Patents by Inventor Takeshi Hoshida

Takeshi Hoshida has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20190044619
    Abstract: An optical receiver includes, a first converting circuit that converts an optical signal into an electric signal, a plurality of common circuits, each of which has a same circuit configuration and performs a digital signal processing on the electric signal, and a processor that selects and operates one or more common circuits from among the plurality of common circuits according to a transmission method.
    Type: Application
    Filed: July 31, 2018
    Publication date: February 7, 2019
    Applicant: FUJITSU LIMITED
    Inventors: Hisao Nakashima, Takeshi Hoshida
  • Patent number: 10193621
    Abstract: An apparatus includes a light source that causes continuous oscillation light to enter one terminal of an optical transmission line, wherein the continuous oscillation light is to propagate a light variation of a first physical amount generated on the optical transmission line to another terminal of the optical transmission line; a photodetector that detects, on the one terminal, light turned back from a light modulation converter provided on the another terminal, wherein the light modulation converter obtains the turned-back light by converting the light variation of the first physical amount into a light variation of a second physical amount; and a processor that calculates a light-variation location generated on the optical transmission line by comparing time variations in the light variation of the first physical amount and the light variation of the second physical amount in the light detected by the photodetector.
    Type: Grant
    Filed: April 23, 2018
    Date of Patent: January 29, 2019
    Assignee: FUJITSU LIMITED
    Inventors: Tomoyuki Kato, Shigeki Watanabe, Takeshi Hoshida, Takahito Tanimura
  • Publication number: 20190028205
    Abstract: An optical transmitter includes, a processor that receives an input data signal from an outside and performs rotation processing for periodically or repeatedly rotating a polarization state or phase of the optical output signal upon the input data signal, an optical modulator that modulates light transmitted from a light source based on the input data signal, a digital-to-analog converter that converts an output of the processor into an analog electric signal, a driving circuit that amplifies an output of the digital-to-analog converter and drives the optical modulator, and a monitoring control circuit that monitors an optical output signal output from the optical modulator and adjusts at least one of an output of the digital-to-analog converter and a gain of the driving circuit based on a result of monitoring of the optical output signal.
    Type: Application
    Filed: July 15, 2018
    Publication date: January 24, 2019
    Applicant: FUJITSU LIMITED
    Inventors: GUOXIU HUANG, Hisao Nakashima, YUICHI AKIYAMA, Takeshi Hoshida
  • Publication number: 20190020531
    Abstract: A transmission system includes a first transponder including a first I/Q modulator, and a second transponder including a second I/Q modulator, and configured to communicate with the first transponder using a frequency modulation scheme, wherein the first transponder is configured to set a first phase rotation mode in a first state for first light signal output from the first I/Q modulator, and transmit, to the second transponder, a first command to specify a second phase rotation mode for second light signal output from the second I/Q modulator, and the second transponder is configured to set, in response to the first command, the second phase rotation mode in a state specified by the first command.
    Type: Application
    Filed: July 6, 2018
    Publication date: January 17, 2019
    Applicant: FUJITSU LIMITED
    Inventors: Yi Ge, Takeshi Hoshida, Hisao Nakashima, YUICHI AKIYAMA
  • Publication number: 20190020418
    Abstract: An optical transmitter includes, an optical modulator that multilevel-modulates light outputted from a light source, and a processor that outputs a first drive voltage for driving the optical modulator according to an amplitude component when transmission data is symbol-mapped and a second drive voltage for driving the optical modulator according to a phase component when the transmission data is symbol-mapped. A phase shift of phase modulation by the second drive voltage outputted from the processor is greater than 0 and less than ?/2.
