including a plurality of directed edges, the plurality of directed edges indicative of connectivity of components of the plurality of network elements. The method may further include: (i) deleting directed edges from the auxiliary graph whose available bandwidth is lower than the required bandwidth of a selected demand; (ii) finding a path for the demand on the auxiliary graph via remaining directed edges; (iii) deleting at least one directed edge of the auxiliary graph on the wavelength layer along the path; (iv) adding lower layer lightpath edges to the auxiliary graph for a lower layer lightpath for the path; and (v) converting lower layer lightpaths to Internet Protocol lightpaths if a conversion condition is satisfied.
    • 方法可以包括为包括多个网络元件的网络构建辅助图形,所述网络元件具有互联网协议层,下层和波长层,所述辅助图形包括多个有向边缘,所述多个定向 指示多个网络元件的组件的连接性的边缘。 该方法还可以包括:(i)从可用带宽低于所选择的需求的所需带宽的辅助图中删除有向边; (ii)通过剩余的有向边找到对辅助图的需求的路径; (iii)沿所述路径删除所述波长层上的辅助图形的至少一个有向边缘; (iv)将下层光路边缘添加到辅助图形,用于路径的下层光路; 和(v)如果满足转换条件,则将下层光路转换为因特网协议光路。
    • 9. 发明授权
    • Dispersion compensation method in optical communication system having optical add drop multiplexing capability
    • 具有光分插复用能力的光通信系统中的色散补偿方法
    • US07542677B2
    • 2009-06-02
    • US11892302
    • 2007-08-21
    • Motoyoshi SekiyaKazuo YamaneRyosuke GotoSatoru OkanoTakehito Okeno
    • Motoyoshi SekiyaKazuo YamaneRyosuke GotoSatoru OkanoTakehito Okeno
    • H04J14/02H04B10/12H04B10/001
    • H04B10/25253H04B2210/256H04J14/0206H04J14/0213
    • Dispersion compensation values are set so as to be transmittable to any path groups in a WDM optical communication system having OADM nodes, which includes transmitting-end and receiving-end terminal nodes; a WDM optical communication transmission line including a plurality of spans each having an optical fiber, the plurality of spans joining the transmitting-end and receiving-end terminal nodes; and a plurality of add drop multiplexing (OADM) nodes disposed on the optical communication transmission line; wherein when taking as the reference a residual dispersion target value of between the transmitting-end terminal and receiving-end terminal nodes, a residual dispersion target value for a node segment between one of the terminal nodes and one of the add drop multiplexing (OADM) nodes and a residual dispersion target value for a node-to-node segment between two of the add drop multiplexing (OADM) nodes are set so as to be proportional to ratios of the span counts in the node segment and in the node-to-node segment, respectively, to the total span count between the transmitting-end and receiving-end terminal nodes.
    • 色散补偿值被设置为可以发送到具有包括发送端和接收端终端节点的OADM节点的WDM光通信系统中的任何路径组; WDM光通信传输线,其包括多个具有光纤的跨度,所述多个跨接器连接所述发送端和接收端终端节点; 以及设置在所述光通信传输线上的多个添加分集复用(OADM)节点; 其中,当以发送端终端和接收端终端节点之间的残留分散目标值作为参考时,在一个终端节点之间的节点的剩余分散目标值与加法分集复用(OADM)之一之间, 节点和两个添加分集复用(OADM)节点之间的节点到节点分段的残余分散目标值被设置成与节点分段和节点到节点中的跨度计数的比率成比例, 节点段分别为发送端和接收端终端之间的总宽度计数。