Using Number Of Signals Patents (Class 359/337.12)
  • Patent number: 11863296
    Abstract: Disclosed are techniques and amplifier stages that include wave division multiplexers, semiconductor optical amplifiers and wave division demultiplexers that amplify optical signals. An input optical signal having a first bandwidth is partitioned into a plurality of subband optical signals by thin film filters tuned to a selected bandwidth that is less than the first bandwidth. Each of the plurality of subband optical signals has a bandwidth that is a portion of the first bandwidth. Each subband optical signal is input into a semiconductor optical amplifier that is tuned to the respective portion of the first bandwidth that corresponds to the subband optical signal. The combination of the partitioned input optical signal and tuned semiconductor optical amplifiers provides improved optical signal transmission performance by reducing polarization dependent gain.
    Type: Grant
    Filed: June 29, 2022
    Date of Patent: January 2, 2024
    Assignee: SUBCOM, LLC
    Inventors: Dmitri G. Foursa, Alexei N. Pilipetskii
  • Patent number: 11750292
    Abstract: A method for determining an optical signal power change, wherein the method includes: A first optical signal that includes a plurality of wavelength signals is obtained, where the plurality of wavelength signals are distributed in a plurality of bands. Then, an optical power of each band and a center wavelength signal of each band are detected, and a preset single-wavelength transmit power and a preset coefficient are obtained. Next, an equivalent quantity N of equivalent wavelength signals is determined, and an equivalent wavelength signal corresponding to the first optical signal is determined. Further, a target power that is used to compensate for a first power change value of the first optical signal in transmission over an optical fiber is determined based on the preset coefficient, the equivalent wavelength signal, the equivalent quantity, and the preset single-wavelength transmit power.
    Type: Grant
    Filed: April 28, 2022
    Date of Patent: September 5, 2023
    Assignee: HUAWEI TECHNOLOGIES CO., LTD.
    Inventors: Yuanwu Wang, Wei Liu, Fei Chen, Yufeng Su
  • Patent number: 11647497
    Abstract: Uplink radio transmissions (22) from a radio device (10) are scheduled by allocating radio resources for the uplink radio transmissions (22) and controlling a transmit power of the uplink radio transmissions (22). Depending on a bandwidth of radio resources to be allocated for an uplink radio transmission (22) and a current value of the transmit power, an estimate of the signal-to-noise ratio of the uplink radio transmission (22) is determined. The estimate of the signal-to-noise ratio is compared to at least one of the lower target and the upper target. Depending on a result of the comparison, the bandwidth is adapted, and radio resources for the uplink radio transmission (22) are allocated in accordance with the adapted bandwidth.
    Type: Grant
    Filed: March 28, 2018
    Date of Patent: May 9, 2023
    Assignee: Telefonaktiebolaget LM Ericsson (publ)
    Inventors: Niklas Jaldén, Svante Bergman, Fredrik Nordström
  • Patent number: 11362755
    Abstract: A system comprising an optical receiver for multi-wavelength-channel optical communication, an optical source of spontaneous emission light and a tunable optical filter connected to receive the light at an input. The tunable optical filter can have a filter spectrum with spectral passbands separated by spectral notches. The system also includes an optical fiber link connecting an output of the optical filter to the optical receiver for multi-wavelength-channel optical communication. The receiver can be configured to make a measurement indicative of an optical power level in at least one of the notches or to make measurements of optical power levels and at least one of the passbands and at least one of the notches in response to the optical source transmitting the filtered light to the optical fiber link.
    Type: Grant
    Filed: August 31, 2018
    Date of Patent: June 14, 2022
    Assignee: Nokia Solutions and Networks Oy
    Inventors: Peter Winzer, Junho Cho, Andrew Chraplyvy
  • Patent number: 11336369
    Abstract: A method and system is described. A signal indicative of a failure of a first channel within a plurality of channels of a transmission signal traversing a signal working path in a network is received. The signal working path has a headend node, a tail-end node and an intermediate node. The first channel has a frequency band and a power level prior to failing. The signal working path is associated with a protection path. The protection path includes the intermediate node, optical cross-connects, and a transmitter supplying (ASE) light. The transmitter is activated to supply the ASE light within a frequency band and having a power level corresponding to the frequency band and power level associated with the first channel. The ASE light is supplied to a cross-connect, such that the cross-connect provides a transmission signal including the ASE light.
    Type: Grant
    Filed: March 23, 2020
    Date of Patent: May 17, 2022
    Assignee: Infinera Corporation
    Inventors: Sharfuddin Syed, Ashwini K. Bhat, Vasudha Bhaskara
  • Patent number: 10574021
    Abstract: Laser waveguides, methods and systems for forming a laser waveguide are provided. The waveguide includes an inner cladding layer surrounding a central axis and a glass core surrounding and located outside of the inner cladding layer. The glass core includes a laser-active material. The waveguide includes an outer cladding layer surrounding and located outside of the glass core. The inner cladding, outer cladding and/or core may surround a hollow central channel or bore and may be annular in shape.