    Type: Application
    Filed: July 9, 2018
    Publication date: January 17, 2019
    Applicant: FUJITSU LIMITED
    Inventors: Tomohiro YAMAUCHI, Tomofumi Oyama, Takahito Tanimura, GUOXIU HUANG, Takeshi Hoshida
  • Publication number: 20180376226
    Abstract: An optical reception apparatus includes an equalization processor, an extraction unit, a first ratio calculator, and an instruction transmitter. The equalization processor suppresses fluctuations in amplitude of an electrical signal obtained by converting an optical signal including a plurality of pilot symbols subjected to BPSK modulation by an optical transmission apparatus. The extraction unit extracts the pilot symbols from the electrical signal with suppressed fluctuations in amplitude. The first ratio calculator calculates a ratio of an amplitude component to a phase component of each of the pilot symbols extracted by the extraction unit. The instruction transmitter transmits information relating to skew adjustment based on the ratio of the amplitude component to the phase component calculated by the first ratio calculator for each of different control values to the optical transmission apparatus.
    Type: Application
    Filed: June 11, 2018
    Publication date: December 27, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Yoshitaka Nomura, Hisao Nakashima, Tomofumi Oyama, Yuichi Akiyama, Takeshi Hoshida
  • Publication number: 20180375580
    Abstract: There is provided a transmission apparatus including a transmitter configured to modulate a signal to a first signal having a first wavelength and a signal to a second signal having a second wavelength, and transmit the first signal and the second signal to a transmission line so that the second signal is varied in accordance with variation in an amount of cross phase modulation of the first signal passing through each position on the transmission line, and a signal processor configured to include at least one of a logic device and a processor, and configured to add an amount of chromatic dispersion at which a remaining amount of chromatic dispersion of the first wavelength at a certain position on the transmission line is equal to zero to the first wavelength in the transmission of the first signal and the second signal.
    Type: Application
    Filed: June 19, 2018
    Publication date: December 27, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Takahito Tanimura, Takeshi Hoshida, Shigeki Watanabe, Tomoyuki Kato
  • Publication number: 20180367220
    Abstract: There is provided an optical transmitter including a modulator, a signal generator configured to generate in-phase or anti-phase skew adjustment signals that are identical in amplitude and frequency as signals to be input into an I axis and a Q axis of the modulator, a skew adjuster configured to perform skew adjustment upon the skew adjustment signals, a light source configured to enter light into the modulator, a monitor configured to monitor light that has been modulated using the skew adjustment signals and output from the modulator, a power detector configured to detect power of monitor light, and a controller configured to determine a skew adjustment amount with which average power of the monitor light is at a maximum or minimum value as an optimum skew adjustment value while changing a skew adjustment amount of the skew adjuster.
    Type: Application
    Filed: June 12, 2018
    Publication date: December 20, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Yoshitaka Nomura, Tomofumi Oyama, Hisao Nakashima, YUICHI AKIYAMA, Takeshi Hoshida
  • Publication number: 20180316422
    Abstract: An apparatus includes a light source that causes continuous oscillation light to enter one terminal of an optical transmission line, wherein the continuous oscillation light is to propagate a light variation of a first physical amount generated on the optical transmission line to another terminal of the optical transmission line; a photodetector that detects, on the one terminal, light turned back from a light modulation converter provided on the another terminal, wherein the light modulation converter obtains the turned-back light by converting the light variation of the first physical amount into a light variation of a second physical amount; and a processor that calculates a light-variation location generated on the optical transmission line by comparing time variations in the light variation of the first physical amount and the light variation of the second physical amount in the light detected by the photodetector.
    Type: Application
    Filed: April 23, 2018
    Publication date: November 1, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Tomoyuki Kato, Shigeki Watanabe, Takeshi Hoshida, Takahito Tanimura
  • Publication number: 20180307119
    Abstract: A wavelength conversion device that converts input signal light having a first frequency into output signal light having a second frequency, includes: a control-light generator that outputs first continuous oscillation light and second continuous oscillation light; and a nonlinear optical medium that cross-phase modulates the input signal light with the first continuous oscillation light and the second continuous oscillation light and generates the output signal light, wherein the control-light generator outputs the first continuous oscillation light and the second continuous oscillation light to have polarized waves in directions orthogonal to each other and have a frequency interval equal to a difference between the first frequency and the second frequency and controls, based on intensity of the output signal light, timings of modulation of phases of the first continuous oscillation light and the second continuous oscillation light to be aligned with each other.
