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A study of CGA- (cryptographically generated address) signature based authentication of binding update messages in low-end MIPv6 node

机译:基于CGA-(加密生成的地址)签名基于绑定更新消息的签名的研究

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It is well known that the existing weak mechanism for authenticating binding update messages is one of the biggest security weaknesses in MIPv6. The best candidate to replace this weak mechanism is CGA signatures. CGA signatures require generating a digital signature of a binding update message. It is also known that public-key cryptographic operations (like digital signatures) are computationally expensive for low-end nodes. This study presents the initial effort in investigating the feasibility of using CGA signature based authentication on low-end nodes. It is found that the commonly used RSA cryptosystem should be replaced with an alternative cryptosystem (esp. because of the computationally intensive operations of key generation and the signature generation)
机译:众所周知,用于认证绑定更新消息的现有弱机制是MIPv6中最大的安全弱点之一。替代这种弱机制的最佳候选者是CGA签名。 CGA签名需要生成绑定更新消息的数字签名。还已知公钥加密操作(如数字签名)对于低端节点来说是计算昂贵的。本研究提出了研究在低端节点上使用基于CGA签名的身份验证的可行性的最初努力。发现常用的RSA密码系统应替换为替代密码系统(ESP。由于关键生成和签名生成的计算密集型操作)

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