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[ "刘梦如(1998-),女,西安电子科技大学硕士生,主要研究方向为区块链、隐私保护" ]
[ "付玉龙(1983-),男,西安电子科技大学副教授,主要研究方向为移动网络安全、大数据及人工智能安全、形式化安全" ]
[ "曹进(1985-),男,西安电子科技大学教授、博士生导师,主要研究方向为4G/5G网络、天地一体化信息网络安全性及认证协议设计与分析" ]
[ "李晖(1968-),男,西安电子科技大学教授、博士生导师,主要研究方向为密码学、无线网络安全、云计算安全、信息论与编码理论" ]
网络出版日期:2021-09,
纸质出版日期:2021-09-20
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刘梦如, 付玉龙, 曹进, 等. 基于区块链的天地一体化信息网络非交互式密钥交换方法[J]. 天地一体化信息网络, 2021,2(3):48-56.
Mengru LIU, Yulong FU, Jin CAO, et al. A Non-interactive Key Exchange Scheme for Space-IntegratedGround Information Network Based on Blockchain[J]. Space-integrated-ground information networks, 2021, 2(3): 48-56.
刘梦如, 付玉龙, 曹进, 等. 基于区块链的天地一体化信息网络非交互式密钥交换方法[J]. 天地一体化信息网络, 2021,2(3):48-56. DOI: 10.11959/j.issn.2096-8930.2021030.
Mengru LIU, Yulong FU, Jin CAO, et al. A Non-interactive Key Exchange Scheme for Space-IntegratedGround Information Network Based on Blockchain[J]. Space-integrated-ground information networks, 2021, 2(3): 48-56. DOI: 10.11959/j.issn.2096-8930.2021030.
面向天地一体化信息网络等卫星资源受限和通信时延较大的场景,针对卫星通信网络中非交互式密钥交换的需求,提出一个适用于天地一体化信息网络的、基于区块链和Diffie-Hellman密钥交换协议的非交互式密钥交换方案。该方案将区块链部署在天地一体化信息网络中,组成TDYTH区块链。卫星节点完成注册后,其相关信息保存在TDYTH区块链中。当卫星节点需要与地面网络控制中心等远距离节点完成卫星组网时,双方可在非交互的条件下查询TDYTH区块链中不可篡改的信息来生成会话密钥、建立共识,进而完成接入认证和密钥分发。仿真结果表明提出的方案可满足卫星等节点的非交互式密钥分发需求,且在安全性、稳健性等方面提升显著。
For scenarios such as space-integrated-ground information network where satellite resources are limited and communication delays are large
in response to the requirements of non-interactive key exchange in the satellite communication network
a non-interactive key exchange scheme for space-integrated-ground information network based on blockchain and Diffi e-Hellman key exchange protocol was proposed.The scheme arranged the blockchain in space-integrated-ground information network to form TDYTH blockchain.After the satellite node was registered
its related information was stored in TDYTH blockchain.When the satellite node needed to communicated with the long-distance node such as NCC
the two parties could query the immutable information stored in TDYTH blockchain to generated the shared session key
established consensus
and then completed access authentication and key distribution under non-interactive conditions.The result of simulation demonstrated that the scheme we proposed could meet the requirements of non-interactive key distribution of satellites and other nodes
and could signifi cantly improved security and robustness.
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