qncmaba
Compute Asymptotic Bounds for closed, multiclass networks with service centers and customer classes. Single-server and infinite-server nodes are supported. Multiple-server nodes and general load-dependent servers are not supported.
INPUTS
N(c) number of class requests in the system
(vector of length , N(c) ≥ 0).
D(c, k) class service demand
at center ( matrix, D(c,k) ≥ 0).
S(c, k) mean service time of class
requests at center ( matrix, S(c,k) ≥ 0).
V(c,k) average number of visits of class
requests to center ( matrix, V(c,k) ≥ 0).
m(k) number of servers at center
(if m is a scalar, all centers have that number of servers). If
m(k) < 1, center is a delay center (IS);
if m(k) = 1, center is a M/M/1-FCFS server.
This function does not support multiple-server nodes. Default
is 1.
Z(c) class external delay
(vector of length , Z(c) ≥ 0). Default is 0.
OUTPUTS
Xl(c)Xu(c)Lower and upper bounds for class throughput.
Rl(c)Ru(c)Lower and upper bounds for class response time.
REFERENCES
See also: qncsaba
S = [10 7 5 4; ...
5 2 4 6];
NN=20;
Xl = Xu = Rl = Ru = Xmva = Rmva = zeros(NN,2);
for n=1:NN
N=[n,10];
[a b c d] = qncmaba(N,S);
Xl(n,:) = a; Xu(n,:) = b; Rl(n,:) = c; Ru(n,:) = d;
[U R Q X] = qncmmva(N,S,ones(size(S)));
Xmva(n,:) = X(:,1)'; Rmva(n,:) = sum(R,2)';
endfor
subplot(2,2,1);
plot(1:NN,Xl(:,1), 1:NN,Xu(:,1), 1:NN,Xmva(:,1), ";MVA;", "linewidth", 2);
ylim([0, 0.2]);
title("Class 1 throughput"); legend("boxoff");
subplot(2,2,2);
plot(1:NN,Xl(:,2), 1:NN,Xu(:,2), 1:NN,Xmva(:,2), ";MVA;", "linewidth", 2);
ylim([0, 0.2]);
title("Class 2 throughput"); legend("boxoff");
subplot(2,2,3);
plot(1:NN,Rl(:,1), 1:NN,Ru(:,1), 1:NN,Rmva(:,1), ";MVA;", "linewidth", 2);
ylim([0, 700]);
title("Class 1 response time"); legend("location", "northwest"); legend("boxoff");
subplot(2,2,4);
plot(1:NN,Rl(:,2), 1:NN,Ru(:,2), 1:NN,Rmva(:,2), ";MVA;", "linewidth", 2);
ylim([0, 700]);
title("Class 2 response time"); legend("location", "northwest"); legend("boxoff");
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