Coherent Robust H-Infinity Control of Uncertain Linear Quantum Stochastic Systems
Chengdi Xiang, Ian R. Petersen, Daoyi Dong
Abstract
Open-access reader
Chengdi Xiang, Ian R. Petersen, Daoyi Dong
Abstract
Open-access reader
This paper considers a class of uncertain linear quantum systems subject to uncertain perturbations in the system Hamiltonian. We present a method to design a coherent robust H-infinity controller so that the closed loop system is robustly stable and achieves a prescribed level of disturbance attenuation with all the admissible uncertainties. An illustrative example shows that for the given system, the method presented in this paper has improved performance over the existing quantum H-infinity control results without considering uncertainty.
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This paper considers a class of uncertain linear quantum systems subject to uncertain perturbations in the system Hamiltonian. We present a method to design a coherent robust H-infinity controller so that the closed loop system is robustly stable and achieves a prescribed level of disturbance attenuation with all the admissible uncertainties. An illustrative example shows that for the given system, the method presented in this paper has improved performance over the existing quantum H-infinity control results without considering uncertainty.
Key concepts: H-infinity methods in control theory, Control theory (sociology), Infinity, Quantum, Robust control, Hamiltonian (control theory), Quantum control, Quantum system