智能电网中DDoS和嗅探器检测的一种新型IDS技术

S. Shitharth, D. Winston
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引用次数: 16

摘要

智能电网没有一个单一的标准定义来定义它。通常,智能电网是在普通电网之上的先进技术的结合。智能电网提供了一些新的特性,主要包括双向通信和自动自愈能力。与互联网一样,智能电网由许多新技术和新设备结合在一起。这些技术与电网合作,根据我们快速变化的电力需求做出数字化响应。尽管它有很多优点,但由于其脆弱的数据安全性,它遭受了很多损失。智能电网通常有一个称为SCADA的集中控制系统来监控和维护所有的数据源。攻击者总是倾向于通过多种类型的攻击偷偷地通过这个集中式系统。由于SCADA系统没有明确的协议,它可以被固定为公用事业需要的任何一种协议。本文提出的方法提供了两种技术,一种是检测和去除网络中的嗅探器。另一个是保护SCADA系统免受DDoS攻击。使用混杂模式检测和MD-5算法查找嗅探器,通过分析TTL值,对DDoS攻击进行识别和隔离。本文还将所提出的技术与现有的实时IDS工具进行了比较,以显示其更好的带宽消耗。
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A novel IDS technique to detect DDoS and sniffers in smart grid
Smart grid doesn't have a single standard definition to define it. Commonly, Smart Grid is an incorporation of advanced technologies over the normal electrical grid. Smart grid provides some novel features that mainly includes two way communication and automatic self-healing capability. Like the Internet, the Smart Grid consists of many new technologies and equipment that are bind together. These technologies works with the electrical grid to respond digitally accordingly to our quickly changing electric demand. Even though it is stuffed with pros, it suffers a lot due to its fragile data security. Smart grid usually have a centralized control system called SCADA to monitor and maintain all the data sources. Attackers would always tend to sneak through this centralized system through numerous types of attacks. Since SCADA system has no definite protocol, it can be fixed into any kind of protocol that is required by the utility. In this paper, the proposed method provides two techniques one to detect and remove sniffers from the network. Another one is to safeguard the SCADA system from the DDoS attack. Promiscuous mode detection and MD-5 algorithm is used to find the sniffers and by analyzing the TTL values, DDoS attack is been identified and isolated. The proposed technique is also compared with a real time existing IDS tool to show its better bandwidth consumption.
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