I couldn't understand why this program took a long time to run, can anyone help me to solve the problem so that the code can run fast

1 visualización (últimos 30 días)
ti = 0;
tf = 70E-5;
tspan=[ti tf];
KC = 1;
h = 1E-2;
for j = 1:500
y0= [ (h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
(h)*rand(2,1); ((-3.14).*rand(1,1) + (3.14).*rand(1,1));
((-3.14).*rand(20,1) + (3.14).*rand(20,1))];
O = 0.0015;
p = 0.0022;
h1 = rand(1,1).*(O)+rand(1,1).*(p);
h2 = rand(1,1).*(O)+rand(1,1).*(p);
h3 = rand(1,1).*(O)+rand(1,1).*(p);
h4 = rand(1,1).*(O)+rand(1,1).*(p);
h5 = rand(1,1).*(O)+rand(1,1).*(p);
h6 = rand(1,1).*(O)+rand(1,1).*(p);
h7 = rand(1,1).*(O)+rand(1,1).*(p);
h8 = rand(1,1).*(O)+rand(1,1).*(p);
h9 = rand(1,1).*(O)+rand(1,1).*(p);
h10 = rand(1,1).*(O)+rand(1,1).*(p);
h11 = rand(1,1).*(O)+rand(1,1).*(p);
h12 = rand(1,1).*(O)+rand(1,1).*(p);
h13 = rand(1,1).*(O)+rand(1,1).*(p);
h14 = rand(1,1).*(O)+rand(1,1).*(p);
h15 = rand(1,1).*(O)+rand(1,1).*(p);
h16 = rand(1,1).*(O)+rand(1,1).*(p);
h17 = rand(1,1).*(O)+rand(1,1).*(p);
h18 = rand(1,1).*(O)+rand(1,1).*(p);
h19 = rand(1,1).*(O)+rand(1,1).*(p);
h20 = rand(1,1).*(O)+rand(1,1).*(p);
yita_mn = [
0 h1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 h20;
h1 0 h2 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0;
0 h2 0 h3 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0;
0 0 h3 0 h4 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0;
0 0 0 h4 0 h5 0 0 0 0 0 0 0 0 0 0 0 0 0 0;
0 0 0 0 h5 0 h6 0 0 0 0 0 0 0 0 0 0 0 0 0;
0 0 0 0 0 h6 0 h7 0 0 0 0 0 0 0 0 0 0 0 0;
0 0 0 0 0 0 h7 0 h8 0 0 0 0 0 0 0 0 0 0 0;
0 0 0 0 0 0 0 h8 0 h9 0 0 0 0 0 0 0 0 0 0;
0 0 0 0 0 0 0 0 h9 0 h10 0 0 0 0 0 0 0 0 0;
0 0 0 0 0 0 0 0 0 h10 0 h11 0 0 0 0 0 0 0 0;
0 0 0 0 0 0 0 0 0 0 h11 0 h12 0 0 0 0 0 0 0;
0 0 0 0 0 0 0 0 0 0 0 h12 0 h13 0 0 0 0 0 0;
0 0 0 0 0 0 0 0 0 0 0 0 h13 0 h14 0 0 0 0 0;
0 0 0 0 0 0 0 0 0 0 0 0 0 h14 0 h15 0 0 0 0;
0 0 0 0 0 0 0 0 0 0 0 0 0 0 h15 0 h16 0 0 0;
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 h16 0 h17 0 0;
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 h17 0 h18 0;
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 h18 0 h19;
h20 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 h19 0
];
N = 20;
tp = 1E-9;
o = sort(10e2*rand(1,20),'ascend');
[T,Y]= ode45(@(t,y) rate_eq(t,y,yita_mn,N,o),tspan./tp,y0);
r = ((1/20).*( exp(i.*Y(:,3)) + exp(i.*Y(:,6)) + exp(i.*Y(:,9)) + exp(i.*Y(:,12)) + exp(i.*Y(:,15)) ...
+exp(i.*Y(:,18)) +exp(i.*Y(:,21)) +exp(i.*Y(:,24)) + exp(i.*Y(:,27)) + exp(i.*Y(:,30)) + exp(i.*Y(:,33)) ...
