计算机科学 ›› 2026, Vol. 53 ›› Issue (6A): 250600165-5.doi: 10.11896/jsjkx.250600165

• 计算机软件&体系结构 • 上一篇    下一篇

超导量子处理器与异构计算系统的协同调度策略

王德志1, 程琨2   

  1. 1 中科曙光信息产业成都有限公司 成都 610000
    2 成都大学计算机学院 成都 610106
  • 出版日期:2026-06-16 发布日期:2026-06-12
  • 通讯作者: 程琨(chengkun@cdu.edu.cn)
  • 作者简介:(wangdezhistudy@163.com)
  • 基金资助:
    四川省自然科学基金(2023NSFSC1406)

Collaborative Scheduling Strategies for Superconducting Quantum Processors and Heterogeneous Computing Systems

WANG Dezhi1, CHENG Kun2   

  1. 1 Sugon Information Industry Chengdu Co.,Ltd.,Chengdu 610000,China
    2 College of Computer Science,Chengdu University,Chengdu 610106,China
  • Published:2026-06-16 Online:2026-06-12
  • About author:WANG Dezhi,born in 1992,master.His main research interests include heterogeneous computing and parallel computing.
    CHENG Kun,born in 1987,Ph.D.Her main research interests include swarm intelligent optimization algorithms and fault signal processing.
  • Supported by:
    Natural Science Foundation of Sichuan Province(2023NSFSC1406).

摘要: 聚焦于超导量子处理器与异构计算系统融合背景下的调度优化问题,研究了量子与经典任务在异构环境中的协同调度机制,提出一套面向混合任务图的统一调度建模方法,构建了基于最小通信代价与量子窗口预测的联合调度策略,并验证了该方法在任务延迟控制与资源利用效率方面的改进潜力。分析协同模型在高复杂度计算场景下的稳定性与扩展性,探讨异构调度中任务划分机制与系统约束适配能力。该成果对推动量子计算在并行计算系统中的工程落地及提升异构系统资源调度的智能化水平具有实际价值与理论意义。

关键词: 超导量子处理器, 异构计算, 协同调度, 任务划分, 并行计算

Abstract: This study addresses scheduling challenges arising from the integration of superconducting quantum processors into heterogeneous computing environments.It introduces a unified modeling framework for hybrid task graphs and proposes a joint scheduling strategy that minimizes communication overhead while leveraging predictive allocation of quantum execution windows.The proposed method is evaluated in terms of its potential to reduce execution delays and improve overall resource utilization.Further analysis explores the model's robustness and scalability under computationally intensive scenarios,along with the adaptability of task partitioning approaches to varying system constraints.The findings contribute to practical methodologies for ena-bling quantum-classical hybrid computing and advancing intelligent resource coordination in next-generation high-performance systems.

Key words: Superconducting quantum processor, Heterogeneous computing, Collaborative scheduling, Task partitioning, Parallel computing

中图分类号: 

  • TP301
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