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Establish the intrinsic binding in naming space for future internet using combined public key
Meng, Hongwei ; Chen, Zhong ; Hu, Jianbin ; Guan, Zhi
2016
英文摘要In order to enable intrinsic security without the Public Key Infrastructure (PKI) deployment, flat self-certifying addresses have been involved into the future Internet architecture (FIA) designs. In contrast to deriving a self-certifying address from hashing of a correspondent prepared public key, we build up this self-certifying relationship along the reverse path using Combined Public Key (CPK). Our design develop the chain of trust embedded in the Internet name/address registration and allocation process for domains, hosts, services and content, to establish intrinsic bindings between three different identities: user-level human-readable names, network-level routable flat identifiers and the correspondent public keys. This binding connects the accountability between real-world space and network space. The use cases of our design are also given in named data networking (NDN) and identity/locator splitting network architecture, i.e. XIA and MobilityFirst. The analysis also shows that identity authentication based on CPK is capable of resource-constrained nodes in large-scale networks without scalability tradeoffs. ? Copyright 2016 ACM.; EI; 62-68; 15-17-June-2016
语种英语
出处11th International Conference on Future Internet Technologies, CFI 2016
DOI标识10.1145/2935663.2935676
内容类型其他
源URL[http://ir.pku.edu.cn/handle/20.500.11897/449450]  
专题信息科学技术学院
推荐引用方式
GB/T 7714
Meng, Hongwei,Chen, Zhong,Hu, Jianbin,et al. Establish the intrinsic binding in naming space for future internet using combined public key. 2016-01-01.
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