    Type: Grant
    Filed: April 12, 2017
    Date of Patent: February 25, 2020
    Assignee: Corning Incorporated
    Inventors: Douglas Llewellyn Butler, Daniel Warren Hawtof
  • Patent number: 10539741
    Abstract: [Problem] To provide an optical device capable of suppressing an optical signal from being trimmed because of band narrowing due to optical filters. [Solution] An optical device according to the present invention is provided with a plurality of optical filters each of which filters an optical signal in a predetermined band out of a plurality of optical signals with wavelengths different from one another. The plurality of optical filters are configured in such a way that portions of the pass bands (13_1, 13_2, 13_3) of respective optical filters that respectively pass optical signals (15_1, 15_2, 15_3) with wavelengths adjacent to each other overlap each other.
    Type: Grant
    Filed: February 21, 2017
    Date of Patent: January 21, 2020
    Assignee: NEC Corporation
    Inventors: Yurie Matsuyama, Takefumi Oguma
  • Patent number: 10520790
    Abstract: A single-mode (SM) Green fiber laser is configured to operate in a Green spectral range in a continuous-wave (CW) or quasi-continuous-wave (QCW) mode. The Green laser is configured with a pump source, outputting narrow-linewidth pump light at a fundamental wavelength in one (1) micrometer spectral range, and a single-pass second harmonic generator (SHG), such as a nonlinear LBO crystal, frequency doubling the pump light to output Green light at a signal wavelength. The pump light source is configured to have a MOPFA configuration with a SM seed which emits the SM pump light with a linewidth narrower than 0.2 nm, and at least one ytterbium (“Yb”) fiber amplifier receiving and amplifying the SM pump light at the fundamental wavelength while maintaining the linewidth narrower than 0.2 nm. The SM Green fiber laser operates with a wall plug efficiency between 15% and 30% in a 510-540 nm signal wavelength range and a power range between about 50 W and kW-levels.
    Type: Grant
    Filed: January 6, 2015
    Date of Patent: December 31, 2019
    Assignee: IPG PHOTONICS CORPORATION
    Inventors: Valentin Gapontsev, Igor Samartsev, Alexey Avdokhin
  • Patent number: 10171163
    Abstract: A signal quality measurement device includes: a setting processing unit that sets respective passbands of WSSs; and a calculating unit that calculates quality of an optical signal by acquiring a first power of an optical component in a first wavelength band, and a second power of an optical component in a second wavelength band adjacent to the first wavelength band. When the setting processing unit sets each of the passbands of the WWSs, the calculating unit detects a combined power of various ASEs of the optical amplifiers from the second power, and detects the power of the optical signal from the first power and the second power. When the setting processing unit sets the passband of one of the WSSs, the calculating unit detects, from the second power, the ASE of an optical amplifier existing between one of the wavelength selective switches and the receiver.
    Type: Grant
    Filed: March 13, 2018
    Date of Patent: January 1, 2019
    Assignee: FUJITSU LIMITED
    Inventor: Shoichiro Oda
  • Patent number: 9620924
    Abstract: The system and method for reducing Yb to Er bottlenecking in a single frequency Er:Yb-doped fiber laser amplifier. The system is pumped off peak at about 935-955 nm. The off-peak pumping reduces bottlenecking and increases the optical and slope efficiency of the system by about 10% as compared to an EYDFA system pumped on-peak.
    Type: Grant
    Filed: February 5, 2016
    Date of Patent: April 11, 2017
    Assignee: BAE Systems Information and Electronic Systems Integration Inc.
    Inventors: Daniel J. Creeden, Julia R. Limongelli, Hermanus S. Pretorius, Scott D. Setzler
  • Patent number: 9590387
    Abstract: Non-regenerative optical amplifier has a first optical amplifying medium and at least one second optical amplifying medium. The non-regenerative optical amplifier may be an ultrashort pulse amplifier. The material properties of the first amplifying medium differ at least partially from the material properties of the second amplifying medium. The emission spectra of the amplifying media overlap partially, and the amplifying media are solid-state bulk crystals.
    Type: Grant
    Filed: July 14, 2014
    Date of Patent: March 7, 2017
    Assignee: neoLASE GmbH
    Inventor: Maik Frede
  • Patent number: 9494484
    Abstract: An arrangement for providing real-time, in-service OTDR measurements in an optical communication system utilizing distributed Raman amplification. One or more of the laser diodes used to provide the pump light necessary to create optical gain is modified to also generate short duration pulses that ride above or below the conventional pump light. These short duration pulses (which co-exist with the pump light within the optical fiber) are used in performing OTDR measurements, with a conventional processing system used to evaluate reflected pulses and create the actual OTDR measurements.
    Type: Grant
    Filed: February 25, 2015
    Date of Patent: November 15, 2016
    Assignee: II-VI INCORPORATED
    Inventors: Aravanan Gurusami, Timothy K. Zahnley, Scott Dahl, Martin R. Williams, Ian P. McClean
  • Patent number: 8922878
    Abstract: An optical amplifier includes: a rare-earth doped fiber configured to amplify signal light to thereby produce a amplified signal light; a gain control circuit configured to control an optical gain of the rare-earth doped fiber; a photodetector configured to detect intensities of different wavelength of light obtained from the amplified signal light; and an abnormality detection circuit configured to detect an abnormality of the signal light in accordance with a ratio or a difference between the intensities of the different wavelength.
