How do I change the scale for x-axis???

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p_avg=1; % average optical power
R=1; % photodetector sensitivity
Rb=1; % normalized bit rate
Tb=1/Rb; % bit duration
df=Rb/100; % spectral resolution
f=0:df:5*Rb; % frequency vector
x=f*Tb; % normalized frequency
temp1=(sinc(x)).^2;
a=R*p_avg;
p=(a^2*Tb).*temp1;
%p(1)=p(1)+((a^2)*Tb)*(sinc(0)^2)*(1/Tb); % delta function at DC
p=p/(((p_avg*R)^2)*Tb); % power normalization by energy per bit
plot(p)
The graph is plot as:
But the graph I should get is:
So, which parameter should I change in order to get the correct scale for x-axis?
  2 Comments
help_me
help_me on 25 Dec 2017
I'd try something along the line of
axis ([0 4 0 1]);
Let me know if it works.
Best of luck

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Accepted Answer

Birdman
Birdman on 26 Dec 2017
p_avg=1; % average optical power
R=1; % photodetector sensitivity
Rb=1; % normalized bit rate
Tb=1/Rb; % bit duration
df=Rb/100; % spectral resolution
f=0:df:5*Rb; % frequency vector
x=f*Tb; % normalized frequency
temp1=(sinc(x)).^2;
a=R*p_avg;
p=(a^2*Tb).*temp1;
%p(1)=p(1)+((a^2)*Tb)*(sinc(0)^2)*(1/Tb); % delta function at DC
p=p/(((p_avg*R)^2)*Tb); % power normalization by energy per bit
plot(f/Rb,p)
set(gca,'XLim',[0 4]);
set(gca,'YLim',[0 1]);
set(gca,'XTick',[0 1 2 3])
  3 Comments
Alex Phang
Alex Phang on 26 Dec 2017
What about the line styles? Just like the second graph but now my graph get just like this:

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