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Analysis of algorithms for velocity estimation from discrete position versus time data

机译:从离散位置与时间数据估算速度的算法分析

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摘要

Algorithms for constructing velocity approximations from discrete position versus time data are investigated. The study is limited to algorithms suitable to provide velocity information in discrete-time feedback control systems such as microprocessor-based systems with a discrete position encoder. Velocity estimators based on lines per period, reciprocal-time, Taylor series expansion, backward difference expansions, and least-square curve fits are presented. Based on computer simulations, comparisons of relative accuracies of the different algorithms are made. The least-squares velocity estimators filtered the effect of imperfect measurements best, whereas the Taylor series expansions and backward difference equation estimators respond better to velocity transients.
机译:研究了从离散位置与时间数据构造速度近似值的算法。该研究仅限于适用于在离散时间反馈控制系统(例如具有离散位置编码器的基于微处理器的系统)中提供速度信息的算法。提出了基于每个周期的线,倒数时间,泰勒级数展开,后向差分展开和最小二乘曲线拟合的速度估计器。基于计算机仿真,比较了不同算法的相对精度。最小二乘速度估计器最好地过滤了不完美测量的影响,而泰勒级数展开和后向差分方程估计器对速度瞬变的响应更好。

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