Orchestrating Quantum Capabilities Over Network Slices
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Solution Overview
Problem
Wireless communication networks are unable to effectively deliver quantum capabilities over wireless network slices and inefficiently orchestrate quantum capabilities into these slices, thereby inhibiting the delivery of data communications using quantum capabilities and denying the benefits of quantum-based computing and communications to users.
Innovation Solution
A data communication system that delivers quantum capabilities over network slices by receiving user application characteristics, selecting appropriate quantum capabilities, and connecting user communication devices to these capabilities through orchestrated network slices, utilizing a network controller and AI networks to manage the selection and instantiation of quantum capabilities.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If quantum capabilities are integrated into wireless network slices, then the delivery of quantum-based data communications is improved, but the device complexity and orchestration difficulty increase
Solution Approach 1:
The patent introduces an intermediary orchestration system that mediates between quantum capabilities and wireless network slices. This intermediary manages the complex integration by providing standardized interfaces and automated orchestration mechanisms, thereby improving quantum capability delivery while managing the inherent complexity through abstraction and automation.
2Adaptability or versatility
If quantum capabilities are orchestrated into network slices, then quantum-based computing and communication benefits are provided to users, but the orchestration efficiency and resource allocation become more difficult
Solution Approach 1:
The patent implements dynamic orchestration mechanisms that allow the network to adaptively allocate and manage quantum capabilities based on real-time demands and conditions. This dynamic approach enables versatile quantum service delivery while simplifying operations through automated, context-aware resource management that adjusts to changing requirements without manual intervention.
Solution Approach 2:
The patent utilizes parameter changes in network slice configurations and quantum capability allocations to optimize orchestration. By dynamically adjusting parameters such as resource allocation ratios, quality of service thresholds, and capability instantiation levels, the system achieves adaptable quantum service delivery while maintaining ease of operation through automated parameter tuning based on observed performance metrics.
3Productivity
If conventional network orchestration methods are used for quantum capabilities, then system simplicity is maintained, but quantum capability delivery effectiveness is insufficient
Solution Approach 1:
The patent segments the orchestration system into specialized modules that handle different aspects of quantum capability management separately. This segmentation includes distinct components for quantum resource allocation, slice configuration, capability instantiation, and performance monitoring. By dividing the orchestration function into specialized segments, the system achieves effective quantum capability delivery while managing complexity through modular, independent components that can be developed and maintained separately.
Data Source
AI summary
A data communication system delivers quantum capabilities over network slices. The data communication system receives a user application characteristic from a user communication device for a user application in the user communication device. The data communication system selects one of the quantum capabilities based on the user application characteristic. The data communication system connects the user communication device to the selected one of the quantum capabilities over one of the network slices.


