Complex variable substitution using Symbolic Toolbox no working as expected.
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For the code:
% Define symbolic variables
syms R81 R79 R80 C37 C67 T z fs complex
syms w s complex
% Define the frequency-domain transfer function
h_w = -1 / ((R81 - 1i/(C37*w)) * (1/(R79 + R80) + C67*w*1i));
disp('Frequency-domain transfer function (h(w)):');
disp(char(h_w));
% Substitute s = j*w into Laplace domain
s = 1i*w; % Substitute s = j*w
h_s = simplify(subs(h_w, w*1i, s));
disp('Laplace-domain transfer function (H(s)):');
disp(char(h_s));
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The output is the identical equation: h_w = h_s = -1/((R81 - 1i/(C37*w))*(1/(R79 + R80) + C67*w*1i)) where h_s should be h_s = - (s * C37 * (R79 + R80)) / ((R81 * s * C37 - 1) * (1 + s * C67 * (R79 + R80)));
I'm using Symbolic Math Toolbox, Version 8.5, (R2020a). Has anyone else seen this and / or what am I doing wrong?
1 Comment
Walter Roberson
on 7 Dec 2024 at 18:02
syms R81 R79 R80 C37 C67 T z fs complex
Note that there is no flag named complex for syms . What you have done there is to declare a symbolic variable named complex . All symbolic variables default to complex unless specifically restricted to real or positive or assume() or assumeAlso() are used.
Accepted Answer
Paul
on 8 Dec 2024 at 0:07
% Define symbolic variables
syms R81 R79 R80 C37 C67 T z fs %complex
syms w s % complex
% Define the frequency-domain transfer function
h_w = -1 / ((R81 - 1i/(C37*w)) * (1/(R79 + R80) + C67*w*1i)),pretty(h_w)
% s = 1i*w -> w = s/1i
h_s = subs(h_w,w,s/1i),pretty(h_s)
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More Answers (1)
Walter Roberson
on 7 Dec 2024 at 18:06
s = 1i*w; % Substitute s = j*w
h_s = simplify(subs(h_w, w*1i, s));
You are asking to substitute 1i*w for w*1i . However, expressions are automatically rewritten to internal order before proceeding, so you are effectively asking to substitute w*1i for w*1i . Which of course does nothing useful.
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