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Exact(8)
Since the effectiveness of TM lasts approximately ms (in case of the offset attenuation), TM is a powerful and easily implementable technique in the FDLP codec.
In case of HD relaying, the highest delays are significantly increased in comparison to the direct BS-user transmission (up to 85 ms in case of three-hop connection).
In order to mitigate these effects in case of a high number of mobile stations like in machine-to-machine scenarios, the feedback information is sent automatically less frequently, e.g. only every 80 ms, in case of a low mobility environment.
Figure 12 ID algorithm performance versus the normal FWT algorithm for three decomposition stages in an EPA channel, 5 Hz Doppler at -5 dB SNR and FWT sensing duration of 0.5 ms in case of a regular pattern for LTE channel occupancy.
From the figure, one can conclude the following: Figure 13 Confidence metric algorithm performance after being added to the original ID algorithm in an AWGN channel at -5 dB SNR and FWT sensing duration of 0.5 ms in case of an irregular pattern for LTE channel occupancy.
While in case of a random pattern the performance varies as shown before in Figure 10. Figure 11 ID algorithm performance versus the normal FWT algorithm for three decomposition stages in an AWGN channel at -5 dB SNR and FWT sensing duration of 0.5 ms in case of a regular pattern for LTE channel occupancy.
Similar(52)
Second, the optimum methanol concentration increased from 0.1 M in case of nanoparticulate morphology to 1 M in case of the nanofibers.
The optimum lag distance has been found to be 2,000 m in case of spherical model.
Moreover, the optimum methanol concentration increased to 1 M in case of the nanofibrous morphology while it was 0.1 M for the NiO nanoparticles.
The maximum wave amplitudes were around 1 2 m in case of tsunamis originating at CMN, whereas those originating at YAN and PIN were around 2 4 m (Table 2).
In addition, the PL increase starts from the lower concentration (10−8 M) in case of the nanotube suspension sonicated for 30 min.
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Justyna Jupowicz-Kozak
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