📄 tsthamsq.m
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function [ret,x0,str,ts,xts]=tsthamsq(t,x,u,flag);
%TSTHAMSQ is the M-file description of the SIMULINK system named TSTHAMSQ.
% The block-diagram can be displayed by typing: TSTHAMSQ.
%
% SYS=TSTHAMSQ(T,X,U,FLAG) returns depending on FLAG certain
% system values given time point, T, current state vector, X,
% and input vector, U.
% FLAG is used to indicate the type of output to be returned in SYS.
%
% Setting FLAG=1 causes TSTHAMSQ to return state derivatives, FLAG=2
% discrete states, FLAG=3 system outputs and FLAG=4 next sample
% time. For more information and other options see SFUNC.
%
% Calling TSTHAMSQ with a FLAG of zero:
% [SIZES]=TSTHAMSQ([],[],[],0), returns a vector, SIZES, which
% contains the sizes of the state vector and other parameters.
% SIZES(1) number of states
% SIZES(2) number of discrete states
% SIZES(3) number of outputs
% SIZES(4) number of inputs
% SIZES(5) number of roots (currently unsupported)
% SIZES(6) direct feedthrough flag
% SIZES(7) number of sample times
%
% For the definition of other parameters in SIZES, see SFUNC.
% See also, TRIM, LINMOD, LINSIM, EULER, RK23, RK45, ADAMS, GEAR.
% Note: This M-file is only used for saving graphical information;
% after the model is loaded into memory an internal model
% representation is used.
% the system will take on the name of this mfile:
sys = mfilename;
new_system(sys)
simver(1.3)
if (0 == (nargin + nargout))
set_param(sys,'Location',[65,317,661,533])
open_system(sys)
end;
set_param(sys,'algorithm', 'RK-45')
set_param(sys,'Start time', '0.0')
set_param(sys,'Stop time', '999999')
set_param(sys,'Min step size', '0.0001')
set_param(sys,'Max step size', '1')
set_param(sys,'Relative error','1e-3')
set_param(sys,'Return vars', '')
set_param(sys,'Load callback','N_ham_demo=7;K_ham_demo=4;M_ham_demo=3;GWN=.01;');
% Subsystem 'Error rate1'.
new_system([sys,'/','Error rate1'])
set_param([sys,'/','Error rate1'],'Location',[255,368,509,510])
add_block('built-in/S-Function',[sys,'/','Error rate1/S-function'])
set_param([sys,'/','Error rate1/S-function'],...
'function name','sbiterr',...
'parameters','num_lin, K, TDelay, Sample',...
'position',[130,52,195,78])
add_block('built-in/Mux',[sys,'/','Error rate1/Mux'])
set_param([sys,'/','Error rate1/Mux'],...
'inputs','2',...
'position',[65,46,100,79])
add_block('built-in/Inport',[sys,'/','Error rate1/in_1'])
set_param([sys,'/','Error rate1/in_1'],...
'position',[15,45,35,65])
add_block('built-in/Inport',[sys,'/','Error rate1/in_2'])
set_param([sys,'/','Error rate1/in_2'],...
'Port','2',...
'position',[15,60,35,80])
add_line([sys,'/','Error rate1'],[105,65;125,65])
add_line([sys,'/','Error rate1'],[40,55;60,55])
add_line([sys,'/','Error rate1'],[40,70;60,70])
set_param([sys,'/','Error rate1'],...
'Mask Display','Error\nmeter',...
'Mask Type','Symbol/bit error counter')
set_param([sys,'/','Error rate1'],...
'Mask Dialogue','Use the input data from the 1st port as the reference signal to detect the number of errors and error rate of the 2nd port inputted signal.|Bit per symbol:|Number of digits on display:|Delay between input (1st port) and output (2nd port):|Sampling time (sec):')
set_param([sys,'/','Error rate1'],...
'Mask Translate','K=@1;num_lin=@2;TDelay=@3;Sample=@4;')
set_param([sys,'/','Error rate1'],...
'Mask Help','The signal from the first port must be a scalar. The second input port can be a vector with a same-time delay to the input signal. The comparison happens only at the sampling point.')
set_param([sys,'/','Error rate1'],...
'Mask Entries','1\/20\/2\/1/K_ham_demo\/')
% Finished composite block 'Error rate1'.
set_param([sys,'/','Error rate1'],...
'hide name',0,...
'position',[500,8,580,52])
% Subsystem ['Sampled read',13,'from wksp'].
new_system([sys,'/',['Sampled read',13,'from wksp']])
set_param([sys,'/',['Sampled read',13,'from wksp']],'Location',[355,528,737,675])
% Subsystem ['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1'].
new_system([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']])
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],'Location',[55,192,283,286])
add_block('built-in/S-Function',[sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1/S-function1']])
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1/S-function1']],...
'function name','homopuls',...
'parameters','samp_time, out_divid, offset',...
'position',[40,31,105,59])
add_block('built-in/Outport',[sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1/Outport']])
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1/Outport']],...
'position',[160,35,180,55])
add_line([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],[110,45;155,45])
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'Mask Display','Vector\nPulse',...
