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Final report on link level and system level channel models - Winner

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WINNER D5.4 v. 1.4<br />

0.35<br />

PDF<br />

0.3<br />

0.25<br />

0.2<br />

0.15<br />

0.1<br />

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0<br />

0 20 40 60 80 100<br />

ZDSC delays [ns]<br />

PDF<br />

0.25<br />

0.2<br />

0.15<br />

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0 20 40 60 80 100<br />

ZDSC delays [ns]<br />

(a) LOS<br />

(b) NLOS<br />

Figure 5.54: Distributi<strong>on</strong>s of the ZDSC delays for the different sub-scenarios, a) LOS, b) NLOS.<br />

5.4.9.4 Scenario C1<br />

The percentiles of the distributi<strong>on</strong> of the path delays is shown in the Table 5.31.<br />

Table 5.31: Percentiles of the distributi<strong>on</strong> of the path delays in a suburban C1 LOS scenario.<br />

Path delay (ns) 10% 50% 90% mean<br />

Suburban macro 9.0 175 1525 528<br />

Also now the distributi<strong>on</strong> of the path delays fits well with the exp<strong>on</strong>ential distributi<strong>on</strong>.<br />

5.4.9.5 Scenario D1<br />

The percentiles of the CDF of the path delays are shown in Table 5.32. The measured probability density<br />

functi<strong>on</strong>s of the path delays are shown in the Figure 5.55. The distributi<strong>on</strong>s can be fitted to an exp<strong>on</strong>ential<br />

distributi<strong>on</strong> as can be seen in the figure.<br />

Table 5.32: The 10, 50 <strong>and</strong> 90 % percentiles for the cumulative distributi<strong>on</strong> functi<strong>on</strong> of the path<br />

delays for an outdoor LOS <strong>and</strong> NLOS envir<strong>on</strong>ments at 5.25 GHz.<br />

Path delay (ns)<br />

Percentile<br />

LOS<br />

NLOS<br />

10% 0 0<br />

50% 100 80<br />

90% 403 294<br />

mean 165 124<br />

The time c<strong>on</strong>stants are 140 ns for LOS <strong>and</strong> 110 ns for NLOS c<strong>on</strong>diti<strong>on</strong>s.<br />

Page 95 (167)

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