Patents by Inventor Janusz A. Murakowski

Janusz A. Murakowski 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: 20250096905
    Abstract: A method and an apparatus are described that split a broadband optical signal into a plurality of narrow-band portions. Each of said narrow-band portions is combined in the same optical channel with an optical local oscillator (OLO). Furthermore, the OLO is spectrally separate from, or non-overlapping with, the corresponding narrow-band portion of the signal in the same channel. This functionality is achieved by launching the broadband optical signal and a local oscillator optical comb (LOOC) into separate waveguides at the input star coupler of an arrayed-waveguide grating. The waveguides of the output star coupler carry the narrow-band portions of the broadband optical signal along with the respective non-overlapping spectral lines of the OLO.
    Type: Application
    Filed: December 5, 2024
    Publication date: March 20, 2025
    Inventor: Janusz Murakowski
  • Patent number: 12176951
    Abstract: A system architecture is described that allows mapping of different RF-wave directions (e.g., Angles of Arrival or “AoA-s”) to different optical-carrier wavelengths. Such mapping enables the transmission of all information captured by a phased array, including spatial information of the incoming RF waves, using a single optical fiber.
    Type: Grant
    Filed: August 23, 2022
    Date of Patent: December 24, 2024
    Assignee: Phase Sensitive Innovations, Inc.
    Inventor: Janusz Murakowski
  • Patent number: 12176957
    Abstract: A method and an apparatus are described that split a broadband optical signal into a plurality of narrow-band portions. Each of said narrow-band portions is combined in the same optical channel with an optical local oscillator (OLO). Furthermore, the OLO is spectrally separate from, or non-overlapping with, the corresponding narrow-band portion of the signal in the same channel. This functionality is achieved by launching the broadband optical signal and a local oscillator optical comb (LOOC) into separate waveguides at the input star coupler of an arrayed-waveguide grating. The waveguides of the output star coupler carry the narrow-band portions of the broadband optical signal along with the respective non-overlapping spectral lines of the OLO.
    Type: Grant
    Filed: October 27, 2022
    Date of Patent: December 24, 2024
    Assignee: Phase Sensitive Innovations, Inc.
    Inventor: Janusz Murakowski
  • Publication number: 20240381010
    Abstract: An optical switch includes M switch input waveguides, M being an integer greater than 1; N switch output waveguides, N being an integer greater than M; a plurality of input-waveguide cores coupled to the M switch input waveguides; a plurality of input phase shifters respectively coupled to the plurality of input-waveguide cores; a plurality of output-waveguide cores coupled to the N switch output waveguides; a plurality of output phase shifters respectively coupled to the plurality of output-waveguide cores; an input aperture at which the plurality of input-waveguide cores coupled to the M input waveguides terminate; an output aperture at which the plurality of output-waveguide cores coupled to the N output waveguides terminate; and an interference region between the input aperture and the output aperture.
    Type: Application
    Filed: May 9, 2024
    Publication date: November 14, 2024
    Inventor: Janusz Murakowski
  • Publication number: 20240348343
    Abstract: An apparatus and methods for receiving polarization diverse radio signals. The apparatus includes a coherent light source configured to output an optical carrier signal, a dual polarization antenna, and a nested Mach-Zehnder Modulator. The nested Mach-Zehnder Modulator is configured to receive the optical carrier signal, a first RF electrical signal from a first output of a dual polarization antenna corresponding to a first linear polarization mode and a second RF electrical signal from a second output of the dual polarization antenna corresponding to a second linear polarization mode, modulate the optical carrier signal based on the first RF electrical signal and the second RF electrical signal to generate an upper optical sideband signal, a lower optical sideband signal, and output the upper and lower optical sideband signal separately.
    Type: Application
    Filed: April 11, 2024
    Publication date: October 17, 2024
    Inventors: Benjamin Mazur, Timothy Creazzo, Janusz Murakowski, Garrett Schneider, Shouyuan Shi
  • Publication number: 20240333393
    Abstract: A method of RF signal processing comprises receiving an incoming RF signal at each of a plurality of antenna elements that are arranged in a first pattern. The received RF signals from each of the plurality of antenna elements are modulated onto an optical carrier to generate a plurality of modulated signals that each have at least one sideband. The modulated signals are directed along a corresponding plurality of optical channels with outputs arranged in a second pattern corresponding to the first pattern. A composite optical signal is formed using light emanating from the outputs of the plurality of optical channels. Non-spatial information contained in at least one of the received RF signals is extracted from the composite signal.
