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The proposed protocol is referred to as Selective Retransmission using Virtual Fragmentation (SRVF).
The proposed protocol is referred to as Selective Retransmission using Virtual Fragmentation (SRVF) protocol throughout this paper.
Substituting (22), (23), and (24) into (21), the success probability of primary data retransmission using Alamouti coding, which is the second probability of (19), can be obtained.
We have presented and compared two transmit diversity schemes for multiple HARQ retransmission using single carrier signaling over frequency selective channels.
The proposed protocol, referred to as Selective Retransmission using Virtual Fragmentation (SRVF), requires simple modifications to the positive-ACK-based reliability mechanism but provides substantial improvements in energy efficiency.
When there is no relay, the source can start the retransmission using chase combining-automatic repeat-request (CC-ARQ) scheme [16], where erroneous packets are repeatedly transmitted by applying the same channel coding and modulation scheme.
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Lighttpd retransmission uses mod_fastcgi and a socket mechanism.
Many works deal with the optimization of HARQ retransmissions using irregular LDPC codes [28 31].
We propose to reduce the energy consumption during retransmissions using a novel protocol that localizes bit-errors at the MAC layer.
Figure 6 shows the performance comparisons between TCR and TNCCR in the aforementioned scenarios, where the percentages of reduction on the number of retransmissions using different relay retransmission schemes compared to the CC-ARQ scheme without relay are plotted.
The above theorem implies that achieving the minimum number of retransmissions using TNCCR when the retransmissions are error-free and if pairwise and three-wise valid combinations are allowed would have exponential complexity, which is impractical to implement.
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