文件名称:matlab

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  • 2016-02-27
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  • san****
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function [out1,out2] = humps(x)

HUMPS A function used by QUADDEMO, ZERODEMO and FPLOTDEMO.

Y = HUMPS(X) is a function with strong maxima near x = .3

and x = .9.



[X,Y] = HUMPS(X) also returns X. With no input arguments,

HUMPS uses X = 0:.05:1.



Example:

plot(humps)



See QUADDEMO, ZERODEMO and FPLOTDEMO.



Copyright 1984-2014 The MathWorks, Inc.



if nargin==0

x = 0:.05:1

end



y = 1 ./ ((x-.3).^2 + .01) + 1 ./ ((x-.9).^2 + .04) - 6



if nargout==2,

out1 = x

out2 = y

else

out1 = y

end

qually probable bits, P(0) = P(1) = 0.5. (a) Construct a program to generate 10000 bits with bipolar signaling. (b) Use your program to simulate the bit error performance of the system with Eb/N0 = 0, 2, 4, 6, 8, 10 dB. (c) Compare your simul-function [out1,out2] = humps(x)

HUMPS A function used by QUADDEMO, ZERODEMO and FPLOTDEMO.

  Y = HUMPS(X) is a function with strong maxima near x = .3

  and x = .9.



  [X,Y] = HUMPS(X) also returns X. With no input arguments,

  HUMPS uses X = 0:.05:1.



  Example:

    plot(humps)



  See QUADDEMO, ZERODEMO and FPLOTDEMO.



  Copyright 1984-2014 The MathWorks, Inc.



if nargin==0

  x = 0:.05:1

end



y = 1 ./ ((x-.3).^2 + .01) + 1 ./ ((x-.9).^2 + .04) - 6



if nargout==2,

  out1 = x

  out2 = y

else

  out1 = y

end

qually probable bits, P(0) = P(1) = 0.5. (a) Construct a program to generate 10000 bits with bipolar signaling. (b) Use your program to simulate the bit error performance of the system with Eb/N0 = 0, 2, 4, 6, 8, 10 dB. (c) Compare your simul
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matlab.txt

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