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e^{-\left(\frac{t}{T_2}\right)^{p_2}}
 
e^{-\left(\frac{t}{T_2}\right)^{p_2}}
 
\cos \left[ \left(\frac{t-t_3}{T_3} \right)^{p_3} \right] +
 
\cos \left[ \left(\frac{t-t_3}{T_3} \right)^{p_3} \right] +
\exp \left[ \frac{-(t-t1)}{2 \sigma_1^2} \right] +  
+
e^{ \frac{-(t-t1)}{2 \sigma_1^2} } +  
\exp \left[ \frac{-(t-t2)}{2 \sigma_2^2} \right]
+
a e^{ \frac{-(t-t2)}{2 \sigma_2^2} }
 
</math>
 
</math>
   −
* T_1 =
+
* T_1 = 14.9ns
* p_1 =
+
* p_1 = 99.2
* T_2 =
+
* T_2 = 2.54&mu;s
* p_2 =
+
* p_2 = 2.50
* t_o
+
* t_o = -0.206&mu;s
* T_3
+
* T_3 = 0.125&mu;s
* p_3
+
* p_3 = 0.642
* sigma_1
+
* t_1 = 9.57ns
* sigma_2
+
* sigma_1 = 1.50ns
 +
* a = 0.258
 +
* t_2 = 13.0ns
 +
* sigma_2 = 1.53ns
 +
 
    
=== Modeling of realistic signals ===
 
=== Modeling of realistic signals ===
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