A DSA-Based and Efficient Scheme for Preventing IP Prefix Hijacking

Bo Yang
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Abstract

IP prefix hijacking poses a serious threat the security of the Internet. Cryptographic authenticating origin ASes (Autonomous Systems) of advertised prefix, which is an effective way of preventing IP prefix hijacking, has received wide acceptance. However, these existing schemes received various critical comments on their inefficiency when cryptographic authenticating origin ASes. For improving efficiency, we take full advantage of specific characteristics of DSA (Digital Signature Algorithm) and thus present a scheme for preventing IP prefix hijacking. There are two characteristics, which are DSA-based and efficient, in the proposed scheme. Firstly, because DSA is an United States Federal Government standard for digital signatures, the DSA-based can maintain compatibility with the DSA and its analytical tools, and thus it is easier for proposed scheme to be widely accepted and applied into practice. Secondly, public key certificates are not necessary because public keys can be computed by using a formula. Separated verifying signatures in these certificates, which is inevitable in almost all existing cryptography-based schemes, can be replaced with computing of a multi-exponentiation formula. Thus, the efficient is achieved.
一种基于dsa的有效防止IP前缀劫持的方案
IP前缀劫持严重威胁着互联网的安全。对发布前缀进行加密认证的自治系统(Autonomous system)是防止IP前缀劫持的一种有效方法,已经得到了广泛的认可。然而,这些现有方案在对源ase进行加密身份验证时效率低下,因此受到了各种批评。为了提高效率,我们充分利用数字签名算法(DSA)的特性,提出了一种防止IP前缀劫持的方案。该方案具有基于dsa和高效的两个特点。首先,由于DSA是美国联邦政府的数字签名标准,因此基于DSA的方案可以保持与DSA及其分析工具的兼容性,因此所提出的方案更容易被广泛接受和应用于实践。其次,不需要公钥证书,因为公钥可以通过使用公式计算出来。这些证书中分离的验证签名在几乎所有现有的基于密码的方案中都是不可避免的,可以用计算多指数公式来代替。因此,达到了高效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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