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Inertial navigation system synthesis approach and gravity-induced error sensitivity

机译:惯性导航系统综合方法与重力感应误差敏感性

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摘要

A design criterion for improving the performance of the speed-damped inertial navigation system is presented. The single-axis speed-damped system is approached by optimizing the response of the system to a step-function disturbing signal. Butterworth, integral of time-multiplied absolute-value of error (ITAE), and solution-time standard forms are assumed to be the figures of merit for optimizing the system performance. The steady-state RMS (root-mean-square) gravity-induced navigation errors that are excited in the speed-damped system are determined for two gravity uncertainty models. The proposed figures of merit are compared. These comparisons reveal the sensitivity of predicted navigation errors to uncertainties in the gravity statistics, and simplify the choice of a suitable figure of merit for use in the design and error analysis of inertial navigation systems.
机译:提出了改善速度阻尼惯性导航系统性能的设计准则。通过优化系统对阶跃功能干扰信号的响应来接近单轴速度降低系统。 Butterworth,时间乘以绝对误差的绝对值(ITAE)的积分以及解决方案时间的标准格式被认为是优化系统性能的指标。对于两个重力不确定性模型,确定了在速度阻尼系统中激发的稳态RMS(均方根)重力引起的导航误差。比较了拟议的绩效指标。这些比较揭示了预测的导航误差对重力统计中不确定性的敏感性,并简化了惯性导航系统的设计和误差分析中使用的合适品质因数的选择。

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