线性系统的根轨迹分析法 (4).pdf
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1、1Chapter 2 Modeling of Automatic Control Systems2.1 Differential Equations of Dynamic Systems2.2 Transfer Functions of Control Systems2.3 Block Diagrams of Control Systems and TheirEquivalent Transformations2.4 Signal Flow Graphs of Control Systems21 12 2Definition of the transfer functionTransfer f
2、unction of typical elements3 3Examples of deriving the transfer function2.2 Transfer Functions of Control Systems32.2 Transfer Functions of Control SystemsThe transfer function of a system is that when the linear system is with zeroinitial condition,the ratio of the output Laplace transform to the i
3、nput Laplacetransform in the differential equation.()()()Y sG sU sIn other words,the transfer function of a linear time-invariant system can beexpressed as1 1Definition of the transfer function42.2 Transfer Functions of Control SystemsThe differential equation of a linear time-invariant system can a
4、lways be expressed aswhere is the input of the system;is the output of the system;are constant coefficients.1110111101()()().()()()().()nnnnnnmmmmmmd y tdy tdy taaaa y tdtdtdtd u tdu tdu tbbbb u tdtdtdt)0,0(,mjnibaji()u t()y tAssume the initial condition is zero,the Laplace transform of the above fo
5、rmula iscarried out to obtain11110110(.)()(.)()nnmmnnmma sasa sa Y sb sbsb sb U s1 1Definition of the transfer function52.2 Transfer Functions of Control SystemsAccording to the definition of transfer functions of a linear time-invariant system,we haveWhen the transfer function and the input are kno
6、wn,according to,byderiving the inverse Laplace transform of the result,the time domain expression of theoutputcan be obtained.11101110.()()().mmmmnnnnb sbsb sbY sG sU sa sasa sa()()()Y sG s U s()y t1()()()y tG s U s 1 1Definition of the transfer function62.2 Transfer Functions of Control SystemsThe
7、transfer function is the most important mathematical model in the classical control theory.Many problems can be solved by using the transfer function in system analysis and synthesis.Without solving differential equations,the dynamic process of a system with zero initialcondition under the action of
8、 input signal can be studied.It can also be applied to study the effect of the system parameter change or structural changeon the dynamic process of the system.Therefore,the analysis of the system is greatlysimplified.The requirements for system performance can be transformed into the requirements f
9、orsystem parameters or structural forms of system transfer functions.Thus,the complexproblems will be easy to solve.1 1Definition of the transfer function72.2 Transfer Functions of Control Systems1.The rational fraction form of linear time-invariant systems isRule:The order of the system is determin
10、ed by the highest order of the denominator.The order of the system in the above formula is n.11101110.()()().mmmmnnnnb sbsb sbY sG sU sa sasa sawhere are real constants,generally .)0,0(,mjnibajinm1 1Forms of transfer functions 82.2 Transfer Functions of Control Systems2.The zero-pole form of linear
11、time-invariant systems is11101110.()()().mmmmnnnnb sbsb sbY sG sU sa sasa sawhereis the zero point of the transfer function;is the pole of the transfer function;is the transfer function gain of the zero-pole form.isz 1110111101().()mmmimmignnnnnjjszbsbsbsbKasasa saspjsp mgnbKa1 1Forms of transfer fu
12、nctions 92.2 Transfer Functions of Control Systems3.The form of time constant of linear time-invariant systems is11101110.()()().mmmmnnnnb sbsb sbY sG sU sa sasa sawhere1011110111(1).1.1(1)mmmimminnnnnjjsbb sbsbsKaa sasa sT s0011,ijijbKTazpare time constants respectively,is the amplification coeffic
13、ient.,ijTK1 1Forms of transfer functions 101 1Forms of transfer functions 2.2 Transfer Functions of Control SystemsThe transfer function of a linear time-invariant system(in the zero-pole form)is121222112211()(2)()()()()(2)mmikkkgiknnjllljlszssKY sG sU sssps where12122,2mmmnnnProportional elementFir
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