000 01626 a2200229 4500
999 _c643
_d643
005 20200915102707.0
008 181008b ||||| |||| 00| 0 eng d
020 _a9780070681200
040 _c0
100 _aDistefano Joseph J
245 _aSchaums outlines control systems
_cJoseph J. DiStefano, Allen R. Stubberud, Ivan J. Williams.
250 _a3/e
260 _bMcGraw Hill
_c2013
_aChennai
300 _axvi, varies pagination:
_c24cm
505 _t1.Introduction
_t2.Control Systems Terminology
_t3.Differential Equations, Difference Equations, and Linear Systems
_t 4.The LaPlace Transform and
_t 5.The Z-Transform
_t6.Stability
_t 7.Transfer Functions
_t8.Block Diagram Algebra and Transfer Functions of Systems
_t9.Signal Flow Graphs
_t10.System Sensitivity Measures and Classification of Feedback Systems
_t 11.Analysis and Design of Feedback Control Systems: Objectives and Methods
_t12.Nyquist Analysis
_t13.Nyquist Design
_t 14.Root-Locus Design
_t15.Bode Analysis
_t16.Bode Design
_t17.Nichols Chart Analysis
_t 18.Nichols Chart Design
_t19.Introduction to Nonlinear Control Systems
_t20.State Variable Analysis
_t21. Discrete State Space Analysis
520 _aThis textbook mirrors the standard college course in scope and sequence to help students understand basic concepts and to offer extra practice on topics such as differential equations and linear systems, transfer functions, block diagram algebra and transfer functions of systems, signal flow, and more
650 _acontrol systems.
650 _a Control theory.
700 _aAllen R Stubberud
700 _aIvan J Williams
942 _cBK
_2ddc