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Secure SCADA-IoT Platform for Industrial Automation and Control: A Collaborative-Communication Designed Model

机译:用于工业自动化和控制的安全SCADA-IoT平台:协作通信设计模型

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This paper discusses the new auspicious trends of internet of things (IoT) and its advanced developments in various sectors of todaya??s IT arena, including for industrial sectors. Each object acts as a communication node (or entity) that is able to communicate with other nodes, and corresponding information could be accessed and controlled, via several of todaya??s commonly used electronic devices such as laptops and cellular devices, etc., through an IoT-designed platform. Moreover, in industrial automation sectors, the employment of IoT is very advantageous, in terms of remote communication support; low-cost operations and maintenance; and autonomous collaborations among remote networked field devices, etc. The facility of autonomous collaborations provisioned by IoT, in the context of a supervisory control and data acquisition (SCADA) system as part of an industrial control system, somehow exists in a distributed network protocol (DNP3) during automation and controls. Therefore, the current study takes the step to model a new IoT framework for a SCADA system, which will be efficient at facilitating industrial automation through the collaborative DNP3-Modbus acquisitions and automation, called the SCADA-IoT system. An IoT gateway is employed and configured that supports for both SCADA protocols, such as DNP3 and Modbus and is efficient at communicating, from networked field devices, with inter-processing from both. In the overall SCADA-IoT design, the transmission is carried from an enormous amount of sensors and/or field devices, employing proprietary and nonproprietary protocols; further, sent information is analyzed via big data, stored in a cloud center, monitored and controlled over a SCADA-IoT supportive platform. At the same time, information security (IS) is a big associated challenge and one of the main contributions of this study. Thus, this study also analyzed the potential security mechanisms for securing SCADA-IoT and found cryptography to be a noteworthy security solution, based on the proposed system requirements and its communication demands.
机译:本文讨论了物联网(IoT)的新吉祥趋势及其在当今IT领域各个领域(包括工业领域)的先进发展。每个对象充当能够与其他节点进行通信的通信节点(或实体),并且可以通过当今几种常用的电子设备(例如笔记本电脑和蜂窝设备等)来访问和控制相应的信息,通过物联网设计的平台。此外,在工业自动化领域,就远程通信支持而言,物联网的使用非常有利。低成本的运营和维护;物联网提供的自主协作的功能,在作为工业控制系统一部分的监督控制和数据采集(SCADA)系统的背景下,某种程度上存在于分布式网络协议中( DNP3)。因此,当前的研究迈出了一步,为SCADA系统建立了一个新的物联网框架,该框架将通过协作的DNP3-Modbus采购和自动化(称为SCADA-IoT系统)有效地促进工业自动化。采用并配置了IoT网关,该网关同时支持SCADA协议(例如DNP3和Modbus),并且可以有效地从联网的现场设备进行通信,并进行两者之间的交互处理。在整个SCADA-IoT设计中,传输是通过使用专有和非专有协议的大量传感器和/或现场设备进行的;此外,发送的信息将通过大数据进行分析,存储在云中心中,并通过SCADA-IoT支持平台进行监控。同时,信息安全(IS)是一项重大的挑战,也是本研究的主要贡献之一。因此,本研究还根据建议的系统要求及其通信要求,分析了用于保护SCADA-IoT的潜在安全机制,并发现加密是值得关注的安全解决方案。

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