Cij is normalized the quality loss of jth
trial for ith response.
The probability of detection and false alarm for the jth
channel is given by:
It is the collection of the service utility decision part of the service items, where [v.sub.j]- is the service utility decision part of the jth
service items ([S.sub.j]), j = 1, 2 ,..., m.
where [a.sup.(j)] is the unknown coefficient of the constant term of the jth
subcomponent, [b.sup.(j).sub.i] the unknown coefficient of the linear term of the jth
subcomponent, [c.sup.(j).sub.i] is the unknown coefficient of the quadratic term of the jth
component, and [x.sup.(j).sub.i] is the value of the ith input sample of the jth
where [[beta].sub.j] is the SNR ratio between the PU and the jth
The dimensional value of current effective stress at the jth
nodal point, [S.sub.j], can be obtained by the following equation:
where [x.sup.<j>.sub.TX,k] is the state of the jth
The velocity and position updating laws of the jth
particle at the (k + 1)th iteration are given as
which represents the ith subject's jth
intraclass variation image relating to its neutral image.
Let [a.sub..j] be the jth
column and [a.sub.i.] be the ith row of A.
This familiar grid of numbers has rows and columns both indexed by the counting numbers, with the value in the ith row and jth
column the product i x j, as shown in Figure 1.
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