    Type: Grant
    Filed: May 29, 2013
    Date of Patent: December 30, 2014
    Assignee: Fujitsu Limited
    Inventor: Hiroyuki Itoh
  • Publication number: 20140177037
    Abstract: An extended dynamic range optical amplifier, a method of operation, and a line amplifier configuration include an optical amplifier that can be optimized for high or low span loss conditions by switching an internal stage in or out of an internal light path within the amplifier. The extended dynamic range optical amplifier can include a low gain mode and a high gain mode with an internal switch to switch out a gain mid-stage in a low gain mode to extend the useful dynamic range of the amplifier. Further, the extended dynamic range optical amplifier can use residual pump power from an initial stage to pump the gain mid-stage in the high gain mode. Additionally, the extended dynamic range optical amplifier includes remapping of gain in the initial stage and the gain mid-stage to optimize the amplifier noise performance based on the maximum output power of the amplifier.
    Type: Application
    Filed: December 21, 2012
    Publication date: June 26, 2014
    Inventors: Balakrishnan SRIDHAR, Jun BAO
  • Patent number: 8451532
    Abstract: A control apparatus of an optical amplifier includes a monitoring section that measures power of light inputted to the optical amplifier, a power-wavelength characteristics variable section that is operable to change a wavelength characteristic of power of the light inputted, a wavelength number decrease recognition section that compares the value of the power of light measured by the monitoring section with a predetermined threshold, and a control section that controls the power-wavelength characteristics variable section when the wavelength number decrease recognition section judges that the value of the power of light falls below the threshold.
    Type: Grant
    Filed: October 5, 2009
    Date of Patent: May 28, 2013
    Assignee: Fujitsu Limited
    Inventors: Taichi Ueki, Miki Onaka
  • Patent number: 7990608
    Abstract: An optical amplifier reducing gain deviation caused by wavelength arrangement has a first-stage optical amplifying unit, an attenuator, a second-stage optical amplifying unit, an automatic gain controller controlling the first- and second-stage optical amplifying units so that a gain of signal light outputted from the second-stage optical amplifying unit to signal light inputted to the first-stage optical amplifying unit is constant, and an attenuation amount controller controlling an attenuation amount at the attenuator to adjust gain-versus-wavelength characteristic at the automatic-gain-controlled first- and second-stage optical amplifying units on the basis of information on wavelength arrangement and an input level of the signal light inputted to the first-stage optical amplifying unit so that gain slope characteristic at the first- and second-stage optical amplifying units due to the wavelength arrangement and the input level is flattened.
    Type: Grant
    Filed: August 27, 2007
    Date of Patent: August 2, 2011
    Assignee: Fujitsu Limited
    Inventors: Tomoaki Takeyama, Keiko Sasaki, Shinichirou Muro
  • Patent number: 7899331
    Abstract: According to a WDM optical transmission system of the present invention, wavelength numbers information of a WDM signal light output from an upstream side optical amplifying unit to a transmission path fiber, and signal output level information thereof are transmitted to a downstream side optical amplifying unit utilizing a supervisory control light. In the downstream side optical amplifying unit, a loss (span loss) in the transmission path fiber is computed using the upstream side signal output level information and downstream side signal input level information, so that a gain to be set for a downstream side optical amplifier is calculated based on the computed loss, and also, the gain is corrected based on a difference between a target value of the signal output level computed using the wavelength numbers information and an actual measurement value thereof, so that the optical amplifier is controlled in accordance with the post-corrected gain.
    Type: Grant
    Filed: July 30, 2007
    Date of Patent: March 1, 2011
    Assignee: Fujitsu Limited
    Inventors: Hiroyuki Itoh, Kosuke Komaki
  • Patent number: 7844185
    Abstract: Apparatuses and methods are provided which suppress a surge component occurring at an optical amplifier on an optical path through which an optical burst signal is transmitted. An optical amplifier may experience a surge due to the power variation of the optical burst signal that is fed to the optical amplifier. To suppress such a surge component, a power corresponding to a number of wavelengths of an optical burst signal to be input is calculated. The optical amplifier is instructed to generate an optical signal with a power corresponding to a difference between a set value and the calculated power. The generated optical signal and the optical burst signal to be input are coupled and output according to the instruction. Thus, the optical amplifier can receive the optical signal with the constant power and the surge component at the optical amplifier can be suppressed.
    Type: Grant
    Filed: November 2, 2005
    Date of Patent: November 30, 2010
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Keun-joo Park, Hyun-chin Kim, June-koo Rhee, Young-kwang Seo, Chun-ju Youn
  • Publication number: 20100067099
    Abstract: A Raman amplifier according to the present invention comprises a plurality of pumping means using semiconductor lasers of Fabry-Perot, DFB, or DBR type or MOPAs, and pumping lights outputted from the pumping means have different central wavelengths, and interval between the adjacent central wavelength is greater than 6 nm and smaller than 35 nm. An optical repeater according to the present invention comprises the above-mentioned Raman amplifier and adapted to compensate loss in an optical fiber transmission line by the Raman amplifier. In a Raman amplification method according to the present invention, the shorter the central wavelength of the pumping light the higher light power of said pumping light.
