# 6035 rs1 01209 rs3 10000 rs4 02181 rs6 11599 rs8

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Unformatted text preview: > p= -0.2097 + 1.6139i -0.2097 - 1.6139i -0.5790 + 0.7175i -0.5790 - 0.7175i 0.5672 + 0.4236i 0.5672 - 0.4236i 0.4431 p1 = 1.6275 p3 = 0.9220 p5 = 0.7079 anglep1 = 1.7000 anglep3 = 2.2498 anglep5 = 0.6415 R= -0.1455 + 0.0359i -0.1455 - 0.0359i 0.1038 - 0.3970i 0.1038 + 0.3970i -0.9662 + 0.2261i -0.9662 - 0.2261i 2.0157 r1 = 0.1498 r3 = 0.4103 r5 = 0.9923 r7 = 2.0157 phi1 = 2.8997 phi3 = -1.3150 phi5 = 2.9117 ps = -0.2097 + 1.6139i -0.2097 - 1.6139i 1.0000 -0.5790 + 0.7175i -0.5790 - 0.7175i 0.5672 + 0.4236i 0.5672 - 0.4236i 0.4431 ps1 = 1.6275 ps4 = 0.9220 ps6 = 0.7079 angleps1 = 1.7000 angleps4 = 2.2498 angleps6 = 0.6415 Rs = -0.0880 + 0.0829i -0.0880 - 0.0829i 1.0000 -0.0454 - 0.2134i -0.0454 + 0.2134i 0.4351 + 1.0752i 0.4351 - 1.0752i 30 LABORATORY EXPERIMENTS for LINEAR DYNAMIC SYSTEMS AND SIGNALS by ZORAN GAJIC -1.6035 rs1 = 0.1209 rs3 = 1.0000 rs4 = 0.2181 rs6 = 1.1599 rs8 = 1.6035 phis1 = 2.3857 phis4 = -1.7803 phis6 = 1.1863 >> MATLAB Solution Program Generated Figures 1 0.8 0.6 Impulse response 0.4 0.2 0 −0.2 −0.4 −0.6 −0.8 −1 0 2 4 6 8 10 12 Discrete time 14 16 18 20 Figure 5.1 1 0.9 0.8 Step response 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 0 2 4 6 8 10 12 Discrete time 14 16 18 20 Figure 5.2 31 CHAPTER 5 1.5 1 Sinusiodal response 0.5 0 −0.5 −1 −1.5 −2 0 5 10 15 20 25 30 Discrete time 35 40 45 50 7 8 9 10 14 16 18 20 Figure 5.3 150 100 Exponentail response 50 0 −50 −100 −150 −200 −250 0 1 2 3 4 5 Discrete time 6 Figure 5.4 4000 3000 Impulse response 2000 1000 0 −1000 −2000 −3000 0 2 4 6 8 10 12 Discrete time Figure 5.5 32 33 n| r   l  v|  x t n| |  x q  v|   l   n    l r x     x PAs)...
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## This note was uploaded on 11/25/2013 for the course EE 130 taught by Professor Ee130 during the Fall '07 term at University of California, Berkeley.

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