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Optimal performance of discrete-time direct output-feedback structural control with delayed control forces

机译:具有延迟控制力的离散时间直接输出反馈结构控制的最优性能

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摘要

An optimal discrete-time direct output-feedback control algorithm is developed with the consideration of sampling period and appropriate time delay in its control force action. Optimal-delayed output-feedback gains are derived through a variation process and will be complementarily arranged with respect to the applied delay time by either altering their magnitude or phases to assure the efficacy and stability of the delayed direct digital control system. Parametric studies of single-degree-of-freedom (SDOF) systems with different feedback types demonstrate the relationships of the delayed gains and the modal properties corresponding to the sampling period used and the intentionally delay time added. The maximum allowable delay time defined at the onset of instability of controlled system can be the optimal delay time that reaches the optimal control performance if the delay time is considered in the delayed feedback gains. The inclusion of sampling period and delay time in the optimization process for discrete-time control illustrates the beneficial effect under the same delay time. Numerical simulation results of proposed direct digital control principles on a three-degree-of-freedom (3D0F) shaking table structure model show that the efficacy of the collocated control cases with optimal delay time to reduce the dynamic responses subjected to earthquake excitations is assured.
机译:考虑到采样周期和控制力作用中的适当时延,提出了一种最优的离散时间直接输出反馈控制算法。最佳延迟的输出反馈增益是通过变化过程得出的,并将通过改变其幅值或相位来相对于所施加的延迟时间进行补充安排,以确保延迟的直接数字控制系统的有效性和稳定性。具有不同反馈类型的单自由度(SDOF)系统的参数研究表明,延迟增益与模态特性之间的关系与所使用的采样周期和故意添加的延迟时间相对应。如果在延迟反馈增益中考虑延迟时间,则在受控系统不稳定开始时定义的最大允许延迟时间可以是达到最佳控制性能的最佳延迟时间。在离散时间控制的优化过程中包括采样周期和延迟时间说明了在相同延迟时间下的有益效果。在三自由度(3D0F)振动台结构模型上提出的直接数字控制原理的数值模拟结果表明,具有最佳延迟时间的并置控制案例可有效地降低地震激励下的动态响应。

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