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Best Sensor Configuration and Accommodation Rule Based on Navigation Performance for INS with Seven Inertial Sensors

机译:具有七个惯性传感器的INS基于导航性能的最佳传感器配置和调节规则

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摘要

This paper considers the best sensor configuration and fault accommodation problem for inertial navigation systems which use seven inertial sensors such as gyroscopes and accelerometers. We prove that when six inertial sensors are used, the isolation of a double fault cannot be achieved for some combinations of fault magnitudes, whereas when seven inertial sensors are used, the isolation of any double fault can be achieved. There are many configurations which provide the minimum position errors. This paper proposes four configurations which show the best navigation performance and compares their FDI performances. Considering the FDI performance and the complexity of the accommodation rule, we choose one sensor configuration and provide accommodation rules for double faults. A Monte Carlo simulation is performed to show that the accommodation rules work well.
机译:本文考虑了使用七个惯性传感器(例如陀螺仪和加速度计)的惯性导航系统的最佳传感器配置和故障适应问题。我们证明,当使用六个惯性传感器时,对于故障量的某些组合不能实现双重故障的隔离,而当使用七个惯性传感器时,可以实现任何双重故障的隔离。有许多配置可提供最小的位置误差。本文提出了四种配置,这些配置显示出最佳的导航性能,并比较了它们的FDI性能。考虑到FDI的性能和调节规则的复杂性,我们选择一种传感器配置并为双重故障提供调节规则。进行了蒙特卡洛模拟,以表明调节规则运行良好。

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