Patents by Inventor Ayman Naguib

Ayman Naguib 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: 20120176491
    Abstract: An apparatus and method for estimating a position of a mobile device based on one or more images is disclosed. Positioning information is derived from an image containing an SAS (self-addressing source such as a QR code), thereby setting a first vector V1 and an SAS pose. The image is also used to determine a displacement between the mobile device and the self-addressing source, thereby setting a second vector V2. Using the first vector V1, the SAS pose and the second vector V2, the mobile device may estimate its position with high accuracy and may also recalibrate dead-reckoning navigation and a gyrometer.
    Type: Application
    Filed: June 30, 2011
    Publication date: July 12, 2012
    Applicant: QUALCOMM Incorporated
    Inventors: Lionel J. Garin, Ayman Naguib, Charles A. Bergan
  • Publication number: 20120134436
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Application
    Filed: February 2, 2012
    Publication date: May 31, 2012
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Patent number: 8139695
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Grant
    Filed: November 11, 2009
    Date of Patent: March 20, 2012
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Publication number: 20100238902
    Abstract: A channel structure has at least two channel sets. Each channel set contains multiple channels and is associated with a specific mapping of the channels to the system resources available for data transmission. Each channel set may be defined based on a channel tree having a hierarchical structure. To achieve intra-cell interference diversity, the channel-to-resource mapping for each channel set is pseudo-random with respect to the mapping for each remaining channel set. In each scheduling interval, terminals are scheduled for transmission on the forward and/or reverse link. The scheduled terminals are assigned channels from the channel sets. Multiple terminals may use the same system resources and their overlapping transmissions may be separated in the spatial domain. For example, beamforming may be performed to send multiple overlapping transmissions on the forward link, and receiver spatial processing may be performed to separate out multiple overlapping transmissions received on the reverse link.
    Type: Application
    Filed: June 1, 2010
    Publication date: September 23, 2010
    Applicant: QUALCOMM INCORPORATED
    Inventors: Tingfang Ji, Ayman Naguib, Arak Sutivong, Dhananjay Ashok Gore, Alexei Gorokhov
  • Publication number: 20100135272
    Abstract: Methods and apparatus for supporting coexistence between two different radio access technologies (RATs), such as the Long Term Evolution (LTE) standard and one of the IEEE 802.16 standards, are provided. To accomplish this coexistence, a multi-mode base station (BS) may replace transmission gaps in a frame of a first RAT with subframes or symbols of the second RAT and transmit the resulting dual-RAT frame. In this manner, a single BS may support and communicate according to two different RATs simultaneously.
    Type: Application
    Filed: April 28, 2009
    Publication date: June 3, 2010
    Applicant: QUALCOMM INCORPORATED
    Inventors: Pranav Dayal, Ayman Naguib, Tingfang Ji
  • Publication number: 20100034101
    Abstract: A method and apparatus for transmitting a ChannelMeasurementReport message in a wireless communication system, comprising generating a ChannelMeasurementReport message comprising a 8 bit MessageID field, a 12 bit PilotPN field that indicates the PilotPN of a sector for which a measurement was performed, a 2 bit CarrieriID field that indicates a carrier on which the measurements are performed, a 40 bit StartPHYFrameNumber field that indicates a frame number of a PHYFrame where an access terminal made a first measurement reported in the message, a 8 bit MeasurementInterval field that indicates a number of PHYFrames between measurements made by the access terminal, and a 8 bit NumMeasurements field that indicates number of measurements included in the message and transmitting the ChannelMeasurementReport message over a communication link. A method and apparatus is also provided for receiving and processing the ChannelMeasurementReport message.
    Type: Application
    Filed: October 27, 2006
    Publication date: February 11, 2010
    Applicant: QUALCOMM INCORPORATED
    Inventor: Fawzy Ayman Naguib
  • Publication number: 20100020765
    Abstract: Techniques, systems and methods for concurrent data and signaling for WiMAX handover are disclosed herein. The serving base station may receive a handover request message from a mobile station and transmit a parameter to the mobile station to indicate a time to suspend a first set of one or more service flows between the serving base station and the mobile station during a handover procedure and continue data exchange between the mobile station and the serving base station for a second set of one or more service flows during the handover procedure. The proposed techniques reduce the service suspension time during the handover procedure.
    Type: Application
    Filed: July 28, 2009
    Publication date: January 28, 2010
    Applicant: QUALCOMM INCORPORATED
    Inventors: Steven D. Cheng, Ayman Naguib, Doo Seok Kim
  • Patent number: 7643589
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Grant
    Filed: December 9, 2008
    Date of Patent: January 5, 2010
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Publication number: 20090092209
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Application
    Filed: December 9, 2008
    Publication date: April 9, 2009
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Patent number: 7463705
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Grant
    Filed: March 27, 2007
    Date of Patent: December 9, 2008
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Publication number: 20080080594
    Abstract: Information symbols are transmitted simultaneously on independent streams using the same spreading code but from different transmit antennas at the transmitter. These simultaneous data stream could be intended for the same user (and thereby the data rate for any particular user can be increased) or for different users (thereby increasing the system capacity). Each stream of data can belong to a different signal constellation and use a different channel code. At the receiver, a number of receive antennas equal to at least the number of multiple data streams is used to separate the different data streams. We consider two different cases. The first one when no transmit diversity is used (this case can also include the case when transmit diversity with simple antenna weighting is used) and the second when transmit diversity with space-time block coding is used.
