Mobile Server Authentication with Pre-Authenticated Backup Servers
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Solution Overview
Problem
Mobile gaming establishments face challenges in authenticating servers to ensure they have not been hacked, breached, or manipulated due to their non-stationary nature, which complicates the verification process.
Innovation Solution
A system and method for authenticating mobile servers using authentication identifiers, pre-authenticating backup servers, and periodically verifying the authenticity of mobile servers within a predetermined time or geographical area, with communication methods like satellites or WiMax, and disabling servers if unauthenticated.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If mobile servers are used in non-stationary gaming establishments, then service coverage and accessibility are improved, but server authentication security and reliability deteriorate
Solution Approach 1:
The system performs preliminary authentication of mobile servers before they begin providing gaming services. Authentication identifiers are assigned and verified in advance, ensuring servers are legitimate before deployment in non-stationary environments like cruise ships or airplanes. This preemptive security measure addresses the reliability concern while maintaining service coverage.
Solution Approach 2:
An authentication server acts as an intermediary between mobile servers and gaming establishments. This mediator verifies authentication identifiers and maintains authentication status, providing a trusted third-party verification mechanism that enhances security without limiting the mobile deployment flexibility.
2Reliability
If continuous authentication monitoring is implemented, then server security and integrity are improved, but system complexity and operational overhead increase
Solution Approach 1:
The system implements periodic authentication monitoring at predetermined time intervals or when servers enter predetermined geographical areas. Instead of continuous monitoring, authentication is verified at specific intervals, maintaining security while reducing system complexity and operational overhead compared to constant surveillance.
Solution Approach 2:
The authentication system monitors changes in specific parameters such as time elapsed since last authentication and geographical location. When these parameters reach predetermined thresholds, authentication is triggered. This parameter-based approach simplifies the monitoring system compared to continuous comprehensive security scanning.
3Reliability
If authentication verification is performed at predetermined intervals, then server integrity is maintained, but service continuity may be interrupted
Solution Approach 1:
Backup mobile servers are pre-authenticated in advance and held in standby mode. When the primary server requires authentication verification or fails, the backup server can immediately take over without interruption to service. This preliminary preparation of backup resources maintains server integrity through periodic authentication while ensuring service continuity.
Solution Approach 2:
The system prepares backup authentication credentials and standby servers before they are needed. This cushioning approach ensures that if authentication issues arise with the primary server, a verified backup is already in place to maintain service continuity, protecting against potential service interruptions.
Data Source
AI summary
A system for authenticating mobile servers comprises at least one mobile server configured to support games of chance; and an authentication server configured to: assign an authentication identifier to each of the at least one mobile server and at least one backup mobile server; pre-authenticate the at least one backup mobile server; and authenticate the at least one mobile server for at least one of a predetermined period of time or a predetermined geographical area.


