Use of Simulator Equipment for the Development and Testing of Vessel Control Systems

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2020-12-01 DOI:10.2478/ecce-2020-0009
S. Zinchenko, V. Mateichuk, P. Nosov, I. S. Popovych, O. Solovey, P. Mamenko, O. Grosheva
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引用次数: 17

Abstract

Abstract One of the ways to reduce human influence on the control process is the development of automated and automatic control systems. Modern control systems are quite complex and require preliminary ground testing. The article considers the issues of creating Imitation Modelling Stand for such control system synthesis and testing. For this reason, a Control System Model was integrated into the local computer network of the navigation simulator NTPRO 5000. The authors of the paper developed and tested software for information exchange between the navigation simulator and the Control System Model. The authors also developed a functional module of collision avoidance with many targets for testing in a closed loop system with virtual training objects. The results showed that the developed Imitation Modelling Stand allowed developing and testing functional modules of the control systems. In comparison with the found analogues, it is easy to include in a closed simulation cycle various models of command devices, actuators, control objects, objects of training scene, weather conditions; it is universal both for solving problems of manual control and for developing and testing automatic and automated control systems; it is not highly specialised and is created at minimal costs.
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模拟器设备在船舶控制系统开发和测试中的应用
摘要减少人类对控制过程影响的方法之一是开发自动化和自动控制系统。现代控制系统相当复杂,需要进行初步的地面测试。本文针对这种控制系统的综合与测试,探讨了建立仿真建模台的问题。为此,将控制系统模型集成到导航模拟器NTPRO 5000的本地计算机网络中。本文作者开发并测试了导航模拟器和控制系统模型之间的信息交换软件。作者还开发了一个具有多个目标的防撞功能模块,用于在具有虚拟训练对象的闭环系统中进行测试。结果表明,开发的仿真建模台可以对控制系统的功能模块进行开发和测试。与发现的类似物相比,在一个封闭的模拟循环中,很容易包括指挥装置、执行器、控制对象、训练场景对象、天气条件的各种模型;它既适用于解决手动控制问题,也适用于开发和测试自动和自动控制系统;它不是高度专业化的,并且是以最低的成本创建的。
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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