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Minimum-energy filtering on the unit circle using velocity measurements with bias and vectorial state measurements

机译:使用带有偏差和矢量状态测量的速度测量对单位圆进行最小能量滤波

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We consider minimum-energy filtering of a system defined on the unit circle when the angular velocity measurements are contaminated with deterministic measurement error and bias. We propose a second order approximate minimum-energy filter for this system using vectorial measurements. This work extends prior work in two aspects; Firstly, by including a model for slowly time varying angular velocity measurement bias, we estimate and reject the bias in order to estimate the state of the system more accurately. Secondly, rather than using full state measurements we use vector measurements to derive the filter. Both of these two innovations make the filter more practical in real world applications. In simulations we show that the proposed filter is globally convergent and robust to different levels of measurement error and bias.
机译:当角速度测量结果受到确定性的测量误差和偏差的污染时,我们考虑在单位圆上定义的系统的最小能量滤波。我们使用矢量测量为该系统提出了一个二阶近似最小能量滤波器。这项工作从两个方面扩展了先前的工作:首先,通过包括一个用于缓慢地时变角速度测量偏差的模型,我们估计并拒绝该偏差,以便更准确地估计系统的状态。其次,不是使用全状态测量,而是使用矢量测量来得出滤波器。这两项创新都使滤波器在实际应用中更加实用。在仿真中,我们证明了所提出的滤波器在全局上收敛,并且对不同水平的测量误差和偏差具有鲁棒性。

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