Evaluation on the Readiness Ratio and Mission Reliability of Intelligent Ships Based on the Integrated PHM System Design

Xiangxiang Zhang, Shiyang Wang, Baoqing Wang, Haowen Chen
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Abstract

Prognostic and health management (PHM) system is adopted in intelligent ships (ISs) to provide predictive maintenance decision support. However, most existing works only focus on monitoring one device with single signal. Furthermore, after PHM-based ISs are designed, quantitative evaluation method for verifying the performance improvement of ISs is limited. Considering these two problems, an integrated framework of multi-device and multi-signal PHM design based on three levels is developed for ISs. And a performance evaluation model in terms of readiness ratio and mission reliability is proposed based on the decision tree. Finally, a real case of a special purpose ship (SPS) is presented to illustrate the proposed evaluation method and demonstrate the effectiveness of the integrated PHM design by comparing to the conventional SPS.
基于集成PHM系统设计的智能舰船战备就绪率与任务可靠性评估
智能船舶采用预测与健康管理(PHM)系统提供预测性维修决策支持。然而,现有的工作大多只关注单个信号对一个设备的监测。此外,基于phm的集成电路设计完成后,验证集成电路性能改进的定量评价方法有限。针对这两个问题,提出了一种基于三层次的多器件多信号PHM集成设计框架。提出了基于决策树的战备率和任务可靠性的性能评估模型。最后,以某型特种船为例,通过与常规特种船相比较,验证了综合PHM设计的有效性。
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