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Dynamically Compensated and Robust Motion System Inputs Based on Splines: A Linear Programming Approach

机译:基于样条曲线的动态补偿和强大的运动系统输入:一种线性编程方法

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For motion systems such as cam-follower mechanisms and loads driven by servo motors, this paper considers the design of system inputs that are continuous up to their M-th derivative and minimize some design criterion subject to user-defined constraints. This problem is tackled by optimizing a piecewise-linear continuous parametrization (based on a large number of second-order B-splines) of the M-th derivative of the system input. Furthermore, the design criterion and constraints are chosen such that the resulting optimization problem is a linear program. As an application, the system input of a linear dynamic system is optimized to reduce the residual vibration in a robust manner. The obtained numerical results improve those of an earlier benchmark, based on Bernstein-Bezier harmonics. Furthermore, they suggest that the proposed linear programming approach behaves in practice as an algorithm that is capable of automatically selecting the optimal number and location of the knots of a polynomial spline of order M + 2.
机译:对于由伺服电机驱动的凸轮从动机构和负载,如伺服电机驱动的运动系统,本文考虑了系统输入的设计,该系统输入是连续的衍生物,并最大限度地减少对用户定义约束的一些设计标准。通过优化分段 - 线性连续参数化(基于大量二阶B样条)的M-T衍生物的M-T衍生物的M-T衍生物的M-T衍生物的衍生物的衍生物的衍生物的衍生物的衍生物的衍生物来解决这个问题。此外,选择设计标准和约束,使得所得到的优化问题是线性程序。作为应用,针对线性动态系统的系统输入被优化以以稳健的方式降低残留振动。获得的数值结果改善了基于伯恩斯坦 - 贝塞尔谐波的早期基准。此外,他们表明,所提出的线性编程方法的实践表现为能够自动选择订单M + 2的多项式花键的结的最佳数量和位置的算法。

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