    Type: Application
    Filed: April 11, 2018
    Publication date: October 25, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Tomoyuki Kato, Shigeki Watanabe, Takeshi Hoshida
  • Publication number: 20180287699
    Abstract: Provided is an imbalance compensation device that compensates for an imbalance between an in-phase component and a quadrature-phase component of a signal, the imbalance compensation device including: an extracting unit that extracts a signal component in an upper sideband or a signal component in a lower sideband from the signal; a measuring unit that measures power of the signal component in the upper sideband or the signal component in the lower sideband extracted by the extracting unit; and an adjusting unit that adjusts a parameter related to the imbalance, in accordance with the power measured by the measuring unit.
    Type: Application
    Filed: March 6, 2018
    Publication date: October 4, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Tomofumi OYAMA, Takeshi Hoshida, Yoshitaka Nomura, Hisao Nakashima
  • Patent number: 10090927
    Abstract: A signal processing device includes digital signal processing circuits. Each of the digital signal processing circuits includes: a regeneration circuit that regenerates a bit stream front an electric field information signal of an optical signal; an error correction circuit that corrects an error in the bit stream; an encoder circuit that generates an encoded bit stream from received data; and a generation circuit that generates an electric field information signal from the encoded bit stream. An electric field information signal or a bit stream is given from a regeneration circuit, an encoder circuit or a generation circuit in a first digital signal processing circuit to a second digital signal processing circuit. A regeneration circuit, an error correction circuit or a generation circuit in the second digital signal processing circuit processes the electric field information signal or the bit stream given from the first digital signal processing circuit.
    Type: Grant
    Filed: April 18, 2017
    Date of Patent: October 2, 2018
    Assignee: FUJITSU LIMITED
    Inventors: Hisao Nakashima, Yoshitaka Nomura, Tomofumi Oyama, Yi Ge, Yuichi Akiyama, Yoshio Hirose, Takeshi Hoshida
  • Patent number: 10090961
    Abstract: A method and system for multi-channel optical XPM compensation may include a DCM to improve performance of a feed-forward control loop in an optical path in an optical network. Additionally, various spectral overlap schemes may be used with multi-channel WDM optical signals using XPM compensators in parallel, such as at a ROADM node. Polarization diversity may also be supported for XPM compensation including a DCM.
    Type: Grant
    Filed: December 8, 2016
    Date of Patent: October 2, 2018
    Assignee: Fujitsu Limited
    Inventors: Inwoong Kim, Olga Vassilieva, Takeshi Hoshida, Paparao Palacharla, Tadashi Ikeuchi
  • Publication number: 20180278336
    Abstract: A method of controlling a transmission signal, includes transmitting a training signal including four polarization states having a given relation; and performing rotation control and transmission power level control of a polarization component of a data signal, based on a rotation control matrix for a polarization state and an inverse-operation control matrix for a power level imbalance, which are estimated from Stokes parameters related to input power level present on a Poincare sphere acquired from the training signal and Stokes parameters related to output power level present on the Poincare sphere.
    Type: Application
    Filed: March 16, 2018
    Publication date: September 27, 2018
    Applicant: FUJITSU LIMITED
    Inventors: GUOXIU HUANG, Setsuo Yoshida, Takeshi Hoshida, Hisao Nakashima, Shoichiro Oda
  • Publication number: 20180248643
    Abstract: There is provided a reception device including a receiver configured to receive a wavelength-multiplexed optical signal so as to generate a wavelength-multiplexed signal, a filter configured to pass through the wavelength-multiplexed signal having a specific wavelength and an adjacent wavelength to the specific wavelength from the wavelength-multiplexed signal, and a processor configured to detect a specific signal having the specific wavelength from the wavelength-multiplexed signal having the passed through wavelengths by the filter, and detect a first supervisory control signal having the specific wavelength and a second supervisory control signal having the adjacent wavelength from the wavelength-multiplexed signal having the passed through wavelengths by the filter.
