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In order to implement MF in digital mode, the received signal, r(t), is sampled at a very high rate than the symbol rate.
For the AF mode, the received signal from the source-to-relay link is retransmitted with an amplifying parameter to satisfy the power constraint at the relay (i.e., equal power allocation between S and R).
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Following the same reasoning, let us now contract the first two modes of the received signal tensor Y ∈ ℂ F × M r × N × P by defining i=(f−1)M r +m r, with I=F M r.
The antenna mode component of the received backscatter signal at reader's antenna port is given by (2).
Let γ th ( n ) and γ k denote the SNR threshold of AMC mode n and the received SNR of user k, respectively.
To receive data, the receiver must be in high power state, for example, active/listen state; as in sleep state, the radio is in low power mode with the receiving circuitry switched off [6, 7].
Therefore, we let each node operate in one of four modes basing on the received messages and current conditions.
The key idea is that a relay station (RS) switches between the HD and the FD modes based on the received signal-to-interference-plus-noise ratio (SINR).
It is shown that for transmission between plates it is the modes in the receiving subsystem that affect the power flow.
In receiving mode, the RSSI indicates the received power and is a good indicator for the packet reception rate when the noise is limited[33].
If the relay operates in AAF mode, it will amplify the received signal.
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