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首页> 外文期刊>IEE Proceedings. Part D >Two-degree-of-freedom design method of LQI servo systems: use of frequency-dependent weighting matrices for sensitivity reduction
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Two-degree-of-freedom design method of LQI servo systems: use of frequency-dependent weighting matrices for sensitivity reduction

机译:LQI伺服系统的两自由度设计方法:使用频率相关加权矩阵来降低灵敏度

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摘要

The authors previously (1996) proposed a new method to design two-degree-of-freedom robust servo systems for step references and step disturbances. In this method, the tracking characteristics for step references are determined optimally with respect to a quadratic-integral performance index, while the feedback characteristics for step disturbances are determined also optimally with respect to another quadratic-integral performance index. The paper extends these results by introducing frequency-dependent weighting matrices into the latter performance index. By employing appropriate frequency-dependent weighting matrices, some sort of loop-shaping can be achieved for the sensitivity characteristics, and thus more design freedom is obtained. In particular, loop-shaping ability and tuning ability can be separated in some sense. A numerical example is also studied to illustrate the results.
机译:先前的作者(1996年)提出了一种新的方法来设计用于步阶参考和步阶干扰的两自由度鲁棒伺服系统。在该方法中,相对于二次积分性能指标最优确定了阶跃参考的跟踪特性,而相对于另一个二次积分性能指标最优确定了阶跃干扰的反馈特性。本文通过将频率相关的权重矩阵引入后者的性能指标来扩展这些结果。通过采用适当的频率相关加权矩阵,可以实现某种形式的灵敏度特性的环路整形,从而获得更大的设计自由度。特别地,循环成形能力和调谐能力可以在某种意义上分开。还研究了一个数值示例来说明结果。

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