Patents by Inventor Vahid Tarokh

Vahid Tarokh 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: 20070082624
    Abstract: Disclosed is a mobile communication system using a Multiple Input Multiple Output (MIMO) scheme. A transmitter of the mobile communication system, generates a unitary space-time matrix to correspond to a codeword if the codeword to be transmitted in a first time interval is input, multiplies the unitary space-time matrix by a first final transmission matrix denoting signals transmitted in a second time interval before the first time interval, thereby generating a second final transmission matrix denoting signals to be transmitted in the second time interval, and transmits signals corresponding to the second final transmission matrix through a plurality of transmit antennas in the second time interval.
    Type: Application
    Filed: September 27, 2006
    Publication date: April 12, 2007
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Young-Ho Jung, Yung-Soo Kim, Seung-Hoon Nam, Vahid Tarokh
  • Patent number: 7164729
    Abstract: Input signals of each frame are encoded by mapping the signals onto a coordinate system dictated by the symbols of the previous frame, and symbols from a constellation are selected based on the results of such mapping. Received signals are detected by preprocessing the signals detected at each antenna with signals detected by the antenna at the immediately previous frame, and then applied to a maximum likelihood detector circuit, followed by an inverse mapping circuit.
    Type: Grant
    Filed: March 24, 2005
    Date of Patent: January 16, 2007
    Assignee: AT&T Corp.
    Inventors: Hamid Jafarkhani, Vahid Tarokh
  • Publication number: 20070009070
    Abstract: An improved multi-antenna receiver is realized for detecting signals transmitted by a multi-antenna transmitter by summing signals received at the plurality of receiver antennas after multiplying each by a respective constant. The summed signal is applied to a maximum likelihood detector. The respective constants, ?j, where j is an index designating a particular receiver antenna, are determined by evaluating the largest eigenvector of the matrix A, where ? is a vector containing the values ?j, and A is a matrix containing elements ?ij, which is the transfer function between the ith transmitter antenna to the jth receiver antenna. The ?ij terms are determined in the receiver in conventional ways.
    Type: Application
    Filed: March 8, 2006
    Publication date: January 11, 2007
    Inventors: Titus Lo, Vahid Tarokh
  • Patent number: 7154970
    Abstract: Input signals of each frame are encoded by mapping the signals onto a coordinate system dictated by the symbols of the previous frame, and symbols from a constellation are selected based on the results of such mapping. Received signals are detected by preprocessing the signals detected at each antenna with signals detected by the antenna at the immediately previous frame, and then applied to a maximum likelihood detector circuit, followed by an inverse mapping circuit.
    Type: Grant
    Filed: September 13, 2005
    Date of Patent: December 26, 2006
    Assignee: AT&T Corp.
    Inventors: Hamid Jafarkhani, Vahid Tarokh
  • Publication number: 20060262714
    Abstract: Provided is a method of reducing a peak-to-average-power ratio in a multiple antenna orthogonal frequency division multiplexing communication system. The method includes: reducing a peak-to-average-power ratio of input serial data sequences; space-time coding the input serial data sequences with the reduced peak-to-average-power ratio to generate N symbols to be tranmitted via N antennas; receiving the serial data sequences of the N symbols to transform the serial data sequences into N parallel data sequences; allocating each of the N parallel data sequences to Ns sub-carriers and performing Inverse Fast Fourier Transform on the N parallel data sequences; transforming the N parallel data sequences into N serial data symbols; and replicating a portion of the serial data symbols to generate cyclic prefixes and interleaving the cyclic prefixes into starting portions of the serial data symbols to cyclically expand the N symbols.
