Quantum-based privacy-preserving techniques for secure and trustworthy internet of medical things an extensive analysis

D. Dhinakaran, L. Srinivasan, S. M. Udhaya Sankar, Dharani Selvaraj
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Abstract

The advent of Quantum Key Distribution (QKD) and quantum-based privacy-preserving techniques has ushered in a new era for securing communication channels within the Internet of Medical Things (IoMT) systems. We examine the fundamentals, uses, and ramifications of quantum cryptography in relation to healthcare data security in this thorough investigation. The journey commences with an in-depth overview of quantum cryptography, unraveling the concepts of superposition, entanglement, and quantum gates that form the bedrock of quantum computing. As we proceed, we investigate the uses of quantum cryptography, highlighting its contribution to resolving the particular issues brought about by the data-intensive and networked character of IoMT systems. The relevance of QKD in ensuring secure communication within IoMT is meticulously dissected, with case studies and experiments demonstrating the practicality and effectiveness of quantum-based privacy-preserving techniques. From telemedicine networks to wearable health devices, each case study offers valuable insights into the application of quantum-safe cryptography, showcasing its ability to fortify data integrity and confidentiality. A meticulous survey of existing research, coupled with an analysis of advancements in quantum cryptography, provides a panoramic view of the current landscape. From hardware limitations to distance constraints, the study navigates through challenges and breakthroughs, offering a roadmap for the future integration of quantum technologies into IoMT systems.Comparing quantum-based approaches with classical cryptography unveils a nuanced landscape of computational complexity, key distribution methodologies, and real-time encryption considerations. This comparative analysis serves as a guide for healthcare practitioners and technologists in making informed decisions regarding the adoption of quantum-based privacy-preserving techniques in IoMT environments. The case studies and experiments collectively paint a picture of the practicality and promise of quantum-based privacy-preserving techniques in IoMT scenarios. Anticipating future advancements, the exploration extends into quantum hardware improvements, standardization efforts, and the integration of quantum technologies with emerging trends like edge computing and blockchain. As the healthcare industry stands on the cusp of a quantum revolution, the comprehensive insights provided herein offer a foundation for understanding, implementing, and shaping the future of secure healthcare communication through the lens of quantum cryptography.
基于量子的隐私保护技术用于安全可信的医疗物联网的广泛分析
量子密钥分发(QKD)和基于量子的隐私保护技术的出现,为确保医疗物联网(IoMT)系统内通信通道的安全开创了一个新时代。在本研究中,我们将深入探讨量子密码学在医疗数据安全方面的基本原理、用途和影响。首先,我们将对量子密码学进行深入概述,揭示构成量子计算基石的叠加、纠缠和量子门等概念。接下来,我们将研究量子密码学的用途,强调量子密码学在解决 IoMT 系统的数据密集型和网络化特性所带来的特殊问题方面的贡献。我们通过案例研究和实验展示了基于量子的隐私保护技术的实用性和有效性。从远程医疗网络到可穿戴健康设备,每一个案例研究都为量子安全密码学的应用提供了宝贵的见解,展示了其加强数据完整性和保密性的能力。对现有研究的细致调查,加上对量子密码学进展的分析,为读者提供了当前的全景图。将基于量子的方法与经典密码学进行比较,揭示了计算复杂性、密钥分配方法和实时加密考虑因素等方面的细微差别。这项比较分析可作为医疗从业人员和技术专家的指南,帮助他们在物联网环境中采用基于量子的隐私保护技术时做出明智的决策。案例研究和实验共同描绘了基于量子的隐私保护技术在 IoMT 场景中的实用性和前景。考虑到未来的发展,研究还将扩展到量子硬件的改进、标准化工作以及量子技术与边缘计算和区块链等新兴趋势的融合。随着医疗保健行业站在量子革命的风口浪尖上,本文提供的全面见解为通过量子密码学的视角理解、实施和塑造安全医疗保健通信的未来奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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