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A New In-Flight Alignment Method with an Application to the Low-Cost SINS/GPS Integrated Navigation System

机译:一种新的飞行中对准方法,具有申请到低成本SINS / GPS集成导航系统

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The optimization-based alignment (OBA) methods, which are implemented by the optimal attitude estimation using vector observations-also called double-vectors-have proven to be effective at solving the in-flight alignment (IFA) problem. However, the traditional OBA methods are not applicable for the low-cost strap-down inertial navigation system (SINS) since the error of double-vectors will be accumulated over time due to the substantial drift of micro-electronic- mechanical system (MEMS) gyroscope. Moreover, the existing optimal estimation method is subject to a large computation burden, which results in a low alignment speed. To address these issues, in this article we propose a new fast IFA method based on modified double-vectors construction and the gradient descent method. To be specific, the modified construction method is implemented by reducing the integration interval and identifying the gyroscope bias during the construction procedure, which improves the accuracy of double-vectors and IFA; the gradient descent scheme is adopted to estimate the optimal attitude of alignment without complex matrix operation, which results in the improvement of alignment speed. The effect of different sizes of mini-batch on the performance of the gradient descent method is also discussed. Extensive simulations and vehicle experiments demonstrate that the proposed method has better accuracy and faster alignment speed than the related traditional methods for the low-cost SINS/global positioning system (GPS) integrated navigation system
机译:基于优化的对准(OBA)方法,其由使用载体观测的最佳姿态估计来实现 - 也称为双向载体 - 已经证明是有效解决飞行中的对准(IFA)问题。然而,传统的OBA方法不适用于低成本的带式惯性导航系统(SINS),因为由于微电子系统(MEMS)的实质性漂移,双向的误差会随着时间的推移而累积。陀螺仪。此外,现有的最佳估计方法受到大计算负担的影响,这导致低对准速度。为了解决这些问题,在本文中,我们提出了一种基于改进的双向构造的新的快速IFA方法和梯度下降方法。具体而言,通过减少积分间隔并识别施工过程中的陀螺仪偏压来实现改进的施工方法,这提高了双向和IFA的准确性;采用梯度下降方案来估计无复杂矩阵操作的对准姿态,这导致对准速度的提高。还讨论了不同尺寸对梯度下降方法的性能的效果。广泛的模拟和车辆实验表明,所提出的方法具有比低成本SINS /全球定位系统(GPS)集成导航系统的相关传统方法更好的准确度和更快的对准速度

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