Hello Atiqur,

The "PSK Demod" that you added into your flowgraph is deprecated, and is no 
longer supported. It is kept there for the backward-compatibility, but it is 
not guaranteed to work and will be removed in future. Also, that block does the 
synchronization and the equalization by itself, so you must remove the 
preceeding synchronization and equalization blocks if you actually want to use 
that (you shouldn't, though). Try other blocks, like a Constellation Decoder or 
a custom Python block.


Channel Model is used to "degrade" the signal (for simulation purposes). It 
will apply a FIR filter to the incoming signals to simulate the multipath 
environment. The taps are the filter taps used for that purpose. It is just a 
sequence of a few random non-zero numbers to simulate the multipath effect, and 
shouldn't really affect the functionality of the synchronizer and the equalizer 
blocks. A good equalizer will cancel out the effect of those channel taps.


Regards,

Kyeong Su Shin


________________________________
보낸 사람: Md. Atiqur Rahman <atiq....@gmail.com> 대신 Discuss-gnuradio 
<discuss-gnuradio-bounces+ksshin=postech.ac...@gnu.org>
보낸 날짜: 2019년 6월 28일 금요일 오후 9:32:46
받는 사람: discuss-gnuradio@gnu.org
제목: [Discuss-gnuradio] PSK modulation and demodulation from gnu radio tutorial.

Hello Guys,
I am very much new in gnu radio and trying to do the tutorial that gnuradio 
published for PSK demodulation. I am using constellation modulator to modulate 
the signal and demodulate it by PSK demodulation block(not my QPSK 
demodulator). I did put every parameter as they suggested.  Unfortunately, I do 
not get the same result(synchronized input and output ). I think its may the 
Channel model or time recovary block is not set correctly. Moreover, I do not 
understand why they use the channel model taps parameter to [1.0, 0.25-0.25j, 
0.50 + 0.10j, -0.3 + 0.2j]? How did the get that? I did already spend a lot of 
time for searching about these but do not get any specific understandable 
solution.

I attach my .grc file in this mail. Please have a look. Looking forward to 
hearing from you guys.

Sincerely,
Atiq
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