Comparative Performance Evaluation of Key Exchange Protocols

Octavian Catrina, Silvia-Ioana Stanciu
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引用次数: 2

Abstract

The paper presents a comparative performance evaluation of typical constructions of authenticated key exchange protocols using asymmetric and/or symmetric cryptography. The protocols are implemented using JAKE, a lightweight Java frame-work for prototype implementation and experimental analysis of secure-channel protocols, including attacks and performance evaluation. JAKE uses the standard library of cryptographic classes included in OpenJDK. The experiments were carried out for different cryptographic algorithms and security levels. The comparative analysis demonstrates the important performance gains achieved by switching from Finite-Field Cryptography (FFC) to Elliptic-Curve Cryptography (ECC), for Diffie-Hellman (DH) key agreement, signatures, and public-key certificates. The algorithms based on ECC reduce substantially the performance gap between authentication using symmetric cryptography and pre-shared secret keys (faster, but with limited applications) and authentication using asymmetric cryptography and public-key certificates. They also show a substantial performance degradation from 128-bit to 192-bit or 256-bit security, so the security level should be adjusted according to application requirements.
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密钥交换协议的比较性能评估
本文给出了使用非对称和/或对称加密的认证密钥交换协议的典型结构的比较性能评估。这些协议是使用JAKE实现的,JAKE是一个轻量级Java框架,用于安全通道协议的原型实现和实验分析,包括攻击和性能评估。JAKE使用OpenJDK中包含的标准加密类库。在不同的加密算法和安全级别下进行了实验。对比分析表明,对于Diffie-Hellman (DH)密钥协议、签名和公钥证书,从有限域加密(FFC)切换到椭圆曲线加密(ECC)可以获得重要的性能提升。基于ECC的算法大大减小了使用对称加密和预共享密钥(更快,但应用程序有限)的身份验证与使用非对称加密和公钥证书的身份验证之间的性能差距。它们还显示了从128位安全性到192位或256位安全性的显著性能下降,因此应该根据应用程序需求调整安全级别。
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