Research on prediction model and method for equipment state and fault in test range

Jiongqi Wang, Bowen Hou, Zhangming He, Haiyin Zhou, Xuanying Zhou
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Abstract

The state and the fault prediction for the measure & control equipment in the test range plays an important role in the test and evaluation for the large-scale weapon system. It is also a research development in the state or fault process region. The objective of this paper is to address a state or fault prediction method for the equipment in the test range, which is combined with the physical network relationship for the predicted equipment and the mathematical analysis for the monitored state. According to the life rules of the electronic parts and the components of the predicted equipment, a distribution function for the abnormality state is constructed, and then the state prediction method for the discrete variables is especially researched. The effectiveness of the proposed prediction model and method is validated by a large optical system. The state or fault prediction model can realize the long-distance manage & control for the test range's equipment, and can also provide the technical support for enhancing the equipment reliability during the test task.
试验范围内设备状态和故障预测模型与方法的研究
试验场测控设备的状态及故障预测在大型武器系统的试验评估中起着重要的作用。这也是在状态或断层过程区域的研究进展。本文的目标是将被预测设备的物理网络关系和被监测状态的数学分析相结合,提出一种测试范围内设备的状态或故障预测方法。根据被预测设备的电子部件和部件的寿命规律,构造了异常状态的分布函数,在此基础上重点研究了离散变量的状态预测方法。通过一个大型光学系统验证了所提出的预测模型和方法的有效性。状态或故障预测模型可以实现对试验场设备的远程管理和控制,也可以在试验任务中为提高设备的可靠性提供技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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