    Type: Application
    Filed: February 13, 2004
    Publication date: November 23, 2006
    Inventors: Vahid Tarokh, Jae-Hak Chung, Yung-Soo Kim, Chan-Soo Hwang
  • Publication number: 20060234789
    Abstract: Improved methods and apparatuses are provided to address a potential “hidden beam problem” in wireless communication systems employing smart antennas. The improved methods and apparatuses utilize complementary beamforming (CBF) techniques, such as, for example, Subspace Complementary Beamforming (SCBF), Complementary Superposition Beamforming (CSBF) and/or Single Beam Complementary Beamforming (SBCBF) techniques.
    Type: Application
    Filed: May 12, 2006
    Publication date: October 19, 2006
    Applicant: Vivato, Inc.
    Inventors: Vahid Tarokh, Yang-Seok Choi, Siavash Alamouti
  • Patent number: 7120200
    Abstract: A simple block coding arrangement is created with symbols transmitted over a plurality of transmit channels, in connection with coding that comprises only of simple arithmetic operations, such as negation and conjugation. The diversity created by the transmitter utilizes space diversity and either time or frequency diversity. Space diversity is effected by redundantly transmitting over a plurality of antennas, time diversity is effected by redundantly transmitting at different times, and frequency diversity is effected by redundantly transmitting at different frequencies. Illustratively, using two transmit antennas and a single receive antenna, one of the disclosed embodiments provides the same diversity gain as the maximal-ratio receiver combining (MRRC) scheme with one transmit antenna and two receive antennas.
    Type: Grant
    Filed: June 22, 2004
    Date of Patent: October 10, 2006
    Assignee: Cingular Wireless II, LLC
    Inventors: Siavash Alamouti, Vahid Tarokh
  • Publication number: 20060209672
    Abstract: The present invention relates to employing OFDM modulation in combination with spatial diversity and space-time block coding to provide high data rates and exceptional interference immunity. For transmission, quadrature modulated data is encoded in space and time to create individual series of encoded symbols. Each of these series of encoded symbols is subjected to a type of inverse Fourier Transform in corresponding transmission paths. In each transmission path, cyclic extensions may be appended to the resultant symbols, which are subsequently converted to an analog format, modulated, amplified, and transmitted from one of multiple antennas. Preferably, such communications are implemented from base stations to mobile terminals in an environment where the frequency reuse factor is approximately one and the base stations are synchronized to a common clock signal.
    Type: Application
    Filed: April 25, 2006
    Publication date: September 21, 2006
    Applicant: NORTEL NETWORKS LIMITED
    Inventors: Vahid Tarokh, Tharmalingam Ratnarajah, Wen Tong
  • Patent number: 7099698
    Abstract: Improved methods and apparatuses are provided to address a potential “hidden beam problem” in wireless communication systems employing smart antennas. The improved methods and apparatuses utilize complementary beamforming (CBF) techniques, such as, for example, Subspace Complementary Beamforming (SCBF), Complementary Superposition Beamforming (CSBF) and/or Single Beam Complementary Beamforming (SBCBF) techniques.
    Type: Grant
    Filed: November 3, 2003
    Date of Patent: August 29, 2006
    Assignee: Vivato, Inc.
    Inventors: Vahid Tarokh, Yang-Seok Choi, Siavash Alamouti
  • Patent number: 7061854
    Abstract: The present invention relates to employing OFDM modulation in combination with spatial diversity and space-time block coding to provide high data rates and exceptional interference immunity. For transmission, quadrature modulated data is encoded in space and time to create individual series of encoded symbols. Each of these series of encoded symbols is subjected to a type of inverse Fourier Transform in corresponding transmission paths. In each transmission path, cyclic extensions may be appended to the resultant symbols, which are subsequently converted to an analog format, modulated, amplified, and transmitted from one of multiple antennas. Preferably, such communications are implemented from base stations to mobile terminals in an environment where the frequency reuse factor is approximately one and the base stations are synchronized to a common clock signal.