    Type: Application
    Filed: February 20, 2018
    Publication date: August 30, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Yi Ge, Takeshi Hoshida, Hisao Nakashima, Tomofumi Oyama, YUICHI AKIYAMA
  • Patent number: 10057012
    Abstract: An error correction circuit includes a first error correction circuit, a second error correction circuit and a controller. The first error correction circuit performs an error correction in a first correction scheme. The second error correction circuit performs an error correction in a second correction scheme. A correction performance of the second correction scheme is lower than a correction performance of the first correction scheme. The controller makes the first error correction circuit perform error correction of a received signal when a capacity of the received signal is smaller than or equal to a processing capacity of the first error correction circuit, and makes the first error correction circuit and the second error correction circuit perform error correction of the received signal when the capacity of the received signal is larger than the processing capacity of the first error correction circuit.
    Type: Grant
    Filed: January 31, 2017
    Date of Patent: August 21, 2018
    Assignee: FUJITSU LIMITED
    Inventors: Yi Ge, Hisao Nakashima, Takeshi Hoshida
  • Publication number: 20180234184
    Abstract: There is provided a monitor device for monitoring a transmission line including a memory, and a processor coupled to the memory and configured to compensate for a portion of chromatic dispersion on electric signals indicating an electric field component of an optical signal, compensate for deterioration due to a nonlinear optical effect on the electric signals on which the portion of chromatic dispersion is compensated, compensate for a remaining chromatic dispersion except for the portion of chromatic dispersion on the electric signals on which the deterioration due to the nonlinear optical effect is compensated, evaluate quality of the electric signals on which remaining chromatic dispersion except for the portion of chromatic dispersion are compensated, and acquire a first compensation amount of the portion of chromatic dispersion and a second compensation amount of the deterioration due to the nonlinear optical effect, when the evaluated quality satisfies a predetermined condition.
    Type: Application
    Filed: February 14, 2018
    Publication date: August 16, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Takahito Tanimura, Takeshi Hoshida
  • Patent number: 10050738
    Abstract: Methods and systems for implementing a low noise CDC ROADM include incorporating individual stages of an optical PSA before and after WSSs included in the CDC ROADM. The WSSs may be used to route the pump and idler signals, as well as to perform phase tuning for optimal phase-sensitive amplification.
    Type: Grant
    Filed: January 23, 2017
    Date of Patent: August 14, 2018
    Assignee: Fujitsu Limited
    Inventors: Youichi Akasaka, Takeshi Hoshida, Tadashi Ikeuchi
  • Publication number: 20180227056
    Abstract: There is provided a receiving device including a hardware processor configured to demodulate a signal into which a first signal and a second signal are wavelength-multiplexed, into a first baseband signal and a second baseband signal corresponding to the first signal and the second signal, respectively, extract, from the second baseband signal, a signal component of crosstalk from the second signal to the first signal, shift a frequency of the extracted signal component, and compensate for the crosstalk from the second signal to the first signal, based on the extracted signal component shifted by the frequency.
    Type: Application
    Filed: February 5, 2018
    Publication date: August 9, 2018
    Applicant: FUJITSU LIMITED
    Inventors: Hisao Nakashima, Takeshi Hoshida
  • Publication number: 20180212701
    Abstract: Methods and systems for implementing a low noise CDC ROADM include incorporating individual stages of an optical PSA before and after WSSs included in the CDC ROADM. The WSSs may be used to route the pump and idler signals, as well as to perform phase tuning for optimal phase-sensitive amplification.
    Type: Application
    Filed: January 23, 2017
    Publication date: July 26, 2018
    Inventors: Youichi Akasaka, Takeshi Hoshida, Tadashi Ikeuchi