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Minimum-time position control of multi-axes mechanical systems: a fast computation method using time-varying optimal regulator theory

机译:多轴机械系统的最小时间位置控制:使用时变最优调节器理论的快速计算方法

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Many of automatic machines in manufacturing systems are multi-axes mechanical systems, in which each axis is controlled to synchronize with other axes to achieve the given tasks. This paper considers such synchronizing control of multi-axes mechanical systems, and deals with a method to minimize the cycle time needed for the given task. The problem is formulated as a nonlinear constrained optimization problem and a fast computation method is proposed for the minimum-time solution using time-varying optimal regulator theory. By the proposed method, the computation time is reduced to about 1/10 of those spent by general gradient-type methods.
机译:制造系统中的许多自动机都是多轴机械系统,其中每个轴都受到控制以与其他轴同步以完成给定的任务。本文考虑了多轴机械系统的这种同步控制,并讨论了一种使给定任务所需的循环时间最小化的方法。将该问题表述为非线性约束优化问题,并使用时变最优调节器理论为最小时间解提出了一种快速计算方法。通过提出的方法,计算时间减少到一般梯度型方法花费的大约1/10。

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