Patents Examined by Timothy X Pham
  • Patent number: 11874388
    Abstract: Within several applications the ability to localize an individual within an environment is beneficial. However, existing indoor localization approaches depend upon at least one of two assumptions. First, the subject(s) localization is achieved by localizing a wireless device carried by the subject and second, wireless fingerprints are established for the localization via a site survey being performed before a system can actually localize the subject(s). However, in many application scenarios, neither of the above two assumptions are true, namely that the user is not carrying an active wireless device or that the site has been surveyed. Accordingly, embodiments of the invention provide for subject localization by a dynamic calibration of wireless signals between a receiver and a transmitter, where neither the receiver or transmitter are associated with an electronic device carried or worn by the subject.
    Type: Grant
    Filed: October 19, 2021
    Date of Patent: January 16, 2024
    Inventors: Yi Gao, Michel Allegue Martinez, Xi Chen, Xue Liu
  • Patent number: 11874395
    Abstract: Systems and methods are provided for a radar processing chain for frequency-modulated continuous wave radar systems. A transmitter transmits a plurality of chirps, each comprising an electromagnetic radiation signal, at a region of interest. A receiver front-end receives reflected electromagnetic radiation for each chirp and generates a time series of beat-signal samples for each chirp at each antenna of a plurality of antennas. A signal processor detects objects within the region of interest by providing a frequency domain representation of each time series of beat-signal samples as sample values for a set of range bins representing respective distances from the receiver, correcting the sample values for each of the set of range bins to provide a set of clutter corrected samples for each range bin, and determining an angular spectrum for each of a subset of the set of range bins from the clutter corrected samples.
    Type: Grant
    Filed: September 14, 2021
    Date of Patent: January 16, 2024
    Assignee: Texas Instruments Incorporated
    Inventor: June Chul Roh
  • Patent number: 11871232
    Abstract: A method and system for wirelessly tracking power tools and related devices to aid with inventory management and to help minimize, prevent, and recover misplaced or stolen tools throughout the job site. The tools and/or batteries include wireless transmitting capabilities (e.g., an ISM unit) to transmit data to a fob, puck repeater, and/or gateway over an ISM network. The gateway is operable to translate and output the ISM communications over a cellular network to a remote monitoring unit, such as a personal computer or smart phone. Additionally, the gateway is further operable to translate and output cellular communications from the remote monitoring unit to ISM communications over the ISM network. A wireless tethering system and method is also disclosed whereby an ISM battery places a power tool in a lock-out or limp mode after the ISM battery remains outside of ISM communications for a prolonged period of time.
    Type: Grant
    Filed: December 30, 2022
    Date of Patent: January 9, 2024
    Assignee: Milwaukee Electric Tool Corporation
    Inventors: Jeffrey M. Zeiler, Leslie J. Reading
  • Patent number: 11867802
    Abstract: A vehicular sensing system includes at least one MIMO radar sensor disposed at the vehicle and sensing exterior and forward of the vehicle. The at least one MIMO radar sensor includes multiple transmitting antennas and multiple receiving antennas. The transmitting antennas transmit radar signals and the receiving antennas receive radar signals. Radar data captured by the at least one MIMO radar sensor is provided to an electronic control unit (ECU). The ECU includes a processor and, responsive at least in part to processing at the ECU of provided captured radar data and vehicle motion information, determines different types of surfaces sensed by the at least one MIMO radar sensor. Responsive at least in part to processing at the ECU of provided captured radar data, the vehicular sensing system provides an output for at least one driving assist system.
    Type: Grant
    Filed: October 18, 2021
    Date of Patent: January 9, 2024
    Assignee: Magna Electronics Inc.
    Inventors: Sergio Duque Biarge, Holger Hess, Jorge J. Jácome Muñoz, Kalin Kabakchiev, Roaldje Nadjiasngar
  • Patent number: 11867831
    Abstract: A generator for generating two- or multi-dimensional frequency representations of synthetic radar signals from a set of radar signals measured by a physical radar sensor. The generator includes a random number generator and a first AI module, which, as input, receives vectors or tensors of random values from the random number generator and uses an internal processing chain to map each such vector, respectively each such tensor, onto a two- or multi-dimensional frequency representation of a synthetic radar signal. The internal processing chain of the first AI module is parameterized by a multiplicity of parameters which are set in such a way that the two- or multi-dimensional frequency representation of the radar signal and/or at least one characteristic derived therefrom have the same distribution for the synthetic radar signals as for the measured radar signals.
