Patents by Inventor Fabien Buda

Fabien Buda 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).

  • Patent number: 8913571
    Abstract: A cell search method in a multiple carrier wireless network includes a step of trying to select, among a list of candidate couples [carrier frequency; bandwidth], at least one candidate associated with at least one cell of the multiple carrier wireless network. The cell search method includes: a step of obtaining and ordering an initial list of possible candidate couples [carrier frequency; bandwidth] according to the multiple carrier wireless network; a step of reducing the initial list, delivering a reduced list, the reduced list including only candidates compatible with a predetermined communication mode of the multiple carrier wireless network, through a differential cross correlation of the candidate couples [carrier frequency; bandwidth] of the initial list; a cell search step in which a cross-correlation is performed by testing all time/frequency hypothesis for at least one candidate of the reduced list of candidates, delivering synchronisation information.
    Type: Grant
    Filed: November 16, 2011
    Date of Patent: December 16, 2014
    Assignee: Sequans Communications
    Inventors: Fabien Buda, Josephine Hus
  • Patent number: 8660102
    Abstract: A method of canceling co-channel interference of a signal received by a mobile station having at least two receiving antennas, in a cellular OFDMA-TDD communication network having a serving base station and at least one interfering base station. The signal is a result of a serving signal transmitted by the serving base station which is distorted by at least one interfering signal transmitted by the interfering base station. The serving signal is transmitted with a first modulation scheme and the interfering signal is transmitted with a second modulation scheme. The method includes: a channel estimation phase delivering channel estimations of the serving signal and the interfering signal; and a MIMO detecting phase, detecting symbols by using the channel estimations of the serving signal and the interfering signal. The MIMO detection phase is realized using a non-linear method which uses the first modulation scheme and the second modulation scheme.
    Type: Grant
    Filed: November 29, 2011
    Date of Patent: February 25, 2014
    Assignee: Sequans Communications
    Inventors: Weixiao Xu, Fabien Buda, Serdar Sezginer
  • Patent number: 8559550
    Abstract: An embodiment of a method for transmitting data through at least a channel in a wireless communication system, the method comprising at least the steps of: encoding the data by performing a forward-error-correction encoding, forming a sequence of symbols from the encoded data, forming an M-by-T coding matrix from said sequence of symbols, each column of the coding matrix comprising N different symbols of the sequence of symbols and M?N zeros, N being an integer equal at least to one, T representing the number of consecutive transmission intervals, M representing the total number of transmit antennas, and using the coding matrix for transmitting the sequence of symbols during the T consecutive transmission intervals, by transmitting one different column of the coding matrix at each transmission interval through the M transmit antennas, only N transmit antennas are enabled during a given transmission interval.
    Type: Grant
    Filed: June 22, 2009
    Date of Patent: October 15, 2013
    Assignee: Sequans Communications
    Inventors: Fabien Buda, Bertrand Muquet, Serdar Sezginer
  • Patent number: 8509131
    Abstract: A method and apparatus are provided for allocating and transmitting groups of subcarriers, called tiles, between a plurality of transceiver antennas. The method includes receiving at least one downlink signal by a subscriber station transceiver through at least one of the plurality of subscriber station antennas, characterizing a received signal of at least one downlink signal over multiple subcarriers, and allocating tiles for uplink transmission through at least one of the plurality of transceiver antennas. The tiles allocation is based on the characterized received signal of the at least one downlink signal over multiple subcarriers and is based on a required power Ptx for uplink transmission compared with a maximum power P that each of the plurality of the transceiver antennas can emit.
    Type: Grant
    Filed: September 27, 2011
    Date of Patent: August 13, 2013
    Assignee: Sequans Communications
    Inventors: Bertrand Muquet, Amélie Duchesne, Fabien Buda, Bertrand Debray
  • Patent number: 8300656
    Abstract: The TDMA receiver comprises a control unit for allocating to each of a plurality of transmitters time intervals during which the transmitter is allowed to transmit signals towards the TDMA receiver, a receiving unit for receiving an incoming signal resulting from the multiplexing of different signals which are output by the plurality of transmitters during the allocated time intervals and in the predetermined frequency band, the incoming signal thus consisting, in the predetermined frequency band, of a TDM signal, a processing unit for extracting and processing the TDM signal, and a spectrum determination unit for determining the spectrum of the incoming signal. The control unit is designed to synchronize the operation of the spectrum determination unit as a function of the time intervals allocated to the transmitters for the determination of the spectrum of the incoming signal in the predetermined frequency band.
