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Titlebook: Chain-Scattering Approach to H∞Control; Hidenori Kimura Book 1997 Birkh?user Boston 1997 Algebra.Factor.Lemma.control.control technology.c

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書(shū)目名稱(chēng)Chain-Scattering Approach to H∞Control
編輯Hidenori Kimura
視頻videohttp://file.papertrans.cn/224/223382/223382.mp4
叢書(shū)名稱(chēng)Systems & Control: Foundations & Applications
圖書(shū)封面Titlebook: Chain-Scattering Approach to H∞Control;  Hidenori Kimura Book 1997 Birkh?user Boston 1997 Algebra.Factor.Lemma.control.control technology.c
描述Through its rapid progress in the last decade, HOOcontrol became an established control technology to achieve desirable performances of con- trol systems. Several highly developed software packages are now avail- able to easily compute an HOOcontroller for anybody who wishes to use HOOcontrol. It is questionable, however, that theoretical implications of HOOcontrol are well understood by the majority of its users. It is true that HOOcontrol theory is harder to learn due to its intrinsic mathemat- ical nature, and it may not be necessary for those who simply want to apply it to understand the whole body of the theory. In general, how- ever, the more we understand the theory, the better we can use it. It is at least helpful for selecting the design options in reasonable ways to know the theoretical core of HOOcontrol. The question arises: What is the theoretical core of HOO control? I wonder whether the majority of control theorists can answer this ques- tion with confidence. Some theorists may say that the interpolation theory is the true essence of HOOcontrol, whereas others may assert that unitary dilation is the fundamental underlying idea of HOOcontrol. The J- spectral factoriza
出版日期Book 1997
關(guān)鍵詞Algebra; Factor; Lemma; control; control technology; control theory; design; equation; framework; performance
版次1
doihttps://doi.org/10.1007/978-1-4612-4080-8
isbn_softcover978-1-4612-8642-4
isbn_ebook978-1-4612-4080-8Series ISSN 2324-9749 Series E-ISSN 2324-9757
issn_series 2324-9749
copyrightBirkh?user Boston 1997
The information of publication is updating

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Norms and Factorizations,number assigned to each signal which quantifies the “l(fā)ength” of the signal. Some of the norms of signals can induce a norm of systems through the input/output relation generated by the system. The notion of induced norm is the key idea of the contemporary design theory of control systems.
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A. Crystal field analysis and parameters,s dispersion relations, Wiener’s realizability criterion and factorization theory on the one hand, and a set of design algorithms such as lead-lag compensation, Smith’s prediction method, Ziegler-Nichols ultimate sensitivity method, Evans’ root locus method, and the like on the other hand. Although
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D. Nuclear magnetic resonance experiments,number assigned to each signal which quantifies the “l(fā)ength” of the signal. Some of the norms of signals can induce a norm of systems through the input/output relation generated by the system. The notion of induced norm is the key idea of the contemporary design theory of control systems.
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D. Nuclear magnetic resonance experiments,on is a simple operation of replacing a part of the poles of a transfer function by their “conjugates”, that is, the mirror images with respect to the origin, by the multiplication of another transfer function. For instance, if a transfer function
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