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首页> 外文期刊>Revue roumaine des sciences techniques >CRYPTOGRAPH KEY DISTRIBUTION WITH ELLIPTIC CURVE DIFFIE-HELLMAN ALGORITHM IN LOW-POWER DEVICES FOR POWER GRIDS
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CRYPTOGRAPH KEY DISTRIBUTION WITH ELLIPTIC CURVE DIFFIE-HELLMAN ALGORITHM IN LOW-POWER DEVICES FOR POWER GRIDS

机译:电力网低功率设备中椭圆曲线Diffie-Hellman算法的密码学密钥分配

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摘要

Power grid networks, that use symmetric ciphers for secured communication, need some system for key distribution. It might be a special secured channel or a method which allows key-distribution via public channel. The public channel method could be done with asymmetric ciphers, but the growing computing and power requirements of modern ciphers are problematic for low-power devices, which are used in this kind of networks and which should provide sufficient security for communication. This article deals with the implementation of the Diffie-Hellman algorithm over elliptic curves for ultra-low-power devices, used in power grid and smart grid networks. The algorithm uses elliptic curves over the prime field. Our method might be used for key-distribution via public channels without any other equipment or devices.
机译:使用对称密码进行安全通信的电网网络需要一些用于密钥分发的系统。它可能是特殊的安全通道,也可能是允许通过公共通道分发密钥的方法。公共信道方法可以使用非对称密码来完成,但是现代密码的不断增长的计算和功率需求对于在这种网络中使用的低功率设备是有问题的,低功率设备应为通信提供足够的安全性。本文讨论了用于椭圆形曲线的Diffie-Hellman算法的实现,该椭圆形曲线用于电网和智能电网中的超低功耗设备。该算法在素数场上使用椭圆曲线。我们的方法可用于通过公共渠道分发密钥,而无需任何其他设备。

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