Quantum Computing Service Edge Translation
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Solution Overview
Problem
Quantum computing users face challenges in accessing and utilizing various quantum computing technologies due to the complexity and cost of building and maintaining quantum computers, as well as the need for significant expertise to solve practical problems effectively.
Innovation Solution
A quantum computing service that provides seamless access to multiple quantum computing technologies by receiving quantum computing objects from customers, translating them into appropriate formats, and executing them on different quantum hardware providers, while offering recommendations on cost, error rates, and run-time, thereby simplifying the process for users without requiring deep knowledge of quantum mechanics.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If users directly access and utilize quantum computing technologies, then they can perform quantum computations, but they require significant expertise in quantum mechanics and incur high infrastructure costs
Solution Approach 1:
The patent introduces a quantum computing service as an intermediary layer between users and quantum hardware. This service translates high-level quantum computing objects into hardware-specific instructions, allowing users to access quantum computing capabilities without needing to understand the underlying hardware complexity or quantum mechanics details.
Solution Approach 2:
The patent creates virtual representations of quantum computing resources through quantum computing objects that can be executed on multiple hardware backends. These objects serve as copies or abstractions of the actual quantum hardware interfaces, simplifying user interaction while maintaining compatibility with diverse quantum computing platforms.
2Adaptability or versatility
If multiple quantum computing technologies are made accessible to users, then versatility is improved, but system complexity increases
Solution Approach 1:
The patent designs a universal quantum computing service that can execute quantum computing objects on multiple types of quantum hardware (superconducting qubits, trapped ions, photonic systems, etc.). This multi-functional platform allows users to access diverse quantum technologies through a single interface, improving versatility without requiring users to manage multiple separate systems.
Solution Approach 2:
The patent segments the quantum computing system into distinct layers: a user-facing service layer that handles high-level quantum computing objects, and hardware-specific execution layers that handle technology-specific implementations. This segmentation allows multiple quantum technologies to be integrated without increasing user-facing complexity, as each technology is isolated in its own execution layer.
Data Source
AI summary
A quantum computing service includes connections to multiple quantum hardware providers that are configured to execute quantum circuits using quantum computers based on multiple quantum technologies. The quantum computing service also includes at least two edge computing devices at the quantum hardware provider facilities. The edge computing devices are configured to be controlled by the quantum computing service to cause quantum jobs to be performed on the quantum computers at the quantum hardware provider facilities.