    Type: Application
    Filed: November 16, 2009
    Publication date: March 18, 2010
    Applicant: The Furukawa Electric Co., Ltd.
    Inventors: Youichi AKASAKA, Yoshihiro Emori, Shu Namiki
  • Publication number: 20100060978
    Abstract: An electronic circuit for controlling a laser system consisting of a pulse source and high power fiber amplifier is disclosed. The circuit is used to control the gain of the high power fiber amplifier system so that the amplified output pulses have predetermined pulse energy as the pulse width and repetition rate of the oscillator are varied. This includes keeping the pulse energy constant when the pulse train is turned on. The circuitry is also used to control the temperature of the high power fiber amplifier pump diode such that the wavelength of the pump diode is held at the optimum absorption wavelength of the fiber amplifier as the diode current is varied. The circuitry also provides a means of protecting the high power fiber amplifier from damage due to a loss of signal from the pulse source or from a pulse-source signal of insufficient injection energy.
    Type: Application
    Filed: November 16, 2009
    Publication date: March 11, 2010
    Applicant: IMRA AMERICA, INC.
    Inventors: Salvatore F. NATI, Otho E. ULRICH, JR., Gyu Choen CHO, Wayne A. GILLIS, Donald J. HARTER, Mark BENDETT, Ingmar HARTL
  • Patent number: 7612936
    Abstract: A photo amplifying apparatus for amplifying wavelength division multiplexed signals includes a specific wavelength measuring unit for measuring a specific wavelength at a measuring point, a total power measuring unit for measuring all wavelengths at the measuring point, and an output control unit for controlling the output of the photo amplifying apparatus based on the light power measured by the specific wavelength measuring unit and the total power measuring unit. Since the photo amplifying apparatus measures both the specific wavelength and all wavelengths, the photo amplifying apparatus can determine change in the number of multiplexed wavelengths and the gain gradient of the photo signals, and can properly control its output level.
    Type: Grant
    Filed: August 13, 2003
    Date of Patent: November 3, 2009
    Assignee: Fujitsu Limited
    Inventors: Kaoru Usui, Yoshio Shimano, Hiroshi Iizuka, Hiroyuki Itou
  • Patent number: 7460296
    Abstract: A method and apparatus for adjusting the tilt of an inline amplifier. A controller reads the power of an amplifier twice. Then, if there is a change in power, a difference is calculated by subtracting the first power from the second power. A tilt correction is calculated by multiplying the change in power by a negative constant. The system then adjusts a gain control device by the tilt correction. Because of the simplicity of the algorithm and location of the controller, adjustments can be made to the gain tilt within approximately 100 ?s and system failures can be avoided.
    Type: Grant
    Filed: April 30, 2003
    Date of Patent: December 2, 2008
    Assignee: Pivotal Decisions LLC
    Inventor: Michael H. Eiselt
  • Patent number: 7359112
    Abstract: A control apparatus comprises a light monitoring unit for dividing a signal wavelength band into at least a band in which output light power of an optical amplifier tends to decrease at an decrease in the number of signal wavelengths and a band including a gain deviation band, and for monitoring inputted light power for the individual divided bands, a calculation unit for obtaining the number of signal wavelengths in the individual divided bands based on a monitor result, and a target gain correction unit for correcting a target gain based on a result of the calculation. This suppresses a transient variation of signal light level due to SHB or SRS at a high speed with a simple configuration without deteriorating noise characteristic, thus enabling optical amplifiers to be further disposed in a multi-stage fashion, which can lengthen the transmission distance of a transmission system including an optical add/drop unit.
    Type: Grant
    Filed: February 28, 2006
    Date of Patent: April 15, 2008
    Assignee: Fujitsu Limited
    Inventors: Masato Nishihara, Miki Onaka, Etsuko Hayashi, Shinichirou Muro
  • Patent number: 7346280
    Abstract: A bi-directional configuration is employed to implement a hybrid ultra long haul (ULH)/long haul (LH) optical transmission system. The link carries ULH channels and LH channels in opposite directions in different bands. Raman amplification is employed for the ULH band while Erbium-doped fiber amplification (EDFA) is used for both the LH and ULH bands. Optical circulators are employed for multiplexing and demultiplexing. This solution does not incur the ripple penalty of prior art solutions based on interferential filters while providing excellent isolation between the ULH and LH channels and bi-directional communication within a single fiber.
    Type: Grant
    Filed: March 15, 2002
    Date of Patent: March 18, 2008
    Assignee: Cisco Technology, Inc.
