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    • 2. 发明授权
    • Automatic raman gain and tilt control for ultra-long-distance dense WDM optical communication system
    • 超长距离密集WDM光通信系统的自动拉曼增益和倾斜控制
    • US06961522B1
    • 2005-11-01
    • US09717036
    • 2000-11-22
    • Roberta CastagnettiFabrizio Di PasqualeGiorgio GrassoFausto MeliGiovanni Sacchi
    • Roberta CastagnettiFabrizio Di PasqualeGiorgio GrassoFausto MeliGiovanni Sacchi
    • H04B10/00H04B10/17H04J14/02
    • H04B10/2931H04B10/2916H04J14/0221
    • An approach for automatic Raman gain and tilt control for a WDM (Wavelength Division Multiplexing) optical communication systems is disclosed. An optical fiber carries a plurality of optical signals, in which at least one of the optical signals are reference signals. An optical gain unit (e.g., Raman pump unit) couples to the optical fiber and adjusts the reference signals to compensate, in part, for losses associated with the optical fiber and gain tilt accumulation. Upon detecting and analyzing the reference signals, a controller controls the optical gain unit and outputs a control signal to the optical gain unit based upon the analyzed reference signals. An optical amplifier is connected to the optical fiber and amplifies the optical signals. The optical gain unit provides a nearly constant power per channel at an input of the optical amplifier. Under this approach, a Raman gain control mechanism, combined with the use of gain controlled EDFA (Erbium Doped Fiber Amplifier), allows high transmission capacity over ultra-long distances without optical regeneration and with high flexibility.
    • 公开了一种用于WDM(波分复用)​​光通信系统的自动拉曼增益和倾斜控制的方法。 光纤携带多个光信号,其中至少一个光信号是参考信号。 光增益单元(例如,拉曼泵单元)耦合到光纤并且调整参考信号以部分地补偿与光纤相关联的损耗和增益倾斜积累。 在检测和分析参考信号时,控制器控制光学增益单元,并且基于分析的参考信号向光学增益单元输出控制信号。 光放大器连接到光纤并放大光信号。 光学增益单元在光放大器的输入处提供每通道几乎恒定的功率。 在这种方法下,拉曼增益控制机制与增益控制EDFA(掺铒光纤放大器)结合使用,可实现超长距离的高传输容量,无需光学再生和高灵活性。
    • 8. 发明授权
    • Light color recognition for optical connection verification
    • 用于光连接验证的浅色识别
    • US07359634B1
    • 2008-04-15
    • US10632993
    • 2003-08-01
    • Fausto Meli
    • Fausto Meli
    • H04B10/12
    • H04B10/077
    • Optical connection verification schemes that do not cause electromagnetic interference. An all-optical connection verification scheme exploits optical coding based on a standard color scale such as RGB (red, green, blue). An RGB LED source is used to launch a three-color optical signal where the relative (or absolute) magnitudes of the color components identify the connection. On the receiver end, an RGB photodiode measures the relative (or absolute) magnitudes of the color components to verify the connection. Alternatively, one end of the connection may transmit white light with the other end reflecting back a similar three-color signal by use of a color-coded panel reflector.
    • 不产生电磁干扰的光连接验证方案。 全光学连接验证方案利用基于诸如RGB(红色,绿色,蓝色)的标准色标的光学编码。 RGB LED光源用于发射三色光信号,其中颜色分量的相对(或绝对)幅度标识连接。 在接收器端,RGB光电二极管测量颜色分量的相对(或绝对)幅度以验证连接。 或者,连接的一端可以透射白光,另一端通过使用彩色编码的面板反射器反射类似的三色信号。
    • 10. 发明授权
    • Transparent optical self-healing-ring communication network
    • 透明光学自愈环通信网络
    • US06456406B1
    • 2002-09-24
    • US09261630
    • 1999-03-03
    • Fulvio AreccoFausto MeliMarcos Antonio Brandao Sanches
    • Fulvio AreccoFausto MeliMarcos Antonio Brandao Sanches
    • H04J1402
    • H04J14/0283H04J14/0206H04J14/0212H04J14/0213H04J14/0219H04J14/0221H04J14/0227H04J14/0241H04J14/0293H04J14/0294H04J14/0295
    • An optical self-healing-ring communication network is described which includes: a first optical communication line, forming a closed optical path; at least two add/drop nodes for optical signals, optically connected along the line; a second optical communication line forming a closed optical path and optically connected to the optical-signal add/drop nodes. Defined in the network are first and second mutually opposite. travel directions of the optical signals, with respect to the position of the optical-signal add/drop nodes. At least one of said nodes further comprises selection means, controlled by the optical signals, for the selective dropping of the optical signals from one of the communication lines. At least one of the optical-signal add/drop nodes further includes means for the simultaneous input of at least one optical signal in the first direction along the first communication line and in the second direction along the second communication line.
    • 描述了一种光学自愈环通信网络,其包括:形成封闭光路的第一光通信线路; 用于光信号的至少两个加/落节点,沿着该线光学连接; 第二光通信线路形成封闭的光路并且光连接到光信号加/分节点。 在网络中定义的是第一和第二相互相反的。 相对于光信号加/减节点的位置,光信号的行进方向。 所述节点中的至少一个还包括由光信号控制的选择装置,用于从一个通信线路选择性地丢弃光信号。 至少一个光信号添加/分出节点还包括用于沿着第一通信线路沿着第一方向并沿第二通信线路沿第二方向同时输入至少一个光信号的装置。