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    • 51. 发明授权
    • Optical demodulating apparatus and method
    • 光解调装置及方法
    • US07526210B2
    • 2009-04-28
    • US11163190
    • 2005-10-08
    • Xiang Liu
    • Xiang Liu
    • H04B10/04H04B10/12
    • H04B10/66
    • An optical demodulator and accompanying method(s) that demodulates a DQPSK signal employing a single optical delay interferometer comprising a free-space Michelson interferometer having two optical paths, connected to a 1×2 coupler. Positioned within an arm of the Michelson interferometer is a phase shifter that produces a phase difference of π/2 between the two paths. The resulting demodulator is compact, reliable, and may be constructed to be substantially immune from undesirable thermal sensitivities.
    • 一种使用单个光学延迟干涉仪解调DQPSK信号的光学解调器及其附带方法,该干涉仪包括连接到1x2耦合器的具有两个光路的自由空间迈克尔逊干涉仪。 位于迈克尔逊干涉仪臂内的是一个移相器,它产生两条路径之间的π/ 2相位差。 所得到的解调器是紧凑的,可靠的,并且可以被构造为基本上免受不期望的热敏感性的影响。
    • 52. 发明申请
    • Reconstruction and restoration of two polarization components of an optical signal field
    • 重建和恢复光信号场的两个偏振分量
    • US20090074427A1
    • 2009-03-19
    • US12151927
    • 2008-05-09
    • Xiang Liu
    • Xiang Liu
    • H04B10/06
    • H04B10/60H04B10/2513H04B10/67H04B10/677H04B10/69
    • Digital compensation of the polarization-mode dispersion (PMD) effects experienced by an optical signal in a transmission link is achieved. A digital representation of the optical fields of two orthogonal polarization components of an optical signal, defined by a polarization beam splitter (PBS), is first obtained. The fiber transmission link is treated as a concatenation of multiple virtual PMD segments, each having two specific principle-state-of-polarization (PSP) axes and causing a differential group-delay (DGD) and a phase delay between two signal components that are polarized along the two PSP axes. The best guesses of the parameters of the PMD segments and the relative orientation between the PSP axes of the last PMD segment and the characteristic polarization axes of the PBS are dynamically obtained. The digital representation of at least one generic component of the field of the optical signal is then computed through matrix operations by using the best guesses.
    • 实现了传输链路中光信号所经历的偏振模色散(PMD)效应的数字补偿。 首先获得由偏振分束器(PBS)限定的光信号的两个正交偏振分量的光场的数字表示。 光纤传输链路被视为多个虚拟PMD段的级联,每个虚拟PMD段具有两个特定的原理偏振态(PSP)轴,并导致差分组延迟(DGD)和两个信号分量之间的相位延迟 沿着两个PSP轴极化。 动态地获得PMD段的参数和最后PMD段的PSP轴与PBS的特征极化轴之间的相对取向的最佳猜测。 然后通过使用最佳猜测的矩阵运算来计算光信号的场的至少一个通用分量的数字表示。
    • 55. 发明授权
    • Method and apparatus for routing messages in hybridized optical/wireless networks
    • 用于在混合光/无线网络中路由消息的方法和装置
    • US07349635B2
    • 2008-03-25
    • US10725342
    • 2003-12-01
    • Mooi Choo ChuahRandy C. GilesXiang LiuMuhammad A. Qureshi
    • Mooi Choo ChuahRandy C. GilesXiang LiuMuhammad A. Qureshi
    • H04B10/00H04B10/04
    • H04B10/1125
    • Method and apparatus for routing messages in a network includes first filters to provide frequency-based message signals converted from an optically-based signal and mixers adapted to mix the frequency-based message signals with sub-carriers to generate frequency-based sub-carrier modulated message signals. A frequency generator connected to the mixers provides the sub-carriers to the mixers and a combiner connected to the mixers combines the frequency-based sub-carrier modulated message signals. Second filters connected to the combiner receive and group the frequency-based sub-carrier modulated message signals. Optical transmitters connected to second filters optically convert and transmit the frequency-based sub-carrier modulated message signals. The frequency generator generates and applies a particular sub-carrier frequency to one of the mixers according to information contained in the frequency-based message signal. The information is encoded into the frequency-based message signal via a generalized MPLS (GMPLS) label contained in a header portion of the frequency-based message signal.
    • 用于在网络中路由消息的方法和装置包括:第一滤波器,用于提供从基于光学的信号转换的基于频率的消息信号,以及适于将基于频率的消息信号与子载波混合的混频器,以产生基于频率的子载波调制 消息信号。 连接到混频器的频率发生器将副载波提供给混频器,并且连接到混频器的组合器组合基于频率的子载波调制消息信号。 连接到组合器的第二滤波器接收并分组基于频率的子载波调制消息信号。 连接到第二滤波器的光发射机光学地转换和发射基于频率的子载波调制消息信号。 频率发生器根据包含在基于频率的消息信号中的信息产生特定的副载波频率到一个混频器。 该信息通过包含在基于频率的消息信号的报头部分中的广义MPLS(GMPLS)标签被编码到基于频率的消息信号中。
    • 56. 发明授权
    • System and method of optical transmission
    • 光传输系统和方法
    • US07277647B2
    • 2007-10-02
    • US10099105
    • 2002-03-14
    • Douglas M GillXiang LiuXing Wei
    • Douglas M GillXiang LiuXing Wei
    • H04B10/04
    • H04B10/505H04B10/5053H04B10/5563
    • Minimum shift keying (MSK) is used as the coding scheme in a high bit rate optical transmission system, and the signal format is either RZ (return-to-zero) or NRZ (non-return-to-zero). The system can combine multiple individual channels with different wavelengths in a WDM or dense wavelength division multiplexed (DWDM) arrangement. Dispersion management can be provided using several techniques, such as quasi-linear transmissions or conventional RZ transmissions. At the transmitter, an optical MSK transmitter is used to modulate the phase of a stream of high bit rate (e.g., 40 Gbit/s) optical signals. Many such data streams can be combined in a wavelength division multiplexer and transmitted to a remote receiver, where the signal is wavelength division demultiplexed. The encoded data in each wavelength channel is then recovered by an MSK receiver, which may consist of a delay demodulator and a balanced detector.
    • 最小移位键控(MSK)用作高比特率光传输系统中的编码方案,信号格式为RZ(归零)或NRZ(非归零)。 该系统可以在WDM或密集波分复用(DWDM)布置中组合具有不同波长的多个单独信道。 可以使用几种技术来提供色散管理,例如准线性传输或常规RZ传输。 在发射机处,使用光学MSK发射机来调制高比特率(例如40Gbit / s)光信号流的相位。 许多这样的数据流可以组合在波分多路复用器中并被发送到远程接收机,其中信号被波分解复用。 每个波长信道中的编码数据然后由MSK接收机恢复,MSK接收机可以由延迟解调器和平衡检测器组成。