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    • 1. 发明授权
    • Determination of a maximum transmission distance for heterogeneous types of optical fibre
    • 确定异种光纤的最大传输距离
    • US09025952B2
    • 2015-05-05
    • US13819004
    • 2011-09-29
    • Annalisa MoreaFlorence LeplingardJean-Christophe Antona
    • Annalisa MoreaFlorence LeplingardJean-Christophe Antona
    • H04B10/073H04B10/07
    • H04B10/07H04B10/073
    • An exemplary method is provided for determining a maximum transmission distance for an optical link that has heterogeneous types of optical fiber segments. The method includes retrieving from a database a maximum transmission reach value for each type of optical fiber present in the optical link. A length of each type of the optical fiber to reach a distance is computed, where, for each type of the optical fiber present in the optical link, segments are summed from a starting point to the distance to determine the length of each type of the optical fiber along the optical link. The length for each type of the optical fiber in the optical link is normalized by multiplying the length of each type of the optical fiber by a weight chosen as a function of the maximum transmission reach value for each type of said optical fiber.
    • 提供了一种用于确定具有异种类型的光纤段的光链路的最大传输距离的示例性方法。 该方法包括从数据库中检索光链路中存在的每种类型的光纤的最大传输到达值。 计算每种类型的光纤达到一定距离的长度,其中,对于存在于光学链路中的每种类型的光纤,将段从起始点到距离相加以确定每种类型的光纤的长度 沿光链路的光纤。 通过将每种类型的光纤的长度乘以按每种类型的所述光纤的最大传输到达值的函数所选择的权重来归一化光链路中的每种类型的光纤的长度。
    • 5. 发明授权
    • Transponder and related network node for an optical transmission network
    • 用于光传输网络的应答器和相关网络节点
    • US09148246B2
    • 2015-09-29
    • US13882569
    • 2011-12-02
    • Yvan PointurierChristian DorizeAnnalisa Morea
    • Yvan PointurierChristian DorizeAnnalisa Morea
    • H04J14/02H04B10/29H04Q11/00
    • H04J14/0212H04B10/29H04Q2011/0039
    • In order to reduce power consumption in network equipment for optical transmission networks, it is proposed by reducing E/O conversion and signal processing in optical networks when not needed. A network node has two or more line cards. Each line card contains a receive side transponder section with a network side optical receiver, a first electrical section, and a client side optical transmitter and a transmit side transponder section with a network side optical transmitter, a second electrical section, and a client side optical receiver. The first electrical section has at least one intermediate electrical output the second electrical section has at least one intermediate electrical input. The intermediate electrical outputs and inputs lead to an electrical switch matrix, which controllably interconnects the intermediate electrical outputs and inputs. Preferably, the transponders can additionally contain second intermediate electrical outputs and inputs additionally bypassing a Forward-Error-Correction processing function in the line cards.
    • 为了降低用于光传输网络的网络设备的功耗,提出了在不需要的情况下减少光网络中的E / O转换和信号处理。 一个网络节点有两个或更多的线卡。 每个线路卡包括具有网络侧光接收器,第一电气部分和客户侧光发射机的接收侧转发器部分,以及具有网络侧光发射机,第二电部分和客户侧光发射机的发射侧转发器部分 接收器。 第一电气部分具有至少一个中间电气输出,第二电气部分具有至少一个中间电气输入。 中间电气输出和输入通过电开关矩阵,其可控制地互连中间电输出和输入。 优选地,应答器还可以额外地包含第二中间电输出和输入,旁路线卡中的前向纠错处理功能。
    • 7. 发明申请
    • TRANSPONDER AND RELATED NETWORK NODE FOR AN OPTICAL TRANSMISSION NETWORK
    • 光传输网络的传输器和相关网络节点
    • US20130243431A1
    • 2013-09-19
    • US13882569
    • 2011-12-02
    • Yvan PointurierChristian DorizeAnnalisa Morea
    • Yvan PointurierChristian DorizeAnnalisa Morea
    • H04J14/02
    • H04J14/0212H04B10/29H04Q2011/0039
    • In order to reduce power consumption in network equipment for optical transmission networks, it is proposed by reducing E/O conversion and signal processing in optical networks when not needed. A network node has two or more line cards. Each line card contains a receive side transponder section with a network side optical receiver, a first electrical section, and a client side optical transmitter and a transmit side transponder section with a network side optical transmitter, a second electrical section, and a client side optical receiver. The first electrical section has at least one intermediate electrical output the second electrical section has at least one intermediate electrical input. The intermediate electrical outputs and inputs lead to an electrical switch matrix, which controllably interconnects the intermediate electrical outputs and inputs. Preferably, the transponders can additionally contain second intermediate electrical outputs and inputs additionally bypassing a Forward-Error-Correction processing function in the line cards
    • 为了降低用于光传输网络的网络设备的功耗,提出了在不需要的情况下减少光网络中的E / O转换和信号处理。 一个网络节点有两个或更多的线卡。 每个线路卡包括具有网络侧光接收器,第一电气部分和客户侧光发射机的接收侧转发器部分,以及具有网络侧光发射机,第二电部分和客户侧光发射机的发射侧转发器部分 接收器。 第一电气部分具有至少一个中间电气输出,第二电气部分具有至少一个中间电气输入。 中间电气输出和输入通过电开关矩阵,其可控制地互连中间电输出和输入。 优选地,应答器可以另外包含第二中间电输出和输入,旁路线卡中的前向纠错处理功能
    • 9. 发明授权
    • Variable bitrate equipment
    • 可变比特率设备
    • US08624762B2
    • 2014-01-07
    • US13319236
    • 2010-03-03
    • Olivier RivalAnnalisa Morea
    • Olivier RivalAnnalisa Morea
    • H03M7/20
    • H04J3/1682
    • The present invention refers to a signal concentrator comprising: a parallel to serial conversion device comprising a plurality of parallel inputs and a serial output, a control unit comprising detection means adapted for detecting the activity of said plurality of parallel inputs of said parallel to serial conversion device, indication means adapted for indicating the active parallel inputs to the parallel to serial conversion device and controlling means adapted for setting an operating bitrate of the serial output in function of said activity of said plurality of parallel inputs.
    • 本发明涉及一种信号集中器,包括:并行到串行转换装置,包括多个并行输入和串行输出;控制单元,包括适于检测所述并行到串行转换的所述多个并行输入的活动的检测装置 装置,适于指示并行到串行转换装置的有源并行输入的指示装置和适于根据所述多个并行输入的所述活动的功能来设置串行输出的操作比特率的控制装置。