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A Centralized Key Management Scheme Based on McEliece PKC for Space Network

机译:基于MACERIES PKC用于空间网络的集中密钥管理方案

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Constrained by the limited resource, high-latency and high bit error rate, the existing group key management schemes for the space network are inefficient. To solve this problem, we proposed a centralized and identity-based key management scheme by using McEliece public-key cryptosystem (PKC). In this scheme, the node identity is used as the parameter to generate the public key. Therefore, the authentication can be embedded into the verification of the public key without needing the PKI. The group key is distributed with the protection of the public key so that the group key management scheme can be implemented safely. Furthermore, the McEliece public-key cryptosystem can resist the quantum attack and provide error correction capacity. It improves the efficiency of the group key distribution over the noisy channel. The proposed key management scheme is simulated on OPNET. The security of public-key generation, forward secrecy, backward secrecy and performance are analyzed. The results show that our scheme can provide confidentiality, integrity, authentication, non-repudiation, failure tolerance and error correction. In addition, the computation overhead and rounds of interaction are lower than former work.
机译:受限资源,高延迟和高位错误率的约束,空间网络的现有组密钥管理方案效率低下。为了解决这个问题,我们通过使用MECELIES公钥密码系统(PKC)提出了基于集中的基于密钥管理方案。在此方案中,节点标识用作生成公钥的参数。因此,可以在不需要PKI的情况下嵌入身份验证的验证。组密钥随着对公钥的保护分发,以便可以安全地实施组密钥管理方案。此外,MECELIES公钥密码系统可以抵抗量子攻击并提供纠错容量。它提高了嘈杂频道的组密钥分布的效率。在OPNET上模拟了所提出的关键管理方案。分析了公钥一代,前瞻保密,落后保密和性能的安全性。结果表明,我们的方案可以提供机密性,完整性,认证,非拒绝,故障容忍和纠错。此外,计算开销和互动的轮廓低于前工作。

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