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Figures 4 and 5 show the end-to-end channel capacity of full duplex and half duplex when the snr i is 5 and 20 dB, respectively.
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Numerical results show that the full-duplex relaying performs better than half-duplex relaying when the residual self-interference is small, and the performance of full-duplex relaying can be improved by using power control.
The full duplex has more advantages when the number of antennas is greater than or equal to four, whereas the half duplex has more advantages when the number of antennas is less than four.
Compared to that of the half duplex, the end-to-end channel capacity of the full duplex decreases more slowly.
Compared to the half duplex, the end-to-end channel capacity of the full-duplex system is more robust due to the half of delay time.
Compared to the half duplex, the end-to-end channel capacity of full duplex is much higher.
Hence, compared to the half duplex, the end-to-end channel capacity of full duplex is higher.
The half duplex and the full duplex also have been discussed in this paper.
Land mobile radio (LMR) [9] provides half duplex operation requiring the user to "push to talk".
The result as explained above can be recognized from Figures 6 and 7 that show the end-to-end channel capacity of half duplex and full duplex, respectively, when the term f D τ is fixed as 0.001 and 0.05.
Due to the half duplex assumption, this is the maximum possible throughput we can achieve.
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