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    • 5. 发明申请
    • AN OPTICAL DEVICE, AN OPTICAL TRANSCEIVER AND A NETWORK NODE
    • 光学设备,光学收发器和网络节点
    • WO2015195016A1
    • 2015-12-23
    • PCT/SE2014/050763
    • 2014-06-19
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • URBAN, PatrykDORTSCHY, BorisGIORGI, LucaPONZINI, Filippo
    • H04B10/2519H04B10/516G02B6/293
    • H04B10/5165G02B6/02085G02B6/29319H04B10/25752H04J14/0227H04J14/0256
    • An optical device 111, 112 comprises: an optical input and output device 220 comprising a first input port 221, a second input port 222, a first output port 231 and a second output port 232; an optical filtering device 240 comprising an input port 241 coupled to the first output port 231 and an output port 242 coupled to the second input port 222; and an optical amplifying device 250 comprising an input port 251 coupled to the second output port 232. The optical input and output device 220 is adapted to couple the output port 242 comprised in the optical filtering device 240 to the input port 251 comprised in the optical amplifying device 250. The optical filtering device 240 comprises a multiple of cascaded phase shifted Bragg gratings 244, 245, 246, each being adapted to filter an associated respective optical carrier within to produce a respective output signal to the optical amplifying device 250.
    • 光学装置111,112包括:光输入和输出装置220,包括第一输入端口221,第二输入端口222,第一输出端口231和第二输出端口232; 光学滤波装置240包括耦合到第一输出端口231的输入端口241和耦合到第二输入端口222的输出端口242; 以及包括耦合到第二输出端口232的输入端口251的光学放大装置250.光学输入和输出装置220适于将包括在光学滤波装置240中的输出端口242耦合到包括在光学滤波器中的输入端口251 放大装置250.光学滤波装置240包括多个级联的相移的布拉格光栅244,245,246,每个适于在相关的相应的光载波内滤波以产生相应的输出信号到光放大装置250。
    • 6. 发明申请
    • AN OPTICAL LINE TERMINAL
    • 光线终端
    • WO2015096864A1
    • 2015-07-02
    • PCT/EP2013/077991
    • 2013-12-24
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)
    • GIORGI, LucaPONZINI, Filippo
    • H04J14/02
    • H04J14/0283H04J14/0246H04J14/025H04J14/0289H04J14/029
    • The present invention provides an Optical Line Terminal (OLT) for an optical ring network. The OLT comprises a plurality of transmitters each configured to transmit a downstream signal at a respective wavelength. The OLT further comprises a multiplexer configured to wavelength division multiplex the downstream signals into a wavelength division multiplexed signal, an optical power splitter, and an optical switch having a first state and a second state. When the optical switch is in the first state, the wavelength division multiplexed signal is transmitted in a first direction around the optical ring. When the optical switch is in the second state, the wavelength division multiplexed signal is split by the optical power splitter into two wavelength division multiplexed signals and a first of the wavelength division multiplexed signals is transmitted in the first direction around the ring and the second of the wavelength division multiplexed signals is transmitted in a second, different direction around the ring. The OLT further comprises a controller configured to cause the optical switch to switch from the first state to the second state when a break in the ring is detected. There is also provided an optical ring network comprising the OLT, and a radio access network comprising the optical ring network.
    • 本发明提供了一种用于光环网络的光线路终端(OLT)。 OLT包括多个发射机,每个发射机被配置为在相应的波长处发送下行信号。 OLT还包括多路复用器,其被配置为将下游信号波分复用为波分复用信号,光功率分配器和具有第一状态和第二状态的光开关。 当光开关处于第一状态时,波分复用信号沿光环周围的第一方向传输。 当光开关处于第二状态时,波分复用信号由光功率分配器分离为两个波分多路复用信号,第一波分复用信号沿环绕第一方向传输,第二波分复用信号 波分复用信号沿环绕第二不同方向发送。 OLT还包括控制器,其被配置为当检测到环中断时,使光开关从第一状态切换到第二状态。 还提供了包括OLT的光环网络和包括光环网络的无线接入网络。
    • 10. 发明申请
    • WDM LINK FOR RADIO BASE STATION
    • 用于无线电基站的WDM链路
    • WO2013139367A1
    • 2013-09-26
    • PCT/EP2012/054810
    • 2012-03-19
    • TELEFONAKTIEBOLAGET L M ERICSSON (publ)PONZINI, FilippoCAVALIERE, Fabio
    • PONZINI, FilippoCAVALIERE, Fabio
    • H04B10/2575H04W88/08
    • H04B10/25758H04B10/2575H04J14/02H04W88/085
    • A radio base station (10) has a baseband controller (20) coupled to a radio head (30) by an optical wavelength division multiplexed link to pass downlink signals on a first wavelength (100), and uplink signals on another wavelength (110). A compensating delay is applied to one of the signals to compensate for a difference in transmission times between the downlink and the uplink signals. The compensating delay can be controlled according to the difference in wavelengths. By compensating for such differences in transmission times, synchronisation problems can be avoided or ameliorated, or transmission distances can be increased. This can result in more flexibility in choice of wavelengths, fiber types and fiber lengths, and greater resilience. This can enable simpler installation or configuration, or reconfiguration without needing to take care to restrict the selection of wavelengths on the WDM link or restrict the length of the link for example.
    • 无线电基站(10)具有通过光波分复用链路耦合到无线电头(30)的基带控制器(20),以在第一波长(100)上传送下行链路信号,并且在另一波长(110)上传送上行链路信号, 。 对一个信号施加补偿延迟以补偿下行链路和上行链路信号之间的传输时间差。 可以根据波长的差异来控制补偿延迟。 通过补偿传输时间上的差异,可以避免或改善同步问题,或增加传输距离。 这可以在选择波长,光纤类型和光纤长度以及更大的弹性方面产生更大的灵活性。 这可以使得更简单的安装或配置或重新配置,而不需要注意限制WDM链路上的波长的选择或限制链路的长度。