Patents by Inventor Phil F. Chen

Phil F. Chen 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: 20140376671
    Abstract: A system for selecting optimal phase combinations for RF beamformers in a MIMO hybrid receiving systems augmented by RF Distribution Network. The system addresses the issue of providing beamforming gains for a plurality of layers using one common set of weights for each beamformer. The specification may be based on channel estimation of all layers as viewed by all receiving antennas, and maximizing metrics that capture the total received power.
    Type: Application
    Filed: July 1, 2014
    Publication date: December 25, 2014
    Inventors: Eduardo ABREU, Haim HAREL, Kenneth KLUDT, Phil F. CHEN, Sherwin J. WANG
  • Patent number: 8903319
    Abstract: A method, apparatus, and system for transmitting and controlling uplink diversity signals in a mobile communication device. While in a soft handoff situation, a mobile communications device may receive a phase feedback signal from a non-serving base station. The mobile device may calculate a modified phase parameter based on the phase feedback signal from the non-serving base station in order to minimize interference with the non-serving base station, for example, by calculating a modified value of a phase difference in a direction opposite to the direction desired by the non-serving base station. In some embodiments of the invention, the mobile device may determine whether to calculate the modified phase parameter in a direction opposite to the direction indicated by the phase feedback signal of the non-serving base station based on a comparison of power feedback signals received from the non-serving and serving base stations.
    Type: Grant
    Filed: February 10, 2012
    Date of Patent: December 2, 2014
    Assignee: Google Inc.
    Inventors: Sherwin J. Wang, Kenneth Kludt, Phil F. Chen, Haim Harel
  • Publication number: 20140341314
    Abstract: A system that implements multi user multiple inputs multiple outputs (MU MIMO) base station using a plurality of co-located single-user (SU) MIMO base stations is provided herein. The system may include a number N co-located single-user multiple input multiple output (SU-MIMO) bases stations each having a number K MIMO rank, wherein said N co-located SU-MIMO base stations are configured to share a common antennas array, operating over a common frequency band; a front-end MIMO processor connected to said N co-located SU-MIMO base stations and further coupleable to said common antennas array; and a back-end coordinator configured to collaboratively assist in optimizing operation of said N co-located SU-MIMO base stations, such that said N co-located SU-MIMO base stations and said front-end MIMO processor collaboratively implement a multi-user multiple input multiple output (MU-MIMO) base station capable of dynamically separating a coverage area into N*K spatial channels.
    Type: Application
    Filed: August 4, 2014
    Publication date: November 20, 2014
    Inventors: Haim Harel, Kenneth Kludt, Phil F. Chen, Sherwin J. Wang
  • Patent number: 8891598
    Abstract: A communication device operating in time division duplex (TDD) mode using multiple antennas is provided herein. The communication device uses receive channel estimation measurements to perform transmit beamforming and multiple input multiple output (MIMO) transmission, based on self-calibration of the various up/down paths via a method of transmission and reception between its own antennas, thus achieving reciprocity mapping between up and down links. Either user equipment (UE) or a base station may routinely perform this self-calibration to obtain the most current correction factor for the channel reciprocity to reflect the most current operating conditions present during TDD MIMO operation.
    Type: Grant
    Filed: December 17, 2013
    Date of Patent: November 18, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Sherwin J. Wang, Phil F. Chen, Haim Harel
  • Publication number: 20140334312
    Abstract: A method and system may include a plurality of collocated access points (APs), each coupled to, and operating independently with, a respective set of antennas, wherein the antennas are directional and oriented to create beams that cover different directions, for dividing a coverage of the APs into a plurality of subsectors, wherein the antennas further comprise transmit antennas and receive antennas separated from each other, wherein the APs operate with a limited number of channels, wherein two or more of the subsectors share a common channel, wherein the APs are configured to initiate a transmission by employing collision sense multiple access/collision avoidance (CSMA/CA), wherein the antennas are configured to enable simultaneous operation of each of the subsectors without impairing operation of the others, and wherein a radio frequency (RF) energy reception between the transmit antennas and the receive antennas is configured to prevent independent subsector operation because of the CSMA/CA.