    Type: Grant
    Filed: March 18, 2019
    Date of Patent: January 9, 2024
    Assignee: ROBERT BOSCH GMBH
    Inventors: Jasmin Ebert, Michael Pfeiffer
  • Patent number: 11860300
    Abstract: A vehicle radar inspection system and method are provided for inspecting a mounting state of a radar sensor mounted to a vehicle. The vehicle radar inspection system includes a centering portion that aligns a position of the vehicle by driving rollers, displacement sensors that are respectively disposed at front and rear sides of the centering portion, an array antenna that measures propagation intensity of a radar signal transmitted from the radar sensor, and a server that connects wireless communication with a wireless terminal of the vehicle, calculates a mounting position of the radar sensor, and detects a mounting error of the radar sensor with reference to a normal reference mounting specification.
    Type: Grant
    Filed: November 18, 2021
    Date of Patent: January 2, 2024
    Assignees: HYUNDAI MOTOR COMPANY, KIA CORPORATION
    Inventors: Jihoon Park, David Oh
  • Patent number: 11852713
    Abstract: Provided are a system and method for coordinating dual wireless communications protocols when implementing a time difference of arrival framework for ranging between nodes. A first of the protocols (e.g., BLE) can be used to initiate synchronization and measurement staging, while ensuing calculations according to such synchronization and measurement can be conducted according a second of the protocols (e.g., UWB). In these regards, transitioning between the aforementioned protocols can result in a conservation of air time involved in an entirety of TDOA processes, and thus a conservation of energy.
    Type: Grant
    Filed: March 23, 2023
    Date of Patent: December 26, 2023
    Assignee: Link Labs, Inc.
    Inventor: Mark O. Bloechl
  • Patent number: 11846721
    Abstract: A radar system may comprise a radar server configured to determine (1) one or more transmit timing parameters and (2) one or more receive timing parameters. The radar server may provide the one or more transmit timing parameters to a first wireless communications system Transmission Reception Point (TRP) configured to use the one or more transmit timing parameters to send a transmit signal. The radar server may provide the one or more receive timing parameters to a second wireless communications system TRP configured to use the one or more receive timing parameters to receive an echo signal corresponding to a reflection of the transmit signal from a target.
    Type: Grant
    Filed: September 8, 2021
    Date of Patent: December 19, 2023
    Assignee: QUALCOMM Incorporated
    Inventors: Weimin Duan, Seyong Park, Alexandros Manolakos
  • Patent number: 11841457
    Abstract: A radar device includes a transmission module, a reception module, and a signal processing unit. The transmission module includes an RF signal source that generates a transmission chirp signal synchronized with a reference signal. The reception module includes an RF signal source that generates a reception chirp signal used as a reception local signal and synchronized with the reference signal. The reception module receives a reflected wave of the transmission chirp signal emitted from the transmission module, and mixes a received reception signal with the reception chirp signal. The signal processing unit detects a target based on a beat signal generated by the mixing by the reception module.
    Type: Grant
    Filed: December 1, 2020
    Date of Patent: December 12, 2023
    Assignee: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Koji Tsutsumi, Tatsuya Hagiwara, Mitsuhiro Shimozawa
  • Patent number: 11844201
    Abstract: A radio wave absorber (1a) includes a resistive layer (20), an electrical conductor (30), and a dielectric layer (10). The resistive layer (20) includes indium tin oxide as a main component. The electrical conductor (30) reflects a radio wave. The dielectric layer (10) is disposed between the resistive layer (20) and the electrical conductor (30) in the thickness direction of the resistive layer (20). The dielectric layer (10) is formed of a polymer. The content of tin oxide in the indium tin oxide included in the resistive layer (20) is more than 0 weight % and less than 20 weight %. The number of hydrogen atoms included in the resistive layer (20) is 5% or more of the total number of indium atoms, tin atoms, oxygen atoms, and hydrogen atoms included in the resistive layer (20).
