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Improving Quantum Resource Usage Through Automated Circuit Scheduling
DOI:10.1109/MITP.2026.3651892.png)
Abstract
En 中文
The current execution model of quantum computers, based on serialized task processing, leads to inefficient resource utilization and increased waiting times. This inefficiency persists even as the demand for quantum computing grows. To address this, an automated scheduling approach is proposed through the AutoScheduler library, which replicates quantum circuits to fully occupy the available qubits in a quantum processor. This strategy reduces the number of required shots per execution while optimizing hardware usage. Experimental validation on IBM Quantum and Amazon Braket platforms demonstrates that autoscheduling achieves substantial reductions in execution time and cost, with minimal impact on result fidelity despite inherent quantum noise. These findings suggest that circuit autoscheduling is a viable method for improving the scalability and efficiency of quantum computing in the NISQ era.
Keywords:
Circuits
Contacts
Quantum circuit
Circuits and systems
Circuit synthesis
Adders
Sequential circuits
System-on-chip
Switching circuits
Journal
IF:
2.6
Papers:
62
Citations:
1.4K

