18373698. SECURE BI-DIRECTIONAL NETWORK CONNECTIVITY SYSTEM BETWEEN PRIVATE NETWORKS simplified abstract (Oracle International Corporation)

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SECURE BI-DIRECTIONAL NETWORK CONNECTIVITY SYSTEM BETWEEN PRIVATE NETWORKS

Organization Name

Oracle International Corporation

Inventor(s)

Lucas Michael Kreger-stickles of Seattle WA (US)

Abhiman Yashpala Karkera of San Jose CA (US)

Dhwanish Pramthesh Shah of Sunnyvale CA (US)

Guanhong Pei of Everett WA (US)

Clayton Matthew Magouyrk of Seattle WA (US)

Paul James Cainkar of Seattle WA (US)

SECURE BI-DIRECTIONAL NETWORK CONNECTIVITY SYSTEM BETWEEN PRIVATE NETWORKS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18373698 titled 'SECURE BI-DIRECTIONAL NETWORK CONNECTIVITY SYSTEM BETWEEN PRIVATE NETWORKS

Simplified Explanation

The Secure Private Network Connectivity System (SNCS) is a system within a Cloud Service Provider Infrastructure (CSPI) that enables secure private network connectivity between external resources in a customer's on-premise environment and resources in the cloud without manual configuration.

  • The SNCS provides secure private bi-directional network connectivity between external resources in a customer's external site representation and resources in the customer's Virtual Cloud Network (VCN) in the cloud.
  • The system offers high performance, scalability, and high availability for site-to-site network connections by utilizing a robust infrastructure of network elements and computing nodes.

Potential Applications

The technology can be applied in various industries such as finance, healthcare, and government where secure private network connectivity is crucial for data protection and compliance.

Problems Solved

1. Eliminates the need for manual configuration and setup of site-to-site network connectivity, reducing the risk of human error. 2. Provides a secure and efficient way to connect on-premise resources with cloud resources without exposing sensitive data to external threats.

Benefits

1. Enhanced security and privacy for data transmission between on-premise and cloud environments. 2. Improved network performance and scalability for seamless data transfer. 3. Simplified management of network connectivity without the need for constant manual intervention.

Potential Commercial Applications

"Secure Private Network Connectivity System for Cloud Service Providers: Enhancing Data Security and Efficiency"

Possible Prior Art

Prior art in the field of cloud networking solutions may include existing technologies that provide secure network connectivity between on-premise environments and cloud infrastructures, such as virtual private networks (VPNs) and software-defined networking (SDN) solutions.

Unanswered Questions

== How does the SNCS ensure data privacy and security during network transmission? The article does not delve into the specific encryption protocols or security measures implemented by the SNCS to protect data during network transmission.

== What are the potential limitations or challenges of implementing the SNCS in a large-scale enterprise environment? The article does not address the scalability or compatibility issues that may arise when deploying the SNCS in complex enterprise networks with diverse infrastructure components.


Original Abstract Submitted

A secure private network connectivity system (SNCS) within a cloud service provider infrastructure (CSPI) is described that provides secure private network connectivity between external resources residing in a customer's on-premise environment and the customer's resources residing in the cloud. The SNCS provides secure private bi-directional network connectivity between external resources residing in a customer's external site representation and resources and services residing in the customer's VCN in the cloud without a user (e.g., an administrator) of the enterprise having to explicitly configure the external resources, advertise routes or set up site-to-site network connectivity. The SNCS provides a high performant, scalable, and highly available site-to-site network connection for processing network traffic between a customer's on-premise environment and the CSPI by implementing a robust infrastructure of network elements and computing nodes that are used to provide the secure site to site network connectivity.