+ exp(i.*Y(:,36)) + exp(i.*Y(:,39)) +exp(i.*Y(:,42)) + exp(i.*Y(:,45)) + exp(i.*Y(:,48)) + exp(i.*Y(:,51)) + exp(i.*Y(:,54))+ exp(i.*Y(:,57)) + exp(i.*Y(:,60))));
M(j) = max(abs(r));
end
n = M(M<0.9)
h1 = rand(1,1).*(O)+rand(1,1).*(p);
h2 = rand(1,1).*(O)+rand(1,1).*(p);
h3 = rand(1,1).*(O)+rand(1,1).*(p);
h4 = rand(1,1).*(O)+rand(1,1).*(p);
h5 = rand(1,1).*(O)+rand(1,1).*(p);
h6 = rand(1,1).*(O)+rand(1,1).*(p);
h7 = rand(1,1).*(O)+rand(1,1).*(p);
h8 = rand(1,1).*(O)+rand(1,1).*(p);
h9 = rand(1,1).*(O)+rand(1,1).*(p);
h10 = rand(1,1).*(O)+rand(1,1).*(p);
h11 = rand(1,1).*(O)+rand(1,1).*(p);
h12 = rand(1,1).*(O)+rand(1,1).*(p);
h13 = rand(1,1).*(O)+rand(1,1).*(p);
h14 = rand(1,1).*(O)+rand(1,1).*(p);
h15 = rand(1,1).*(O)+rand(1,1).*(p);
h16 = rand(1,1).*(O)+rand(1,1).*(p);
h17 = rand(1,1).*(O)+rand(1,1).*(p);
h18 = rand(1,1).*(O)+rand(1,1).*(p);
h19 = rand(1,1).*(O)+rand(1,1).*(p);
h20 = rand(1,1).*(O)+rand(1,1).*(p);
G = (h1+h2+h3+h4+h5+h6+h7+h8+h9+h10+h11+h12+h13+h14+h15+h16+h17+h18+h19+h20)./(20)
function dy = rate_eq(t,y,yita_mn,N,o)
dy = zeros(4*N,1);
dGdt = zeros(N,1);
dAdt = zeros(N,1);
dOdt = zeros(N,1);
P = 0.05;
a = 1;
T = 1000;
tp =1E-9;
Gt = y(1:3:3*N-2);
At = y(2:3:3*N-1);
Ot = y(3:3:3*N-0);
k = 1E-3;
for i = 1:N
dGdt(i) = (P - Gt(i) - (1 + 2.*Gt(i)).*((At(i)))^2)./T ;
dAdt(i) = Gt(i)*(At(i));
dOdt(i) = -a.*Gt(i) + o(1,i).*tp;
for j = 1:N
dAdt(i) = dAdt(i) + yita_mn(i,j)*(At(j))*cos(Ot(j)-Ot(i));
dOdt(i) = dOdt(i) + yita_mn(i,j)*((At(j)/At(i)))*sin(Ot(j)-Ot(i));
end
end
dy(1:3:3*N-2) = dGdt;
dy(2:3:3*N-1) = dAdt;
dy(3:3:3*N-0) = dOdt;
n1 = (1:20)';
n2 = circshift(n1,-1);
n61 = n1 +60;
n62 = circshift(n61,-1);
n80 = circshift(n61,1);
j2 = 3*(1:20)-1;
j5 = circshift(j2,-1);
j8 = circshift(j2,-2);
j59 = circshift(j2,1);
U = sort(rand(1,20).*(0.005)+rand(1,20).*(0.003),'ascend');
dy(n61) = (o(1,n2).' - o(1,n1).').*tp - a.*(Gt(n2) - Gt(n1)) - (U(1,n1).').*(y(j2)./y(j5)).*sin(y(n61)) - (U(1,n1).').*(y( j5)./y(j2)).*sin(y(n61)) + (U(1,n1).').*(y(j8)./y(j5)).*sin(y(n62)) + (U(1,n1).').*(y(j59)./y(j2)).*sin(y(n80));
end

Respuestas (1)

Torsten
Torsten el 25 de En. de 2023
The reason is this line:
U = sort(rand(1,20).*(0.005)+rand(1,20).*(0.003),'ascend');
MATLAB integrators are not suited to cope with random variables in the differential equations to be solved.
These are stochastic differential equations, and the methods to solve them fundamentally differ from those for deterministic ODEs.

Categorías

Más información sobre Mathematics en Help Center y File Exchange.

Etiquetas

Community Treasure Hunt

Find the treasures in MATLAB Central and discover how the community can help you!

Start Hunting!

Translated by