Cyberattacks targeting industrial control systems(ICS)are becoming more sophisticated and advanced than in the past.A programmable logic controller(PLC),a core component of ICS,controls and monitors sensors and actuat...Cyberattacks targeting industrial control systems(ICS)are becoming more sophisticated and advanced than in the past.A programmable logic controller(PLC),a core component of ICS,controls and monitors sensors and actuators in the field.However,PLC has memory attack threats such as program injection and manipulation,which has long been a major target for attackers,and it is important to detect these attacks for ICS security.To detect PLC memory attacks,a security system is required to acquire and monitor PLC memory directly.In addition,the performance impact of the security system on the PLC makes it difficult to apply to the ICS.To address these challenges,this paper proposes a system to detect PLC memory attacks by continuously acquiring and monitoring PLC memory.The proposed system detects PLC memory attacks by acquiring the program blocks and block information directly from the same layer as the PLC and then comparing them in bytes with previous data.Experiments with Siemens S7-300 and S7-400 PLC were conducted to evaluate the PLC memory detection performance and performance impact on PLC.The experimental results demonstrate that the proposed system detects all malicious organization block(OB)injection and data block(DB)manipulation,and the increment of PLC cycle time,the impact on PLC performance,was less than 1 ms.The proposed system detects PLC memory attacks with a simpler detection method than earlier studies.Furthermore,the proposed system can be applied to ICS with a small performance impact on PLC.展开更多
可编程逻辑控制器(Programmable Logic Controller,PLC)是智能智造生产现场控制的大脑。智能制造国家战略背景下,在高校工程训练环节中加入PLC智能控制相关的实训教学内容,对培养智能制造领域人才、对接国家产业转型升级需求显得尤为迫...可编程逻辑控制器(Programmable Logic Controller,PLC)是智能智造生产现场控制的大脑。智能制造国家战略背景下,在高校工程训练环节中加入PLC智能控制相关的实训教学内容,对培养智能制造领域人才、对接国家产业转型升级需求显得尤为迫切。本文针对传统PLC智能控制实训教学设备存在的不足,设计了一种基于PLC的准工厂级智能包装生产线实训教学系统。该系统紧跟当前智能制造生产前沿,引入数据采集与监视控制系统(Supervisory Control and Data Acquisition,SCADA)、工业机器人等先进技术,提供了更加贴近当前智能生产实际的实训平台,实景式呈现PLC在完整智能生产线上的应用。将生产线设计为既相互独立又能够全线贯通的若干子功能模块,可以实现递进式的实训培养模式,极大地提高高校工程训练中PLC的实训教学效率和质量。展开更多
This paper addresses the problems faced in programmable logic controller(PLC)teaching in vocational colleges and proposes countermeasures to overcome these challenges.The study emphasizes the need for a deeper underst...This paper addresses the problems faced in programmable logic controller(PLC)teaching in vocational colleges and proposes countermeasures to overcome these challenges.The study emphasizes the need for a deeper understanding of fundamental concepts and the integration of practical application in PLC education.It suggests involving students in teacher-led projects to enhance their programming skills and problem-solving skills.Additionally,the paper highlights the importance of interactive learning and collaborative discussions to foster student engagement.Furthermore,it emphasizes the cultivation of innovation consciousness through participation in innovation competitions and projects.The implementation of these strategies has shown positive results in improving learning outcomes and preparing students for careers in automation and control.This research contributes to the development of effective teaching approaches in PLC education in vocational colleges.展开更多
针对柔性生产线仓储环节效率低、空间利用率不足及和生产线协同性差的问题,该文以可编程逻辑控制器(PLC)为核心构建柔性生产线立体仓库系统。选用西门子S7-1200 CPU 1214C为主控单元,使用步进电机作为运动系统、多类型传感器及以太网为...针对柔性生产线仓储环节效率低、空间利用率不足及和生产线协同性差的问题,该文以可编程逻辑控制器(PLC)为核心构建柔性生产线立体仓库系统。选用西门子S7-1200 CPU 1214C为主控单元,使用步进电机作为运动系统、多类型传感器及以太网为通信模块,实现货物自动存取、精准定位、生产线实时协同。软件基于TIA Portal V16平台,以梯形图实现复位、运行、急停等核心功能,同时支持单机与联机2种工作模式。经调试,系统可稳定完成4×4货位的货物存取作业,定位精度达±0.5 mm,单货位平均存取时间1.3 min,与柔性生产线主站通信成功率100%,有效提升仓储自动化水平与生产协同效率。展开更多
基金supported by the Korea WESTERN POWER(KOWEPO)(2022-Commissioned Research-11,Development of Cyberattack Detection Technology for New and Renewable Energy Control System Using AI(Artificial Intelligence),50%)the Institute of Information&Communications Technology Planning&Evaluation(IITP)grant funded by the Korea government(MSIT)(No.2021-0-01806,Development of Security by Design and Security Management Technology in Smart Factory,40%)the Gachon University Research Fund of 2023(GCU-202110280001,10%).
