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/spl mu/-Synthesis Robust Control: What's wrong and how to fix it?

机译:/ spl mu / -synthesis强大的控制:有什么不对的,怎么解决它?

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The theory of /spl mu/-synthesis introduced in [1, 2] provides, in principle, a broadly applicable theory for the optimal synthesis of multiloop feedback control laws that robustly meet performance and disturbance attenuation specifications despite unknown-but-bounded nonlinearities and parameter variations. Commercial MATLAB-based software packages implementing a crude approximation to the theory are available [3, 4], but these computer packages address the complex /spl mu/-synthesis problem via a somewhat flawed implementation of the original D-K iteration algorithm which involves the repetition of the following three operations on a suitable augmented closed-loop system transfer function: 1. Optimize a diagonal scaling frequency response matrix D(jw) for a fixed control law K(s). 2. Perform an ad hoc state space curve-fit to D(jw). 3. Use H/sup /spl infin// control to compute a control law K(s) with the diagonal scaling D(s) fixed. The curve-fitting of Step 2 has, until now, been a major obstacle to the realization of the original vision of a completely automated /spl mu/-synthesis procedure for robust control design. This paper describes new theoretical results and how they enable one to bypas the difficult and awkward curve-fitting of Step 2. The result is the first reliable computational algorithm for /spl mu/-synthesis controller design. The technique has been implemented on MATLAB. An example involving real /spl mu/-synthesis for the ACC Benchmark problem is included.
机译:[1,2]中引入的/ SPL MU / -SINENISERY理论原则上提供了广泛适用的理论,用于最佳合成多环反馈控制法,尽管有未知但有界非线性,但是参数变体。基于商业MATLAB的软件包实现了理论的粗略近似[3,4],但这些计算机包通过涉及重复的原始DK迭代算法的略有缺陷实现来解决复杂/ SPL MU / -SINTHERISE问题在合适的增强闭环系统传递功能上进行以下三个操作:1。优化用于固定控制法k的对角线缩放频率响应矩阵D(JW)。 2.执行Ad Hoc状态空间曲线适合D(JW)。 3.使用H / SUP / SPL INFIN // CONTROL来计算具有固定对角线缩放D的控制法k(s)。曲线拟合步骤2的已,到现在为止,已经对实现一个完全自动化/ SPL亩/ - 合成为鲁棒控制设计过程的最初的设想的一个主要障碍。本文介绍了新的理论结果以及它们如何使一个能够通过步骤2的困难和尴尬的曲线拟合。结果是第一种可靠的计算算法/ SPL MU / -S-合成控制器设计。该技术已在MATLAB上实现。包括涉及ACC基准问题的Real / SPL MU / -Synthesis的示例。

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