    Inventors: Alessandro Sguazzotti, Fransisco Martinez Rodriguez, Marco Mazzini
  • Patent number: 7254334
    Abstract: A multiplex optical communication system transmitting a multiplex optical signal between terminal equipments each including converters producing optical signals combined to the multiplex optical signal, through repeater equipment including an optical amplifier, under controlling the amplifier so that when a converter is added or removed, a time constant of the amplifier is equal to a time constant of the added or removed converter, or the amplifier produces output under constant output level control before adding or removing the converter and after the amplifier produces final output and constant gain control during the added or removed converter increases or decreases output. The time constant control is performed to the amplifier by making the amplifier repeat start and stop of increasing or decreasing output step by step in accordance with prescribed objective values corresponding to half way output of the optical amplifier.
    Type: Grant
    Filed: July 1, 2003
    Date of Patent: August 7, 2007
    Assignee: Fujitsu Limited
    Inventor: Hiroaki Tomofuji
  • Patent number: 7239441
    Abstract: A Raman amplification repeater using the amplification function of a signal light caused by Raman scattering which occurs when a pumping light is applied to a transmission path fiber, in which signal light power is monitored by means of a plurality of PDs by using wavelengths for monitoring whose number is larger than the number of pumping light wavelengths to control output power of a pumping light LD which emits the pumping light.
    Type: Grant
    Filed: September 8, 2004
    Date of Patent: July 3, 2007
    Assignee: NEC Corporation
    Inventor: Fumisato Yoshida
  • Patent number: 7227681
    Abstract: An optical amplifier which amplifies a wavelength division multiplexed (WDM) optical signal having a variable number of channels associated with different wavelengths and outputs the amplified WDM optical signal. The optical amplifier includes (a) an optical attenuator which controls a level of the amplified WDM optical signal, and (b) a controller which controls the WDM optical signal to be amplified with an approximately constant gain.
    Type: Grant
    Filed: October 4, 2004
    Date of Patent: June 5, 2007
    Assignee: Fujitsu Limited
    Inventors: Yasushi Sugaya, Susumu Kinoshita
  • Patent number: 7206512
    Abstract: A method of controlling an optical wavelength division multiplexing transmission apparatus achieves stable wavelength division multiplexing optical transmission by switching a control mode of an optical amplification section in accordance with an input state of optical signals of various wavelengths. Accordingly, the method involves, upon startup of the optical wavelength division multiplexing transmission apparatus, initial setting of information such as the wavelengths being used and the number of wavelengths being used, setting the amount of optical attenuation for each wavelength to a maximum value, and setting an optical amplification unit to ALC.
    Type: Grant
    Filed: April 30, 2004
    Date of Patent: April 17, 2007
    Assignee: Fujitsu Limited
    Inventors: Akihisa Kawaguchi, Kazuhiro Minamimoto, Eisaku Touma
  • Patent number: 7170673
    Abstract: Light signals of first to n-th bands amplified en bloc undergo proper attenuation through an adjustable optical attenuator in conformance with attenuation in an optical fiber connected to input of an optical amplifying repeater apparatus, whereon the light signals are demultiplexed or separated into individual bands and amplified by first to n-th fixed-gain optical amplifiers (#1, . . . , #n) each having a high fixed gain in the respective bands to be subsequently multiplexed by an optical multiplexer and then sent out onto a transmission line. A monitoring light branching device extracts a part of light power of a specific monitoring wavelength, which is then fed to an adjustable attenuator control circuit which controls the attenuation factor of the adjustable optical attenuator so that the light power of the specific wavelength remains constant. The gain of the optical amplifying repeater apparatus at the specific wavelength can thus be determined.
    Type: Grant
    Filed: November 17, 2003
    Date of Patent: January 30, 2007
    Assignee: Mitsubishi Denki Kabushiki Kaisha
    Inventors: Kuniaki Motoshima, Katsuhiro Shimizu, Junichi Nakagawa, Naoki Suzuki
  • Patent number: 7139119
    Abstract: A fiber amplifier module for amplifying a signal pulse includes an optically pumped double-pass fiber amplifier in which a fiber Bragg grating reflects an amplified pulse in between the first and second amplification passes, and transmits most forward-propagating amplified spontaneous emission (ASE) generated by the optical pumping. The reflected amplified pulse from the double-pass amplifier, and reverse-propagating ASE generated by the optical pumping are reflected from another fiber Bragg grating that again reflects the amplified pulse and transmits most of the ASE. The twice-reflected amplified pulse can be delivered from the amplifier as an output pulse or passed to another amplifier module for further amplification. The amplifier fiber is operated in a saturated or near saturated mode. This reduces amplification of any portion of the forward-propagating ASE that is reflected into reverse propagation by the fiber Bragg grating of the double-pass amplifier.
    Type: Grant
    Filed: July 25, 2006
    Date of Patent: November 21, 2006
    Assignee: Coherent, Inc.
    Inventors: Andrei Starodoumov, Skip Bettencourt
  • Patent number: 7116908
    Abstract: In the WDM systems, the OSNR and the signal loss among the optical signals are substantially minimized at the receiving terminal to combat the SRS effects. An equal amount of the signal loss is expected for every span in the transmission path so that the optical amplifier gain tilt is not affected among a number of wavelength frequencies in the optical signal. This is accomplished by controlling the amplification process according to a feedback from the monitoring units for monitoring the optical signal.
