Engine Computer Mediator for Secure Remote Data Transmission
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Organizations face challenges in providing secure access to corporate systems and data for remote workforces due to the increasing need for remote connections, which are vulnerable to information security violations and data breaches, especially with the rise of cloud-based services.
Innovation Solution
A computerized method for secure communication between a client computer and a remote computer using an engine computer that facilitates encrypted data transmission through secured end-to-end communication channels, with the engine computer decrypting and injecting input data into a remote connection client and encrypting output data for secure processing and rendering.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If remote connection is established for remote work access, then employees can work remotely and access corporate resources, but the connection becomes vulnerable to security violations and data breaches
Solution Approach 1:
The patent introduces a remote connection terminal as an intermediary device between the client computer and the corporate network. This terminal acts as a mediator that establishes the remote connection while isolating the client computer from direct exposure to the corporate network, thereby enabling remote work capability while maintaining data security through the intermediary layer.
Solution Approach 2:
The patent segments the remote connection system into three distinct components: the client computer, the remote connection terminal, and the corporate network. By dividing the connection path into separate segments with the terminal as an independent node, the system enables remote access while creating security boundaries that protect the corporate network from direct client computer threats.
2Reliability
If security measures such as antivirus software and firewalls are implemented, then data protection is improved, but the complexity of the system increases
Solution Approach 1:
The patent implements security measures in advance by establishing the remote connection terminal before any data transmission occurs. The terminal is pre-configured with security protocols and acts as a predetermined barrier, eliminating the need for complex real-time security interventions and reducing overall system complexity while maintaining strong data protection.
Solution Approach 2:
The remote connection terminal serves as a security intermediary that simplifies the security architecture. Instead of implementing multiple complex security layers on the client computer and corporate network, the terminal consolidates security functions in one location, reducing system complexity while maintaining comprehensive data protection.
3Adaptability or versatility
If cloud-based services are used to increase accessibility, then remote access capability is improved, but the vulnerability to cyberattacks increases
Solution Approach 1:
The remote connection terminal acts as a protective intermediary between the cloud-based corporate network and the client computer. It enables cloud accessibility while filtering and securing all communications, thereby maintaining high adaptability and accessibility while reducing vulnerability to cyberattacks through the intermediary security layer.
Solution Approach 2:
The patent segments the cloud connection architecture by inserting the remote connection terminal as a separate security boundary. This segmentation allows cloud services to remain highly accessible while creating isolated zones that prevent cyberattacks from propagating between the client computer and the cloud-based corporate network.
Data Source
AI summary
There are provided various of methods and systems of secure communication between a client computer and a remote computer. One method provides an engine computer operatively connected to the client computer and the remote computer, and configured to accommodate a remote connection (RC) client, while the remote computer is configured to accommodate a RC server. The engine computer is configured to, upon receiving encrypted input data from the client computer, decrypt the encrypted input data into input data, inject the input data to the RC client, and transmit by the RC client to the RC server the input data to be processed by the remote computer to generate output data. The engine computer is further configured to receive, by the RC client from the RC server, the output data, transmit the output data to the output peripheral component through a second secured end-to-end communication channel established there between.


