[adsense:responsibe:9545213979]
w | 0.1 | 0.5 | 0.99 | 1.02 | 2 | 5 | 10 |
fase | -100.29 | -139.48 | -180.09 | -182.32 | -245 | -397.87 | -632.65 |
modulo | 9.95 | 1.78 | 0.71 | 0.68 | 0.22 | 0.039 | 9.95E-3 |
.
Vamos a comprobarlo con el Scilab:
clf; w=[0.1 0.2 0.5 1 1.02 2 5 10 20 ] s=%s; T=0.8; pade=(8-4*T*s+(T*s)^2)/(8+4*T*s+(T*s)^2); g=pade/(s*(s+1)); gs=syslin('c',g); nyquist(gs); agr=-(%pi/2)-atan(w)-0.8*w; agr2=-(%pi/2)-atan(w)-2*atan(w*0.4); agg=360*agr/(2*%pi); agg2=360*agr2/(2*%pi); for i=1:size(agr,2); m(i)=1/(w(i)*(sqrt(w(i)^2+1))); v(i)=m(i)*cos(agr(i))+m(i)*sin(agr(i))*%i; v2(i)=m(i)*cos(agr2(i))+m(i)*sin(agr2(i))*%i; end; plot(real(v),imag(v),'.'); mtlb_axis([-2 0.5 -10 0.2]); xgrid(0.5); g1=(1+1.4*g); g2=(1+4*g); r1=roots(numer(g1)) r2=roots(numer(g2))
r1 = 0.0093576 + 0.9848008i 0.0093576 - 0.9848008i - 3.0093576 + 2.9977472i - 3.0093576 - 2.9977472i r2 = 0.4172850 + 1.344734i 0.4172850 - 1.344734i - 3.417285 + 3.6801704i - 3.417285 - 3.6801704i
Añadir nuevo comentario