Dynamic Access Rights Management via Remote Server
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Solution Overview
Problem
Existing communication networks face challenges in managing access rights for resources, particularly in scenarios where time-locked parallel usage is undesirable, and there is a need for efficient control and monitoring of access to resources across multiple devices.
Innovation Solution
A system where a first device requests access to a resource, generates an access-enabling code associated with access rights, and transmits it to a second device, which processes the code to unlock components, monitors usage, and reports back to a remote server, allowing for dynamic management of access rights and reduced permissions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If access rights are assigned to multiple devices for parallel access to a resource, then resource utilization increases, but control and monitoring complexity increases
Solution Approach 1:
The patent introduces a remote server as an intermediary that centralizes the management of access rights. The server generates access-enabling codes, tracks their usage, and updates access rights dynamically. This intermediary approach allows multiple devices to access resources in parallel while the server maintains centralized control and monitoring, resolving the contradiction between increased resource utilization and reduced control complexity.
2Ease of operation
If access-enabling codes are shared across multiple devices, then ease of access improves, but security control deteriorates
Solution Approach 1:
The patent implements dynamic access rights management where the remote server can update, reduce, or revoke access-enabling codes based on monitored usage. Instead of static permission assignments, the system continuously adjusts access levels according to actual resource usage patterns. This dynamic approach maintains ease of access through code sharing while preserving security control through real-time updates and monitoring.
Solution Approach 2:
The system incorporates feedback mechanisms where the remote server monitors resource usage by devices with access-enabling codes and uses this information to dynamically update access rights. The server receives usage data, analyzes it, and sends updated access-enabling codes to devices accordingly. This feedback loop ensures that ease of access is maintained while security control is enhanced through continuous adjustment based on actual usage patterns.
3Productivity
If time-locked parallel usage is implemented, then resource allocation efficiency improves, but flexibility in access management deteriorates
Solution Approach 1:
The patent replaces rigid time-locked parallel usage with dynamic access-enabling codes that can be updated in real-time. Instead of predetermined time slots, the system generates codes with specific usage conditions that can be modified by the remote server based on actual resource availability and usage patterns. This dynamic approach improves resource allocation efficiency while maintaining flexibility in access management.
Data Source
AI summary
Systems and methods are provided for communication networks and network operations for processing partial uses of clustered access rights. The communication networks may include channels such as short-range communication channels, such as Bluetooth, BTLE, and/or near-field communication (NFC) channels.


