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A water distribution and treatment simulation for testing cyber security enhancements for water sector SCADA systems.

机译:一种水分配和处理模拟,用于测试水部门SCADA系统的网络安全增强功能。

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摘要

Supervisory control and data acquisition (SCADA) systems are used by many critical infrastructures including electric power production and distribution, water and waste water treatment, rail transportation, and gas and oil distribution. Originally isolated proprietary systems, SCADA systems are increasingly connected to enterprise networks and the Internet and today use commercial hardware and software. As a result SCADA systems now face serious cyber-security threats. The need for testing and evaluation of developed cyber-security solutions presents a challenge since evaluation on actual systems is usually not possible and building complete physical testbeds is costly. This thesis presents the design and development of a water systems simulation for testing and evaluation of cyber-security enhanced field devices.;The simulation consists of two main parts: a human machine interface/master terminal unit (HMI/MTU) component and a water treatment and distribution component. The HMI/MTU part supports new security protocols used to communicate with the hardened remote terminal unit (RTU). The water system simulates a water treatment and distribution center. A data acquisition (DAQ) module was used in conjunction with LabVIEW(TM) to create a water distribution and treatment simulation that could be interfaced with an actual field device. Field device I/Os are wired to the DAQ which then interface with the LabVIEWT(TM) simulation. The simulation supports: selectable polling of I/O, graphical representation of I/O, random water usage, constant water usage, and simulation data collection. The simulation uses a modular design pattern so that it can be easily extended in the future. Initial testing with a hardened RTU prototype confirmed the ability of the simulation to interact with real hardware and identified some minor errors in the prototype's security protocol implementation. With additional DAQ devices the simulation could be extended to simulate larger water systems.
机译:监视控制和数据采集(SCADA)系统被许多关键基础设施所使用,包括电力生产和分配,水和废水处理,铁路运输以及天然气和石油分配。 SCADA系统最初是隔离的专有系统,现在越来越多地连接到企业网络和Internet,如今使用商业硬件和软件。结果,SCADA系统现在面临严重的网络安全威胁。对测试和评估已开发的网络安全解决方案的需求提出了挑战,因为通常无法在实际系统上进行评估,并且构建完整的物理测试平台的成本很高。本文介绍了用于测试和评估网络安全增强型现场设备的水系统仿真的设计和开发。该仿真包括两个主要部分:人机界面/主终端单元(HMI / MTU)组件和水处理和分配组件。 HMI / MTU部件支持用于与加固的远程终端单元(RTU)通信的新安全协议。水系统模拟水处理和分配中心。数据采集​​(DAQ)模块与LabVIEW(TM)结合使用,可创建可与实际现场设备连接的水分配和处理模拟。现场设备的I / O连接到DAQ,然后与LabVIEWT™仿真接口。该模拟支持:I / O的可选轮询,I / O的图形表示,随机用水,恒定用水和模拟数据收集。该仿真使用模块化设计模式,以便将来可以轻松扩展。使用强化的RTU原型进行的初始测试证实了仿真与真实硬件进行交互的能力,并确定了原型安全协议实施中的一些小错误。使用附加的DAQ设备,可以将模拟扩展为模拟更大的供水系统。

著录项

  • 作者

    Adams, Justin Robert.;

  • 作者单位

    University of Louisville.;

  • 授予单位 University of Louisville.;
  • 学科 Engineering Computer.;Computer Science.;Engineering Electronics and Electrical.;Engineering Civil.
  • 学位 M.Eng.
  • 年度 2011
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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