HYBRID DIGITAL-ANALOG MMWAVE REPEATER/RELAY WITH FULL DUPLEX

    公开(公告)号:US20220014248A1

    公开(公告)日:2022-01-13

    申请号:US17487298

    申请日:2021-09-28

    Inventor: Solyman ASHRAFI

    Abstract: A repeater for transmitting millimeter wave signals. A transceiver communicates with a plurality of remote locations over millimeter wave communications links. The of transceiver comprises a patch antenna array including a plurality of patch antennas. The plurality of patch antennas include a transmitter array portion in a first orientation for transmitting signals and a receiver array portion in a second orientation for receiving signals. The receiver array portion is vertically separated from the transmitter array portion by a predetermined distance. The first and second orientations and the predetermined distance vertically separating the transmitter array portion from the receiver array portion limit interference between the transmitted signals and the received signals. Transceiver circuitry transmits the millimeter wave signals with at least a first millimeter wave transceiver at first one of the plurality of remote locations and a second millimeter wave transceiver at a second one of the plurality of remote locations.

    POINT-TO-MULTIPOINT OR MULTIPOINT-TO-MULTIPOINT MESH SELF-ORGANIZED NETWORK OVER WIGIG STANDARDS WITH NEW MAC LAYER

    公开(公告)号:US20210076234A1

    公开(公告)日:2021-03-11

    申请号:US17081746

    申请日:2020-10-27

    Inventor: Solyman ASHRAFI

    Abstract: A backhaul system comprises a small cell mesh network including a plurality of small cell mesh network backhaul nodes providing a backhaul network to provide an interconnection between at least one first network node for providing access to a core network and at least one second network node for providing access to an edge network. The small cell mesh network comprises a self-organized network (SON). At least one transmitter at each of the plurality of small cell mesh network backhaul nodes establishes communication links with other small cell mesh network backhaul nodes within the small cell mesh network providing the backhaul network. A controller for controlling communication link configuration by the at least one transmitter between the plurality of small cell mesh network backhaul nodes of the small cell mesh network providing the backhaul network. The controller is further configured to implement the self-organized network (SON) that reconfigure new communications links responsive to a broken communications link within the small cell mesh network providing the backhaul network. The communication link configurations are established by the controller using WiGig standards and a MAC layer configured to transmit on a wireless link of the backhaul network.

    FULL DUPLEX USING OAM
    6.
    发明申请

    公开(公告)号:US20210344117A1

    公开(公告)日:2021-11-04

    申请号:US17365551

    申请日:2021-07-01

    Inventor: Solyman ASHRAFI

    Abstract: A transceiver for transmitting and receiving full duplex communications includes transmitter and receiver circuitry. The transmitter circuitry transmits from a first location first signals having a first orthogonal function +ln applied thereto on a first channel on a first frequency band to a second location. The receiver circuitry receives at the first location second signals on a second channel on the first frequency band from the second location having a second orthogonal function −ln applied thereto and the first signals having the first orthogonal function +ln applied thereto on the first channel on the first frequency band from the first location at a same time on the first frequency band. The receiver circuitry only processes received signals including the second orthogonal function −ln. The first signals on the first channel are transmitted on the first frequency band on the first frequency band at a same time the second signals on the second channel are received on the first frequency band on the first frequency band.

    UNIVERSAL QUANTUM COMPUTER, COMMUNICATION, QKD SECURITY AND QUANTUM NETWORKS USING OAM QU-DITS WITH DIGITAL LIGHT PROCESSING

    公开(公告)号:US20210142205A1

    公开(公告)日:2021-05-13

    申请号:US17121926

    申请日:2020-12-15

    Inventor: Solyman ASHRAFI

    Abstract: A quantum computing system comprises an input port for receiving a modulated data stream comprising a plurality of bits. Orbital angular momentum processing circuitry receives the modulated data stream and applying at least one of at least three orbital angular momentum function modes to each of the plurality of bits of the modulated data stream to generate a qudit. The qudit comprises a quantum unit of information having any of d states where d has a value of at least 3. Each of the at least three orbital angular momentum function modes comprise separate orbital angular momentum states that are orthogonal to each other. A MicroElectroMechanical system (MEMS) circuitry associated with the orbital angular momentum processing circuitry generates a hologram for applying the at least one of the at least three orbital angular momentum function modes to each of the plurality of bits of the modulated data stream to generate the qudit. At least one quantum gate receives each of the qudits via at least one gate input and generates a quantum circuit output via at least one gate output responsive thereto. An output port for outputs the generated quantum circuit output.

    MINIATURIZED DEVICE TO STERILIZE SURFACES FROM COVID-19 AND OTHER VIRUSES AND BACTERIA

    公开(公告)号:US20210085814A1

    公开(公告)日:2021-03-25

    申请号:US17039502

    申请日:2020-09-30

    Inventor: Solyman ASHRAFI

    Abstract: A system for sterilizing biological material comprising beam generation circuitry for generating a radiating wave having radiating energy therein at a predetermined frequency therein. A controller controls the radiating wave generation at the predetermined frequency. The predetermined frequency equals a resonance frequency of a particular biological material and is determined responsive to a plurality of parameters from an influenza virus. The predetermined frequency induces a mechanical resonance vibration at the resonance frequency of the particular biological material within the particular biological material for destroying a capsid of the particular biological material. Radiating circuitry projects the radiating wave on a predetermined location to destroy the particular biological material at the predetermined location.

    ELECTROMAGNETIC KNOT APPLICATIONS IN RADIO WAVES FOR WIRELESS AND PHOTONICS FOR QUANTUM COMPUTING

    公开(公告)号:US20200119435A1

    公开(公告)日:2020-04-16

    申请号:US16579298

    申请日:2019-09-23

    Inventor: Solyman ASHRAFI

    Abstract: A system for transmitting signals includes processing circuitry for receiving at least one input signal for transmission from the processing circuitry to a second location. Electromagnetic knot processing circuitry receives processed signals from the first processing circuitry and applies an electromagnetic knot to the received processed signal before transmission to the second location. A first signal degradation caused by environmental factors of the electromagnetic knot processed signal is improved over a second signal degradation caused by the environmental factors of a non-electromagnetic knot processed signal.

    PATCH ANTENNA FOR WAVE AGILITY
    10.
    发明申请

    公开(公告)号:US20190372671A1

    公开(公告)日:2019-12-05

    申请号:US16530528

    申请日:2019-08-02

    Inventor: Solyman ASHRAFI

    Abstract: A system for enabling signal penetration into a building comprising first circuitry, located on an exterior of the building, for receiving signals at a first frequency that experiences losses when penetrating into an interior of the building and converting the received signals at the first frequency into a first format that overcome losses caused by penetrating into the interior of the building over a wireless communications link. A first patch antenna array associated with the first circuitry transmits the signals in the first format into the interior of the building via a wireless communications link and for receives signals from the interior of the building in the first format via the wireless communications link. Second circuitry, located on the interior of the building and communicatively linked with the first circuitry via the wireless communications link, receives and transmits the converted received signals in the first format that counteracts the losses caused by penetrating into the interior of the building from/to the first circuitry. A second patch antenna array associated with the second circuitry transmits the signals in the first format to the exterior of the building via the wireless communications link and for receives signals from the exterior of the building in the first format via the wireless communications link.

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