    Type: Application
    Filed: June 11, 2024
    Publication date: October 3, 2024
    Inventors: Chris Schuetz, Janusz Murakowski, Garrett Schneider, Shouyuan Shi, Dennis Prather
  • Patent number: 12072623
    Abstract: This disclosure is directed to two-dimensional conformal optically-fed phased arrays and methods for manufacturing the same. The method includes providing a wafer substrate, depositing a first cladding layer on the wafer substrate, and depositing a core layer on the first cladding layer. The method further includes photolithographically patterning the core layer to provide a plurality of optical waveguide cores, and depositing a second cladding layer on the core layer to cover the plurality of optical waveguide cores to provide a plurality of optical waveguides. In addition, the method includes forming a plurality of antennas on the second cladding layer, each antenna of the plurality of antennas located near a termination of a corresponding optical waveguide of the plurality of optical waveguides, and providing a plurality of photodiodes on the second cladding layer, each photodiode of the plurality of photodiodes connected to a corresponding antenna.
    Type: Grant
    Filed: January 27, 2021
    Date of Patent: August 27, 2024
    Assignee: Phase Sensitive Innovations, Inc.
    Inventors: Shouyuan Shi, Dennis Prather, Peng Yao, Janusz Murakowski
  • Patent number: 12051859
    Abstract: In certain embodiments, a system includes an optical switch matrix, an optical lens coupled to the switch matrix, and a wireless transmitter coupled to the lens. The switch matrix is configured to switch first optical signals from input ports to output ports of the switch matrix, and output second optical signals that are based at least partially on the first optical signals. The lens is configured to transform wave formats of the second optical signals based on the output ports over which the second optical signals are received. The transmitter includes an antenna array and circuitry coupled to the array. The circuitry is configured to receive the second optical signals from the lens, convert the second optical signals into beamformed wireless signals in accordance with the transformed formats, and transmit the beamformed wireless signals, which signals have spatial characteristics in accordance with the transformed formats, over the array.
    Type: Grant
    Filed: December 3, 2021
    Date of Patent: July 30, 2024
    Assignees: FUTUREWEI TECHNOLOGIES, INC., PHASE SENSITIVE INNOVATIONS, INC.
    Inventors: Stefano Galli, Munawar Kermalli, Xiao-Feng Qi, Shouyuan Shi, Dennis Prather, Janusz Murakowski, Garrett Schneider
  • Publication number: 20240235479
    Abstract: A photonic image rejection radio frequency (RF) mixer and a receiver implementing the same may suppress undesired mirror image signals having frequencies at a spectral location that is mirror-symmetric, with respect to a local oscillator (LO), to that of a signal of interest. An upconverted optical beam corresponding to a captured RF beam is extracted by an optical processor. The upconverted optical beam is mixed with the LO to obtain a desired composite optical signal and an undesired composite optical signal, each providing a corresponding beat frequency optical signal at the same frequency. The desired and undesired composite optical signals are captured by multiple optical pickups with relative phase shifts in their beat frequency optical signals which are converted into corresponding electrical signals and combined to suppress the undesired signal.
    Type: Application
    Filed: March 24, 2022
    Publication date: July 11, 2024
    Inventors: Garrett Schneider, Janusz Murakowski
  • Patent number: 12021565
    Abstract: A method of RF signal processing comprises receiving an incoming RF signal at each of a plurality of antenna elements that are arranged in a first pattern. The received RF signals from each of the plurality of antenna elements are modulated onto an optical carrier to generate a plurality of modulated signals that each have at least one sideband. The modulated signals are directed along a corresponding plurality of optical channels with outputs arranged in a second pattern corresponding to the first pattern. A composite optical signal is formed using light emanating from the outputs of the plurality of optical channels. Non-spatial information contained in at least one of the received RF signals is extracted from the composite signal.
    Type: Grant
    Filed: November 29, 2022
    Date of Patent: June 25, 2024
    Assignee: Phase Sensitive Innovations, Inc.