    Type: Application
    Filed: August 9, 2007
    Publication date: April 3, 2008
    Applicant: INFINEON TECHNOLOGIES AG
    Inventor: Ayman Naguib
  • Publication number: 20070177697
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Application
    Filed: March 27, 2007
    Publication date: August 2, 2007
    Inventors: Arthur Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Publication number: 20070133668
    Abstract: Techniques to facilitate estimating the frequency response of a wireless channel in an OFDM system are provided. The method and systems allow for combining signal information across multiple communication channels at one or more channel tap delays in order to determine appropriate taps for channel information.
    Type: Application
    Filed: November 16, 2006
    Publication date: June 14, 2007
    Applicant: QUALCOMM, INCORPORATED
    Inventors: Ayman Naguib, Dhananjay Gore, Alexei Gorokhov, Tamer Kadous
  • Patent number: 7215718
    Abstract: Enhanced performance is achieved by combining channel coding with the space-time coding principles. With K synchronized terminal units transmitting on N antennas to a base station having M?K receive antennas, increased system capacity and improved performance are attained by using a concatenated coding scheme where the inner code is a space-time block code and the outer code is a conventional channel error correcting code. Information symbols are first encoded using a conventional channel code, and the resulting signals are encoded using a space-time block code. At the receiver, the inner space-time block code is used to suppress interference from the other co-channel terminals and soft decisions are made about the transmitted symbols. The channel decoding that follows makes the hard decisions about the transmitted symbols. Increased data rate is achieved by, effectively, splitting the incoming data rate into multiple channels, and each channel is transmitted over its own terminal.
    Type: Grant
    Filed: April 28, 1999
    Date of Patent: May 8, 2007
    Assignee: AT&T Corp.
    Inventors: Arthur Robert Calderbank, Ayman Naguib, Nambirajan Seshadri
  • Publication number: 20070099573
    Abstract: Calibration for a transmit chain of a device transmitting information to multiple devices over wireless links and receive chains of the multiple devices receiving information over one of the wireless links utilizing each of the estimates for different antennas of an access terminal as a separate estimate.
    Type: Application
    Filed: April 17, 2006
    Publication date: May 3, 2007
    Inventors: Ayman Naguib, Alexei Gorokhov
  • Publication number: 20070099670
    Abstract: Calibration for a transmit chain of a device transmitting information to multiple devices over wireless links includes selecting from between two or more calibration determination techniques. In certain aspects the techniques include phase only calibration and phase and amplitude calibration.
    Type: Application
    Filed: April 17, 2006
    Publication date: May 3, 2007
    Inventors: Ayman Naguib, Alexei Gorokhov, Rajiv Vijayan
  • Publication number: 20060291371
    Abstract: Transmission patterns for pilot symbols transmitted from a mobile station or base station are provided. The patterns may be selected according to a location of the mobile station with respect to one or more antennas are provided. In some aspects, the pattern may be selected based upon the distance between the mobile station and the one or more antennas. In other aspect, the pattern may be based upon whether the mobile station is in handoff.
    Type: Application
    Filed: May 18, 2005
    Publication date: December 28, 2006
    Inventors: Arak Sutivong, Ayman Naguib, Dhananjay Gore, Alexei Gorokhov, Tingfang Ji
  • Publication number: 20060284725
    Abstract: Calibration for a transmit chain of a device transmitting information to multiple devices over wireless links and receive chains of the multiple devices receiving information over one of the wireless links utilizing a plurality of forward link channel estimates received from at least some of the plurality of devices and a plurality of reverse link channel estimates from the plurality of devices.
    Type: Application
    Filed: April 4, 2006
    Publication date: December 21, 2006
    Inventors: Ayman Naguib, Avneesh Agrawal, Alexei Gorokhov
  • Publication number: 20060280116
    Abstract: Methods and apparatuses are disclosed that utilize the discrete Fourier transform of time domain responses to generate beamforming weights for wireless communication. In addition, in some embodiments frequency subcarriers constituting less than all of the frequency subcarriers allocated for communication to a user may utilized for generating the beamforming weights.
    Type: Application
    Filed: June 21, 2005
    Publication date: December 14, 2006
    Inventors: Tingfang Ji, Ayman Naguib, Arak Sutivong, Dhananjay Gore, Alexei Gorokhov, Hemanth Sampath, Min Dong
  • Publication number: 20060274691
    Abstract: To receive packets with interference cancellation, block transmissions for the packets are received on time-frequency blocks used by these packets. Receiver spatial processing is performed on input symbols to obtain detected symbols. Each packet is demodulated and decoded based on all detected symbols obtained for all block transmissions received for the packet. For each packet that is decoded correctly, the transmission for the packet is terminated, the interference due to the packet is estimated, and the estimated interference is subtracted from the input symbols for all time-frequency blocks used by the packet. Receiver spatial processing is performed on the interference-canceled symbols to obtain new detected symbols for all time-frequency blocks used by all correctly decoded packets. Each packet decoded in error and overlapping at least partially with any correctly decoded packet may be demodulated and decoded based on all detected symbols available for that packet.
    Type: Application
    Filed: June 7, 2005
    Publication date: December 7, 2006
    Inventors: Ayman Naguib, Alexei Gorokhov, Dhananjay Gore, Tingfang Ji, Arak Sutivong