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首页> 外文期刊>American journal of applied sciences >CERTIFICATE AUTHORITY SCHEMES USING ELLIPTIC CURVE CRYPTOGRAPHY, RSA AND THEIR VARIANTS-SIMULATION USING NS2
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CERTIFICATE AUTHORITY SCHEMES USING ELLIPTIC CURVE CRYPTOGRAPHY, RSA AND THEIR VARIANTS-SIMULATION USING NS2

机译:使用椭圆曲线密码术,RSA的证书颁发机构方案以及使用NS2进行的变体模拟

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摘要

A PKI (public key infrastructure) enables users of a basically unsecure public network to securely and privately exchange data through the use of a public and a private cryptographic key pair that is obtained and shared through a trusted authority. The public key infrastructure provides for a digital certificate that can identify an individual or an organization and directory services that can store and, when necessary, revoke the certificates. Although the components of a PKI are generally understood, a number of different vendor approaches and services are emerging. The two major digital signature algorithms are Elliptic Curve Digital Signature Algorithm (ECDSA) which is the elliptic curve analogue of the Digital Signature Algorithm (DSA) and RSA algorithm. The two algorithms are used for generating the certificates exchanged between computer systems. Elliptic curve based systems can give better security compared to RSA with less key size. This study compares the performance of ECC based signature schemes and RSA schemes using NS2 simulation. It is observed that ECC based certificate authority schemes gives better speed and security. Elliptic curve based schemes are the best for time and resource constrained wireless applications.
机译:PKI(公共密钥基础结构)使基本不安全的公共网络的用户能够通过使用通过受信任的权威机构获得和共享的公共和私有密码密钥对来安全私密地交换数据。公钥基础结构提供了可以标识个人或组织的数字证书以及可以存储并在必要时撤消证书的目录服务。尽管通常了解PKI的组件,但仍出现了许多不同的供应商方法和服务。两种主要的数字签名算法是椭圆曲线数字签名算法(ECDSA),它是数字签名算法(DSA)和RSA算法的椭圆曲线类似物。这两种算法用于生成在计算机系统之间交换的证书。与RSA相比,基于椭圆曲线的系统可以提供更好的安全性,并且密钥大小更小。这项研究使用NS2仿真比较了基于ECC的签名方案和RSA方案的性能。可以看出,基于ECC的证书授权方案可提供更好的速度和安全性。基于椭圆曲线的方案最适合受时间和资源限制的无线应用。

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