'Mask Type','Pulse generator')
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'Mask Dialogue','Vector pulses with sample rate of each pulse as Sample_time ./Divider. |Sample time (scalar, sec):|Divider (integer vector):|Offset (have same dimension as Divider:')
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'Mask Translate','samp_time=@1;out_divid=@2;offset=@3;')
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'Mask Help','This block generator a vector pulses. The output length is the same as the vector defined in "Divider". The ith element of the output has the sample time Sample_time/Divider(i). All elements in "Divider" must be integers.')
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'Mask Entries','ts\/1\/off\/')
% Finished composite block ['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1'].
set_param([sys,'/',['Sampled read',13,'from wksp/Pulses deivide',13,'same sample time1']],...
'position',[50,56,110,94])
add_block('built-in/Outport',[sys,'/',['Sampled read',13,'from wksp/out_1']])
set_param([sys,'/',['Sampled read',13,'from wksp/out_1']],...
'position',[295,65,315,85])
add_block('built-in/S-Function',[sys,'/',['Sampled read',13,'from wksp/Message source']])
set_param([sys,'/',['Sampled read',13,'from wksp/Message source']],...
'BackGround',5,...
'function name','trigwksp',...
'parameters','var,thd,cyclFlag,ini',...
'Mask Display','Triggered\nread',...
'Mask Type','Read from workspace')
set_param([sys,'/',['Sampled read',13,'from wksp/Message source']],...
'Mask Dialogue','The raising edge of input pulse trigger the block output the next row from the workspace variable.|Read the variable:|Threshold for the input pulse:|Cyclic read variable (1) or amend zeros (0).|Output before first trigger:')
set_param([sys,'/',['Sampled read',13,'from wksp/Message source']],...
'Mask Translate','var=@1;thd=@2;cyclFlag=@3;ini=@4;')
set_param([sys,'/',['Sampled read',13,'from wksp/Message source']],...
'Mask Help','This block reads the data from a workspace variable. The output is refreshed at the raising edge of the input pulse.',...
'Mask Entries','var\/.1\/cyc\/ini\/')
set_param([sys,'/',['Sampled read',13,'from wksp/Message source']],...
'position',[180,53,255,97])
add_line([sys,'/',['Sampled read',13,'from wksp']],[260,75;290,75])
add_line([sys,'/',['Sampled read',13,'from wksp']],[115,75;175,75])
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'Mask Display','plot(0,0,100,100,x,y);Rd wksp',...
'Mask Type','Read from workspace')
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'Mask Dialogue','Read from a workspace variable at\nsampling time point.|Variable (column_number=block_output_length):|Data output sample time (sec):|Cyclic control (1: cyclic read, 0: output zeros after eof).|Initial output:')
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'Mask Translate','var=@1;td=@2;ts=td(1);if (length(td)>=2),off=td(2);else off=0;end;cyc=@3;ini=@4;[x,y]=srcsicon(7);')
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'Mask Help','This block reads from a workspace variable at a given sample time. The column number is the block output vector length. When the simulation reached the end of the variable (eof) row, the block will cyclically output from the first row of the variable or output zeros based on the cyclic control entree.')
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'Mask Entries','randint(200,1)\/1/K_ham_demo\/1\/0\/')
% Finished composite block ['Sampled read',13,'from wksp'].
set_param([sys,'/',['Sampled read',13,'from wksp']],...
'hide name',0,...
'position',[20,53,100,97])
% Subsystem ['Binary sequence',13,'Hamming decode'].
new_system([sys,'/',['Binary sequence',13,'Hamming decode']])
set_param([sys,'/',['Binary sequence',13,'Hamming decode']],'Location',[284,88,882,241])
% Subsystem ['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode'].
new_system([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode']])
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode']],'Location',[267,160,850,320])
add_block('built-in/Outport',[sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/out_1']])
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/out_1']],...
'position',[535,90,555,110])
add_block('built-in/S-Function',[sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Modulus',13,'operation2']])
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Modulus',13,'operation2']],...
'function name','arymodu',...
'parameters','md',...
'Mask Display','Modulo',...
'Mask Type','Modulo')
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Modulus',13,'operation2']],...
'Mask Dialogue','Modulus operation:|Modulus base:',...
'Mask Translate','md = @1;')
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Modulus',13,'operation2']],...
'Mask Help','This block output modulus operation of the input signal with module base as specified in block entry. The length of the output vector is the same as the input vector.')
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Modulus',13,'operation2']],...
'Mask Entries','2\/',...
'position',[455,81,515,119])
add_block('built-in/State-Space',[sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Matrix',13,'Gain1']])
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Matrix',13,'Gain1']],...
'A','[]',...
'B','[]',...
'C','[]',...
'D','K',...
'Mask Display','K',...
'Mask Type','Matrix Gain')
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Matrix',13,'Gain1']],...
'Mask Dialogue','Matrix Gain.|Gain matrix:',...
'Mask Translate','K = @1;')
set_param([sys,'/',['Binary sequence',13,'Hamming decode/Binary-vector',13,'Hamming decode/Matrix',13,'Gain1']],...
'Mask Help','Multiplies input vector by entered matrix to produce output vector (y=Au).',...
'Mask Entries','G\/')
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