    Type: Application
    Filed: May 9, 2014
    Publication date: November 13, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Thorp RIVINGSTON, Haim HAREL, Kenneth KLUDT, Phil F. CHEN, Stuart S. JEFFERY
  • Patent number: 8861635
    Abstract: A system and a closed form method of optimizing a set of receive beamformers' weights, each feeding one of N multi-layer MIMO receiving system wherein the beamformers have a pool of M receive antennas wherein M is greater than N. Each beamformer is tuned to optimize one data stream, where selection of antennas per beamformer may be done out of a pool of antennas, and mapping of a given beamformer to a data stream is optimized per certain performance metrics.
    Type: Grant
    Filed: October 28, 2013
    Date of Patent: October 14, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Sherwin J. Wang, Phil F. Chen
  • Publication number: 20140293869
    Abstract: A wireless communication system may include a first transceiver co-located with a second transceiver. The first and second transceivers may be configured to transmit data to at least one user equipment, according to a collision sense multiple access/collision avoidance (CSMA/CA) protocol. A processor may identify data transmission from the second transceiver and allow data transmission from the first transceiver simultaneously with data transmission from the second transceiver, on one frequency.
    Type: Application
    Filed: June 24, 2013
    Publication date: October 2, 2014
    Inventors: Stuart S. JEFFERY, Haim Harel, Phil F. Chen, Kenneth Kludt
  • Patent number: 8824596
    Abstract: A mobile device in a (e.g., full rank N×N) MIMO system is augmented by a plurality of kn antennae coupled to at least one of N beamformers such that the total number of antennae M=?n=1n=N is greater than the total number of beamformers N. A highest gain anchor (e.g., optimal) antenna set may be selected from among a plurality of antenna sets, each antenna set comprising a different one of the kn antennae for each nth beamformer. The phase(s) of the non-selected kn?1 antennae may be set to align with the phase of the selected anchor antenna for each nth beamformer. Using TDD communication, the highest gain anchor antenna set for transmitting during the uplink periods may be determined using information measured by at least some of the plurality of M antennae while receiving during one or more downlink periods.
    Type: Grant
    Filed: July 31, 2013
    Date of Patent: September 2, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Sherwin J. Wang, Phil F. Chen, Haim Harel, Eduardo Abreu
  • Publication number: 20140233486
    Abstract: Embodiments of the present invention may separately utilize transmit paths of a mobile transmit diversity device to initialize communication with a base station over a random access channel, particularly where the transmit paths have power amplifiers with different characteristics, e.g., different power amplification.
    Type: Application
    Filed: April 10, 2014
    Publication date: August 21, 2014
    Applicant: GOOGLE INC.
    Inventors: Kenneth KLUDT, Haim HAREL, Phil F. CHEN, Sherwin J. WANG
  • Publication number: 20140225776
    Abstract: A system and method may include a plurality of transmit and receive antennas covering one sector of a cellular communication base station; a multi-beam RF beamforming matrix connected to the transmit and receive antennas; a plurality of radio circuitries connected to the multi-beam RF beamforming matrix; and a baseband module connected to the radio circuitries. The multi-beam RF beamforming matrix may be configured to generate one sector beam and two or more directional co-frequency beams pointed at user equipment (UEs) within the sector, as instructed by the baseband module. A number M denotes the number the directional beams and a number N denotes the number of the radio circuitries and wherein M>N.
    Type: Application
    Filed: May 6, 2013
    Publication date: August 14, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Haim HAREL, Eduardo Abreu, Kenneth Kludt, Phil F. Chen, Sherwin J. Wang
  • Publication number: 20140225777
    Abstract: A system and method may include a plurality of transmit and receive antennas covering one sector of a cellular communication base station; a multi-beam RF beamforming matrix connected to the transmit and receive antennas; a plurality of radio circuitries connected to the multi-beam RF beamforming matrix; and a baseband module connected to the radio circuitries. The multi-beam RF beamforming matrix may be configured to generate one sector beam and two or more directional co-frequency beams pointed at user equipment (UEs) within the sector, as instructed by the baseband module. A number M denotes the number the directional beams and a number N denotes the number of the radio circuitries and wherein M>N.
