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    • 1. 发明授权
    • Quality monitoring method and apparatus for wavelength division multiplexed optical signal and optical transmission system using the same
    • 用于波分复用光信号和使用其的光传输系统的质量监测方法和装置
    • US07400830B2
    • 2008-07-15
    • US10806330
    • 2004-03-23
    • Kenichi ToriiTakao NaitoHiroshi NakamotoToru Katagiri
    • Kenichi ToriiTakao NaitoHiroshi NakamotoToru Katagiri
    • H04B10/08
    • H04B10/07953
    • The present invention has an object to provide a technology for monitoring the quality of a WDM signal light, capable of quickly and accurately judging an occurrence of quality deterioration of signal light and a deterioration factor thereof. To this end, according to a quality monitoring apparatus of WDM signal light of the present invention, a part of the WDM signal light being propagated through an optical transmission path is branched as a monitor light, a signal light of one wavelength contained in the monitor light is selected as a channel to be measured. Then, the frequency of occurrences of bit error for the channel to be measured is repeatedly measured for a plurality of times, and whether or not the signal quality is deteriorated is judged, together with the deterioration factor based on the measurement results, and a control signal light for adjusting the signal light power according to the judgment result is transmitted to the optical transmission path, to achieve the improvement of a characteristic of the WDM signal light.
    • 本发明的目的是提供一种用于监视WDM信号光的质量的技术,其能够快速且准确地判断信号光的质量劣化的发生及其劣化因素。 为此,根据本发明的WDM信号光的质量监视装置,通过光传输路径传播的WDM信号光的一部分被分支为监视光,监视器中包含一个波长的信号光 选择光作为待测量的通道。 然后,重复地测量要测量的通道的位错误的发生频率,并且判断信号质量是否劣化,以及基于测量结果的劣化因子以及控制 将根据判断结果调整信号光功率的信号光发送到光传输路径,以实现WDM信号光的特性的提高。
    • 4. 发明授权
    • Raman amplifier and optical transmission system using the same
    • 拉曼放大器和光传输系统使用相同
    • US07242519B2
    • 2007-07-10
    • US10812104
    • 2004-03-30
    • Kenichi ToriiTakao NaitoToshiki TanakaMasahiro Yuki
    • Kenichi ToriiTakao NaitoToshiki TanakaMasahiro Yuki
    • H04B10/17
    • H01S3/302H01S3/094096
    • It is an object of the present invention to provide a Raman amplifier capable of easily reducing the wavelength deviation of a Raman gain while suppressing system performance degradation, and an optical transmission system using such a Raman amplifier. To this end, the Raman amplifier of the present invention supplies, to an amplification medium, first pumping lights arranged at equal wavelength spacing in a signal light wavelength band, which is shifted to a shorter wavelength side in accordance with a Raman shift frequency, and second pumping lights arranged in a wavelength band on a shorter wavelength side and a longer wavelength side than a wavelength band of the first pumping lights, the wavelength and power of which are set so that peak wavelength spacing of the Raman gain in the signal light wavelength band is substantially equal to each other, to Raman amplifies a WDM signal light, and reduces the wavelength deviation of power of the WDM signal light by using a gain equalizer having the periodicity corresponding to the peak wavelength spacing of the Raman gain.
    • 本发明的目的是提供一种能够在抑制系统性能劣化的同时,容易地降低拉曼增益的波长偏差的拉曼放大器,以及使用这样的拉曼放大器的光传输系统。 为此,本发明的拉曼放大器向放大媒体提供按照拉曼位移频率向短波长侧移动的信号光波长带中的等距波长间隔配置的第一泵浦光,以及 第二泵浦光布置在比第一泵浦光的波长带更短波长侧和较长波长侧的波长带中,其波长和功率被设置为使得信号光波长中的拉曼增益的峰值波长间隔 通过使用具有对应于拉曼增益的峰值波长间隔的周期的增益均衡器,拉曼放大WDM信号光,并降低WDM信号光的功率波长偏差。
    • 6. 发明授权
    • Radio communication apparatus having common circuits usable by
transmitter and receiver systems
    • 具有可由发射机和接收机系统使用的公共电路的无线电通信装置
    • US5444863A
    • 1995-08-22
    • US969058
    • 1992-10-30
    • Kenichi Torii
    • Kenichi Torii
    • H04B1/54H04B1/44H04Q7/32
    • H04B1/44Y02B60/50
    • There is provided a radio communication apparatus wherein a band-pass filter and a variable attenuator of a radio high-frequency circuit are designed such that these can be commonly used by transmitter and receiver systems. In a base-band circuit system, analog low-pass filters for smoothing a base-band signal and roll-off filters for removing unnecessary frequency components by digital filtering processing are designed such that these can be commonly used by the transmitter system and receiver system. In the demodulation system adopted in the orthogonal circuit system, orthogonal detection is followed by delay detection, and multipliers for orthogonal modulation are also used as multipliers for orthogonal demodulation. Further, for common use of the circuit elements by the transmitter system and receiver system, switches for connecting the signal line to the transmitter system or the receiver system in the transmission/reception mode are provided at one end or both ends of each of these circuits.
    • 提供了一种无线电通信装置,其中设计了无线电高频电路的带通滤波器和可变衰减器,使得它们可以被发射机和接收机系统共同使用。 在基带电路系统中,设计用于平滑基带信号的模拟低通滤波器和用于通过数字滤波处理去除不必要的频率分量的滚降滤波器,使得这些滤波器可以被发射机系统和接收机系统 。 在正交电路系统采用的解调系统中,正交检测后跟延迟检测,正交调制的乘法器也用作正交解调的乘法器。 此外,为了通过发射机系统和接收机系统的电路元件的共同使用,在发送/接收模式中将信号线连接到发射机系统或接收机系统的开关设置在这些电路的每一个的一端或两端 。
    • 10. 发明授权
    • Wavelength conversion apparatus
    • 波长转换装置
    • US06879433B1
    • 2005-04-12
    • US10332028
    • 2000-10-03
    • Shinji YamashitaKenichi Torii
    • Shinji YamashitaKenichi Torii
    • G02F1/365G02F1/21G02F1/35G02F2/02G02B6/00
    • G02F1/3536G02F2001/211G02F2201/02G02F2203/06
    • A wavelength converter which employs an optical fiber and has high converter efficiency. The polarization planes of a signal light and an exciting light outputted from a laser diode (LD) (103) are respectively controlled by polarization controllers (PC's) (101 and 104) and the phases of the lights are respectively modulated by phase modulators (PM's) (102 and 105) in accordance with modulation signals outputted form an oscillator (110). Then, the output lights form the PM's (102 and 105) are multiplexed by a coupler (106). After the multiplexed signal light and exciting light are amplified by an optical amplifier (EDFA) (107), they are imputed to a dispersion shift fiber (DSP) (108). After wavelength transformation (four light waves mixing (FWM) is practiced in the DSP, and FWM light is outputted through a band-pass filter (BPF) (109).
    • 一种采用光纤并具有高转换效率的波长转换器。 由激光二极管(LD)(103)输出的信号光和激发光的偏振面分别由偏振控制器(PC)(101和104)控制,光的相位分别由相位调制器(PM) )(102和105),根据从振荡器(110)输出的调制信号。 然后,PM(102和105)的输出光由耦合器(106)复用。 多路信号光和激发光由光放大器(EDFA)(107)放大后,它们被归入色散位移光纤(DSP)(108)。 在波长变换(在四个光波混合(FWM))中实施,并且通过带通滤波器(BPF)(109)输出FWM光。