    Type: Grant
    Filed: February 13, 2002
    Date of Patent: October 3, 2006
    Assignee: Hitachi LTD
    Inventors: Tetsuya Uda, Hiroshi Masuda, Hirofumi Nakano, Eita Miyasaka, Satoshi Asamizu
  • Patent number: 7075710
    Abstract: This invention provides a Raman amplification method and the like having a structure which can properly adjust a pumping light power in accordance with a loss change in signal light and can easily flatten a gain spectrum. In the Raman amplification method according to this invention, part of Raman-amplified propagating light is branched by an optical branching device. Of the branched propagating light, at least light components having two predetermined wavelengths are demultiplexed by an optical demultiplexer. The powers of the light components having the two wavelengths are detected. The amounts of loss changes in the light components having the two wavelengths and the slope of an approximate line representing the correlation between the wavelength and the amount of loss change are obtained on the basis of these powers.
    Type: Grant
    Filed: February 5, 2003
    Date of Patent: July 11, 2006
    Assignee: Sumitomo Electric Industries, Ltd.
    Inventor: Masayuki Inoue
  • Patent number: 7058301
    Abstract: A request method for performing optical power management to accomplish planned addition and removal of wavelengths in an optical communications system is disclosed, wherein each wavelength has a path of transmission through the system. The method comprises communicating a request for a power ramp to at least one path network component in the path, determining that the path network component has made preparations for the power ramp, and performing a power ramp in response to the determination. Further, a response method for performing power management to accomplish planned addition and removal of wavelengths in an optical communications system is disclosed, wherein each wavelength has a path of transmission through the system. The method comprises receiving a request for a power ramp, making preparations for the power ramp, determining that the power ramp has been completed, and resuming normal operation in response to the determination.
    Type: Grant
    Filed: February 28, 2002
    Date of Patent: June 6, 2006
    Inventors: Jonathan L. Bosloy, Lacra Pavel, Chris Passier, Matthew Brown
  • Patent number: 7016105
    Abstract: A method of automatic gain control for use in an optical amplification device comprising a variable optical attenuator and an optical amplifier connected downstream of the optical attenuator includes the steps of measuring the power at the input of the amplification device, determining the number of channels at the input of the amplification device as a function of the measured power knowing the attenuation value of a span upstream of the device, and modifying the gain of the amplifier as a function of the number of channels determined in this way.
    Type: Grant
    Filed: August 8, 2003
    Date of Patent: March 21, 2006
    Assignee: Alcatel
    Inventors: Guy Balland, Alice Michaud, Emmanuel Rossi, Frank Bruyere, Jacques Pochet, Christophe Trouiller
  • Patent number: 7010229
    Abstract: Optical transmission systems of the present invention include at least one optical amplifier generally including an optical signal amplifying medium supplied with pump power in the form of optical energy in via an optical pump source. The pump source includes multiple optical sources, at least two of which provide optical energy in first and second wavelength ranges separated by a frequency difference. The amplifier includes a wavelength controller configured to adjust the wavelength range of at least one of the optical sources to vary the frequency difference in a manner sufficient to vary optical intensity noise produced when the optical energy from the multiple optical sources is combined.
    Type: Grant
    Filed: July 16, 2004
    Date of Patent: March 7, 2006
    Assignee: Corvis Corporation
    Inventors: David J. Copeland, John J. Veselka, Jr., Donald M. Cornwell, Jr., Thomas D. Stephens, Dean M. Smith, Mark A. Laliberte
  • Patent number: 7009761
    Abstract: A method for correcting power tilt in an optical signal includes tapping off a representative portion of an optical signal and separating the representative portion into a first signal and a second signal. The first signal includes a first wavelength band and the second signal includes a second wavelength band different from the first wavelength band, wherein each wavelength band includes more than one channel. The method also includes detecting a power level of the first signal, detecting a power level of the second signal, and comparing the power levels of the first and second signals. The method further includes determining a power tilt for the optical signal based on the comparison and adjusting an amplifier gain based on the power tilt.
    Type: Grant
    Filed: May 29, 2003
    Date of Patent: March 7, 2006
    Assignee: Fujitsu Limited
    Inventors: Cechan Tian, Susumu Kinoshita
  • Patent number: 7006278
    Abstract: Disclosed is a wavelength-division multiplexing optical transmission system in which an optical lossy medium, optical amplifiers and Raman amplifiers for compensating for loss in the optical lossy medium are cascade-connected. The system includes power-level equalizing means for equalizing optical power levels input to an optical amplifier of a succeeding stage by adjusting excitation ratio of a Raman amplifier; optical-SNR equalizing means for adjusting power levels at a transmitting end to equalize optical SNRs at a receiving end; and correction-value acquisition means for acquiring a correction value that represents an amount of change in power of each wavelength before and after optical-SNR equalization control.
