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Authenticated public-key encryption based on elliptic curve

机译:基于椭圆曲线的经过身份验证的公钥加密

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An efficient scheme so called authenticated public key encryption that performs signature and encryption simultaneously is designed. The scheme is the first scheme that based on the standardized signature algorithm ECDSA and achieves both privacy and authenticity in the method of ECDLP which is the most practical cryptographic primitive in the future. The scheme saves 78%-82% computation costs in all. It also saves 14% storage costs for current security parameters and 9% storage costs for high level security in average. The saving is significant potentially, especially in power restricted applications such as embedded systems and mobile computing. Arguments show that the scheme is secure at present. Compared with RFC1421 and existed results, the scheme for multiple users also discussed.
机译:设计了一个有效的方案,如同同时执行签名和加密的经过身份验证的公钥加密。该方案是基于标准化签名算法ECDSA的第一种方案,并在ECDLP的方法中实现了隐私和真实性,这是未来最实用的加密原语。该计划在所有的计算成本中节省了78%-82%。它还为当前的安全参数和9%的存储成本平均保存了14%的存储成本和9%的存储成本。节省潜在潜在的,特别是在嵌入式系统和移动计算之类的电力限制应用中。争论表明该方案目前是安全的。与RFC1421相比并存在结果,还讨论了多个用户的方案。

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