后量子密码学的高效统一架构:结合和Kyber.
Patrik Dobias1, Lukas Malina1, Jan Hajny1
1Department of Telecommunications, Brno University of Technology, Brno, Czech Republic.
PeerJ. Computer science
|June 26, 2025
概括
这项研究结合了Dilithium和Kyber后量子加密方案,以实现高效的硬件实现. 统一的设计提供了卓越的性能和资源效率,用于嵌入式系统和物联网设备中的安全通信.
科学领域:
- 密码学和网络安全
- 后量子密码学 后量子密码学
- 硬件实现 硬件实现
背景情况:
- 正在进行的后量子密码学的标准化需要优化实现.
- 将多个加密方案组合成统一的架构对于效率至关重要.
- 像Dilithium和Kyber这样的NIST选择的方案是量子抗性安全的领先候选人.
研究的目的:
- 为了研究二和Kyber后量子方案的组合.
- 为统一的硬件实现提出新的优化技术.
- 在联合实施中,在面积效率和高性能之间实现平衡的方法.
主要方法:
- 开发用于统一硬件架构的新型优化技术.
- 实施用于迪和Kyber计划的综合硬件设计.
- 对现有解决方案进行资源效率和绩效评估.
主要成果:
- 拟议的统一架构证明了卓越的资源效率和性能.
- 取得的结果与独立实施的结果相似或更好.
- 该设计比之前报告的统一架构更节省资源.
结论:
- 基于格子的数字签名和密钥建立的高效和联合实施是可行的.
- 紧的设计适用于高速通信网络,服务器和网关.
- 该设计可以部署在嵌入式设备和物联网安全协处理器的成本效益高的FPGA上.
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