Real-Time Device Linking Through Collaborative Access Conditions
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Solution Overview
Problem
Existing systems face inefficiencies and insecurity in assigning access rights to user devices on a one-to-one basis, leading to burdensome and inefficient tagging conditions.
Innovation Solution
A computing-implemented method and system that enables collaborative definition of access right assignment conditions through a primary load management system, allowing multiple devices to access a spatial model and modify assignment conditions based on input from user devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If access rights are assigned on a one-to-one basis to user devices, then access control security is improved, but the efficiency of assigning access rights deteriorates
Solution Approach 1:
The patent segments the access right assignment process into multiple independent access indicators, each representing a specific access condition (e.g., time-based, location-based, device-based). This allows the system to handle complex access control requirements by combining multiple simple indicators rather than relying on a single complex one-to-one assignment mechanism, thereby improving both security and efficiency.
Solution Approach 2:
The patent introduces a new dimension to access control by using a spatial model that visualizes access indicators in a multi-dimensional space. This allows the system to represent and manage access rights more effectively by transforming the traditional one-to-one assignment into a multi-dimensional tagging system, improving both security through enhanced control granularity and efficiency through automated condition evaluation.
2Reliability
If tagging conditions on access rights are defined in traditional systems, then access control is maintained, but the process becomes burdensome and inefficient
Solution Approach 1:
The patent enables user devices to participate in defining and modifying access conditions through the spatial model interface. Users can directly interact with the system to set tagging conditions without requiring complex administrative procedures, making the access control configuration process more intuitive and efficient while maintaining security through automated condition evaluation.
Solution Approach 2:
The patent allows dynamic modification of access condition parameters through the spatial model, enabling users to adjust tagging conditions in real-time without system reconfiguration. This flexibility improves ease of operation by allowing adaptive access control policies to be defined and modified intuitively through the visual interface.
3Adaptability or versatility
If multiple user devices access the spatial model simultaneously, then system versatility is improved, but data consistency and security challenges increase
Solution Approach 1:
The patent implements a feedback mechanism that continuously monitors and updates access indicator states based on real-time conditions. When multiple devices access the spatial model simultaneously, the system receives feedback about current conditions (e.g., time, location, device status) and automatically adjusts access rights accordingly, maintaining data consistency and security through continuous state synchronization.
Solution Approach 2:
The patent pre-establishes access indicators and their evaluation rules before simultaneous access occurs. By defining the tagging conditions and access control logic in advance, the system can quickly and consistently handle concurrent device access without requiring real-time complex decision-making, thereby maintaining data consistency and security while supporting multi-device versatility.
Data Source
AI summary
Systems and methods for enabling links between various devices is provided. The systems and methods may include a platform that enables different devices to access spatial models of a resource. The platform may enable the different devices to define and/or modify assignment conditions for access rights to resources. Further, the platform may enable definition of assignment conditions before or after the access rights are available for assignment.


