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The second and the third constraints are constraints for the power plants' utility that are straightforward from proposition 1.
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The third constraint means that the measurements z k determined by the second constraint should be classified as targets.
As in the proof of Lemma 4, for b=l, the third constraint of (15) represents (16), which is involved in the first constraint of (11).
For the third constraint, let us check the case when b=l first.
The transmission power is limited to P, illustrated by the third constraint.
Note that values of would violate the third constraint of (1) and is thus not considered.
The third constraint shows that at most MNs can connect to one RN.
The third constraint is Reflection: present opinion must lie in the range of anticipated future opinions (van Fraassen 1984 , 1995.
Since the third constraint of (15) considers other b values such that 1≤b<l, (15) has more constraints than (11).
where the first constraint is the feedback capacity constraint, the second constraint ensures that each subcarrier is assigned to one user exclusively, and the third constraint is for total transmit power, denoted by γ T. By Theorem 1, for each R k (D k ), there exists a test channel that achieves R k (D k ).
The second constraint is to guarantee the total transmission power of SUs is bounded by a certain limit p max, and the third constraint ensures the SINR requirement for each SU.
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