SYSTEMS AND METHODS FOR UTILIZING QUANTUM ENTROPY IN SINGLE PACKET AUTHORIZATION FOR SECURE NETWORK CONNECTIONS

    公开(公告)号:US20210167953A1

    公开(公告)日:2021-06-03

    申请号:US16699354

    申请日:2019-11-29

    Abstract: A device may receive, from a client device, a request with a single packet authorization (SPA) packet that includes data identifying a universal client device identifier (UID), a counter, a first one-time password generated based on a first shared key, the UID, and the counter. The device may generate a second shared key associated with the UID, and may compare the SPA packet to a comparison message authentication code (MAC) generated based on the second shared key, the UID, and the counter. The device may determine whether the SPA packet matches the comparison MAC, and may validate the client device when the SPA packet matches the comparison MAC. The device may provide a MAC associated with the SPA packet to the client device to enable the client device to validate the device for a secure communication based on establishing a pre-master key with the client device.

    STORING AND PROVIDING RAW SATELLITE DATA
    2.
    发明申请

    公开(公告)号:US20200333469A1

    公开(公告)日:2020-10-22

    申请号:US16389377

    申请日:2019-04-19

    Abstract: A microservice node can store first raw satellite data, associated with a first satellite constellation, in a first electronic file in a first data store, can combine the first electronic file and one or more second electronic files, associated with the first satellite constellation, into a first compressed electronic file, and can store the first compressed electronic file in a second data store. The first raw satellite data and second raw satellite data can be received during a particular time period. The second data store can include a second compressed electronic file that includes third raw satellite data associated with a second satellite constellation. The microservice node can receive a request from a client device, can combine the first compressed electronic file and the second compressed electronic file into a third compressed electronic file based on the request, and can transmit the third compressed electronic file to the client device.

    STORING AND PROVIDING RAW SATELLITE DATA

    公开(公告)号:US20220326391A1

    公开(公告)日:2022-10-13

    申请号:US17809992

    申请日:2022-06-30

    Abstract: A microservice node can store first raw satellite data, associated with a first satellite constellation, in a first electronic file in a first data store, can combine the first electronic file and one or more second electronic files, associated with the first satellite constellation, into a first compressed electronic file, and can store the first compressed electronic file in a second data store. The first raw satellite data and second raw satellite data can be received during a particular time period. The second data store can include a second compressed electronic file that includes third raw satellite data associated with a second satellite constellation. The microservice node can receive a request from a client device, can combine the first compressed electronic file and the second compressed electronic file into a third compressed electronic file based on the request, and can transmit the third compressed electronic file to the client device.

    PROVIDING A LOCATION AS A SERVICE
    4.
    发明申请

    公开(公告)号:US20200348419A1

    公开(公告)日:2020-11-05

    申请号:US16398839

    申请日:2019-04-30

    Abstract: A microservice node can receive a request for information identifying a corrected physical location of a client device. The request can include raw satellite data associated with the client device. The microservice node can convert the raw satellite data to a Radio Technical Commission for Maritime Services (RTCM) format. The microservice node can determine, based on converting the raw satellite data to the RTCM format, an estimated physical location of the client device. The microservice node can receive, based on transmitting a request to a network real-time kinematics (RTK) device, corrections data associated with the estimated physical location of the client device. The microservice node can determine, using a cloud RTK engine, the corrected physical location of the client device based on the estimated physical location and corrections data. The microservice node can transmit, to the client device, the information identifying the corrected physical location of the client device.

    STATIC VIRTUAL REFERENCE STATION AGENTS FOR GLOBAL NAVIGATION SATELLITE SYSTEM CORRECTIONS

    公开(公告)号:US20200301026A1

    公开(公告)日:2020-09-24

    申请号:US16362093

    申请日:2019-03-22

    Abstract: A microservice node can include a network real-time kinematics (RTK) device to receive raw satellite data associated with a physical reference station via a first message in a first message queue, to receive static virtual location data associated with a static virtual reference station (VRS) agent, to generate corrections data for the static VRS agent based on the raw satellite data and the static virtual location data, and to transmit the corrections data to the static VRS agent. The microservice node can include the static VRS agent to publish the corrections data in a second message in a second message queue. The microservice node can include an adapter device to determine that the client device is located within a geographic area associated with the static VRS agent and to transmit the corrections data from the second message queue to the client device.

    STATIC VIRTUAL REFERENCE STATION AGENTS FOR GLOBAL NAVIGATION SATELLITE SYSTEM CORRECTIONS

    公开(公告)号:US20220260727A1

    公开(公告)日:2022-08-18

    申请号:US17661952

    申请日:2022-05-04

    Abstract: A microservice node can include a network real-time kinematics (RTK) device to receive raw satellite data associated with a physical reference station via a first message in a first message queue, to receive static virtual location data associated with a static virtual reference station (VRS) agent, to generate corrections data for the static VRS agent based on the raw satellite data and the static virtual location data, and to transmit the corrections data to the static VRS agent. The microservice node can include the static VRS agent to publish the corrections data in a second message in a second message queue. The microservice node can include an adapter device to determine that the client device is located within a geographic area associated with the static VRS agent and to transmit the corrections data from the second message queue to the client device.

    PROVIDING A LOCATION AS A SERVICE

    公开(公告)号:US20220066042A1

    公开(公告)日:2022-03-03

    申请号:US17454319

    申请日:2021-11-10

    Abstract: A microservice node can receive a request for information identifying a corrected physical location of a client device. The request can include raw satellite data associated with the client device. The microservice node can convert the raw satellite data to a Radio Technical Commission for Maritime Services (RTCM) format. The microservice node can determine, based on converting the raw satellite data to the RTCM format, an estimated physical location of the client device. The microservice node can receive, based on transmitting a request to a network real-time kinematics (RTK) device, corrections data associated with the estimated physical location of the client device. The microservice node can determine, using a cloud RTK engine, the corrected physical location of the client device based on the estimated physical location and corrections data. The microservice node can transmit, to the client device, the information identifying the corrected physical location of the client device.

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