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迈向量子联邦学习。

Toward Quantum Federated Learning.

作者信息

Ren Chao, Yan Rudai, Zhu Huihui, Yu Han, Xu Minrui, Shen Yuan, Xu Yan, Xiao Ming, Dong Zhao Yang, Skoglund Mikael, Niyato Dusit, Kwek Leong Chuan

出版信息

IEEE Trans Neural Netw Learn Syst. 2025 Sep;36(9):15580-15600. doi: 10.1109/TNNLS.2025.3552643.

Abstract

Quantum federated learning (QFL) is an emerging interdisciplinary field that merges the principles of quantum computing (QC) and federated learning (FL), with the goal of leveraging quantum technologies to enhance privacy, security, and efficiency in the learning process. Currently, there is no comprehensive survey for this interdisciplinary field. This review offers a thorough, holistic examination of QFL. We aim to provide a comprehensive understanding of the principles, techniques, and emerging applications of QFL. We discuss the current state of research in this rapidly evolving field, identify challenges and opportunities associated with integrating these technologies, and outline future directions and open research questions. We propose a unique taxonomy of QFL techniques, categorized according to their characteristics and the quantum techniques employed. As the field of QFL continues to progress, we can anticipate further breakthroughs and applications across various industries, driving innovation and addressing challenges related to data privacy, security, and resource optimization. This review serves as a first-of-its-kind comprehensive guide for researchers and practitioners interested in understanding and advancing the field of QFL.

摘要

量子联邦学习(QFL)是一个新兴的跨学科领域,它融合了量子计算(QC)和联邦学习(FL)的原理,旨在利用量子技术提高学习过程中的隐私性、安全性和效率。目前,对于这个跨学科领域还没有全面的综述。本综述对量子联邦学习进行了全面、整体的审视。我们旨在全面理解量子联邦学习的原理、技术和新兴应用。我们讨论了这个快速发展领域的当前研究状况,识别了与整合这些技术相关的挑战和机遇,并概述了未来方向和开放的研究问题。我们提出了一种独特的量子联邦学习技术分类法,根据其特点和所采用的量子技术进行分类。随着量子联邦学习领域的不断发展,我们可以期待在各个行业取得进一步的突破和应用,推动创新并应对与数据隐私、安全和资源优化相关的挑战。本综述为有兴趣理解和推动量子联邦学习领域发展的研究人员和从业者提供了同类中的第一份全面指南。

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