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Using PHM to Measure Equipment Usable Life on the Air Force's Next Generation Reusable Space Booster

机译:使用PHM测量空军下一代可重复使用空间助推器的设备可用生活

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The U.S. Air Force procures many launch vehicles and launch vehicle services to place their satellites at their desired location in space. The equipment on-board these satellite and launch vehicle often suffer from premature failures that result in the total loss of the satellite or a shortened mission life sometimes requiring the purchase of a replacement satellite and . The Air Force uses its EELV to launch its high priority satellites. Due to a rise in the cost of purchasing a launch using the Air Force's EELV from $72M in 1997 to as high as $475M per launch today, the Air Force is working to replace the EELV with a reusable space booster (RSB). The RSB will be similar in design and operations to the recently cancelled NASA reusable space booster known as the Space Shuttle. If the Air Force uses the same process that procures the EELV and other launch vehicles and satellites, the RSB will also suffer from premature equipment failures thus putting the payloads at a similar high risk of mission failure. The RSB is expected to lower each launch cost by 50% compared to the EELV. The development of the RSB offers the Air Force an opportunity to use a new reliability paradigm that includes a prognostic and health management program and a condition-based maintenance program. These both require using intelligent, decision making self-prognostic equipment The prognostic and health management program and its condition-based maintenance program allows increases in RSB equipment usable life, lower logistics and maintenance costs, while increasing safety and mission assurance. The PHM removes many decisions from personnel that, in the past resulted in catastrophic failures and loss of life. Adding intelligent, decisionmaking self-prognostic equipment to the RSB will further decrease launch costs while decreasing risk and increasing safety and mission assurance.
机译:美国空军采购了许多发动车辆并启动车辆服务,将卫星放置在空间中所需的位置。这些卫星和发射车辆的设备经常遭受过早的故障,导致卫星的总丧失或缩短的使命生活有时需要购买替代卫星和。空军使用其EELV启动其高优先级卫星。由于在1997年的7200万美元从7200万美元购买推出的成本增加,每日推出475米,空军正在努力用可重复使用的空间助推器(RSB)取代eELV。 RSB在最近取消的NASA可重复使用空间助推器中的设计和操作将类似于被称为航天飞机。如果空军使用相同的过程,该过程采购了eELV和其他发射车辆和卫星,RSB也将遭受过早的设备故障,从而将有效载荷放在类似的特派团失败的高风险中。与EELV相比,RSB预计将降低每个发射成本50%。 RSB的开发提供了空军,有机会使用具有预后和健康管理计划的新可靠性范式和基于条件的维护计划。这些两者都需要智能,决策自我预测设备,预后和健康管理计划及其条件的维护计划允许增加RSB设备可用生活,降低物流和维护成本,同时提高安全和任务保证。 PHM从过去的人员中删除了许多决定导致灾难性的失败和生命丧失。为RSB添加智能,决策自我预后设备将进一步降低发射成本,同时降低风险,提高安全和使命保证。

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