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Design of fault diagnosis system for inertial navigation system based on virtual technology

机译:基于虚拟技术的惯性导航系统故障诊断系统设计

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With regard to the complex structure of the inertial navigation system and the low rate of fault detection with BITE (built-in test equipment), a fault diagnosis system for INS based on virtual technologies (virtual instrument and virtual equipment) is proposed in this paper. The hardware of the system is a PXI computer with highly stable performance and strong extensibility. In addition to the basic functions of digital multimeter, oscilloscope and cymometer, it can also measure the attitude of the ship in real-time, connect and control the measurement instruments with digital interface. The software is designed with the languages of Measurement Studio for VB, JAVA, and CULT3D. Using the extensively applied fault-tree reasoning and fault cases makes fault diagnosis. To suit the system to the diagnosis for various navigation electronic equipments, the modular design concept is adopted for the software programming. Knowledge of the expert system is digitally processed and the parameters of the system's interface and the expert diagnosis knowledge are stored in the database. The application shows that system is stable in operation, easy to use, quick and accurate in fault diagnosis.
机译:针对惯性导航系统结构复杂,内置测试设备故障检测率低的问题,提出了一种基于虚拟技术(虚拟仪器和虚拟设备)的惯性导航系统故障诊断系统。 。该系统的硬件是具有高度稳定的性能和强大的可扩展性的PXI计算机。除了数字万用表,示波器和频率计的基本功能外,它还可以实时测量船舶的姿态,并通过数字接口连接和控制测量仪器。该软件使用用于VB,JAVA和CULT3D的Measurement Studio语言进行设计。使用广泛应用的故障树推理和故障案例可以进行故障诊断。为了使系统适合各种导航电子设备的诊断,软件编程采用了模块化设计理念。专家系统的知识经过数字处理,系统接口的参数和专家诊断知识存储在数据库中。应用表明,该系统运行稳定,易于使用,故障诊断快速准确。

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