电子电工技术英文课件 (43).pdf
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1、4.5 Circuit Theorems In the development of circuit technology,some circuit laws,which can be used to simplify circuit analysis,have been summarized,.These circuit laws are called circuit theorems,like superposition theorem,Thvenin theorem,Norton theorem,substitution theorem,reciprocity theorem,maxim
2、um power transfer theorem,and so on.In this section,superposition theorem,Thvenin theorem,and maximum power transfer theorem will be introduced.4.5.1 Superposition Theorem In order to introduce superposition theorem,we need to introduce linearity first.Linearity is a combination of both the additivi
3、ty and the homogeneity.Here we only introduce the additivity.The additivity is that the response to a sum of inputs is equal to the sum of the responses to each input applied individually.Lets take a resistor as an example.For a resistor,viR=(1)From(1),11viR=(2)22viR=(3)123vviR+=(4)From(2)-(4),12123
4、12vvvviiiRRR+=+=+(5)The expression(5)shows a resistor has the property of additivity.A resistor is a linear element.A linear circuit is one that only contains linear elements.Most of circuits are linear circuits.A linear circuit obeys superposition theorem,i.e.,the voltage(or current)response of any
5、 branch in the circuit is equal to the sum of individual responses associated with the individual sources,as if each response had been acting alone.Lets take a simple example of superposition theorem,as shown in Fig.1.11V2Vi Figure 1:Circuit for demonstrating superposition theorem.When each source o
6、perates separately,other source should be set zero.For voltage sources,they should be replaced with short circuits,as shown in Fig.2.11V12V(1)i(2)i Figure 2:Circuits with individual voltage source applying corresponding to the circuit in Fig.1 From Fig.2,it is obvious that (1)2),2A1Aii=(6)According
7、to superposition theorem,(2)(1)3Aiii=+=(7)From Fig.1,we can also conclude 3Ai=,this result is in accordance with that result obtained by superposition theorem.4.5.2 Thvenin Theorem In 1883,a French engineer Leon Thvenin discovered a theorem:any linear two-terminal circuit can be replaced by an equiv
8、alent circuit consisting of a voltage source VTh in series with a resistor RTh,where VTh is the open-circuit voltage at the terminals and RTh is the equivalent resistance between the same terminals when all sources in the circuit are turned off.It is difficult to understand Thvenin theorem,so we gra
9、phically show Thvenin theorem in Fig.3.ThVThVOriginalLinearCircuitEquivalent CircuitThRCircuit Equivalence Figure 3:Circuit for demonstrating Thvenin theorem.From Fig.3,Thvenin theorem actually demonstrates a kind of circuit equivalence.Lets take a circuit as shown in Fig.4 to show how to get the Th
10、venin equivalent circuit.ThV3V21 Figure 4:A circuit to be equivalent to its Thvenin equivalent circuit.From Fig.4,the open-circuit voltage is Th232V12V=+(8)When the voltage source in Fig.4 is turned off(short circuit),the circuit is shown in Fig.5.21 Figure 5:Circuit when the voltage source is turne
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