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储能系统技术 储能系统 ★ 4.0

集成后量子密码学与区块链以保护低成本物联网设备

Integrating Post-Quantum Cryptography and Blockchain to Secure Low-Cost IoT Devices

作者 Aniello Castiglione · Jacopo Gennaro Esposito · Vincenzo Loia · Michele Nappi · Chiara Pero · Matteo Polsinelli
期刊 IEEE Transactions on Industrial Informatics
出版日期 2024年11月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 物联网 区块链 量子计算 后量子签名算法 物联网安全
语言:

中文摘要

当前,全球物联网(IoT)设备数量已超过150亿,广泛应用于可穿戴设备、智能电网监控等领域,常涉及敏感数据处理。为保障安全性,区块链技术被引入IoT网络。然而,现有加密机制难以抵御量子计算对区块链系统的威胁,尤其是私钥泄露风险。本文提出一种基于后量子数字签名算法Dilithium-5的优化实现方案,具备抗量子攻击能力,并适配ESP32等低功耗、低成本微控制器。通过血氧与心率监测设备的案例研究,验证了该方案在实际IoT应用中的有效性与可行性,兼具安全性与运行效率。

English Abstract

In the contemporary era, the global proliferation of Internet of Things (IoT) devices exceeds 15 billion, serving functions from wearables to smart grid monitoring. These devices frequently manage sensitive data, underscoring the need for secure and reliable IoT networks leveraging blockchain technology. A key innovation of this study is an approach to mitigate vulnerabilities that quantum computing poses to blockchain-based IoT systems, which existing cryptographic methods cannot effectively address. Quantum computers could exploit these weaknesses to compromise key-pair generation and extract private keys from transaction signatures. To overcome this, the research introduces an optimized implementation of the post-quantum digital signature algorithm Dilithium-5, ensuring blockchain security and quantum readiness. These transaction signatures are designed for low-power, cost-effective microcontrollers, such as the ESP32, making the solution accessible for a wide range of IoT devices. In addition, the study includes a case study involving a post-quantum safe portable device for measuring blood oxygen levels and heart rate, illustrating the practical benefits and effectiveness of the proposed solution in enhancing IoT security against quantum threats. The results demonstrate that the proposed approach ensures quantum-resistant security while maintaining performance efficiency, making it suitable for real-world IoT applications.
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SunView 深度解读

该后量子密码学与区块链融合技术对阳光电源储能及光伏产品的安全防护具有前瞻价值。在PowerTitan大型储能系统和iSolarCloud云平台中,海量分布式设备(如ST系列储能变流器、SG逆变器)的数据传输与身份认证面临量子计算威胁。Dilithium-5算法可集成至设备端MCU固件,为智能运维系统的区块链化数据存证提供抗量子攻击能力,保障电站资产数据、交易记录的长期安全性。该方案在低成本微控制器上的验证,为阳光电源构建下一代安全可信的能源物联网架构提供技术储备,尤其适用于充电桩网络、虚拟电厂等需多方协同的场景。