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A Nonlinear Adaptive Filter for Gyro Thermal Bias Error Cancellation

机译:用于陀螺热偏置错误取消的非线性自适应滤波器

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Deterministic errors in angular rate gyros, such as thermal biases, can have a significant impact on spacecraft attitude knowledge. In particular, thermal biases are often the dominant error source in MEMS gyros after calibration. Filters, such as MEKFs, are commonly used to mitigate the impact of gyro errors and gyro noise on spacecraft closed loop pointing accuracy, but often have difficulty in rapidly changing thermal environments and can be computationally expensive. In this report an existing nonlinear adaptive filter is used as the basis for a new nonlinear adaptive filter designed to estimate and cancel thermal bias effects. A description of the filter is presented along with an implementation suitable for discrete-time applications. A simulation analysis demonstrates the performance of the filter in the presence of noisy measurements and provides a comparison with existing techniques.
机译:角速率陀螺仪(例如热偏差)的确定性误差可能对航天器姿态知识产生重大影响。特别地,热偏差通常是MEMS陀螺仪校准后的主要误差源。诸如MEKFS的过滤器通常用于减轻陀螺仪错误和陀螺噪声对航天器闭环指向精度的影响,但常难以改变热环境,并且可以计算得昂贵。在本报告中,现有的非线性自适应滤波器用作旨在估计和取消热偏置效应的新非线性自适应滤波器的基础。滤波器的描述以及适于离散时间应用的实施方式。仿真分析显示过滤器在存在嘈杂的测量中的性能,并与现有技术提供比较。

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