UNIVERSAL FILE VIRTUALIZATION WITH DISAGGREGATED CONTROL PLANE, SECURITY PLANE AND DECENTRALIZED DATA PLANE

    公开(公告)号:US20250004996A1

    公开(公告)日:2025-01-02

    申请号:US18883060

    申请日:2024-09-12

    Applicant: PETER CHACKO

    Inventor: PETER CHACKO

    Abstract: The present disclosure relates to Universal File Virtualization (UFV) that functions like a single virtual data hub spanning on-premise storage at various data silos, data centers cloud data resources stored in IaaS, PaaS and SaaS, remote office and branch office and hybrid-clouds primarily catering secondary data storage combining cyber resilience technologies, information security, file storage and object storage technologies. The proposed solution is built upon disaggregated control plane, security plane and decentralized data plane architecture. The system controller, security controller and Universal File System modules implement various file virtualization, security or data services algorithms to data that passes through it. The present disclosure also brings in a new concept called UFV, implementing a secure, UFS spanning all disparate data sources of a corporation distributed across geographies and cloud services, with centralized control plane, security plane and a decentralized data plane built out of secure vaults controlled by a data controller.

    FINE-GRAINED AND COARSE-GRAINED CONGESTION WINDOW SYNCHRONIZATION FOR TCP

    公开(公告)号:US20240259324A1

    公开(公告)日:2024-08-01

    申请号:US18161519

    申请日:2023-01-30

    CPC classification number: H04L47/27 H04L47/193 H04L47/125

    Abstract: Systems and methods are provided for improved TCP congestion control designed to address “mixed coarse-grained-fine-grained signal” scenarios. A TCP sender of the present technology achieves this improvement by leveraging two TCP congestion windows for a TCP connection: (1) a “fine-grained TCP signal-dependent congestion window” which is adjusted in response to “fine-grained” TCP congestion signals (as intelligently classified/defined by the present technology); and (2) a “coarse-grained TCP signal-dependent congestion window” which is adjusted in response to “coarse-grained” TCP congestion signals (as intelligently classified/defined by the present technology). With these two novel/unique congestion windows at disposal, the TCP sender can then dynamically (and intelligently) select an appropriate congestion window for dictating packet transmission for a TCP connection (e.g., the contemporaneously smaller congestion window). The TCP sender can also dynamically (and intelligently) synchronize the two congestion windows in order to ensure smoother transitions between utilized congestion windows.

    Network Protocol for View Replication Over Unreliable Networks

    公开(公告)号:US20230421669A1

    公开(公告)日:2023-12-28

    申请号:US18244404

    申请日:2023-09-11

    CPC classification number: H04L69/16 H04L47/193

    Abstract: Methods and systems for providing a network protocol for view replication over an unreliable network are described herein. A sender and a receiver may apply a branching time model to the history of views to replicate the views consistently. The sender may send a first data packet to receiver. The first data packet may comprise a first sequence number identifying the first data packet, a source version number, and a first set of one or more changes to be applied to a first state identified by the source version number. Based on a determination that an acknowledgment message indicating receipt of the first data packet is not received, the sender may send a second data packet to the client device. The content of the second data packet may be determined based on the first data packet.

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