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A Secure Intelligent and Smart-Sensing Approach for Industrial System Automation and Transmission over Unsecured Wireless Networks

机译:用于不安全无线网络上的工业系统自动化和传输的安全智能和智能传感方法

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摘要

In Industrial systems, Supervisory control and data acquisition (SCADA) system, the pseudo-transport layer of the distributed network protocol (DNP3) performs the functions of the transport layer and network layer of the open systems interconnection (OSI) model. This study used a simulation design of water pumping system, in-which the network nodes are directly and wirelessly connected with sensors, and are monitored by the main controller, as part of the wireless SCADA system. This study also intends to focus on the security issues inherent in the pseudo-transport layer of the DNP3 protocol. During disassembly and reassembling processes, the pseudo-transport layer keeps track of the bytes sequence. However, no mechanism is available that can verify the message or maintain the integrity of the bytes in the bytes received/transmitted from/to the data link layer or in the send/respond from the main controller/sensors. To properly and sequentially keep track of the bytes, a mechanism is required that can perform verification while bytes are received/transmitted from/to the lower layer of the DNP3 protocol or the send/respond to/from field sensors. For security and byte verification purposes, a mechanism needs to be proposed for the pseudo-transport layer, by employing cryptography algorithm. A dynamic choice security buffer (SB) is designed and employed during the security development. To achieve the desired goals of the proposed study, a pseudo-transport layer stack model is designed using the DNP3 protocol open library and the security is deployed and tested, without changing the original design.
机译:在工业系统,监督控制和数据采集(SCADA)系统中,分布式网络协议(DNP3)的伪传输层执行开放系统互连(OSI)模型的传输层和网络层的功能。这项研究使用了水泵系统的仿真设计,该系统中的网络节点直接与传感器无线连接,并由主控制器进行监视,作为无线SCADA系统的一部分。这项研究还旨在关注DNP3协议的伪传输层中固有的安全性问题。在拆卸和重新组装过程中,伪传输层会跟踪字节序列。但是,没有可用的机制可以验证消息或维护从/从数据链路层接收/发送的字节或从主控制器/传感器的发送/响应的字节的完整性。为了正确并顺序地跟踪字节,需要一种机制,该机制可以在从DNP3协议的下层接收/发送字节或向/从现场传感器发送/响应字节的同时执行验证。为了安全和字节验证的目的,需要通过采用加密算法为伪传输层提出一种机制。在安全开发过程中设计并使用了动态选择安全缓冲区(SB)。为了实现拟议研究的预期目标,使用DNP3协议开放库设计了伪传输层堆栈模型,并在不更改原始设计的情况下部署和测试了安全性。

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