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Health Management Design Considerations for an All Electric Aircraft

机译:所有电机的健康管理设计考虑因素

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摘要

This paper explains the On-board IVHM system for a State-Of-the-Art “All electric aircraft” and explores implementing practices for analysis based design, illustrations and development of IVHM capabilities. On implementing the system as an on board system will carry out fault detection and isolation, recommend maintenance action, provides prognostic capabilities to highest possible problems before these became critical. The vehicle Condition Based Maintenance (CBM) and adaptive control algorithm development based on an open architecture system which allow “Plug in and Plug off” various systems in a more efficient and flexible way.The scope of the IVHM design included consideration of data collection and communication from the continuous monitoring of aircraft systems, observation of current system states, and processing of this data to support proper maintenance and repair actions. Legacy commercial platforms and HM applications for various subsystems of these aircraft were identified. The list of possible applications was down-selected to a reduced number that offer the highest value using a QFD matrix based on the cost benefit analysis. Requirements, designs and system architectures were developed for these applications. The application areas considered included engine, tires and brakes, pneumatics and air conditioning, generator, and structures. IVHM design program included identification of application sensors, functions and interfaces; IVHM system architecture, descriptions of certification requirements and approaches; the results of a cost/benefit analyses and recommended standards and technology gaps. The work concluded with observations on nature of HM, the technologies, and the approaches and challenges to its integration into the current avionics, support system and business infrastructure.The IVHM design for All Electric Hybrid Wing Body (HWB) Aircraft has a challenging task of addressing and resolving the shortfalls in the legacy IVHM framework. The challenges like sensor battery maintenance, handling big data from SHM, On-Ground Data transfer by light, Extraction of required features at sensor nodes/RDCUs, ECAM/EICAS Interfaces, issues of certification of wireless SHM network has been addressed in this paper. Automatic Deployable Flight Data recorders are used in the design of HWB aircraft in which critical flight parameters are recorded.The component selection of IVHM system including software and hardware have been based on the COTS technology. The design emphasis on high levels of reliability and maintainability. The above systems are employed using IMA and integrated on AFDX data bus. The design activities has to pass through design reviews on systematic basis and the overall approach has been to make system highly lighter, effective “All weather” compatible and modular. It is concluded from the study of advancement in IVHM capabilities and new service offerings that IVHM technology is emerging as well as challenging. With the inclusion of adaptive control, vehicle condition based maintenance and pilot fatigue monitoring, IVHM evolved as a more proactively involved on-board system.
机译:本文介绍了用于最先进的“所有电机”的车载IVHM系统,并探讨了基于分析的设计,插图和IVHM功能的发展的实践。在实施系统作为底板系统的情况下,将进行故障检测和隔离,推荐维护动作,在这些变得至关重要之前为最高可能的问题提供预后功能。基于开放式架构系统的基于车辆条件的维护(CBM)和自适应控制算法开发,允许以更有效灵活的方式“插入和插入”各种系统。IVHM设计的范围包括对数据收集的考虑从航空器系统的连续监控,观察当前系统状态的沟通,以及这些数据的处理,以支持适当的维护和修复行动。鉴定了这些飞机各种子系统的遗产商业平台和HM应用。可能的应用程序列表被关闭到使用QFD矩阵的缩小数量,根据成本效益分析,使用QFD矩阵提供最高值。为这些应用开发了要求,设计和系统架构。考虑的应用领域包括发动机,轮胎和制动器,气动和空调,发电机和结构。 IVHM设计程序包括识别应用传感器,功能和接口; IVHM系统架构,认证要求和方法的描述;成本/益处分析的结果和推荐的标准和技术差距。这些工作结束了关于HM,技术和融合到当前航空电子学,支持系统和业务基础设施的方法和挑战的观察。所有电动混合翼机(HWB)飞机的IVHM设计具有具有挑战性的任务解决和解决遗产IVHM框架中的不足。传感器电池维护等挑战,从SHM处理大数据,通过光线地面数据传输,传感器节点/ rdcus的所需功能提取,eCAM / EICAS接口,无线SHM网络的认证问题已经解决了。自动可部署的飞行数据记录器用于HWB飞机的设计,其中记录了关键飞行参数。包括软件和硬件的IVHM系统的组成部分基于COTS技术。设计强调高水平的可靠性和可维护性。使用IMA采用上述系统并集成在AFDX数据总线上。设计活动必须通过系统基础的设计评论,而整体方法已经使系统高度较轻,有效的“全天候”兼容和模块化。从IVHM能力的进步和新的服务提出的研究中得出结论,IVHM技术正在出现并具有挑战性。凭借自适应控制,车辆条件的维护和试验疲劳监测,IVHM演变为更积极地涉及板载系统。

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