l=5, n=8, exp.2

-->l=5,p=5,n=8,show=2,[POP,tcw,tcabin,ratio,f1,f0]=ftcw(POP,l,p,n,show)

 f0  =
 
    0.7426702  
 f1  =
 
    4.2573298  
 ratio  =
 
    5.7324639  
 tcabin  =
 
    1.1144033  
 tcw  =
 
    2.2288065  
 POP  =
 
    0.    0.    0.    0.    1.    1.     1.      0.0002618  
    0.    0.    0.    0.    0.    0.     0.      0.         
    1.    1.    1.    1.    1.    31.    961.    0.2515707  
    1.    1.    1.    1.    1.    31.    961.    0.2515707  
    0.    1.    1.    0.    0.    12.    144.    0.0376963  
    1.    0.    1.    1.    1.    23.    529.    0.1384817  
    1.    1.    1.    1.    0.    30.    900.    0.2356021  
    1.    0.    0.    1.    0.    18.    324.    0.0848168  
 
-->l=5,p=5,n=8,N=(round(tcw)*2)*3, MThreshold=tcw*2,show=2,[POP]=ga(POP,l,p,n,N,
MThreshold,show)

mutation point at = (4, 5)
mutation point at = (2, 2)
Number of Events n * N = 96
 POP  =
 
    49.687825  
------------------ tcabin
    84.19615   
------------------ tcw
    83.610822  
    82.817378  
    81.815817  
    81.334547  
    82.127992  
    82.127992  
    82.127992  
    82.336108  
    81.295525  
    75.884495

Figure 3.35: worst case convergence time tcw measured with l=5, n=8, exp-2
\includegraphics[width=4.5in]{fratall_l5n8_exp2.eps}



Gerd Doeben-Henisch 2012-03-31