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首页> 外文期刊>International Journal of Distributed Sensor Networks >Securing dynamic microgrid partition in the smart grid
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Securing dynamic microgrid partition in the smart grid

机译:保护智能电网中的动态微电网分区

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Message authentication has vital significance for dynamic microgrid partition in smart grid. However, current message authentication protocols based on “public key infrastructure” are too complicated to be deployed in smart grid and lack group information management function. On the other hand, group information management protocols based on “logic key hierarchy” need to broadcast a lot of messages during microgrid partition processes, resulting in high communication costs. To address these issues, we present a novel identity-based message authentication protocol for dynamic microgrid partition called securing dynamic microgrid partition. Similar to the protocols of this field, securing dynamic microgrid partition can provide message authentication and group information management functions. However, compared to other well-known approaches, securing dynamic microgrid partition uses Bloom filter for managing group information, which can reduce the communication cost of logic key hierarchy significantly. Moreover, securing dynamic microgrid partition uses Lagrange interpolation for designing new identity-based signing and verification algorithms, which is simple to be deployed in smart grid environment and much more efficient than current identity-based protocols. Experimental results show that the proposed approach is feasible for real-world applications.
机译:消息认证对于智能电网中的动态微电网分区具有至关重要的意义。但是,当前基于“公钥基础结构”的消息身份验证协议过于复杂,无法部署在智能电网中,并且缺乏组信息管理功能。另一方面,基于“逻辑密钥层次”的组信息管理协议需要在微电网分区过程中广播大量消息,从而导致较高的通信成本。为了解决这些问题,我们提出了一种新颖的基于身份的消息认证协议,用于动态微网格分区,称为安全动态微网格分区。与该领域的协议类似,保护动态微网格分区可以提供消息身份验证和组信息管理功能。但是,与其他众所周知的方法相比,保护动态微网格分区使用Bloom过滤器管理组信息,这可以显着降低逻辑密钥层次结构的通信成本。此外,保护动态微网格分区使用Lagrange插值来设计新的基于身份的签名和验证算法,该算法易于部署在智能网格环境中,并且比当前基于身份的协议效率更高。实验结果表明,该方法对实际应用是可行的。

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