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分析机器人平台上的网络物理威胁。

Analyzing Cyber-Physical Threats on Robotic Platforms.

机构信息

Department of Computer Engineering, The Hashemite University, Zarqa 13115, Jordan.

Department of Computer Engineering, The University of Jordan, Amman 11942, Jordan.

出版信息

Sensors (Basel). 2018 May 21;18(5):1643. doi: 10.3390/s18051643.

Abstract

Robots are increasingly involved in our daily lives. Fundamental to robots are the communication link (or stream) and the applications that connect the robots to their clients or users. Such communication link and applications are usually supported through client/server network connection. This networking system is amenable of being attacked and vulnerable to the security threats. Ensuring security and privacy for robotic platforms is thus critical, as failures and attacks could have devastating consequences. In this paper, we examine several cyber-physical security threats that are unique to the robotic platforms; specifically the communication link and the applications. Threats target integrity, availability and confidential security requirements of the robotic platforms, which use MobileEyes/arnlServer client/server applications. A robot attack tool (RAT) was developed to perform specific security attacks. An impact-oriented approach was adopted to analyze the assessment results of the attacks. Tests and experiments of attacks were conducted in simulation environment and physically on the robot. The simulation environment was based on MobileSim; a software tool for simulating, debugging and experimenting on MobileRobots/ActivMedia platforms and their environments. The robot platform PeopleBot was used for physical experiments. The analysis and testing results show that certain attacks were successful at breaching the robot security. Integrity attacks modified commands and manipulated the robot behavior. Availability attacks were able to cause Denial-of-Service (DoS) and the robot was not responsive to MobileEyes commands. Integrity and availability attacks caused sensitive information on the robot to be hijacked. To mitigate security threats, we provide possible mitigation techniques and suggestions to raise awareness of threats on the robotic platforms, especially when the robots are involved in critical missions or applications.

摘要

机器人越来越多地参与我们的日常生活。机器人的基础是通信链路(或流)以及将机器人与其客户端或用户连接起来的应用程序。这种通信链路和应用程序通常通过客户端/服务器网络连接来支持。这种网络系统容易受到攻击,容易受到安全威胁的影响。因此,确保机器人平台的安全性和隐私性至关重要,因为故障和攻击可能会产生毁灭性的后果。在本文中,我们研究了一些针对机器人平台特有的网络物理安全威胁;特别是通信链路和应用程序。威胁针对的是使用 MobileEyes/arnlServer 客户端/服务器应用程序的机器人平台的完整性、可用性和机密性安全要求。开发了一种机器人攻击工具 (RAT) 来执行特定的安全攻击。采用面向影响的方法来分析攻击的评估结果。在模拟环境中和机器人上进行了攻击的测试和实验。模拟环境基于 MobileSim;这是一个用于模拟、调试和实验 MobileRobots/ActivMedia 平台及其环境的软件工具。PeopleBot 机器人平台用于物理实验。分析和测试结果表明,某些攻击成功地突破了机器人的安全性。完整性攻击修改了命令并操纵了机器人的行为。可用性攻击能够造成拒绝服务 (DoS),机器人对 MobileEyes 命令没有响应。完整性和可用性攻击导致机器人上的敏感信息被劫持。为了减轻安全威胁,我们提供了可能的缓解技术和建议,以提高对机器人平台的威胁意识,特别是当机器人参与关键任务或应用程序时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e2d/5982649/24bf5e65603b/sensors-18-01643-g001.jpg

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