Quantum Optimizer for Real-Time Communication Context Analysis
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Solution Overview
Problem
Current communication analysis methods are inadequate in determining the actual context of a communication and identifying potential security threats in real-time, as human perception often fails to discern deception or misappropriation of resources, and classical computers are inefficient in processing large volumes of contextual data.
Innovation Solution
A system employing a quantum optimizer that captures communication variables using sensors such as microphones, image capturing devices, and OCR, and analyzes them in real-time to determine the actual context by comparing them to known patterns, thereby identifying potential security threats and notifying parties before further communication occurs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If quantum computing is used to analyze communication variables, then the speed and accuracy of determining actual context is improved, but the device complexity increases
Solution Approach 1:
The patent employs a quantum optimizer as an intermediary computing system that receives communication variables from sensors and processes them to determine actual context. This intermediary handles the complex quantum computations separately from the classical sensor and notification systems, enabling high-speed analysis while containing the complexity within a dedicated quantum processing unit.
2Measurement precision
If all communication variables are analyzed in real-time, then the accuracy of identifying security threats is improved, but the processing time and computational resources increase
Solution Approach 1:
The system performs preliminary actions by continuously monitoring and capturing communication variables through sensors (microphones, image capturing devices, OCR) before security threats fully manifest. The quantum optimizer processes these variables in real-time to determine actual context, enabling early detection and notification before deceptive parties can successfully misappropriate resources.
3Productivity
If quantum computing processes are implemented, then the ability to process large volumes of data quickly is improved, but the energy consumption increases
Solution Approach 1:
The system implements partial quantum computing action by using the quantum optimizer only for specific context determination tasks rather than continuous full-scale processing. The quantum processor analyzes communication variables to determine actual context when needed, rather than maintaining constant high-energy processing, thus achieving necessary data processing capacity while managing energy consumption through selective activation.
Data Source
AI summary
A system for capturing communication variables associated with a communication between two or more parties and implementing a quantum optimizer to analyze the communication variables to determine the actual context of a communication held by one or more parties to the communication. Once the actual context is determined, a further determination is made as to whether the actual context poses or potentially poses a security threat to one or more parties to the communication or a third-party and, if so, notifies the party of the security threat. In this regard, parties to a communication that are unaware of the actual context of the communication held by another party are made aware of that actual context poses a security threat and, in some embodiments, notifies the parties while the communication is still occurring.


