Exploration of Smart Grid Device Cybersecurity Vulnerability Using Shodan

Darryl Ackley, Hengzhao Yang
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引用次数: 2

Abstract

The generation, transmission, distribution, and storage of electric power is becoming increasingly decentralized. Advances in Distributed Energy Resources (DERs) are rapidly changing the nature of the power grid. Moreover, the accommodation of these new technologies by the legacy grid requires that an increasing number of devices be Internet connected so as to allow for sensor and actuator information to be collected, transmitted, and processed. With the wide adoption of the Internet of Things (IoT), the cybersecurity vulnerabilities of smart grid devices that can potentially affect the stability, reliability, and resilience of the power grid need to be carefully examined and addressed. This is especially true in situations in which smart grid devices are deployed with default configurations or without reasonable protections against malicious activities. While much work has been done to characterize the vulnerabilities associated with Supervisory Control and Data Acquisition (SCADA) and Industrial Control System (ICS) devices, this paper demonstrates that similar vulnerabilities associated with the newer class of IoT smart grid devices are becoming a concern. Specifically, this paper first performs an evaluation of such devices using the Shodan platform and text processing techniques to analyze a potential vulnerability involving the lack of password protection. This work further explores several Shodan search terms that can be used to identify additional smart grid components that can be evaluated in terms of cybersecurity vulnerabilities. Finally, this paper presents recommendations for the more secure deployment of such smart grid devices.
基于Shodan的智能电网设备网络安全漏洞研究
电力的生产、传输、分配和储存正变得越来越分散。分布式能源(DERs)技术的进步正在迅速改变电网的性质。此外,传统电网对这些新技术的适应要求越来越多的设备与互联网连接,以便收集、传输和处理传感器和执行器信息。随着物联网(IoT)的广泛采用,需要仔细检查和解决智能电网设备的网络安全漏洞,这些漏洞可能会影响电网的稳定性、可靠性和弹性。在使用默认配置部署智能电网设备或没有针对恶意活动的合理保护的情况下尤其如此。虽然已经做了很多工作来描述与监控和数据采集(SCADA)和工业控制系统(ICS)设备相关的漏洞,但本文表明,与新型物联网智能电网设备相关的类似漏洞正在成为一个问题。具体而言,本文首先使用Shodan平台和文本处理技术对此类设备进行评估,分析缺乏密码保护的潜在漏洞。这项工作进一步探索了几个Shodan搜索词,可用于识别可根据网络安全漏洞进行评估的其他智能电网组件。最后,本文提出了更安全部署此类智能电网设备的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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