基于侧链技术的电力物联网跨域认证研究
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TM71;TP391.44

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国家自然科学青年基金项目(61802174)


Cross domain authentication of power IoT based on side chain
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    摘要:

    能源互联网和5G通信技术的发展使电力物联网规模不断增大,对于跨域数据交换的业务需求缺少有效的认证手段。文中分析了电力物联网终端跨域认证需求和面临的问题,介绍了区块链跨链技术中的侧链技术及实现机理,并将其引入到电力物联网跨域认证方案中,提出一种基于侧链技术的电力物联网跨域认证方案。首先建立基于侧链技术的跨链认证架构,设计区块数据结构和双向锚定认证信息传递模型,通过公钥证书和数字签名生成认证凭据,通过时间戳确保认证信息的时效性。然后提出基于侧链技术的电力物联网终端跨域认证流程,实现认证凭证从申请域到认证域的可信传递。认证方案通过主链和侧链进行数据交互和共享,具有认证信息跨域有效、不可篡改以及分布式共识的特点。最后,在配电自动化应用场景中进行仿真,验证了该方案的可行性。

    Abstract:

    With the development of energy Internet and 5G communication technology, the scale of power IoT is increasing, and there is a lack of effective authentication means for cross domain data exchange. The requirements of power IoT terminal cross domain authentication are analyzed and the side chain technology and its implementation mechanism in the cross chain technology of blockchain are discussed. Then, a cross domain authentication scheme of power IoT based on side chain technology is proposed. Firstly, the cross chain authentication architecture based on side chain technology is established, and the block data structure and two-way peg authentication information transfer model are designed. The authentication credentials are generated by public key certificate and digital signature, and the timeliness of authentication information is ensured by time stamp. Then, the cross domain authentication process of power IoT terminal based on side chain technology is proposed, which realizes the authentication certificate from application domain to authentication trusted delivery of the domain. Through the interaction and sharing of main chain and side chain data, the authentication scheme has the characteristics of cross domain effective, tamper proof and distributed consensus. Finally, simulation experiments are carried out in the application scenarios of distribution automation system to verify the feasibility of the scheme.

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李大伟,霍瑛.基于侧链技术的电力物联网跨域认证研究[J].电力工程技术,2020,39(6):8-12

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  • 收稿日期:2020-06-05
  • 最后修改日期:2020-07-11
  • 录用日期:2020-08-18
  • 在线发布日期: 2020-12-01
  • 出版日期: 2020-11-28
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