首页> 外文会议>Conference on Smart Nondestrutive Evaluation and Health Monitoring of Structural and Biological Systems II Mar 3-5, 2003 San Diego, California, USA >Health Monitoring System for Future Reusable Launcher: from Operational Aspects to Mission Risk Management Impacts
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Health Monitoring System for Future Reusable Launcher: from Operational Aspects to Mission Risk Management Impacts

机译:未来可重复使用发射器的健康监控系统:从操作方面到任务风险管理的影响

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摘要

Recent research on reusable launchers indicates that those vehicles require a more complex design and higher technology performance levels than actual expendable launchers. The need for an advanced Health Monitoring System (HMS) appears then to be unavoidable to assure the concept of reusability at an affordable cost without affecting the overall mission risk. After a brief reminder on mission risk management aspects and then possible ways to reduce the risks inherent to any system operation, the sensor specifications of this advanced integrated HMS are fully deduced from the environmental and operational requirements, according to the NDE sensing technique in review and the corresponding final detection objectives. Some short examples are given all the way long to show what has already been developed and where the most difficult problems remain (including also remote controlled systems like space probe, deep-see submarine, etc.). With the help of an advanced integrated multi-sensor network (hardware) and the use of an expert system (software), damage detection, monitoring and prognosis are envisaged to deduce the safety state of any subsystem or associated operation. Then the information is used to modify accordingly the mission scenario if imposed to maintain an acceptable level of risk.
机译:对可重复使用发射器的最新研究表明,与实际消耗的发射器相比,这些车辆需要更复杂的设计和更高的技术性能水平。这样一来,就不可避免地需要先进的健康监控系统(HMS),以确保以可承受的成本实现可重用性的概念,而又不影响总体任务风险。在简要回顾了任务风险管理方面,然后提出了降低任何系统运行固有风险的可行方法后,根据NDE传感技术的回顾和总结,从环境和运行要求中全面推论出此高级集成HMS的传感器规格。相应的最终检测目标。一直列举一些简短的例子,以说明已经开发出的东西以及最棘手的问题仍然存在(包括遥控系统,例如太空探测器,深海潜艇等)。通过先进的集成多传感器网络(硬件)和专家系统(软件)的使用,可以预见损坏的检测,监视和预测,以推断任何子系统或相关操作的安全状态。然后,如果施加该信息以保持可接受的风险水平,则可使用该信息相应地修改任务方案。

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