    Inventors: Chris Schuetz, Janusz Murakowski, Garrett Schneider, Shouyuan Shi, Dennis Prather
  • Publication number: 20240184197
    Abstract: This disclosure is directed to two-dimensional conformal optically-fed phased arrays and methods for manufacturing the same. The method includes providing a substrate, depositing a first cladding layer on the substrate, and depositing a core layer on the first cladding layer. The method further includes photolithographically patterning the core layer to provide a plurality of optical waveguide cores, and depositing a second cladding layer on the core layer to cover the plurality of optical waveguide cores to provide a plurality of optical waveguides. In addition, the method includes forming a plurality of antennas on the second cladding layer, each antenna of the plurality of antennas located near a termination of a corresponding optical waveguide of the plurality of optical waveguides, and providing a plurality of photodiodes on the second cladding layer, each photodiode of the plurality of photodiodes connected to a corresponding antenna.
    Type: Application
    Filed: February 9, 2024
    Publication date: June 6, 2024
    Inventors: Shouyuan Shi, Dennis Prather, Peng Yao, Janusz Murakowski
  • Publication number: 20240162622
    Abstract: Novel RF-Photonic antennas and antenna arrays, receivers, transmitters, transceivers and components thereof, and related methods. RF-photonic receivers and transmitters have advantages in processing information of received RF signals and/or RF signals to be transmitted in the optical realm.
    Type: Application
    Filed: September 20, 2023
    Publication date: May 16, 2024
    Applicant: Phase Sensitive Innovations, Inc.
    Inventor: Janusz Murakowski
  • Publication number: 20240113784
    Abstract: An apparatus and method is provided to correlate radiation beams, such as RF beams, optical beams, and/or acoustic beams. A plurality of sensors are distributed according to a first pattern and disposed adjacent to a first interference region. The plurality of sensors may capture incoming radiation and convert the incoming radiation to a plurality of signals. A plurality of radiating elements are distributed according to a second pattern that differs from the first pattern and are disposed adjacent to a second interference region. A plurality of channels are connected between the sensors and the radiating elements, each channel connecting a corresponding sensor to receive a corresponding signal. Each of the radiating elements is in communication with a corresponding one of the plurality of channels to provide an outgoing radiation corresponding to the signal received by the channel.
    Type: Application
    Filed: November 14, 2023
    Publication date: April 4, 2024
    Inventors: Janusz Murakowski, Garrett Schneider
  • Patent number: 11909424
    Abstract: In certain embodiments, an apparatus includes a switch matrix and frequency band isolation circuitry. The switch matrix is configured to receive, at an input port, an electrical signal, which corresponds to a transmission signal received at antennas of an antenna array. The transmission signal corresponds to a transmission spatial sector of the array. The electrical signal includes first and second signal portions in first and second frequency bands, respectively, the electrical signal having been generated from an optical signal that corresponds to the transmission signal. The switch matrix is configured to direct, via an output port and in accordance with a control signal, the electrical signal to a first of multiple signal conversion paths.
    Type: Grant
    Filed: December 3, 2021
    Date of Patent: February 20, 2024
    Assignees: Futurewei Technologies, Inc., Phase Sensitive Innovations, Inc.
    Inventors: Stefano Galli, Munawar Kermalli, Xiao-Feng Qi, Shouyuan Shi, Dennis Prather, Janusz Murakowski, Garrett Schneider
  • Publication number: 20240056186
    Abstract: An optical imaging system and method that reconstructs RF sources in k-space by utilizing interference amongst modulated optical beams. The system and method involves recording with photodetectors the interference pattern produced by RF-modulated optical beams conveyed by optical fibers having unequal lengths. The photodetectors record the interference, and computational analysis using known tomography reconstruction methods is performed to reconstruct the RF sources in k-space.
