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channel delay spreads.
In order to see the effect of delay spreads, we consider two types of channel delay spreads (0.097 and 0.779 μ s).
By Equations (10) and (11), we can obtain the RMS delay spreads and MED.
The path losses and delay spreads are computed for the two groups separately.
LTE base station (BS) supports normal and extended CP to combat delay spreads.
Finally, the measured delay spread in different rooms shows higher delay spreads for larger rooms.
Figure 10 Effect delay spreads on Sixteen-state SOSFTC-OFDM system.
By Equations 16 and 17, we can obtain the RMS delay spreads and mean excess delay.
Similar results were obtained for different channel profiles and delay spreads.
In the paper "Semi-Blind Channel Estimation for IFDMA in Case of Channels with Large Delay Spreads", Sohl and Klein [6] propose a subspace-based channel estimation algorithm which can cope with large delay spreads.
We see that vehicles in Areas I and II increase RMS delay spreads by about 12 and 18.1 ns.
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