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The primary achievable rate is maximized under total power constraint.
First the powers are derived under total power constraint (TPC).
Additionally, under total power constraints, we have studied power allocation between the source and relay.
The BEP performance of BF-AF using optimal power allocation under total power constraint is also shown.
A similar result will be discussed later in this section when the performance is analyzed under total power constraints.
For relay networks, we have formulated power allocation problem to maximize the ergodic capacity under total power constraint.
Similar(46)
where is the secrecy capacity under a total power constraint (2), and is the secrecy capacity under a per antenna power constraint.
Although there exists a closed-form expression under a power-covariance constraint [15], the secrecy capacity under a total power constraint in (11) is still difficult to compute (especially for a large dimension of and ) because it requires a search over all possible power covariances constraints.
We first propose an approach under a total power constraint.
Moreover, under a total power constraint, i.e., P total = 56.2 mW, the coded-cooperative scheme achieves BER ≈ 1.4 × 10−4.
In [8], the power allocation for full-duplex [2] DF under a total power constraint (source and relay) is considered.
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