Packet Tunneling in a Wireless Communication Network

    公开(公告)号:US20240388962A1

    公开(公告)日:2024-11-21

    申请号:US18261553

    申请日:2022-01-13

    Abstract: A transmit network node (14, 20) is configured for use in a wireless communication network (10). The transmit network node (14, 20) tunnels packets (18) from the transmit network node (14, 20) to a receive network node (20, 14) in the wireless communication network (10). The transmit network node (14, 20) also transmits, to the receive network node (20, 14), signaling (26) that indicates which tunneled packets (18) carry application layer data from the same application layer packet (16), how many tunneled packets (18) carry application layer data from the same application layer packet (16), and/or a size of an application layer packet (16). Based on the signaling (26), the receive network node (20, 14) in some embodiments schedules transmission of the tunneled packets (18) from the receive network node (20, 14) and/or allocates radio resources for transmission of the tunneled packets (18) from the receive network node (20, 14) towards a wireless device (12) served by the receive network node (20, 14).

    Direct Access To Storage Device Via Switch Data Plane

    公开(公告)号:US20240333437A1

    公开(公告)日:2024-10-03

    申请号:US18293852

    申请日:2022-07-22

    CPC classification number: H04L1/1867 H04L47/34

    Abstract: Some implementations relate to direct access to a storage device using a data plane of a switch. A response signal for a first packet transmitted from the switch to the storage device is received from a storage device. The first packet encapsulates a packet sequence number and first data to be transmitted by the switch. The response signal contains the packet sequence number. If the response signal is a negative acknowledgement response signal, a first state sequence number of the switch is updated with the packet sequence number contained in the response signal. The first state sequence number represents a sequence number of a packet to be transmitted by the switch. The first state sequence number and second data to be transmitted by the switch are encapsulated in a second packet to be transmitted to the storage device.

    METHOD AND SYSTEM FOR ROBUST STREAMING OF DATA

    公开(公告)号:US20240283746A1

    公开(公告)日:2024-08-22

    申请号:US18651190

    申请日:2024-04-30

    Applicant: Cornami, Inc.

    CPC classification number: H04L47/34 H04L47/32 H04L49/90

    Abstract: A method and system for providing robust streaming of data from a multi-core die is disclosed. The techniques include using a high bandwidth memory (HBM) device as retransmit buffers for large amounts of data to ensure robust communication in relatively high round trip-transmission time (RTT) transmission. Another technique is supporting two or more Ethernet ports between components to both transmit the same data packets on the two ports to insure robustness. Another technique is to use sequence numbers and send data packets from the different ports in a round robin fashion and reorder the packets upon receipt of an external device. Another technique is dynamically adding and removing paths for data packets between devices with multiple ports based on the quality of the path.

    Waveform synchronization system for data received from a network

    公开(公告)号:US12068844B2

    公开(公告)日:2024-08-20

    申请号:US17980519

    申请日:2022-11-03

    CPC classification number: H04J3/0661 A61B5/02405 H04L47/34 H04L69/16 H04L67/12

    Abstract: A system that synchronizes waveforms received over a network from one or more devices, such as medical devices. Because of network delays or losses, waveforms can arrive at varying rates and times. Precise post-synchronization of the received data, to within a few milliseconds, is needed for accurate analysis. Applications include automatic classification of waveforms, such as detection of myocardial infraction from heart monitor waveforms. Synchronization uses sequence numbers assigned by each device, but must also account for sequence number wraparounds. Waveforms may also be synchronized across devices, by calculating the bias between within-device synchronized times and a common time source or common disturbance. Waveform data may also be stored data in a database or data warehouse; embodiments may index the data using a key with a date-time prefix and a hash code suffix, to support distributed indexing while reducing the chance of hash collisions to a very small probability.

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