    Type: Grant
    Filed: September 20, 2019
    Date of Patent: December 12, 2023
    Assignee: NITTO DENKO CORPORATION
    Inventors: Motoki Haishi, Kazuto Yamagata, Hironobu Machinaga
  • Patent number: 11827158
    Abstract: The radome (10) for vehicles comprises a substrate (18) formed of a radio transmissive resin, the substrate (18) having a proximal face and a distal face and a decoration layer (20) applied to the proximal face, the decoration layer (20) comprising a metalloid or a metalloid alloy deposited on the surface of the proximal face, wherein said metalloid or metalloid alloy is combined with at least one oxide. It improves the metalloid decoration layer adhesion on the substrate and its corrosion resistance.
    Type: Grant
    Filed: June 9, 2016
    Date of Patent: November 28, 2023
    Assignee: Zanini Auto Grup, S.A.
    Inventors: Augusto Mayer Pujadas, Josep Maria Armengol I Rocaspana, Jerson Jair Peralta Morales
  • Patent number: 11821976
    Abstract: A module attachable to a wall to sense motion of a subject on the other side of the wall and to visually indicate the motion to operators on the module's side of the wall, sized for use in tactical operations. Embodiments of the module comprise at least one through-the-wall motion sensor and an indicator, which can include a light source, visible from the outside of the module to indicate the motion of a subject detected by the sensor. Embodiments of the module can optionally include various features, including an enclosure for containing all the components in a single module, electromagnetic shielding material to direct sensing capabilities of the sensors, adhesive for quickly removably securing the module to a wall in tactical operations, additional types of sensors, a microcontroller for controlling various variables in the sensors and light source.
    Type: Grant
    Filed: April 10, 2019
    Date of Patent: November 21, 2023
    Assignee: Jeral Innovations LLC
    Inventors: Jeremy Wolffbrandt, Allen Ciesliga
  • Patent number: 11822004
    Abstract: A radar, flying device including such a radar, processing method in a radar embedded in a flying device and associated computer program are disclosed. In one aspect, the radar includes a transceiver antenna including a plurality of radiating elements configured to transmit and receive an electromagnetic wave. The radar includes an antenna gain control unit, by activating/inhibiting radiating elements, in transmission and/or reception configured to keep the reception level of an electromagnetic wave below a determined threshold below the saturation zone of the antenna, as well as by activating/inhibiting radiating elements in reception, configured to compensate the amplitude variation of the ground/sea clutter, over the duration of the reception.
    Type: Grant
    Filed: November 24, 2020
    Date of Patent: November 21, 2023
    Assignee: Thales
    Inventors: Thierry Mazeau, Christian Renard, Eric Gagnepain
  • Patent number: 11817876
    Abstract: A range profile digitization circuit for converting a repeating analog input signal into a time series of digital amplitude values, the converter comprising: a signal quantizer arranged to receive the analog input signal and a threshold input and arranged to output a binary value quantized output signal based on a comparison of the input signal with the threshold signal; a plurality of samplers each arranged to sample and hold its input signal upon receipt of a trigger signal; and for each sampler: a plurality of decoders and a demultiplexer arranged to receive an output from the sampler and pass it to a selected one of said decoders based on a selector input. With a plurality of decoders associated with each of the samplers, each sampler can be re-used during the building up of the range profile.
    Type: Grant
    Filed: February 1, 2018
    Date of Patent: November 14, 2023
    Assignee: Novelda AS
    Inventors: Jørgen Andreas Michaelsen, Nikolaj Andersen, Olav Tonnaer Liseth, Håkon André Hjortland
  • Patent number: 11815553
    Abstract: The disclosure relates to apparatus and methods for self-testing of a duty cycle detector. Example embodiments include a circuit (201) comprising: a clock signal generator (205) configured to provide an output clock signal (203) having a duty cycle; a duty cycle detector (208) arranged to receive the output clock signal (203) and provide an output flag if the duty cycle of the clock signal (203) is outside a predetermined range; a controller (214) arranged to provide a duty cycle select signal (216) to the clock signal generator (205) to cause the clock signal (203) to have a duty cycle outside the predetermined range and to receive the output flag to confirm operation of the duty cycle detector (208).