    Type: Grant
    Filed: February 6, 2003
    Date of Patent: October 30, 2012
    Assignee: Juniper Networks, Inc.
    Inventors: Fabien Buda, Bertrand Debray
  • Publication number: 20120140683
    Abstract: A method of canceling co-channel interference of a signal received by a mobile station having at least two receiving antennas, in a cellular OFDMA-TDD communication network having a serving base station and at least one interfering base station. The signal is a result of a serving signal transmitted by the serving base station which is distorted by at least one interfering signal transmitted by the interfering base station. The serving signal is transmitted with a first modulation scheme and the interfering signal is transmitted with a second modulation scheme. The method includes: a channel estimation phase delivering channel estimations of the serving signal and the interfering signal; and a MIMO detecting phase, detecting symbols by using the channel estimations of the serving signal and the interfering signal. The MIMO detection phase is realized using a non-linear method which uses the first modulation scheme and the second modulation scheme.
    Type: Application
    Filed: November 29, 2011
    Publication date: June 7, 2012
    Applicant: Sequans Communications
    Inventors: Weixiao Xu, Fabien Buda, Serdar Sezginer
  • Publication number: 20120134322
    Abstract: A cell search method in a multiple carrier wireless network includes a step of trying to select, among a list of candidate couples [carrier frequency; bandwidth], at least one candidate associated with at least one cell of the multiple carrier wireless network. The cell search method includes: a step of obtaining and ordering an initial list of possible candidate couples [carrier frequency; bandwidth] according to the multiple carrier wireless network; a step of reducing the initial list, delivering a reduced list, the reduced list including only candidates compatible with a predetermined communication mode of the multiple carrier wireless network, through a differential cross correlation of the candidate couples [carrier frequency; bandwidth] of the initial list; a cell search step in which a cross-correlation is performed by testing all time/frequency hypothesis for at least one candidate of the reduced list of candidates, delivering synchronisation information.
    Type: Application
    Filed: November 16, 2011
    Publication date: May 31, 2012
    Applicant: SEQUANS COMMUNICATIONS
    Inventors: Fabien Buda, Joséphine Hus
  • Patent number: 8149970
    Abstract: The present invention teaches a compact and highly integrated multiple-channel digital tuner and receiver architecture, suitable for widespread field deployment, wherein each receiver demodulator channel may be remotely, automatically, dynamically, and economically configured for a particular cable, carrier frequency, and signaling baud-rate, from an option universe that includes a plurality of input cables, a plurality of carrier frequencies, and a plurality of available baud-rates. A multiple coax input, multiple channel output, digital tuner is partitioned into a multiple coax input digitizer portion and a multiple channel output front-end portion. The digitizer portion consists of N digitizers and accepts input signals from N coax cables and digitizes them with respective A/D converters. The front-end portion consists of M front-ends and provides M channel outputs suitable for subsequent processing by M respective digital demodulators.
    Type: Grant
    Filed: June 25, 2009
    Date of Patent: April 3, 2012
    Assignee: Juniper Networks, Inc.
    Inventor: Fabien Buda
  • Publication number: 20120076087
    Abstract: A method and apparatus are provided for allocating and transmitting groups of subcarriers, called tiles, between a plurality of transceiver antennas. The method includes receiving at least one downlink signal by a subscriber station transceiver through at least one of the plurality of subscriber station antennas, characterizing a received signal of at least one downlink signal over multiple subcarriers, and allocating tiles for uplink transmission through at least one of the plurality of transceiver antennas. The tiles allocation is based on the characterized received signal of the at least one downlink signal over multiple subcarriers and is based on a required power Ptx for uplink transmission compared with a maximum power P that each of the plurality of the transceiver antennas can emit.
    Type: Application
    Filed: September 27, 2011
    Publication date: March 29, 2012
    Applicant: SEQUANS COMMUNICATIONS
    Inventors: Bertrand Muquet, Amélie Duchesne, Fabien Buda, Bertrand Debray
  • Patent number: 8059769
    Abstract: The invention provides a device (D2) for reducing ingress noise in a digital signal, comprising a noise predictor (20) for predicting an amount of ingress noise in the digital signal (sn) based on past samples of the ingress noise, and a subtractor (21) for subtracting the predicted amount of ingress noise from the digital signal. Channel distortion is compensated for by a noise-independent equalizer (25), such as a ZF equalizer, placed upstream of the noise predictor (20). The device (D2) may be incorporated, for example, in a cable modem termination system (CMTS) of an hybrid fiber/coax (HFC) network.
