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The sender first broadcasts each packet uncoded once, then generates coded packets according to receivers' feedback about their missing packets.
They make online coding decisions based on receivers' feedback about their packet reception state, under the restriction that coding/decoding is over the binary field.
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The receivers received feedback from peers but were deprived of giving any feedback to others.
In the receiving system introduced in this paper we utilize both the balanced receiver feedback and framer error rate to achieve accurate RZ-DQPSK optical signal demodulation and adaptive dispersion compensation.
Next, we design efficient S-IDNC transmission schemes and coding algorithms with full/intermittent receiver feedback.
Receiver feedback must be collected by the end of the systematic transmission phase (solid arrow).
We also design S-IDNC transmission schemes under full and intermittent receiver feedback.
Moreover, there have not been S-IDNC transmission schemes that can work with intermittent receiver feedback.
Receiver feedback based on BB-ITS (see Section 4.6) allows for receiver-driven link adaptation, where the chosen transmission rate is adapted to the instantaneous channel conditions.
In such systems, a traditional approach is to retransmit the data packets under a receiver feedback mechanism, such as Automatic-Repeat-reQuest (ARQ) [1].
We then used heuristic objective functions to determine the preferred coded packet(s) to send when fully- or semi-online receiver feedback is collected.
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