 |
ISBN
| 9789810246945 | |
DDC
| 519.8 | |
Tác giả CN
| Leonov, G. A. | |
Nhan đề
| Mathematical problems of control theory : an introduction / G. A. Leonov | |
Thông tin xuất bản
| Singapore : World Scientific, 2001 | |
Mô tả vật lý
| viii, 172 pages. : illustrations ; 23 cm. | |
Tùng thư
| Series on stability, vibration, and control of systems, v. 6 | |
Tóm tắt
| This work shows clearly how the study of concrete control systems has motivated the development of the mathematical tools needed for solving such problems. In many cases, by using this apparatus, far-reaching generalizations have been made, and its further development will have an important effect on many fields of mathematics. In the book, a way is demonstrated in which the study of the Watt flyball governor has given rise to the theory of stability of motion. The criteria of controllability, observability, and stabilization are stated. Analysis is made of dynamical systems, which describe an autopilot, spacecraft orientation system, controllers of a synchronous electric machine, and phase-locked loops. The Aizerman and Brockett problems are discussed and an introduction to the theory of discrete control systems is given | |
Từ khóa tự do
| Mathematical modeling | |
Từ khóa tự do
| Dynamical systems | |
Từ khóa tự do
| Optimal control | |
Từ khóa tự do
| Differential equations | |
Từ khóa tự do
| Control theory | |
Từ khóa tự do
| Stability analysis | |
Từ khóa tự do
| System theory | |
Từ khóa tự do
| Applied mathematics | |
Địa chỉ
| 300Q12_Kho Mượn_02(2): 100748-9 |
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| 044 | |asi |
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| 082 | |a519.8|bL585|223 |
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| 100 | |aLeonov, G. A. |
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| 245 | |aMathematical problems of control theory : |ban introduction / |cG. A. Leonov |
|---|
| 260 | |aSingapore : |bWorld Scientific, |c2001 |
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| 300 | |aviii, 172 pages. : |billustrations ; |c23 cm. |
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| 490 | |aSeries on stability, vibration, and control of systems, v. 6 |
|---|
| 520 | |aThis work shows clearly how the study of concrete control systems has motivated the development of the mathematical tools needed for solving such problems. In many cases, by using this apparatus, far-reaching generalizations have been made, and its further development will have an important effect on many fields of mathematics. In the book, a way is demonstrated in which the study of the Watt flyball governor has given rise to the theory of stability of motion. The criteria of controllability, observability, and stabilization are stated. Analysis is made of dynamical systems, which describe an autopilot, spacecraft orientation system, controllers of a synchronous electric machine, and phase-locked loops. The Aizerman and Brockett problems are discussed and an introduction to the theory of discrete control systems is given |
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| 541 | |aTặng |
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| 653 | |aMathematical modeling |
|---|
| 653 | |aDynamical systems |
|---|
| 653 | |aOptimal control |
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| 653 | |aDifferential equations |
|---|
| 653 | |aControl theory |
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| 653 | |aStability analysis |
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| 653 | |aSystem theory |
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| 653 | |aApplied mathematics |
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| 852 | |a300|bQ12_Kho Mượn_02|j(2): 100748-9 |
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