Title :
Robust nonlinear feedback-feedforward control of a coupled kinetic Monte Carlo-finite difference simulation
Author :
Rusli, E. ; Drews, T.O. ; Ma, D.L. ; Alkirc, R.C. ; Braatz, R.D.
Abstract :
Robust nonlinear feedforward-feedback controllers are designed for a multiscale system that dynamically couples kinetic Monte Carlo (KMC) and finite difference (FD) 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.
Keywords :
Monte Carlo methods; control system synthesis; copper; electrodeposition; electronics industry; feedback; feedforward; finite difference methods; nonlinear control systems; process control; robust control; copper electrodeposition process; electronic devices; finite difference codes; kinetic Monte Carlo code; multiscale system; on-chip copper interconnects; robust nonlinear feedback-feedforward control; steady-state fluctuation; Control systems; Copper; Couplings; Finite difference methods; Kinetic theory; Manufacturing processes; Monte Carlo methods; Nonlinear control systems; Robust control; Stochastic processes;
Conference_Titel :
American Control Conference, 2005. Proceedings of the 2005
Print_ISBN :
0-7803-9098-9
Electronic_ISBN :
0743-1619
DOI :
10.1109/ACC.2005.1470350