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    • 1. 发明授权
    • Emitter, communication system and method
    • US11621780B2
    • 2023-04-04
    • US17652562
    • 2022-02-25
    • Kabushiki Kaisha Toshiba
    • Robert Ian WoodwardZhiliang YuanAndrew James Shields
    • H04B10/00H04B10/50H04B10/70H04J14/00
    • An emitter configured to output a sequence of periodic light pulses with different polarisations, the emitter comprising: a beam splitter configured to divide the pulses of a first sequence of pulses, such that each pulse is split between a first path and a second path, the first sequence of pulses having a varying phase and a first polarisation; a polarisation rotator configured to rotate the polarisation state of pulses in one of the first path or the second path with respect to the polarisation state of pulses in the other path; a time delay component configured to provide a time delay such that the first sequence of pulses in the first arm are delayed by one period with respect to the first sequence of pulses in the second arm; an optical combination component configured to combine the delayed first sequence of pulses from the first path with the first sequence of pulses from the second path to produce an output sequence of pulses where each pulse in the output sequence is a combination of a pulse from the second path and a delayed pulse from the first path and has a polarisation determined from the phase difference between combined pulses and the polarisation of the first path and the second path.
    • 5. 发明申请
    • SYSTEM AND METHOD FOR INTENSITY MONITORING
    • 强度监测系统与方法
    • US20140105598A1
    • 2014-04-17
    • US14049655
    • 2013-10-09
    • Kabushiki Kaisha Toshiba
    • Marco LUCAMARINIJames DynesZhiliang YuanAndrew James Shields
    • H04B10/079H04B10/70
    • H04B10/07955H04B10/70
    • A detection system for monitoring the intensity of a stream of modulated pulses, the system comprising a controller configured to provide a control signal to a component outputting modulated pulses the control signal controlling the level of modulation for each pulse exiting the component and a detector configured to measure the intensity of the pulses in the stream of pulses exiting the component outputting modulated pulses, wherein the detector comprises a gated detector, the controller being configured to send a gating signal to said detector, wherein said gating signal varies the gain of the detector with the control signal, such that pulses with a selected modulation level can be detected.
    • 一种用于监测调制脉冲流的强度的检测系统,该系统包括控制器,该控制器被配置为向输出调制脉冲的分量提供控制信号,控制信号控制离开组件的每个脉冲的调制电平,以及检测器,被配置为 测量离开输出调制脉冲的分量的脉冲流中的脉冲的强度,其中检测器包括门控检测器,该控制器被配置为向所述检测器发送选通信号,其中所述门控信号改变检测器的增益, 控制信号,使得可以检测到具有选择的调制电平的脉冲。
    • 6. 发明授权
    • Optical system and method
    • US11223419B1
    • 2022-01-11
    • US17187518
    • 2021-02-26
    • Kabushiki Kaisha Toshiba
    • Mirko PittalugaZhiliang YuanAndrew James Shields
    • H04B10/00H04B10/079H04B10/61H04J14/02H04B10/50
    • An optical system comprising a first emitter and a receiver, said first emitter comprising an encoding unit configured to encode information using phase on a first optical information signal, said first information signal having a single first wavelength, said emitter being configured to output a reference signal, said reference signal having a reference wavelength which is different to the first wavelength, the emitter further comprising a multiplexer configured to multiplex the first information signal and the reference signal to produce a multiplexed first signal and output the multiplexed first signal to a communication channel said receiver comprising: a de-multiplexer configured to de-multiplex the multiplexed first signal received from the emitter to extract the first information signal and the reference signal; a decoder configured to decode the phase information in the first information signal; and a phase compensation unit configured to estimate the phase change of the first information signal caused by the communication channel from the first reference signal and to compensate the decoder for the phase change of the first information signal caused by the communication channel.