    Type: Application
    Filed: October 24, 2023
    Publication date: February 15, 2024
    Inventors: Janusz Murakowski, Christopher Schuetz, Garrett Schneider, Shouyuan Shi
  • Publication number: 20240006759
    Abstract: The subject matter described herein relates to various antenna element configurations, antenna array configurations, their operations including various systems and methods to generate modulated data for transmission by an RF antenna array via an optical processing engine. The subject matter includes optical processing engine structure and methods (e.g., modulating in the optical domain, MIMO and spatial modulation via RF beam formation, coherent transmission of RF signal components, coherent operation of spatially separate RF antenna arrays) that may be implemented with the various RF antenna array structures. In some examples, the system combines the virtues of digital, analog and optical processing to arrive at a solution for scalable, non-blocking, simultaneous transmission to multiple UE-s. Much of the system architecture is independent of the RF carrier frequency, and different frequency bands can be accessed easily and rapidly by tuning the optical source (TOPS).
    Type: Application
    Filed: September 19, 2023
    Publication date: January 4, 2024
    Inventor: Janusz Murakowski
  • Publication number: 20230420841
    Abstract: An RF receiver may include antenna elements to receive RF signals, and electro-optic modulators to generate corresponding upconverted optical signals by mixing an RF signal with an optical carrier beam. The RF receiver may include a transmission array having a first bundle of optical waveguides that receive and transmit upconverted optical signals from their ends. The ends may be arranged in a first pattern. The RF receiver may include an interference space to receive the upconverted optical signals to form a composite beam, and an array of single mode optical fibers that have lenses positioned in a detection plane to receive a portion of the composite beam. The first pattern of the ends generates an RF emitter interference pattern at the detection plane, and the single mode optical fiber lenses have a geometric arrangement that corresponds to the first RF emitter interference pattern.
    Type: Application
    Filed: September 7, 2023
    Publication date: December 28, 2023
    Inventors: Garrett Schneider, Christopher Schuetz, Janusz Murakowski, Tom Dillon, Shouyuan Shi, Dennis Prather
  • Patent number: 11855692
    Abstract: An apparatus and method is provided to correlate radiation beams, such as RF beams, optical beams, and/or acoustic beams. A plurality of sensors are distributed according to a first pattern and disposed adjacent to a first interference region. The plurality of sensors may capture incoming radiation and convert the incoming radiation to a plurality of signals. A plurality of radiating elements are distributed according to a second pattern that differs from the first pattern and are disposed adjacent to a second interference region. A plurality of channels are connected between the sensors and the radiating elements, each channel connecting a corresponding sensor to receive a corresponding signal. Each of the radiating elements is in communication with a corresponding one of the plurality of channels to provide an outgoing radiation corresponding to the signal received by the channel.
    Type: Grant
    Filed: January 28, 2021
    Date of Patent: December 26, 2023
    Assignee: Phase Sensitive Innovations, Inc.
    Inventors: Janusz Murakowski, Garrett Schneider
  • Patent number: 11838050
    Abstract: An optical imaging system and method that reconstructs RF sources in k-space by utilizing interference amongst modulated optical beams. In some examples, the system and method may record the interference pattern produced by RF-modulated optical beams conveyed by optical fibers having unequal lengths. The photodetectors record the interference, and computational analysis using known tomography reconstruction methods is performed to reconstruct the RF sources in k-space.
    Type: Grant
    Filed: January 18, 2021
    Date of Patent: December 5, 2023
    Assignee: Phase Sensitive Innovations, Inc.
    Inventors: Janusz Murakowski, Christopher Schuetz, Garrett Schneider, Shouyuan Shi
  • Patent number: 11799202
    Abstract: The subject matter described herein relates to various antenna element configurations, antenna array configurations, their operations including various systems and methods to generate modulated data for transmission by an RF antenna array via an optical processing engine. The subject matter includes optical processing engine structure and methods (e.g., modulating in the optical domain, MIMO and spatial modulation via RF beam formation, coherent transmission of RF signal components, coherent operation of spatially separate RF antenna arrays) that may be implemented with the various RF antenna array structures. In some examples, the system combines the virtues of digital, analog and optical processing to arrive at a solution for scalable, non-blocking, simultaneous transmission to multiple UE-s. Much of the system architecture is independent of the RF carrier frequency, and different frequency bands can be accessed easily and rapidly by tuning the optical source (TOPS).
    Type: Grant
    Filed: May 7, 2021
    Date of Patent: October 24, 2023
    Assignee: Phase Sensitive Innovations, Inc.
    Inventor: Janusz Murakowski