Integrated task assignment and maintenance recommendation based on system architecture and PHM information for UAVs

I. Medeiros, L. R. Rodrigues, C. Kern, Rafael D. C. Santos, E. H. Shiguemori
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引用次数: 6

Abstract

PHM (Prognostics and Health Monitoring) can be defined as the capability of assessing the health condition, forecasting impending failures and the expected RUL (Remaining Useful Life) of a component based on a set of measurements collected from systems. Additionally, an important concept that could stem from PHM is IVHM (Integrate Vehicle Health Management); that is the unified capability of integrating PHM within a framework of available resources and operational demand. Therefore, this work aims to integrate task assignment and maintenance recommendation, both based on PHM information, for UAVs (Unmanned Aerial Vehicle) Swarm. Task assignment is the problem of assigning a vehicle to a task. This paper uses a PHM-based task assignment solution; this solution takes into account mission time, task priority and vehicle's health condition. Maintenance recommendation is the operation of defining which component should receive maintenance action, using an algorithm that takes into account PHM information, system architecture and safety margins. Both task assignment and maintenance recomendations take advantage of a combination of PHM information and system architecture to compute the UAV's health condition, referred as S-RUL (System Level Remaining Useful Life). The S-RUL provides information related to the time when the whole system will stop working. In the case study, a simplified pitch control system is used to illustrate the application of the proposed method to UAVs Swarm.
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基于系统架构和PHM信息的无人机集成任务分配与维护建议
PHM(预后和运行状况监测)可以定义为基于从系统收集的一组测量值评估组件的运行状况、预测即将发生的故障和预期RUL(剩余使用寿命)的能力。此外,PHM的一个重要概念是集成车辆健康管理(IVHM);即在可用资源和业务需求的框架内整合PHM的统一能力。因此,本工作旨在将基于PHM信息的任务分配和维护建议集成到无人机(无人机)群中。任务分配是将车辆分配给任务的问题。本文采用了一种基于phm的任务分配方案;该方案考虑了任务时间、任务优先级和车辆健康状况。维护建议是使用一种考虑PHM信息、系统架构和安全边际的算法来定义哪个组件应该接受维护操作的操作。任务分配和维护建议都利用PHM信息和系统架构的组合来计算无人机的健康状况,称为S-RUL(系统级剩余使用寿命)。S-RUL提供与整个系统停止工作的时间相关的信息。以一个简化的俯仰控制系统为例,说明了该方法在无人机群控制中的应用。
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