通过Youla参数化和LMIS实现控制器降阶的稳定性和性能保持

Q4 Arts and Humanities Czas Kultury Pub Date : 2003-12-14 DOI:10.1109/ICECS.2003.1301872
R. Amirifar, N. Sadati
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引用次数: 2

摘要

针对线性时不变连续单输入单输出系统,提出了一种保持稳定性和性能的控制器降阶方法。该方法将标称闭环系统和降阶控制器闭环系统的互补灵敏度函数之间的误差转化为全阶控制器和降阶控制器的Youla参数之间的频率加权误差,并在一组线性矩阵不等式约束下使该误差的H/sub /spl infin//范数最小。优化问题的约束条件中包含了降阶和保持稳定的主要思想。然而,由于该最小化问题是非凸的,因此通过求解一个次优线性矩阵不等式问题来获得降阶控制器的Youla参数,该问题是凸的,易于使用现有的半定规划求解器求解。结果表明,所得到的降阶控制器在抑制干扰和输入跟踪方面保持了名义闭环系统的稳定性和性能。
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Stability and performance preserving controller order reduction via Youla parameterization and LMIS
This paper develops a stability and performance preserving controller order reduction method for linear time-invariant continuous-time single-input, single-output systems. In this method, the error between the complementary sensitivity functions of the nominal closed-loop system and closed-loop system using the reduced-order controller is converted to a frequency-weighted error between the Youla parameters of the full-order and reduced-order controllers and then the H/sub /spl infin// norm of this error, subject to a set of linear matrix inequality constraints, is minimized. The main ideas of order reduction and stability preservation are contained in the constraints of the optimization problem. However, since this minimization problem is nonconvex, the Youla parameter of the reduced-order controller is obtained by solving a suboptimal linear matrix inequality problem, that is convex and readily solved using existing semi-definite programming solvers. It is shown that the resulting reduced-order controller preserves the stability and performance of the nominal closed-loop system in disturbance rejection and input tracking.
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来源期刊
Czas Kultury
Czas Kultury Social Sciences-Social Sciences (miscellaneous)
CiteScore
0.10
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0.00%
发文量
10
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