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Undefined operator '*' for input arguments of type 'function_handle'.

조회 수: 2 (최근 30일)
i wrote a following code. every thing is right but it shows error" Undefined operator '*' for input arguments of type 'function_handle'.
clear all
clc
syms x
h=4;
q=100;
delta=26;
phi=39;
kh=0;
kv=0;
psi=atan(kh/(1-kv));
da1=delta*(pi/180); pha1=phi*(pi/180);
m=pha1+da1;
b=pha1-psi;
c=psi+da1;
gma=18.4; nq=2*q/(gma*(x));
delta=26;
phi=39;
lam=0;
A=lam*nq/(1+nq);
alphac=atan((sin(m)*sin(b)+(sin(m)^2+sin(b)^2+sin(m)*cos(m)*sin(b)*cos(b)+A*cos(c)*cos(m)*sin(b))^0.5)/(A*cos(c)+sin(m)*cos(b)));
w=0.5*gma*(x)^2*(1/tan(alphac));
B=(x)*((1/tan(alphac))-lam);
ka1=((1+nq)*(1-A*tan(alphac))*(cos(b)-(sin(b)/tan(alphac))))/(cos(psi)*(cos(m)+tan(alphac)*sin(m)))
wt=w+q*B;
pa1 = matlabFunction(0.5*gma*x^2*ka1);
x=0:0.1:5;
R=(wt*(1-kv)-pa1*sin(da1))/cos(alphac-pha1);
za1=(0.5*R*cos(pha1)*(x/sin(alphac))-q*B*(lam*x+0.5*B)-(1/6)*(1/tan(alphac))*(gma/tan(alphac))*x^3)/(pa1*cos(da1))
plot(za1(x),x)

채택된 답변

Alex Mcaulley
Alex Mcaulley 2019년 3월 15일
편집: Alex Mcaulley 2019년 3월 15일
You have some mix between symbolic functions and function handles. You need to choose one strategy. Try the following code, which uses only symbolic functions:
syms x
h=4;
q=100;
delta=26;
phi=39;
kh=0;
kv=0;
psi=atan(kh/(1-kv));
da1=delta*(pi/180); pha1=phi*(pi/180);
m=pha1+da1;
b=pha1-psi;
c=psi+da1;
gma=18.4; nq=2*q/(gma*(x));
delta=26;
phi=39;
lam=0;
A=lam*nq/(1+nq);
alphac=atan((sin(m)*sin(b)+(sin(m)^2+sin(b)^2+sin(m)*cos(m)*sin(b)*cos(b)+A*cos(c)*cos(m)*sin(b))^0.5)/(A*cos(c)+sin(m)*cos(b)));
w=0.5*gma*(x)^2*(1/tan(alphac));
B=(x)*((1/tan(alphac))-lam);
ka1=((1+nq)*(1-A*tan(alphac))*(cos(b)-(sin(b)/tan(alphac))))/(cos(psi)*(cos(m)+tan(alphac)*sin(m)))
wt=w+q*B;
pa1 = (0.5*gma*x^2*ka1); %changed
% x=0:0.1:5; %changed
R=(wt*(1-kv)-pa1*sin(da1))/cos(alphac-pha1);
za1=(0.5*R*cos(pha1)*(x/sin(alphac))-q*B*(lam*x+0.5*B)-(1/6)*(1/tan(alphac))*(gma/tan(alphac))*x^3)/(pa1*cos(da1))
fplot(za1,[0,5]) %changed
  댓글 수: 1
Steven Lord
Steven Lord 2019년 3월 15일
Alternately if you want to use just function handles, you can't perform arithmetic with the function handles themselves but you can perform arithmetic on the values you receive when you evaluate the function handle.
f1 = @sin;
f2 = @cos;
x = 0:0.05:2*pi;
% Add the results of evaluating f1 and f2
willWork = @(x) f1(x)+f2(x);
figure
plot(x, willWork(x))
title('Will work')
% Try to add f1 and f2
willNotWork = @(x) f1+f2;
figure
plot(x, willNotWork(x)) % This line will error so ...
title('This line of code won''t be executed')

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