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A control theory approach to optimizing turntable rate for single-axis rotary strapdown inertial navigation system

机译:单轴旋转轴惯性导航系统优化转盘率的控制理论方法

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Due to its simplicity and potential for high navigation accuracy, the single-axis rotary strapdown inertial navigation system (INS) has attracted a large number of researchers in recent years and been used in broad applications as high precision and long duration INS. However, only a few researchers have paid attention on optimization of the turntable rate of the single-axis rotary gimbaled INS. There is still a dearth of effective methods to comprehensively study operation performance of the rotary strapdown INS and optimize its turntable rate. A stochastic observability approach is presented in this study to optimize the turntable rate and maintain good insight into estimation behaviors of the error states during initial alignment for the single-axis rotary strapdown INS when implementing the designed Kalman filter. The verification results by Mathematica software show that the stochastic observability approach is effective in optimizing the turntable rate and practical in investigating the designed navigation Kalman filter.
机译:由于其高导航精度的简单性和潜力,单轴旋转挂件惯性导航系统(INS)近年来吸引了大量的研究人员,并以广泛的应用应用于高精度和长期持续时间。然而,只有少数研究人员就优化单轴旋转万向节INS的转盘速率进行了注意。仍然有一种有效的方法,可以全面研究旋转沉降件的操作性能并优化其转盘速率。本研究提出了一种随机观察性方法,以优化转盘速率,并在实现设计的卡尔曼滤波器时,在初始对准期间保持误差状态的估计行为。 Mathematica软件的验证结果表明,随机可观察性方法有效地优化转盘速率和实用在调查设计的导航卡尔曼滤波器方面。

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