    Type: Grant
    Filed: October 15, 2001
    Date of Patent: June 13, 2006
    Assignee: Nortel Networks Limited
    Inventors: Vahid Tarokh, Tharmalingam Ratnarajah, Wen Tong
  • Patent number: 7046737
    Abstract: An improved multi-antenna receiver is realized for detecting signals transmitted by a multi-antenna transmitter by summing signals received at the plurality of receiver antennas after multiplying each by a respective constant. The summed signal is applied to a maximum likelihood detector. The respective constants, ?j, where j is an index designating a particular receiver antenna, are determined by evaluating the largest eigenvector of the matrix A, where ? is a vector containing the values ?j, and A is a matrix containing elements ?ij, which is the transfer function between the ith transmitter antenna to the jth receiver antenna. The ?ij terms are determined in the receiver in conventional ways.
    Type: Grant
    Filed: May 4, 2004
    Date of Patent: May 16, 2006
    Assignee: Cingular Wireless II, LLC
    Inventors: Titus Lo, Vahid Tarokh
  • Publication number: 20060056539
    Abstract: Disclosed is a differential space-time block coding apparatus with a high transmission rate in a wireless communication system employing multiple transmit antennas and a method thereof. The differential space-time block coding method includes the steps of, when elements of a transmission matrix B43v are transmitted in a predetermined block (a vth block) through a predetermined transmit antenna at a predetermined time, modulating a symbol Sv of inputted binary data to a symbol Sv+1, creating a matrix S44v+1 in a block (a (v+1)th block) following the predetermined block by substituting the modulated symbol for the matrix P44, and then, in order to perform a differential encoding function, multiplying the matrix B43v by the matrix S44v+1 so as to calculate a new matrix B43v+1 to be transmitted in the (v+1)th block.
    Type: Application
    Filed: August 18, 2005
    Publication date: March 16, 2006
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Seung-Hoon Nam, Jae-Hak Chung, Chan-Soo Hwang, Young-Ho Jung, Vahid Tarokh
  • Publication number: 20050201481
    Abstract: A method and apparatus for increasing the data rate and providing antenna diversity using multiple transmit antennas is disclosed. A set of bits of a digital signal are used to generate a codeword. Codewords are provided according to a channel code. Delay elements may be provided in antenna output channels, or with suitable code construction delay may be omitted. n signals represent n symbols of a codeword are transmitted with n different transmit antennas. At the receiver MLSE or other decoding is used to decode the noisy received sequence. The parallel transmission and channel coding enables an increase the data rate over previous techniques, and recovery even under fading conditions. The channel coding may be concatenated with error correction codes under appropriate conditions.
    Type: Application
    Filed: April 27, 2005
    Publication date: September 15, 2005
    Inventors: Arthur Calderbank, Ayman Naguib, Nambirajan Seshadri, Vahid Tarokh
  • Publication number: 20050163246
    Abstract: Input signals of each frame are encoded by mapping the signals onto a coordinate system dictated by the symbols of the previous frame, and symbols from a constellation are selected based on the results of such mapping. Received signals are detected by preprocessing the signals detected at each antenna with signals detected by the antenna at the immediately previous frame, and then applied to a maximum likelihood detector circuit, followed by an inverse mapping circuit.
    Type: Application
    Filed: March 24, 2005
    Publication date: July 28, 2005
    Inventors: Hamid Jafarkhani, Vahid Tarokh
  • Publication number: 20050135499
    Abstract: A differential STBC transmitting/receiving apparatus in a multiple antenna system using eight or less transmit antennas is provided. In the differential STBC transmitting apparatus, a symbol mapper receives binary data and generates a number of symbols from the binary data, each symbol having a number of bits. A space-time block encoder generates an STBC by encoding the symbols. A differential processor differentially encodes the STBC through feedback and delay. A distribution matrix processor substitutes the differentially coded STBC into a distribution matrix preset according to the number of transmit antennas, and outputs the differential STBC code of the distribution matrix to the transmit antennas.
