电气专业毕业设计外文翻译
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1、附录 A A few examples will refresh your memory about the content of Chapter 8 and the general approach to a nodal-analysis solution. EXAMPLE 17.12 Determine the voltage across the inductor for the network of Fig. Solution:Steps 1 and 2 are as ndicated in Fig.17.22. Step 3:Note Fig.17.23 for the applic
2、ation of Kirchhoff s current law to node V1: Fig.17.22 Fig.17.23 Ii= I0 0=I1+I2+I3V1-E/Z1+(V1/Z2)+(V1-V2)/Z3=0 Rearranging terms: V11/Z1+1/Z2+1/Z3-V21/Z3=E1/Z1 (17.1) Note Fig.17.24 for the application of Kirchhoff s current law to node V2: 0=I3+I4+I V2-V1/Z3+V2/Z4+I=0 Rearranging terms: V21/Z3+1/Z4
3、-V11/Z3=-I (17.2) Fig.17.24 Grouping equations: V11/Z1+1/Z2+1/Z3-V21/Z3=E1/Z1 V11/Z3-V21/Z3+1/Z4 =I 1/Z1+1/Z2+1/Z3=1/0.5k +1/10 k +1/2k =2.5mS -2.29 1/Z3+1/Z4=1/2k +1/-5k =0.539mS 21.80 and V12.5ms -2.29 -V20.5mS 0 =24m 0 V10.5mS 0 -V20.539mS 21.80 =4m 0 with 24m 0 -0.5mS 0 4m 0 -0.539mS 21.80 V1= 2
4、.5ms -2.29 -0.5mS 0 0.5mS 0 -0.539mS 21.80 =(24m 0 )(-0.539mS 21.80 )+(0.5mS 0 )(4m 0 )/(2.5ms -2.29 )(-0.539mS 21.80 )+(0.5mS 0 )(0.5mS 0 ) =-10.01 -j4.81 /-1.021-j0.45=11.106 -154.33 /1.116 -156.21 V1=9.95 1.88 MathCad The length and complexity of the above mathematical development strongly sugges
5、t the use of an alternative approach such as MathCad.Note in MathCad 17.2 that the equations are entered in the same format as Eqs.(17.1) and (17.2).Both V1 and V2 were generated,but because only V1 was asked for,it was the only solution converted to the polar form.In the lower solution the complexi
6、ty was significantly reduced by simply recognizing that the current is in milliamperes and the impedances in kilohms. The result will then be in volts. K :=10 m :=0.01 rad :=1 V1 :=1+j V2 :=1+j deg := /180 Given V1 1/5 k+1/10j k+1/2 k-V2 1/2 k 24 m V1 1/2 k-V21/2 k+1/-5j k 4 m Find(V1,V2)= 9.944 +0.
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