Description and fault diagnosis in autonomous underwater vehicles based on ontologies

Timoshenko Alexander, Zuev Alexander, Mursalimov Eduard, Gribova Valeria, Inzartsev Alexander
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Abstract

The paper proposes new ontologies for describing and diagnosing malfunctions of subsystems of autonomous underwater vehicles (AUV) as a part of the development of a previously created approach to the intelligent diagnosis of these vehicles using knowledge bases. To implement this approach, it is proposed to use two knowledge bases, one of which describes malfunctions, features for their identification and actions necessary to adapt to the negative consequences caused by the appearance of these malfunctions. The other database contains information about the main subsystems of the AUV, devices and replaceable modules, as well as the states they may be in. Knowledge bases are used in the work of the intelligent control-emergency system (ICES) on board the AUV, which allows for comprehensive functional diagnostics of all subsystems of the device, including payload modules, as well as adaptation to the consequences of emerging malfunctions, taking into account the actual cause-and-effect relationships between them. To test the system’s operability, a prototype was developed. The results of the prototype simulation showed that ICES performs the tasks and can be implemented on the onboard computers of existing AUV using well-known programming technologies.
基于本体的自主水下航行器描述与故障诊断
本文提出了用于描述和诊断自主水下航行器(AUV)子系统故障的新本体,作为开发先前创建的使用知识库对这些航行器进行智能诊断的方法的一部分。为了实现这一方法,建议使用两个知识库,其中一个知识库描述故障、识别故障的特征和适应故障出现所导致的负面后果所需的操作。另一个数据库包含AUV的主要子系统、设备和可替换模块的信息,以及它们可能处于的状态。知识库用于AUV上的智能控制应急系统(ICES)的工作,该系统允许对设备的所有子系统(包括有效载荷模块)进行全面的功能诊断,并考虑到它们之间的实际因果关系,适应新出现的故障后果。为了测试系统的可操作性,开发了一个原型。原型仿真结果表明,ICES可以完成任务,并且可以使用知名的编程技术在现有AUV的机载计算机上实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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