    Type: Application
    Filed: December 23, 2004
    Publication date: June 23, 2005
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Seung-Hoon Nam, Yung-Soo Kim, Jae-Hak Chung, Vahid Tarokh, Chan-Soo Hwang
  • Publication number: 20050135500
    Abstract: A space-time block coding method using an auxiliary symbol in a multiple transmit/receive antenna system is provided. In the space-time block coding method, binary data to be transmitted is received. Free symbols and an auxiliary symbol are generated by dividing the received binary data into units of a predetermined number of bits. The free symbols and the auxiliary symbol are encoded according to an encoding matrix and transmitted.
    Type: Application
    Filed: December 23, 2004
    Publication date: June 23, 2005
    Applicant: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Seung-Hoon Nam, Yung-Soo Kim, Jae-Hak Chung, Vahid Tarokh, Chan-Soo Hwang
  • Publication number: 20050105630
    Abstract: Good transmission characteristics are achieved in the presence of fading with a transmitter that employs a trellis coder followed by a block coder. Correspondingly, the receiver comprises a Viterbi decoder followed by a block decoder. Advantageously, the block coder and decoder employ time-space diversity coding which, illustratively, employs two transmitter antennas and one receiver antenna.
    Type: Application
    Filed: December 21, 2004
    Publication date: May 19, 2005
    Inventors: Siavash Alamouti, Patrick Poon, Vahid Tarokh
  • Patent number: 6891903
    Abstract: A differential detection approach allows communication without knowing the channel parameters, where the transmitter can include a plurality of transmitting antennas in excess of two. In the transmitter, each block of bits is mapped to a vector that is processed to develop a symbols vector, by employing mutually orthogonal vectors and the symbols vector of the previous block. The symbols vector is applied to a space-time mapping block, and thence to transmitting antennas. At the receiver, the received signals of a block are formed into vector, which is combined with a corresponding vector from the previous block in accordance with the mutually orthogonal vectors. The combined vector is summed with combined vectors of the other receive antennas, and the summed result is applied to a minimum distance decoder module. The decoder module selects a “most likely ” vector, and that vector is applied to a mapping that recovers the transmitted bits.
    Type: Grant
    Filed: April 27, 2001
    Date of Patent: May 10, 2005
    Assignee: AT&T Corp.
    Inventors: Hamid Jafarkhani, Vahid Tarokh
  • Patent number: 6889355
    Abstract: A method and apparatus for increasing the data rate and providing antenna diversity using multiple transmit antennas is disclosed. A set of bits of a digital signal are used to generate a codeword. Codewords are provided according to a channel code. Delay elements may be provided in antenna output channels, or with suitable code construction delay may be omitted. n signals represent n symbols of a codeword are transmitted with n different transmit antennas. At the receiver MLSE or other decoding is used to decode the noisy received sequence. The parallel transmission and channel coding enables an increase the data rate over previous techniques, and recovery even under fading conditions. The channel coding may be concatenated with error correction codes under appropriate conditions.
    Type: Grant
    Filed: April 7, 2000
    Date of Patent: May 3, 2005
    Assignee: AT&T Corp.
    Inventors: Arthur Robert Calderbank, Ayman F. Naguib, Nambirajan Seshadri, Vahid Tarokh
  • Patent number: 6865373
    Abstract: The present invention is directed to apparatus and method for encoding and decoding data within a wireless network such that a MS preferably does not require multiple receivers to handle communications from BTSs with varying numbers of antennas. In embodiments of the present invention, a space-time matrix is utilized to encode the data streams being transmitted from a BTS such that a BTS with fewer antennas would simply have an encoding matrix with one or more of the columns or rows removed from the matrix. In this way, the MSs within the wireless network can be designed to decode with the use of only a single space-time encoding matrix, this space-time encoding matrix working for BTSs with various numbers of antennas.
    Type: Grant
    Filed: May 14, 2002
    Date of Patent: March 8, 2005
    Assignee: Nortel Networks Limited
    Inventors: Wen Tong, Vahid Tarokh