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首页> 外文期刊>Journal of Process Control >Robust nonlinear feedback-feedforward control of a coupled kinetic Monte Carlo-finite difference simulation
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Robust nonlinear feedback-feedforward control of a coupled kinetic Monte Carlo-finite difference simulation

机译:耦合动力学蒙特卡罗有限差分模拟的鲁棒非线性反馈前馈控制

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摘要

Robust nonlinear feedforward-feedback controllers are designed for a multiscale system that dynamically couples kinetic Monte Carlo (KMC) and finite difference (FD) simulation codes. The coupled codes simulate the copper electrodeposition process for manufacturing on-chip copper interconnects in electronic devices. The control objective is to regulate the current density subject to the condition that the steady-state fluctuation of the overpotential remains bounded within +/- 0.01 V. The controller designs incorporate a low-order stochastic model that captures the input-output behavior of the coupled KMC-FD code. The controllers achieve the objectives and the closed-loop responses implemented on the low-order model and the coupled KMC-FD code match well within stochastic variations. The nonlinear feedforward control reduces the rise time of the controller response while the feedback control ensures robustness in the presence of model uncertainty. (C) 2005 Elsevier Ltd. All rights reserved.
机译:鲁棒的非线性前馈-反馈控制器设计用于动态耦合动力学蒙特卡罗(KMC)和有限差分(FD)仿真代码的多尺度系统。耦合代码模拟了用于在电子设备中制造芯片上铜互连的铜电沉积过程。控制目标是在过电势的稳态波动保持在+/- 0.01 V范围内的条件下调节电流密度。控制器设计采用了低阶随机模型,该模型捕获了传感器的输入-输出行为。耦合的KMC-FD代码。控制器实现了目标,并且在随机变量内,在低阶模型和耦合的KMC-FD代码上实现的闭环响应非常匹配。非线性前馈控制可减少控制器响应的上升时间,而反馈控制可在存在模型不确定性的情况下确保鲁棒性。 (C)2005 Elsevier Ltd.保留所有权利。

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