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The Digital Twin Paradigm for Future NASA and U.S. Air Force Vehicles

机译:数字双航为未来美国宇航局和美国空军汽车

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Future generations of NASA and U.S. Air Force vehicles will require lighter mass while being subjected to higher loads and more extreme service conditions over longer time periods than the present generation. Current approaches for certification, fleet management and sustainment are largely based on statistical distributions of material properties, heuristic design philosophies, physical testing and assumed similitude between testing and operational conditions and will likely be unable to address these extreme requirements. To address the shortcomings of conventional approaches, a fundamental paradigm shift is needed. This paradigm shift, the Digital Twin, integrates ultra-high fidelity simulation with the vehicle's on-board integrated vehicle health management system, maintenance history and all available historical and fleet data to mirror the life of its flying twin and enable unprecedented levels of safety and reliability.
机译:未来几代美国宇航局和美国空军汽车将需要较轻的质量,同时在比目前的一代更长的时间内在更长的时间内进行更高的负载和更极端的服务条件。目前的认证方法,舰队管理和维持主要基于材料特性的统计分布,启发式设计哲学,物理测试和在测试和运营条件之间的主观性,并且可能无法解决这些极端要求。为解决常规方法的缺点,需要一个基本的范式转换。这种范式转换,数字双胞胎,与车载的车载载体健康管理系统,维护历史和所有可用的历史和舰队数据集成了超高保真仿真,以镜像飞行双胞胎的寿命,并实现前所未有的安全水平和安全可靠性。

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