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In the problem of maximizing sum throughput, the fairness of relay SUs is not considered.
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The MadMac protocol deals with fairness and throughput by maximizing aggregate throughput when unfairness is solved.
Many publications study the problem of maximizing sum capacity [3,7-9].
The user selection is performed in a centralized fashion aiming at maximizing the sum throughput of the MBS and FBS.
For AF relaying protocol, the joint bandwidth and power allocation problem aiming at maximizing the sum throughput of the CR network can be formulated as follows: Problem P1: max W k, P k S, P k R ∑ k = 1 K R k, SD AF (6).
For DF relaying protocol, the joint bandwidth and power allocation problem aiming at maximizing the sum throughput of the CR network can be formulated as follows: Problem P4: max W k, P k S, P k R ∑ k = 1 K R k, SD DF (16).
The objective function in (5) is to maximize the sum throughput in the HetNet.
Our objective is to maximize the sum throughput, given the total power budget on all users P t, and the interference constraint on each PU sub-band.
To maximize the sum throughput, at most one receiver should be jointly transmitted by the two transmitters, and each other receiver is transmitted by some single transmitter.
The joint bandwidth and power allocation problem with hybrid relaying protocol is formulated to maximize the sum throughput of the CR network.
The objective behind reclassifying users is to maximize the sum throughput over all the users in the network covered by an ASN gateway (or a set of BSs deployed for cooperation) subject to a minimum throughput guarantee for each user.
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