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The Joint Strike Fighter (JSF) PHM concept: Potential impact on aging aircraft problems

机译:联合攻击战斗机(JSF)PHM概念:对老化飞机问题的潜在影响

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The JSF Autonomic Logistics (AL) system is a new supportability concept that will enable the aircraft to be better utilized throughout the life of the platform, and at a lower cost as compared with legacy aircraft. Autonomic Logistics is, simply put, the automation of the logistics environment such that little human intervention is needed to engage the logistics cycle. Actions that will be automated within the JSF supportability concept include maintenance scheduling, flight scheduling, ordering spare parts, and the like. The cornerstone of Autonomic Logistics is an advanced diagnostic and Prognostics and Health Management (PHM) system. The PHM provides the data, information, and knowledge for initiating the AutoLog chain of events. PHM is the ability of the aircraft to do fault detection (FD), fault isolation (FI), and accommodation real-time on-board the aircraft. Along with this FD/FI capability, some of the other facets of PHM include fault prediction on selected components. parts life usage tracking, fault filtering and reporting, and recommended action to the pilot only when action is necessary. It is intended that in most cases, maintenance actions and lifing decisions will be based on the actual material condition of the equipment components. The proposed architecture of this PHM concept includes a hierarchical approach where data begins at the sensor level and is transported up to area reasoners that turns this data into information about a particular subsystem. From the area reasoner, the information is then passed up to a top level Air Vehicle Reasoner where subsystem information is then fused to give knowledge about the health of the entire air vehicle. Additionally, many of the technologies that are being developed for the JSF PHM suite could be applied to legacy aircraft and would show significant benefits in respect to LCC and maintainability issues. In many cases, the capability of PHM sensors and prognostic technologies will enable the ability to "see" incipient faults in subsystem components very early prior to their progressing to final system failure. These capabilities will enable accurate useful life remaining predictions and more aggressive health management of assets. Through very accurate tracking of the life usage data for component parts, the JSF PHM and AL will be able to anticipate many problems that plague current legacy aircraft; giving a lead time to provide fixes before the actual problems become fleet wide and catastrophic. The PHM architecture will directly interface with the Joint Distributed Information System (JDIS), the information system that will enable Autonomic Logistics functions. The JDIS could automatically forward to the Original Equipment Manufacturer (OEM) data on problems that arise within the fleet, thus alerting them to a developing situation sooner, and enabling them to provide faster, cheaper fixes to these problems. With these safeguards in place, the JSF will put itself in a position to quickly react to ageing aircraft problems, increase sortie generation rates, decrease mean time to diagnose faults and failures as well as drastically decrease maintenance costs.
机译:JSF自主物流(AL)系统是一种新的可支持性概念,它将使飞机在平台的整个生命周期中都能得到更好的利用,并且与传统飞机相比,成本更低。简而言之,自治物流就是物流环境的自动化,因此只需很少的人工干预即可参与物流周期。在JSF可支持性概念内将自动执行的动作包括维护计划,飞行计划,订购备件等。自主物流的基础是先进的诊断,预测和健康管理(PHM)系统。 PHM提供了用于启动事件自动日志链的数据,信息和知识。 PHM是飞机执行故障检测(FD),故障隔离(FI)并在飞机上实时容纳的能力。除具有这种FD / FI功能外,PHM的其他一些方面还包括对选定组件的故障预测。零件寿命使用情况跟踪,故障过滤和报告,以及仅在需要采取措施时才向飞行员建议采取的措施。通常,在大多数情况下,维护措施和起居决策将基于设备组件的实际材料状况。此PHM概念的建议体系结构包括一种分层方法,其中数据从传感器级别开始,然后传输到区域推理机,该推理机将数据转换为有关特定子系统的信息。然后,该信息从区域推理器传递到顶级的“空中飞行器推理器”,然后在其中合并子系统信息以提供有关整个飞行器健康状况的知识。此外,为JSF PHM套件开发的许多技术都可以应用于传统飞机,并且在LCC和可维护性问题方面将显示出显着优势。在许多情况下,PHM传感器和预测技术的功能将使他们能够在子系统组件发展为最终系统故障之前很早地“看到”子系统中的初期故障。这些功能将实现准确的剩余使用寿命预测以及更积极的资产健康管理。通过非常精确地跟踪零部件的使用寿命数据,JSF PHM和AL将能够预见困扰当前传统飞机的许多问题。在实际问题变得严重和灾难性之前,提前提供解决方案。 PHM体系结构将直接与联合分布式信息系统(JDIS)连接,该系统将启用自主物流功能。 JDIS可以自动将有关车队内部出现的问题的数据转发给原始设备制造商(OEM),从而使他们更快地警觉到发展中的状况,并使他们能够提供更快,更便宜的解决方案。有了这些保障措施,JSF便可以迅速应对老化的飞机问题,提高飞机出动率,减少诊断故障和故障的平均时间,并大大降低维护成本。

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