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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Convergence and Energy Analysis for Iterative Adaptive ON-OFF Control of Piezoelectric Microactuators
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Convergence and Energy Analysis for Iterative Adaptive ON-OFF Control of Piezoelectric Microactuators

机译:压电微执行器迭代自适应开关控制的收敛性和能量分析

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摘要

A technique is presented for estimating the number of iterations needed for convergence of iterative adaptive ON-OFF controllers to optimal switching times, for certain controllers proposed for managing stepping motion in autonomous microrobots. An upper bound on output error as a function of error in ON-OFF switching times is obtained, and lower bounds on the change in switching times from iteration-to-iteration are used to estimate output error evolution. The simulation and experimental results from the test case of a piezoelectric microrobotic leg joint indicate reasonable agreement between estimated and actual error. The use of convergence estimates to improve controller design with respect to total energy consumption is then described.
机译:针对为管理自主微型机器人中的步进运动而提出的某些控制器,提出了一种技术,用于估算将迭代自适应ON-OFF控制器收敛至最佳开关时间所需的迭代次数。获得了输出误差的上限,作为开关切换时间误差的函数,并且使用了从迭代到迭代的切换时间变化的下限来估计输出误差的演变。压电微机器人腿关节测试案例的仿真和实验结果表明,估计误差与实际误差之间存在合理的一致性。然后描述使用收敛估计来相对于总能耗改善控制器设计。

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