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Example of exact trade-offs in linear controller design

机译:线性控制器设计中精确权衡的示例

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Two examples of analytic methods for finding the exact form of trade-offs among such desirable qualities as fast response to commands without excessive overshoot, low actuator authority, robustness, low controller complexity, and so on are considered. They are linear quadratic Gaussian theory, where the plant actuator and output variance can be traded off, and Nevanlinna-Pick theory, where, for instance, the achievable disturbance rejection can be traded off in two different bandwidths. In many cases, the limit of performance achievable with a linear time-invariant controller, and thus the exact form of the tradeoffs, can be computed numerically. To demonstrate this trade-off, the design of a regulator for a very typical plant, a double integrator with some excess phase, is examined. The trade-offs are presented for two different measures of robustness with noise sensitivity. The exact form of the trade-offs is determined numerically by using the techniques described in the appendixes.
机译:考虑了两个分析方法的示例,这些分析方法用于在期望的质量之间找到权衡的确切形式,例如对命令的快速响应而不会产生过多的过冲,执行器权限低,鲁棒性强,控制器复杂度低等。它们是线性二次高斯理论,在其中可以权衡设备致动器和输出方差,而在Nevanlinna-Pick理论中,例如可以在两个不同的带宽中权衡可实现的干扰抑制。在许多情况下,可以使用线性时不变控制器实现性能极限,从而可以精确计算折衷形式。为了证明这种权衡,我们研究了一个非常典型的工厂的调节器的设计,即带有一些过量相的双积分器。给出了两种不同的鲁棒性和噪声敏感度的权衡。权衡的确切形式是使用附录中所述的技术以数字方式确定的。

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