rand('state',11)
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Can anyone please explain this statement:
rand('state',11) ?!
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Steven Lord
2020년 5월 29일
No one responded since February 1st, 2018. The answers given then and back in 2011 are still valid.
채택된 답변
Greg Heath
2011년 10월 7일
편집: Greg Heath
2018년 2월 1일
rand is an obsolete random number generator that generates uniformly distributed outputs in the open interval (0,1).
rand(m,n) produces a matrix of size [m n] and rand(n) = rand(n,n)
Each time rand is called, the state of the generator is changed and a new sequence of random numbers is generated.
There are 2^1492 states, 2^32 of them are so-called integer states.
rand('state',N) for integer N in the closed interval [0 2^32-1] initializes the generator to the Nth integer state.
SEE THE DOCUMENTATION:
help rand
doc rand
Hope this helps.
Greg
댓글 수: 1
Steven Lord
2018년 2월 1일
Greg, I have a slight issue with the way your first sentence is worded. The rand function is not obsolete; it is the recommended way to generate uniform random numbers.
The particular syntax for rand about which the poster asked, where you use it to control the internal state information about the pseudorandom number generators, is what is discouraged (though describing it as obsolete is close enough.) We recommend using the rng function instead.
추가 답변 (4개)
Wayne King
2011년 10월 7일
did you read that document, it is explained there. It is a seed. The seed is an integer, you can use it to produce repeatable results.
rand('state',11)
rand(4,1)
% now seed back to where you were
rand('state',11)
rand(4,1)
% the same 4 numbers both times, now
rand('state',1)
rand(4,1)
% see they're different
댓글 수: 0
Wayne King
2011년 10월 7일
편집: John Kelly
2014년 5월 27일
rand('state',seed_number) is an old way of seeding the MATLAB v5 random number generator.
Steven Lord
2018년 2월 1일
See this page in the documentation for an explanation of that syntax and the recommended replacement.
댓글 수: 0
yasmine Zem
2021년 1월 26일
Bonjour j'ai un problème avec mon algorithme il veut pas marcher je voudrais avoir des explications svp clf
randn ('state',1)
T = 1; N = 2^8; Delta = T/N; lambda = 0.05; sigma 0.8; Xzero = 1;
Xem = zeros (1, N+1);
Xem (1) = Xzero;
for j = 1:N
Winc = sqrt (Delta) *randn;
Xem (j+1)=abs (Xem (j) + Delta*lambda*Xem (j) + sigma\sqrt(Xem (j)) *Winc);
end
plot ( [0:Delta:T],Xem, 'r--') xlabel ('t','FontSize', 16), ylabel ('X', 'FontSize', 16)
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