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Subsystem selection for digital twin development: A case study on an unmanned underwater vehicle

机译:数字双胞胎开发的子系统选择 - 以无人水下车辆为例

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Digital twins are virtual representations of subsystems within a system of systems. They can be utilized to model and predict performance and condition degradation throughout a system's life cycle. Condition based maintenance, or the performance of system maintenance based on the subsystem states, is often facilitated by the implementation of digital twins. An open challenge is selecting the subsystems that require digital twins. We establish a generic process for determining a set of priority-based system components requiring digital twin development for condition based maintenance purposes. The priority set, which we term the "triage" set, represents the set of components that when monitored through a digital twin lead to the greatest increase in total system reliability and simultaneously represent the minimal cost set of components for implementing a digital twin. While we focus our process on an unmanned underwater vehicle (UUV), where we frame the design problem as a multiobjective optimization problem utilizing experimentally determined data and metrics from the model of a real UUV system, the process is generic enough that it could be utilized by any system looking at cost and reliability estimates for leveraging digital twin technology.
机译:数字双胞胎是系统系统中子系统的虚拟表示。它们可以用于模拟和预测整个系统生命周期的性能和条件下降。基于条件的维护或基于子系统状态的系统维护的性能通常通过实现数字双胞胎的实施方式促进。开放挑战是选择需要数字双胞胎的子系统。我们建立了一种用于确定基于优先级的系统组件,需要基于条件的维护目的的数字双胞部开发。我们术语“分类”集的优先级集表示通过数字双单个监控时的组件集,导致总系统可靠性的最大增加,同时表示用于实现数字双单的最小成本组件集。虽然我们将我们的进程集中在无人水下的水下车辆(UUV)上,在我们将设计问题框架作为多目标优化问题,利用实验确定的数据和指标从真实的UUV系统的模型中,该过程足够通用,可以使用它通过任何系统寻求利用数字双胞胎技术的成本和可靠性估计。

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