My code is working well now. But I met two new problems, which are not so crucial, but really important to me.
1. When I initilize the Viterbi algorithm, I wish that for the first trunk of data, ninput_items >= Viterbi algorithm's working length, let's say ninput_items > 100 (only for the first trunk of data, doesn't matter for later ones). Now I am using assert(ninput_items > 100), which may not may not let me get through. Is there anyway so that I could control the number of incoming samples?
2. Another problem is more difficult to describe, the following is part of my main code:
class my_graph(gr.flow_graph):
def __init__(self, rx_callbackA, rx_callbackB, spb, bt, SNR, freq_error):
gr.flow_graph.__init__(self)
fg = self
# Tuning Parameters
gain_mu = 0.002*spb
omega = spb*(1+freq_error)
# transmitter
self.packet_transmitterA = gmsk2_mod_pkts(fg, spb=spb, bt=bt)
self.packet_transmitterB = gmsk2_mod_pkts(fg, spb=spb, bt=bt)
adder = gr.add_cc ()
const = gr.multiply_const_cc (0.5)
filesink = gr.file_sink (gr.sizeof_gr_complex, "added.dat")
filesinkA = gr.file_sink (gr.sizeof_gr_complex, "A.dat")
filesinkB = gr.file_sink (gr.sizeof_gr_complex, "B.dat")
#fg.connect (rx_channel_A, (adder, 0))
#fg.connect (rx_channel_B, (adder, 1))
#fg.connect (noise, (adder, 2))
fg.connect (self.packet_transmitterA , (adder, 0))
fg.connect (self.packet_transmitterB, const, (adder, 1))
# receiver
self.packet_receiver = Hamkins_demod_pkts(fg, callbackA=rx_callbackA, callbackB=rx_callbackB,
spb=spb, gain_mu=gain_mu,
freq_error=freq_error, omega=omega)
fg.connect (adder, self.packet_receiver)
fg.connect (adder, filesink)
fg.connect (self.packet_transmitterA, filesinkA)
fg.connect (const, filesinkB)
On 10/16/06, Eric Blossom <
[EMAIL PROTECTED]> wrote:
On Mon, Oct 16, 2006 at 10:37:10PM -0400, Dawei Shen wrote:
> Hey, Michael and Eric
>
> Thank you for your reply. Yeah, you are right, the I found out my problem in
> my separator_ccc block, I did something stupid so that the two output
> streams become identical. Now I have solved the problem and now everything
> works perfectly.
Great! Glad to hear it works.
> Basically what I am trying to do is to separate two digital co-channel
> signals.
>
> Thank you guys
You're welcome. Keep us posted!
> Dawei
Eric
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