无密钥签名基础设施和PKI:前量子世界和后量子世界的哈希树签名

A. Buldas, Risto Laanoja, A. Truu
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引用次数: 9

摘要

云环境中的多租户给数据安全带来了新的挑战,包括但不限于信任、数据和系统完整性以及加密密钥管理的开销。使用新颖的数据签名方案可以有效地解决这些挑战。我们比较了公钥基础设施(PKI)和无密钥签名基础设施(KSI)提供的个人数字签名解决方案,并描述了这些技术如何相互支持。我们将讨论将个人KSI服务与外部身份提供者集成的一些方法。由于KSI可以“保护”PKI免受实用量子计算机的加密威胁,因此我们深入研究了加密哈希函数和哈希-发布签名方案的后量子安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Keyless signature infrastructure and PKI: hash-tree signatures in pre- and post-quantum world
Multi-tenancy in the cloud environment brings new challenges to data security including but not limited to trust, data and system integrity and the overhead of cryptographic key management. These challenges can be efficiently addressed using novel data signing schemes. We compare personal digital signature solutions provided by public key infrastructure (PKI) and keyless signature infrastructure (KSI) and describe how these technologies can support each other. We discuss some ways of integrating a personal KSI service with external identity providers. As KSI can 'indemnify' PKI against the cryptographic threat of practical quantum computers, we delve into the post-quantum security of cryptographic hash functions and hash-and-publish signature schemes.
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