    Type: Grant
    Filed: September 27, 2010
    Date of Patent: November 15, 2011
    Assignee: Juniper Networks, Inc.
    Inventors: Ambroise Popper, Fabien Buda, Hikmet Sari
  • Publication number: 20110013734
    Abstract: The invention provides a device (D2) for reducing ingress noise in a digital signal, comprising a noise predictor (20) for predicting an amount of ingress noise in the digital signal (sn) based on past samples of the ingress noise, and a subtractor (21) for subtracting the predicted amount of ingress noise from the digital signal. Channel distortion is compensated for by a noise-independent equalizer (25), such as a ZF equalizer, placed upstream of the noise predictor (20). The device (D2) may be incorporated, for example, in a cable modem termination system (CMTS) of an hybrid fiber/coax (HFC) network.
    Type: Application
    Filed: September 27, 2010
    Publication date: January 20, 2011
    Applicant: JUNIPER NETWORKS, INC.
    Inventors: Ambroise POPPER, Fabien BUDA, Hikmet SARI
  • Patent number: 7826569
    Abstract: The invention provides a device for reducing ingress noise in a digital signal, comprising a noise predictor for predicting an amount of ingress noise in the digital signal based on past samples of the ingress noise, and a subtractor for subtracting the predicted amount of ingress noise from the digital signal. Channel distortion is compensated for by a noise-independent equalizer, such as a ZF equalizer, placed upstream of the noise predictor. The device may be incorporated, for example, in a cable modem termination system (CMTS) of an hybrid fiber/coax (HFC) network.
    Type: Grant
    Filed: April 21, 2008
    Date of Patent: November 2, 2010
    Assignee: Juniper Networks, Inc.
    Inventors: Ambroise Popper, Fabien Buda, Hikmet Sari
  • Patent number: 7706823
    Abstract: A method of synchronizing a base station of a wireless communication system and a subscriber communication equipment located in the coverage area of the base station by compensating a sampling frequency offset in the subscriber equipment by interpolating input and/or output signals of a radio frequency part of the communication equipment to generate samples corresponding to the original symbol timing of the base station, and compensating the carrier frequency offset from the estimate of the sampling clock error.
    Type: Grant
    Filed: June 30, 2006
    Date of Patent: April 27, 2010
    Assignee: Sequans Communications
    Inventors: Fabien Buda, Emmanuel Lemois, Bertrand Debray
  • Publication number: 20090316824
    Abstract: An embodiment of a method for transmitting data through at least a channel in a wireless communication system, the method comprising at least the steps of: encoding the data by performing a forward-error-correction encoding, forming a sequence of symbols from the encoded data, forming an M-by-T coding matrix from said sequence of symbols, each column of the coding matrix comprising N different symbols of the sequence of symbols and M?N zeros, N being an integer equal at least to one, T representing the number of consecutive transmission intervals, M representing the total number of transmit antennas, and using the coding matrix for transmitting the sequence of symbols during the T consecutive transmission intervals, by transmitting one different column of the coding matrix at each transmission interval through the M transmit antennas, only N transmit antennas are enabled during a given transmission interval.
    Type: Application
    Filed: June 22, 2009
    Publication date: December 24, 2009
    Applicant: SEQUANS COMMUNICATIONS
    Inventors: Fabien BUDA, Bertrand MUQUET, Serdar SEZGINER
  • Publication number: 20090268853
    Abstract: The present invention teaches a compact and highly integrated multiple-channel digital tuner and receiver architecture, suitable for widespread field deployment, wherein each receiver demodulator channel may be remotely, automatically, dynamically, and economically configured for a particular cable, carrier frequency, and signaling baud-rate, from an option universe that includes a plurality of input cables, a plurality of carrier frequencies, and a plurality of available baud-rates. A multiple coax input, multiple channel output, digital tuner is partitioned into a multiple coax input digitizer portion and a multiple channel output front-end portion. The digitizer portion consists of N digitizers and accepts input signals from N coax cables and digitizes them with respective A/D converters. The front-end portion consists of M front-ends and provides M channel outputs suitable for subsequent processing by M respective digital demodulators.
