{"title":"Civil aircraft IVHM system analysis using model based system engineering","authors":"Shuo Chang, Yi Wang","doi":"10.1109/ICRSE.2017.8030800","DOIUrl":null,"url":null,"abstract":"Health management system is a relatively new system formed in recent decades compare to other traditional systems in an aircraft. It comprises by onboard part and off board part with a series of systems contribute to the same health management function. Yet it expands rapidly with the evolution of enable technology. Integrated vehicle health management (IVHM) is an emerging concept which try to integrate the former separated health management related equipment and product. For such a new system in forming, there is a good chance to apply system engineering method in defining the system functions, architecture and capture system requirements. With few endeavor put in this area, system engineering could better illustrate the word integrate in IVHM concept. One step more, model based system engineering transforms system engineering as the world enter industrial 4.0 age. This paper introduces application of model based system engineering in designing health management system for civil aircraft. A functional analysis and requirement capture process is described using SysML diagram. Every use case for health management function will be expanded into activity diagram/sequence diagram/state machine diagram to capture system functional and non-functional requirements. With this top down process, the analysis can be independent from system already on board. This process helps keep traceability of requirements and better understand the working scenario of aircraft health management system. A health management system then modeled using this process. The modelling mainly helps system concept formulation and evaluation, system architecture design and requirements flow down as well as clarify the future development of IVHM concept on civil aircraft.","PeriodicalId":317626,"journal":{"name":"2017 Second International Conference on Reliability Systems Engineering (ICRSE)","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2017-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2017 Second International Conference on Reliability Systems Engineering (ICRSE)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICRSE.2017.8030800","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
Health management system is a relatively new system formed in recent decades compare to other traditional systems in an aircraft. It comprises by onboard part and off board part with a series of systems contribute to the same health management function. Yet it expands rapidly with the evolution of enable technology. Integrated vehicle health management (IVHM) is an emerging concept which try to integrate the former separated health management related equipment and product. For such a new system in forming, there is a good chance to apply system engineering method in defining the system functions, architecture and capture system requirements. With few endeavor put in this area, system engineering could better illustrate the word integrate in IVHM concept. One step more, model based system engineering transforms system engineering as the world enter industrial 4.0 age. This paper introduces application of model based system engineering in designing health management system for civil aircraft. A functional analysis and requirement capture process is described using SysML diagram. Every use case for health management function will be expanded into activity diagram/sequence diagram/state machine diagram to capture system functional and non-functional requirements. With this top down process, the analysis can be independent from system already on board. This process helps keep traceability of requirements and better understand the working scenario of aircraft health management system. A health management system then modeled using this process. The modelling mainly helps system concept formulation and evaluation, system architecture design and requirements flow down as well as clarify the future development of IVHM concept on civil aircraft.
飞机健康管理系统是近几十年才形成的一个相对较新的系统。它由机载部分和非机载部分组成,通过一系列系统实现相同的健康管理功能。然而,随着使能技术的发展,它迅速扩展。一体化车辆健康管理(Integrated vehicle health management, IVHM)是一种新兴的概念,它试图将以往分离的与健康管理相关的设备和产品进行整合。对于这样一个正在形成的新系统,有很好的机会应用系统工程方法来定义系统功能、体系结构和捕获系统需求。在这个领域,系统工程可以更好地说明集成这个词在IVHM概念中的应用。随着世界进入工业4.0时代,基于模型的系统工程进一步改变了系统工程。介绍了基于模型的系统工程在民用飞机健康管理系统设计中的应用。使用SysML图描述了功能分析和需求捕获过程。健康管理功能的每个用例都将扩展为活动图/序列图/状态机图,以捕获系统功能和非功能需求。通过这种自上而下的过程,分析可以独立于已有的系统。该流程有助于保持需求的可追溯性,并更好地了解飞机健康管理系统的工作场景。然后使用此流程对健康管理系统进行建模。该建模主要有助于系统概念的制定与评估、系统架构设计和需求流程,并明确民用飞机IVHM概念的未来发展。