    Type: Grant
    Filed: June 2, 2021
    Date of Patent: November 14, 2023
    Assignee: NXP USA, INC.
    Inventors: Cristian Pavao Moreira, Andreas Johannes Köllmann, Ulrich Moehlmann
  • Patent number: 11815624
    Abstract: A device may include a test signal generator and a receive antenna input. The device may include a switchable impedance matching circuit, coupled to the test signal generator and to a receive chain, to cause an impedance matching between the test signal generator and a component of the receive chain to be increased during a monitoring phase. The impedance matching during the monitoring phase enables one or more measurements based on a test signal generated by the test signal generator. The switchable impedance matching circuit may cause a partial impedance mismatching between the test signal generator and the component of the receive chain during a verification phase associated with verifying a return of the switchable impedance matching circuit to an impedance matching caused during the operational phase. The device may include a control circuit to verify operation of the returning of the switchable impedance matching circuit in the verification phase.
    Type: Grant
    Filed: January 10, 2022
    Date of Patent: November 14, 2023
    Assignee: Infineon Technologies AG
    Inventor: Grigory Itkin
  • Patent number: 11808840
    Abstract: There is provided a mmWave RTLS (Real-Time Location Sensing) system for detecting the presence of one or more objects. The system includes multiple anchors. Each anchor includes a mmWave radar subsystem that uses radar algorithms to detect one or more objects and determine the one or more location-based objects characteristics. The location-based object characteristics include one or more of the following: range, direction-of-arrival, velocity, absolute position, or logical position, each determined relative to one or more anchors.
    Type: Grant
    Filed: May 8, 2018
    Date of Patent: November 7, 2023
    Assignee: NODENS MEDICAL LTD.
    Inventors: Khalid Rajab, Rishi Das Gupta, Peter Alizadeh
  • Patent number: 11808886
    Abstract: According to an example aspect of the present invention, there is provided monitoring living facilities by a multichannel radar. A field of view within a frequency range from 1 to 1000 GHz, for example between 1 to 30 GHz, 10 to 30 GHz, 30 to 300 GHz or 300 to 1000 GHz, is scanned using a plurality of radar channels of the radar. Image units comprising at least amplitude and phase information are generated for a radar image on the basis of results of the scanning. Information indicating at least one error source of a physical movement of the radar and interrelated movements of targets within the field of view are determined on the basis of the image units. Results of the scanning are compensated on the basis of the determined error source. A radar image is generated on the basis of the compensated results.
    Type: Grant
    Filed: April 5, 2019
    Date of Patent: November 7, 2023
    Assignee: Teknologian tutkimuskeskus VTT Oy
    Inventors: Tero Kiuru, Mervi Hirvonen, Mikko Metso
  • Patent number: 11794782
    Abstract: The subject disclosure relates to features for improving the modularity and interoperability of sensors and in particular, sensors deployed for use in vehicle related sensing applications. In some aspects, the disclosed technology encompasses a sensor aggregation module (e.g., sensor pod) that includes a sensor enclosure having an interior volume configured for housing one or more sensors, a data port integrated into an exterior surface of the sensor enclosure, wherein the data port is configured to be electrically coupled to a vehicle data port, and a plurality of sensor ports disposed within an interior volume of the sensor enclosure, wherein the sensor ports are configured for modular connectivity to the one or more sensors.
    Type: Grant
    Filed: June 26, 2020
    Date of Patent: October 24, 2023
    Assignee: GM Cruise Holdings LLC
    Inventors: Brendan Hermalyn, Radu Raduta, Devin Cass
  • Patent number: 11796635
    Abstract: The disclosure relates to a radar transceiver having a transmitter comprising a phase shifter.
    Type: Grant
    Filed: August 2, 2021
    Date of Patent: October 24, 2023
    Assignee: NXP USA, INC.
    Inventors: Birama Goumballa, Gilles Montoriol, Cristian Pavao Moreira, Dominique Delbecq