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As stated in Section 2., y is the received compound signals from multiple transmitters for M-PSK modulation and is represented in (1).
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We propose an optimization-based approach for deriving the optimal transmit power levels and carrier phase offsets for multiple transmitters.
Therefore, we solve an optimization problem numerically in order to determine the optimal values for multiple transmitters.
We use decode-and-forward which is an obvious method for multiple transmitters cooperating to send data to a multiple antenna receiver as previously shown in [26].
Measured channel sounding data were used to obtain fading channels from multiple transmitter sites for a large set of terminal positions.
Instead of the CA, the authors of [25] use the spectral correlation (SC), which is the Fourier transform of the CA over τ, for detecting multiple transmitters in a wideband signal using compressive sampling.
There are also numerous works dealing with the adder-channel for performing joint coding from multiple transmitters through superimposed signals.
For the received signal in (1), the constellation of the received signal has a number of densely distributed points for the signals received from multiple transmitters.
This is in fact superposition modulation of multiple transmitters on a single subcarrier which is repeated individually for multiple subcarriers.
For RFID, where the receiver is able to receive multiple transmitters, it is an indication of the amount of Prx sources of information available per point.
They need multiple transmitters to reach widely scattered areas.
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