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A security scheme for intelligent substation communications considering real-time performance

机译:考虑实时性能的智能变电站通信安全方案

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Tampering, forgery and theft of the measurement and control messages in a smart grid could cause one breakdown in the power system. However, no security measures are employed for communications in intelligent substations. Communication services in an intelligent substation have high demands for real-time performance, which must be considered when deploying security measures. This paper studies the security requirements of communication services in intelligent substations, analyzes the security capabilities and shortages of IEC 62351, and proposes a novel security scheme for intelligent substation communications. This security scheme covers internal and telecontrol communications, in which the real-time performance of each security measure is considered. In this scheme, certificateless public key cryptography (CLPKC) is used to avoid the latency of certificate exchange in certificate-based cryptosystem and the problem of key escrow in identity-based cryptosystem; the security measures of generic object-oriented substation event, sampled measure value and manufacturing message specification in IEC 62351 are improved to meet the real-time requirements of the messages as well as to provide new security features to resist repudiation and replay attacks; and the security at transport layer is modified to fit CLPKC, which implements mutual authentication by exchanging signatures. Furthermore, a deployment of CLPKC in an intelligent substation is presented. We also evaluate the security properties of the scheme and analyze the end-to-end delays of secured services by combining theoretical calculation and simulation in this paper. The results indicate that the proposed scheme meets the requirements of security and real-time performance of communications in intelligent substations.
机译:智能电网中的测量和控制消息的篡改,伪造和盗窃可能会导致电力系统故障。但是,智能变电站中的通信没有采用安全措施。智能变电站中的通信服务对实时性能有很高的要求,在部署安全措施时必须考虑这些要求。本文研究了智能变电站通信服务的安全要求,分析了IEC 62351的安全能力和不足,提出了一种新颖的智能变电站通信安全方案。该安全方案涵盖内部和远程控制通信,其中考虑了每种安全措施的实时性能。在该方案中,使用无证书公钥密码术(CLPKC)来避免基于证书的密码系统中证书交换的延迟以及基于身份的密码系统中密钥托管的问题。改进了IEC 62351中通用的面向对象变电站事件的安全措施,抽样的测量值和制造消息规范,以满足消息的实时要求,并提供新的安全功能以抵抗抵赖和重放攻击;并修改了传输层的安全性以适合CLPKC,后者通过交换签名来实现相互认证。此外,介绍了在智能变电站中部署CLPKC。我们还通过结合理论计算和仿真来评估该方案的安全性,并分析安全服务的端到端延迟。结果表明,该方案满足智能变电站通信安全性和实时性的要求。

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