摘要Cyberattacks targeting industrial control systems(ICS)are becoming more sophisticated and advanced than in the past.A programmable logic controller(PLC),a core component of ICS,controls and monitors sensors and actuators in the field.However,PLC has memory attack threats such as program injection and manipulation,which has long been a major target for attackers,and it is important to detect these attacks for ICS security.To detect PLC memory attacks,a security system is required to acquire and monitor PLC memory directly.In addition,the performance impact of the security system on the PLC makes it difficult to apply to the ICS.To address these challenges,this paper proposes a system to detect PLC memory attacks by continuously acquiring and monitoring PLC memory.The proposed system detects PLC memory attacks by acquiring the program blocks and block information directly from the same layer as the PLC and then comparing them in bytes with previous data.Experiments with Siemens S7-300 and S7-400 PLC were conducted to evaluate the PLC memory detection performance and performance impact on PLC.The experimental results demonstrate that the proposed system detects all malicious organization block(OB)injection and data block(DB)manipulation,and the increment of PLC cycle time,the impact on PLC performance,was less than 1 ms.The proposed system detects PLC memory attacks with a simpler detection method than earlier studies.Furthermore,the proposed system can be applied to ICS with a small performance impact on PLC.
摘要可编程逻辑控制器(Programmable Logic Controller,PLC)是智能智造生产现场控制的大脑。智能制造国家战略背景下,在高校工程训练环节中加入PLC智能控制相关的实训教学内容,对培养智能制造领域人才、对接国家产业转型升级需求显得尤为迫切。本文针对传统PLC智能控制实训教学设备存在的不足,设计了一种基于PLC的准工厂级智能包装生产线实训教学系统。该系统紧跟当前智能制造生产前沿,引入数据采集与监视控制系统(Supervisory Control and Data Acquisition,SCADA)、工业机器人等先进技术,提供了更加贴近当前智能生产实际的实训平台,实景式呈现PLC在完整智能生产线上的应用。将生产线设计为既相互独立又能够全线贯通的若干子功能模块,可以实现递进式的实训培养模式,极大地提高高校工程训练中PLC的实训教学效率和质量。
基金The Project of China Vocational Education Association(ZJS2022YB024)。
摘要This paper addresses the problems faced in programmable logic controller(PLC)teaching in vocational colleges and proposes countermeasures to overcome these challenges.The study emphasizes the need for a deeper understanding of fundamental concepts and the integration of practical application in PLC education.It suggests involving students in teacher-led projects to enhance their programming skills and problem-solving skills.Additionally,the paper highlights the importance of interactive learning and collaborative discussions to foster student engagement.Furthermore,it emphasizes the cultivation of innovation consciousness through participation in innovation competitions and projects.The implementation of these strategies has shown positive results in improving learning outcomes and preparing students for careers in automation and control.This research contributes to the development of effective teaching approaches in PLC education in vocational colleges.