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A novel dual euclidean algorithm for secure data transmission in smart grid system

机译:智能电网系统中安全数据传输的新型双欧氏算法

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Smart Grid is a widely distributed automated energy delivery network, which uses two way flows of energy and data to deliver the electricity to the customer with minimum disturbance. The backbone of smart grid is the communication network. The reliability of the smart grid depends on the data received from various distributed domains of the network. Because of the multifaceted nature of the network, the smart grid is highly prone to attacks. Another issue is the generation of vast amount of data. The massiveness of devices and data collected in smart grid makes the system unable to use the existing cryptographic algorithms. So, there is a need for a security algorithm that provides high security as well as executes promptly. In this paper, we propose an efficient security algorithm that can encrypt large amount of data in short time. The algorithm we propose uses the dual Euclidean algorithm with two keys k1 and k2. The keys are distributed by the trusted third party through secure channel. It provides NP-hard complexity and will not be able to disclose without knowing both keys. The security and performance of the algorithm are analyzed by comparing it with the widely used AES algorithm. Simulation results demonstrate the suitability of the proposed scheme for the vast data generating systems.
机译:Smart Grid是一个广泛分布的自动化能源输送网络,它使用能源和数据的双向流向以最小的干扰将电力输送给客户。智能电网的骨干是通信网络。智能电网的可靠性取决于从网络的各个分布式域接收的数据。由于网络的多面性,智能电网极易受到攻击。另一个问题是生成大量数据。智能电网中收集的大量设备和数据使系统无法使用现有的加密算法。因此,需要提供高安全性并迅速执行的安全算法。在本文中,我们提出了一种可以在短时间内加密大量数据的高效安全算法。我们提出的算法使用具有两个密钥k1和k2的双重欧几里得算法。密钥由受信任的第三方通过安全通道分发。它提供了NP难处理的复杂性,并且在不知道两个密钥的情况下将无法公开。通过与广泛使用的AES算法进行比较,分析了该算法的安全性和性能。仿真结果证明了该方案对海量数据生成系统的适用性。

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