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In the previous subsection, we have surveyed a class of codes for which we can handle the near-far effects without actually estimating the received power of each user at the receiver.
These methods depend on estimating the received power for each user.
This section shows how the received signals' power can be estimated after estimating the received signals' AOAs.
By estimating the received power on each antenna, the signal on the antenna with the highest observed power can be selected for classification, while the others are discarded.
By estimating the received signal and the time when CPRG outputted the corresponding pulse, the first bit data can be restored.
The proposed 2D extensions for the EDBA method are presented in Section 5. Estimating the received signals' power is presented in Section 6.
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Specifically, as the relays themselves estimate the received SINR on the first hop, our proposed order of optimization only requires the receivers estimate and send back the second-hop SINR to the relays to perform two-hop rate matching.
When the receiver detects and decodes the RTS frame signals received from the multiple transmitters, it estimates the received signal power levels and the carrier phase offsets that occur when the compound signals are transmitted on a wireless medium.
Next, values are calculated using Eq. (7) in order to estimate the received energy.
According to this, two methods to estimate the received signal level per user are evaluated.
It means that we only consider the deterministic part of the Shadowing model to estimate the received power.
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