DocumentCode
866866
Title
The synthesis of linear multivariable systems by state-variable feedback
Author
Morgan, Bernard S., Jr.
Author_Institution
Air Force Office of Scientific Research, Washington, D. C.
Volume
9
Issue
4
fYear
1964
fDate
10/1/1964 12:00:00 AM
Firstpage
405
Lastpage
411
Abstract
Design procedures are presented for the compensation of linear multivariable-feedback systems. The design objectives which are noninteraction and low-order compensators are obtained by state-variable feedback. A
th order plant with
inputs and
outputs where
is treated. All the state variables are assumed to be available and measurable. It is shown that it is often possible by state-variable feedback to obtain noninteraction without an increase in system order. When the determinant of the plant transfer-function matrix has right half plane zeros the state-variable feedback method cannot be used to obtain noninteraction since the resulting compensated system would be unstable. It is shown that it is not possible to change these right-half plane zeros by either the well-known transfer-function design methods or by the state-variable feedback method. A combination of both transfer-function and state-variable techniques is discussed and shown to lower the order of the compensators required for the compensation of certain systems.
th order plant with
inputs and
outputs where
is treated. All the state variables are assumed to be available and measurable. It is shown that it is often possible by state-variable feedback to obtain noninteraction without an increase in system order. When the determinant of the plant transfer-function matrix has right half plane zeros the state-variable feedback method cannot be used to obtain noninteraction since the resulting compensated system would be unstable. It is shown that it is not possible to change these right-half plane zeros by either the well-known transfer-function design methods or by the state-variable feedback method. A combination of both transfer-function and state-variable techniques is discussed and shown to lower the order of the compensators required for the compensation of certain systems.Keywords
Linear systems, time-invariant continuous-time; State-feedback; Boron; Control systems; Cybernetics; Functional analysis; Jacobian matrices; MIMO; Organizing; Stability analysis; State feedback; Transfer functions;
fLanguage
English
Journal_Title
Automatic Control, IEEE Transactions on
Publisher
ieee
ISSN
0018-9286
Type
jour
DOI
10.1109/TAC.1964.1105733
Filename
1105733
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