    Type: Grant
    Filed: October 22, 2003
    Date of Patent: February 28, 2006
    Assignee: Fujitsu Limited
    Inventors: Takeshi Sakamoto, Tetsuo Wada, Yoshinori Tochiki
  • Patent number: 6922532
    Abstract: A performance monitoring method for an optically amplified transmission system. The method provides the optical power at each amplifier site, taking into account the inaccuracies introduced by the SRS in the power estimation obtained with the current methods. An optical spectrum analyzer is used at the output of the transmission link of interest to accurately measure the output power of each wavelength. This value is sent upstream to the last amplifier in the link, to compute an error term as the difference between the actual measurement and the estimation. The error term is used to infer the SRS-induced error by system elements not accounted for in the model. The error term is then fed-back to each amplifier in the link, so that the estimated power is adjusted to account for the SRS-induced inaccuracy.
    Type: Grant
    Filed: December 7, 2000
    Date of Patent: July 26, 2005
    Inventors: Frederic Simard, David W. Park
  • Patent number: 6900885
    Abstract: The present invention relates to a white light source. This white light source comprises a plurality of amplified spontaneous emission light generating sections each comprising at least an active fiber. At least two of the amplified spontaneous emission light generating sections are connected together in series. The plurality of amplified spontaneous emission light generating sections generate amplified spontaneous emission lights having at least partially overlapping wavelength ranges. Furthermore, a white light source of the present invention includes amplified spontaneous emission light generating sections each comprising at least an active fiber. At least one of the amplified spontaneous emission light generating sections comprises a mirror.
    Type: Grant
    Filed: March 8, 2002
    Date of Patent: May 31, 2005
    Assignee: Nippon Telegraph & Telephone Corporation
    Inventors: Hiroji Masuda, Hirotaka Ono, Makoto Shimizu
  • Patent number: 6900934
    Abstract: A control system and method for a multi-channel optical amplifier is provided that achieves and automatically maintains a selected gain level by controlling the average inversion level of the dopant atoms in the gain fiber. In both the system and the method, a set point average inversion level that corresponds to a gain set point is first selected. A pump light power output necessary to achieve the set point average inversion level is determined from the optical input power, output power, and pump light remnant power. The same parameters used to achieve and maintain the set point average inversion level are also used to determine linear gain per channel which in turn may be used to minimize tilt or ripple in the gain output of the amplifier.
    Type: Grant
    Filed: September 27, 2002
    Date of Patent: May 31, 2005
    Assignee: Avanex Corporation
    Inventor: Muhidin Lelic
  • Patent number: 6885499
    Abstract: There are provided a plurality of optical adjusting sections, a wavelength-multiplexing section, and a control section. The plurality of optical adjusting sections, which are provided for respective wavelength bands, amplifies light beams in the respective wavelength bands. The wavelength-multiplexing section wavelength-multiplexes amplified light beams in the respective wavelength bands. The control section controls the outputs of the respective optical amplifying sections so that optical powers of the respective wavelength bands will become approximately identical at a predetermined point when wavelength-multiplexed light of the light beams in the respective wavelength bands travels to the predetermined point. This configuration makes it possible to eliminate optical power deviations between wavelength bands that would otherwise occur when an optical signal of a plurality of wavelength bands is transmitted, and to thereby make optical SNRs uniform.
    Type: Grant
    Filed: August 10, 2000
    Date of Patent: April 26, 2005
    Assignee: Fujitsu Limited
    Inventors: Takeshi Hoshida, Takafumi Terahara
  • Patent number: 6873457
    Abstract: An optical amplifier for use in, for example, a wavelength multiplexing optical communication system, in order to allow an excitation light source to be enlargeable or removable in accordance with an increase/decrease in the number of channels in signal light even if the optical communication system is in operation.
    Type: Grant
    Filed: January 29, 2003
    Date of Patent: March 29, 2005
    Assignee: Fujitsu Limited
    Inventors: Susumu Kinoshita, Terumi Chikama
  • Patent number: 6865016
    Abstract: An optical amplifying apparatus which includes an optical amplifier, an optical attenuator and a controller. The optical amplifier amplifies a light signal having a variable number of channels. The optical attenuator passes the amplified light signal and has a variable light transmissivity. Prior to varying the number of channels in the light signal, the controller varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal prior to the varying the number of channels. While the number of channels in the light signal is being varied, the controller maintains the light transmissivity of the optical attenuator to be constant.
    Type: Grant
    Filed: August 29, 2003
    Date of Patent: March 8, 2005
    Assignee: Fujitsu Limited
    Inventors: Yasushi Sugaya, Susumu Kinoshita
  • Patent number: 6760150
    Abstract: An optical transmitting apparatus having a first optical amplifier by which quality of an output optical signal after amplified is changed according to an amplification gain, a second optical amplifier by which quality of an output optical signal after amplified is changed according to an input level of an output optical signal from the first optical amplifier, and a controlling means for performing an adaptive control on an amplification gain of the first optical amplifier so that quality of an output optical signal from the second optical amplifier becomes maximum, thereby optimizing signal quality in the optical transmitting apparatus in a hybrid optical amplifier structure.
