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US Patent 11652827 Virtualized intrusion detection and prevention in autonomous vehicles

Patent 11652827 was granted and assigned to NVIDIA on May, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Current Assignee
NVIDIA
NVIDIA
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116528270
Patent Inventor Names
Mark Overby0
Yong Zhang0
Varadharajan Kannan0
Rick Dingle0
Nicola Di Miscio0
Francesco Saracino0
Date of Patent
May 16, 2023
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Patent Application Number
164353640
Date Filed
June 7, 2019
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Patent Citations
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US Patent 10289469 Reliability enhancement utilizing speculative execution systems and methods
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US Patent 10885698 Method for programmable timeouts of tree traversal mechanisms in hardware
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Patent Citations Received
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US Patent 11991200 Digital access control using time-based baseline access distributions
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US Patent 12095805 Autonomous vehicle security measures in response to an attack on an in-vehicle communication network
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US Patent 11785024 Deploying neural-trojan-resistant convolutional neural networks
Patent Primary Examiner
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Tri M Tran
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CPC Code
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H04L 2012/40215
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H04L 9/14
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H04L 2209/84
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H04L 67/30
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H04L 12/4641
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H04L 2012/40273
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H04L 63/1416
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H04L 63/1458
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Various approaches are disclosed to virtualizing intrusion detection and prevention. Disclosed approaches provide for an embedded system having a hypervisor that provides a virtualized environment supporting any number of guest OSes. The virtualized environment may include a security engine on an internal communication channel between the guest OS and a virtualized hardware interface (e.g., an Ethernet or CAN interface) to analyze network traffic to protect the guest OS from other guest OSes or other network components, and to protect those network components from the guest OS. The security engine may be on a different partition than the guest OS and the virtualized hardware interface providing the components with isolated execution environments that protect against malicious code execution. Each guest OS may have its own security engine customized for the guest OS to account for what is typical or expected traffic for the guest OS.

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