    Type: Application
    Filed: August 27, 2013
    Publication date: August 14, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Haim HAREL, Eduardo Abreu, Kenneth Kludt, Phil F. Chen, Sherwin J. Wang
  • Publication number: 20140226741
    Abstract: A system that implements multi user multiple inputs multiple outputs (MU MIMO) base station using a plurality of co-located single-user (SU) MIMO base stations is provided herein. The system may include a number N co-located single-user multiple input multiple output (SU-MIMO) bases stations each having a number K MIMO rank, wherein said N co-located SU-MIMO base stations are configured to share a common antennas array, operating over a common frequency band ; a front-end MIMO processor connected to said N co-located SU-MIMO base stations and further coupleable to said common antennas array; and a back-end coordinator configured to collaboratively assist in optimizing operation of said N co-located SU-MIMO base stations, such that said N co-located SU-MIMO base stations and said front-end MIMO processor collaboratively implement a multi-user multiple input multiple output (MU-MIMO) base station capable of dynamically separating a coverage area into N*K spatial channels.
    Type: Application
    Filed: February 4, 2014
    Publication date: August 14, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Haim HAREL, Kenneth KLUDT, Phil F. CHEN, Sherwin J. WANG
  • Publication number: 20140226453
    Abstract: A system and method for providing multi-beam Wi-Fi access points. The system includes one or more Wi-Fi transmit antennas beamformers; one or more Wi-Fi receive antennas or receive beamformers; and a number N of co-channel Wi-Fi access points (APs) and a number of M non co-channel APS, where all APs comply with IEEE802.11xx standard, connected to the Wi-Fi transmit antennas beamformers, wherein the Wi-Fi transmit antennas beamformers are configured to produce a plurality of non spatially adjacent beams of a common frequency, directed at a plurality of Wi-Fi user equipment (UE) such that the directional beams are sufficiently isolated from each other, and at least some of the Wi-Fi UEs communicate simultaneously with the plurality of Wi-Fi access points.
    Type: Application
    Filed: August 27, 2013
    Publication date: August 14, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Haim HAREL, Phil F. Chen, Kenneth Kludt, Stuart S. Jeffery, Sherwin J. Wang, Eduardo Abreu
  • Patent number: 8797969
    Abstract: A system that implements multi user multiple inputs multiple outputs (MU MIMO) base station using a plurality of co-located single-user (SU) MIMO base stations is provided herein. The system may include a number N co-located single-user multiple input multiple output (SU-MIMO) bases stations each having a number K MIMO rank, wherein said N co-located SU-MIMO base stations are configured to share a common antennas array, operating over a common frequency band; a front-end MIMO processor connected to said N co-located SU-MIMO base stations and further coupleable to said common antennas array; and a back-end coordinator configured to collaboratively assist in optimizing operation of said N co-located SU-MIMO base stations, such that said N co-located SU-MIMO base stations and said front-end MIMO processor collaboratively implement a multi-user multiple input multiple output (MU-MIMO) base station capable of dynamically separating a coverage area into N*K spatial channels.
    Type: Grant
    Filed: February 4, 2014
    Date of Patent: August 5, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Haim Harel, Kenneth Kludt, Phil F. Chen, Sherwin J. Wang
  • Patent number: 8774150
    Abstract: A multibeam access point may include a plurality of co-located, beamforming transceivers, each configured to transmit data to a user equipment on a first channel. The multibeam access point may further include a cluster transceiver co-located with the beamforming transceivers, configured to transmit data to the user equipment on a second channel. A processor or controller may monitor whether at least two of the beamforming transceivers have detected data transmission from the user equipment. Based on the monitoring, the processor may allow the cluster transceiver to transmit data to the user equipment.
