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The Design of Output Feedback Distributed Model Predictive Controller for a Class of Nonlinear Systems

The Design of Output Feedback Distributed Model Predictive Controller for a Class of Nonlinear Systems
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摘要 For a class of nonlinear systems whose states are immeasurable, when the outputs of the system are sampled asynchronously, by introducing a state observer, an output feedback distributed model predictive control algorithm is proposed. It is proved that the errors of estimated states and the actual system's states are bounded. And it is guaranteed that the estimated states of the closed-loop system are ultimately bounded in a region containing the origin. As a result, the states of the actual system are ultimately bounded. A simulation example verifies the effectiveness of the proposed distributed control method. For a class of nonlinear systems whose states are immeasurable, when the outputs of the system are sampled asynchronously, by introducing a state observer, an output feedback distributed model predictive control algorithm is proposed. It is proved that the errors of estimated states and the actual system's states are bounded. And it is guaranteed that the estimated states of the closed-loop system are ultimately bounded in a region containing the origin. As a result, the states of the actual system are ultimately bounded. A simulation example verifies the effectiveness of the proposed distributed control method.
机构地区 College of Engineering
出处 《Applied Mathematics》 2017年第12期1832-1850,共19页 应用数学(英文)
关键词 Nonlinear Systems Distributed Model PREDICTIVE Control State OBSERVER Output Feedback ASYNCHRONOUS Measurements Nonlinear Systems Distributed Model Predictive Control State Observer Output Feedback Asynchronous Measurements
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