Quantum Task Clocking for Scalable Processing Coordination
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Solution Overview
Problem
Existing quantum processing systems face complexity and synchronization challenges as the number of quantum processing tasks and components increase, leading to potential conflicts and interference, which complicates the coordination of operations.
Innovation Solution
Implementing a control system that synchronizes quantum processing task components using a predefined clocking period, where operations are initiated only at non-zero integer multiples of this period, ensuring all tasks align with a structured timeslot system.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If multiple quantum processing task components operate independently without synchronization, then each component can perform its task flexibly, but conflicts and interference between components increase, complicating coordination
Solution Approach 1:
The patent applies periodic action by introducing a clocking signal that periodically triggers quantum processing tasks at specific time intervals. The control system uses this periodic clocking mechanism to synchronize multiple quantum processing task components, ensuring they operate in coordinated time slots rather than independently and conflictually. This periodic synchronization resolves the contradiction by providing structured timing that simplifies coordination while maintaining manageable system complexity through regular, predictable operation cycles.
2Productivity
If quantum processing tasks are executed with tight timing constraints, then processing speed increases, but timing issues and synchronization errors increase
Solution Approach 1:
The patent implements feedback by using a control system that receives the clocking signal and uses it to coordinate quantum processing tasks. The control system monitors task execution timing and adjusts task initiation based on the periodic clocking signal, ensuring that tasks are launched at appropriate moments. This feedback mechanism resolves the contradiction by providing timing information that maintains processing speed while reducing synchronization errors through adaptive task scheduling.
Solution Approach 2:
The patent applies preliminary action by using the clocking signal to pre-synchronize task initiation timing before quantum processing begins. The control system uses the periodic clocking signal to advance-plan task scheduling, ensuring that tasks are initiated at predetermined time slots that avoid conflicts. This preliminary timing coordination resolves the contradiction by establishing reliable timing frameworks that maintain processing speed while minimizing timing issues through advance synchronization.
Data Source
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AI summary
A mechanism for controlling the operation of one or more quantum processing task components. A control system is configured to allow permit each quantum processing task component to initiate or change a quantum processing task at a non-zero integer multiple of a predefined clocking period, which is no less than a period of time taken by one of the quantum processing task components to complete a particular quantum processing task.