    Type: Grant
    Filed: July 31, 2013
    Date of Patent: July 8, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Stuart S. Jeffery, Haim Harel, Phil F. Chen, Kenneth Kludt, Sherwin J. Wang
  • Patent number: 8767862
    Abstract: A system for selecting optimal phase combinations for RF beamformers in a MIMO hybrid receiving systems augmented by RF Distribution Network. The system addresses the issue of providing beamforming gains for a plurality of layers using one common set of weights for each beamformer. The specification may be based on channel estimation of all layers as viewed by all receiving antennas, and maximizing metrics that capture the total received power.
    Type: Grant
    Filed: February 25, 2013
    Date of Patent: July 1, 2014
    Assignee: Magnolia Broadband Inc.
    Inventors: Eduardo Abreu, Haim Harel, Kenneth Kludt, Phil F. Chen, Sherwin J. Wang
  • Patent number: 8731489
    Abstract: Embodiments of the present invention may separately utilize transmit paths of a mobile transmit diversity device to initialize communication with a base station over a random access channel, particularly where the transmit paths have power amplifiers with different characteristics, e.g., different power amplification.
    Type: Grant
    Filed: May 26, 2011
    Date of Patent: May 20, 2014
    Assignee: Google Inc.
    Inventors: Kenneth Kludt, Haim Harel, Phil F. Chen, Sherwin J. Wang
  • Publication number: 20140119469
    Abstract: Communication is performed for a first communication device having a set of antenna elements. A quality-indication signal is received from a second communication device (e.g., a basestation). A complex weighting is calculated based on the quality-indication signal. A pre-transmission signal is modified based on the complex transmit diversity weighting to produce a set of modified-pre-transmission signals, wherein the modifications are symmetric by making approximately half the magnitude of the transmit diversity modification to one signal in a first direction, and approximately half the magnitude of the transmit diversity modification to the other signal in a second direction, opposite the first direction. Each modified pre-transmission signal from the set of modified-pre-transmission signals is uniquely associated with an antenna element from the set of antenna elements. The set of modified-pre-transmission signals is sent from the set of antenna elements to produce a transmitted signal.
    Type: Application
    Filed: January 6, 2014
    Publication date: May 1, 2014
    Applicant: GOOGLE INC.
    Inventors: Haim HAREL, Phil F. CHEN, Sherwin J. WANG, Eduardo ABREU
  • Publication number: 20140091968
    Abstract: A system may include a modifiable mobile device having at least two antennas coupled to fractional amplifiers, with returned power detectors. A beamformer unit provides adaptive beam shaping pattern, and a baseband processor provides beam pattern requirements, wherein the beamformer unit modifies the beam pattern requirements with return loss sampling information to shape the adaptive beam pattern so that a transmitted beam pattern minimizes transmitted power reflected back to the mobile device. A method may include regularly measuring a return power level, if output power is greater than a specific absorption rate level, comparing the return power level to a first threshold, else implementing mobile transmit diversity (MTD), and repeating. If the return power level is greater than the first threshold, implementing a MTD combined with reflection-based beamforming that modifies beam pattern requirements of the mobile device with return loss sampling information to create an adaptive beam pattern.
    Type: Application
    Filed: December 6, 2013
    Publication date: April 3, 2014
    Applicant: GOOGLE INC.
    Inventors: Haim HAREL, Kenneth KLUDT, Phil F. CHEN
  • Publication number: 20140051377
    Abstract: A system and a closed form method of optimizing a set of receive beamformers' weights, each feeding one of N multi-layer MIMO receiving system wherein the beamformers have a pool of M receive antennas wherein M is greater than N.
    Type: Application
    Filed: October 28, 2013
    Publication date: February 20, 2014
    Applicant: Magnolia Broadband Inc.
    Inventors: Sherwin J. WANG, Phil F. Chen