Global optima for sum-rate in two-user SIC interference channels are characterized and a decentralized algorithm for symmetric channels is shown to outperform orthogonal access and greedy baselines without global CSI.
Analyzing the performance of various noma systems based on user count and minimum rate demand,
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On Decentralized Sum-Rate Maximization with Successive Interference Cancellation
Global optima for sum-rate in two-user SIC interference channels are characterized and a decentralized algorithm for symmetric channels is shown to outperform orthogonal access and greedy baselines without global CSI.