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首页> 外文期刊>IFAC PapersOnLine >Feedback Control of a Thermal Fluid Based on a Reduced Order Observer * * W. Hu was supported in part by a USC Zumberge Individual Research Grant.J. Singler and Y. Zhang were supported in part by National Science Foundation grant DMS-1217122.
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Feedback Control of a Thermal Fluid Based on a Reduced Order Observer * * W. Hu was supported in part by a USC Zumberge Individual Research Grant.J. Singler and Y. Zhang were supported in part by National Science Foundation grant DMS-1217122.

机译:基于降序观察者的热流体反馈控制 * < ce:footnote id =“ fn1”> * W。胡获得USC Zumberge个人研究资助的部分支持。 Singler和Y. Zhang部分获得了美国国家科学基金会(National Science Foundation)资助DMS-1217122的支持。

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Abstract: We discuss the problem of designing a feedback control law based on a reduced order observer, which locally stabilizes a two dimensional thermal fluid modeled by the Boussinesq approximation. We consider mixed boundary control for the Boussinesq equations in an open bounded and connected domain. In particular, the controllers are finite dimensional and act on a portion of the boundary through Neumann/Robin boundary conditions. A linear Luenberger observer is constructed based on point observations of the linearized Boussinesq equations. The current setting of the system leads to a problem with unbounded control inputs and outputs. Linear Quadratic Gaussian (LQG) balanced truncation is employed to obtain the reduced order model for the linearized system. The feedback law can be obtained by solving an extended Kalman filter problem. The numerical results show that the nonlinear system coupled with the reduced order observer through the feedback law is locally exponentially stable.
机译:摘要:我们讨论了基于降阶观测器设计反馈控制律的问题,该律可以局部稳定通过Boussinesq逼近建模的二维热流体。我们考虑开放边界域和连通域中Boussinesq方程的混合边界控制。特别地,控制器是有限维的,并且通过诺伊曼/罗宾边界条件作用在边界的一部分上。基于线性化的Boussinesq方程的点观测,构造了线性Luenberger观测器。系统的当前设置导致控制输入和输出不受限制的问题。采用线性二次高斯(LQG)平衡截断来获得线性化系统的降阶模型。可以通过解决扩展的卡尔曼滤波器问题来获得反馈定律。数值结果表明,通过反馈定律与降阶观测器耦合的非线性系统是局部指数稳定的。

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