    Type: Application
    Filed: June 25, 2009
    Publication date: October 29, 2009
    Applicant: JUNIPER NETWORKS, INC.
    Inventor: Fabien BUDA
  • Patent number: 7570723
    Abstract: The present invention teaches a compact and highly integrated multiple-channel digital tuner and receiver architecture, suitable for widespread field deployment, wherein each receiver demodulator channel may be remotely, automatically, dynamically, and economically configured for a particular cable, carrier frequency, and signaling baud-rate, from an option universe that includes a plurality of input cables, a plurality of carrier frequencies, and a plurality of available baud-rates. A multiple coax input, multiple channel output, digital tuner is partitioned into a multiple coax input digitizer portion and a multiple channel output front-end portion. The digitizer portion consists of N digitizers and accepts input signals from N coax cables and digitizes them with respective A/D converters. The front-end portion consists of M front-ends and provides M channel outputs suitable for subsequent processing by M respective digital demodulators.
    Type: Grant
    Filed: September 28, 2006
    Date of Patent: August 4, 2009
    Assignee: Juniper Networks, Inc.
    Inventor: Fabien Buda
  • Publication number: 20090003372
    Abstract: The invention provides a device for reducing ingress noise in a digital signal, comprising a noise predictor for predicting an amount of ingress noise in the digital signal based on past samples of the ingress noise, and a subtractor for subtracting the predicted amount of ingress noise from the digital signal. Channel distortion is compensated for by a noise-independent equalizer, such as a ZF equalizer, placed upstream of the noise predictor. The device may be incorporated, for example, in a cable modem termination system (CMTS) of an hybrid fiber/coax (HFC) network.
    Type: Application
    Filed: April 21, 2008
    Publication date: January 1, 2009
    Applicant: Juniper Networks, Inc.
    Inventors: Ambroise Popper, Fabien Buda, Hikmet Sari
  • Patent number: 7382839
    Abstract: The invention provides a device for reducing ingress noise in a digital signal, comprising a noise predictor for predicting an amount of ingress noise in the digital signal based on past samples of the ingress noise, and a subtractor for subtracting the predicted amount of ingress noise from the digital signal. Channel distortion is compensated for by a noise-independent equalizer, such as a ZF equalizer, placed upstream of the noise predictor. The device may be incorporated, for example, in a cable modem termination system (CMTS) of an hybrid fiber/coax (HFC) network.
    Type: Grant
    Filed: July 27, 2006
    Date of Patent: June 3, 2008
    Assignee: Juniper Networks, Inc.
    Inventors: Ambroise Popper, Fabien Buda, Hikmet Sari
  • Publication number: 20070019539
    Abstract: The present invention teaches a compact and highly integrated multiple-channel digital tuner and receiver architecture, suitable for widespread field deployment, wherein each receiver demodulator channel may be remotely, automatically, dynamically, and economically configured for a particular cable, carrier frequency, and signaling baud-rate, from an option universe that includes a plurality of input cables, a plurality of carrier frequencies, and a plurality of available baud-rates. A multiple coax input, multiple channel output, digital tuner is partitioned into a multiple coax input digitizer portion and a multiple channel output front-end portion. The digitizer portion consists of N digitizers and accepts input signals from N coax cables and digitizes them with respective A/D converters. The front-end portion consists of M front-ends and provides M channel outputs suitable for subsequent processing by M respective digital demodulators.
    Type: Application
    Filed: September 28, 2006
    Publication date: January 25, 2007
    Applicant: JUNIPER NETWORKS, INC.
    Inventor: Fabien BUDA
  • Publication number: 20070019767
    Abstract: The method for synchronising a base station of a wireless communication system and a subscriber communication equipment located in the coverage area of the base station comprises the steps of compensating a sampling frequency offset in the subscriber equipment by interpolating input and/or output signals of a radio frequency part (30) of the communication equipment to generate samples corresponding to the original symbol timing of the base station, and compensating the carrier frequency offset from the estimate of the sampling clock error.
    Type: Application
    Filed: June 30, 2006
    Publication date: January 25, 2007
    Inventors: Fabien Buda, Emmanuel Lemois, Bertrand Debray