    Type: Grant
    Filed: March 15, 2002
    Date of Patent: July 6, 2004
    Assignee: Fujitsu Limited
    Inventors: Ryosuke Goto, Taizo Maeda, Kazuo Yamane
  • Patent number: 6751011
    Abstract: The invention is directed to providing a characteristic measuring method and characteristic measuring system of a WDM optical amplifier that enables high speed and accurate measurement of characteristics of an optical amplifier by a measuring system with a simple construction. To this end, with the characteristic measuring method of a WDM optical amplifier according to the invention, for example, a plurality of signal lights corresponding to respective signal light wavelengths in a measurement wavelength band are divided into groups for odd and even channel numbers, such that signal lights of adjacent wavelengths are in different groups, and the power of each signal light is adjusted such that the total power of the signal lights in each group is approximately equal to a preset reference value. Then, a WDM signal light containing the multiplexed signal lights is in turn input to the optical amplifier, and the spectrum of the output light spectrum the optical amplifier is input for each group.
    Type: Grant
    Filed: September 5, 2001
    Date of Patent: June 15, 2004
    Assignee: Fujitsu Limited
    Inventor: Yasuki Sakurai
  • Patent number: 6738181
    Abstract: An optical sending apparatus of this invention includes a plurality of optical signal generating sections, a dispersion compensating section and a wavelength multiplexing section. The dispersion compensating section performs compensation with a predetermined chromatic dispersion value to at least one of polarized light generated by the optical signal generating sections while a predetermined state of polarized light is maintained. The wavelength multiplexing section combines output light outputted from the optical signal generating section with output light passing through the dispersion compensating section so that the polarized light of adjacent wavelengths crosses orthogonal to each other. The optical sending apparatus having such a construction can generate high-density WDM optical signals, the dispersion of which is compensated in advance, by a polarization crossing method.
    Type: Grant
    Filed: August 29, 2000
    Date of Patent: May 18, 2004
    Assignee: Fujitsu Limited
    Inventors: Hiroshi Nakamoto, Takao Naito, Terumi Chikama
  • Patent number: 6724526
    Abstract: It is aimed at providing an inter-wavelength light power deviation monitoring method capable of directly measuring the signal light power to thereby detect the light power deviations among channels without requiring a higher wavelength resolution, and providing an optical equalizer and an optical amplifier adopting such a monitoring method. To this end, the monitoring method of the present invention comprises the steps of: obtaining channel information concerning WDM signal light; setting, based on the channel information, at least two measuring wavelength regions; measuring channel light power of the WDM signal light, for only the measuring wavelength regions; and obtaining light power ratio for the respective measuring wavelength regions making use of the measured values, to thereby judge the inter-wavelength light power deviations of the WDM signal light.
    Type: Grant
    Filed: July 28, 2000
    Date of Patent: April 20, 2004
    Assignee: Fujitsu Limited
    Inventors: Miki Onaka, Susumu Kinoshita
  • Patent number: 6646791
    Abstract: An optical amplifying apparatus which includes an optical amplifier, an optical attenuator and a controller. The optical amplifier amplifies a light signal having a variable number of channels. The optical attenuator passes the amplified light signal and has a variable light transmissivity. Prior to varying the number of channels in the light signal, the controller varies the light transmissivity of the optical attenuator so that a power level of the amplified light signal is maintained at an approximately constant level that depends on the number of channels in the light signal prior to the varying the number of channels. While the number of channels in the light signal is being varied, the controller maintains the light transmissivity of the optical attenuator to be constant.
    Type: Grant
    Filed: January 29, 2002
    Date of Patent: November 11, 2003
    Assignee: Fujitsu Limited
    Inventors: Yasushi Sugaya, Susumu Kinoshita
  • Patent number: 6643055
    Abstract: A system and method for controlling the output power of an optical amplifier in a node in a network, wherein the output power of the amplifier is controlled via a pump laser in a control circuit. The node reads a supervisory channel comprising information on how to control the amplifier. The node then uses the information for the control of the amplifier.
    Type: Grant
    Filed: November 27, 2000
    Date of Patent: November 4, 2003
    Inventors: Tomas Askinger, Bengt Johansson, Nigel Robert Wood
  • Patent number: 6631026
    Abstract: In an optical amplifier for use in, for example, a wavelength multiplexing optical communication system, in order to allow an excitation light source to be enlargeable or removable in accordance with an increase/decrease in the number of channels in signal light even if the optical communication system is in operation, there are included an optical amplifying section (2) for amplifying and outputting inputted signal light, a plurality of excitation light sources (3, 4) and an excitation light source control section (5) for controlling operations of the excitation light sources (3, 4), wherein the excitation light sources are composed of a main excitation light source (3) and an auxiliary excitation light source (4), and the excitation light source control section (5) is equipped with a control section (7) which, when the number of channels in the inputted signal light is equal to or less than a predetermined number of channels, executes control whereby the main excitation light source (3) supplies excitation
    Type: Grant
    Filed: August 26, 2002
    Date of Patent: October 7, 2003
    Assignee: Fujitsu Limited
    Inventors: Susumu Kinoshita, Terumi Chikama