Remote Premises and Vehicle Control Authentication Against Unauthorized Access
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Solution Overview
Problem
Existing control, monitoring, and security systems for premises, vehicles, and articles are vulnerable to unauthorized access and lack effective user authentication, leading to privacy invasion and sabotage risks, particularly in Internet-based systems.
Innovation Solution
A centralized processing computer system, including cloud computing capabilities, is used to authenticate users and secure communication networks, ensuring authorized access and control over premises, vehicles, and articles through a multi-layered security apparatus.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If control, monitoring, and security systems are made accessible over Internet and communication networks for remote operation, then ease of operation and convenience are improved, but vulnerability to unauthorized access and security breaches increases
Solution Approach 1:
The patent introduces an intermediary authentication system that mediates between the remote user and the controlled device. The processor receives authentication credentials from the user, verifies them against stored credentials, and only establishes communication if authentication succeeds. This intermediary verification layer blocks unauthorized access while preserving legitimate remote operation convenience.
Solution Approach 2:
The system performs preliminary authentication checks before allowing any remote access or control operations. By verifying user credentials in advance and establishing authorized session tokens beforehand, the system prevents unauthorized actions from occurring in the first place, rather than reacting to security breaches after they happen.
2Object-affected harmful factors
If authentication mechanisms are added to secure remote access, then security against unauthorized access is improved, but device complexity and operational overhead increase
Solution Approach 1:
The patent creates simplified copies of authentication credentials stored in the device's memory, allowing rapid verification without complex real-time validation. The system stores credential copies locally and uses them for quick authentication decisions, reducing the computational complexity and processing overhead of security verification.
Solution Approach 2:
The device performs self-authentication by comparing incoming credentials against its own stored credential copies without requiring external authentication servers or complex third-party verification systems. This self-contained approach reduces system complexity while maintaining security.
3Reliability
If multiple authentication layers are implemented for enhanced security, then reliability of authorized access is improved, but ease of operation and user convenience deteriorate
Solution Approach 1:
The system performs authentication checks in advance during device initialization and session setup, establishing trusted communication channels before actual control operations begin. This preliminary authentication ensures reliability without interfering with the simplicity of subsequent operational commands.
Solution Approach 2:
Once authentication is successfully established, the system maintains continuous authorized sessions with persistent credential validation, allowing users to perform multiple operations without repeated authentication prompts. This continuous trusted state preserves operational simplicity while maintaining security throughout the session.
Data Source
AI summary
A computer-implemented method, including storing, in a server computer located remote from a premises or vehicle, information regarding a personal control and monitoring account associated with a user and information regarding an itinerary or schedule of the user; receiving, from a user device, a first signal containing information regarding a control or monitoring operation to be performed at the premises or vehicle; receiving information regarding an IP address or position or location information regarding the user device; comparing the position or location of the user device with information regarding an expected position, location, or geographic location, of the user to determine if the user is authenticated; and authenticating the user and generating a control or monitoring signal for effectuating the control or monitoring operation at the premises or vehicle, or determining that the user is not authenticated and disregarding any instruction regarding any requested or instructed control or monitoring operation.


