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Load Torque Estimation and Passivity-Based Control of a Boost-Converter/DC-Motor Combination

机译:升压转换器/直流电动机组合的负载转矩估计和基于无源性的控制

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摘要

An algebraic approach is presented for the fast feed-forward adaptation of the angular velocity trajectory tracking task in a Boost-converter driven dc-motor system. For the adaptation, the load torque perturbations are assumed piecewise constant and are, nonasymptotically, online estimated using the available noisy measurements of the state variables. The controller is a linear controller based on the exact tracking error dynamics passive output feedback (ETEDPOF) controller design methodology including suitable adaptive feed-forward precompensation depending explicitly on the precisely estimated torque. The performance of the adaptation, which is achieved by means of the algebraic online-estimation of the current unknown load torque, is successfully validated in an experimental laboratory setup.
机译:提出了一种代数方法,用于在Boost变换器驱动的直流电动机系统中对角速度轨迹跟踪任务进行快速前馈调整。为了适应,假定负载转矩扰动是分段恒定的,并且使用状态变量的可用噪声测量值来非渐近地在线估计。该控制器是基于精确跟踪误差动态无源输出反馈(ETEDPOF)控制器设计方法的线性控制器,该方法包括明确取决于精确估算的扭矩的合适的自适应前馈预补偿。通过当前未知负载转矩的代数在线估计获得的自适应性能已在实验实验室中成功验证。

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