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首页> 外文期刊>IEEE Transactions on Communications >On the Sum Capacity of Dual-Class Parallel Packet-Erasure Broadcast Channels
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On the Sum Capacity of Dual-Class Parallel Packet-Erasure Broadcast Channels

机译:关于双层并行数据包擦除广播频道的总和

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We investigate a K-user parallel packet-erasure broadcast channel. There is an ongoing effort to harness millimeter-wave bands, which are known to be unstable having high outage probabilities, by combining them with stable legacy bands. Motivated by this effort, we consider a heterogeneous scenario in which the parallel subchannels are categorized into two classes having different outage probabilities. For the two-user case, we characterize the sum capacity by developing an explicit achievable scheme and deriving a matching upper bound. In contrast to suboptimal schemes that apply coding on a per-subchannel basis only, our scheme applies coding across subchannels to exploit coding opportunities that arise from asymmetric outage probabilities more efficiently, thereby achieving optimality. By extending our scheme systematically to be applicable for the K-user case, we show that it can provide significant gains over existing schemes. Compared to the K-user scheme currently employed in practice, which allocates chunks of subchannels to users exclusively, we demonstrate the performance improvement attainable by our scheme to be substantial, as the multiplicative gain scales with K. Moreover, we find that our scheme outperforms a per-subchannel extension of state-of-the-art K-user schemes by large margins, further reducing the optimality gap. Our results suggest a potential coding scheme that can be employed in future wireless systems to meet ever-growing mobile data demands.
机译:我们调查k用户并行数据包擦除广播频道。通过将它们与稳定的遗留带组合,持续努力利用毫米波带,这已知是具有高停工概率的不稳定。通过这种努力,我们考虑了一个异构场景,其中并行子信道被分为具有不同中断概率的两个类。对于双用户案例,我们通过开发明确的可实现方案并导出匹配的上限来表征总容量。与仅在每个子信道的基础上应用编码的次优方案相比,我们的方案适用于子信道的编码,以利用来自不对称中断概率的编码机会更有效地,从而实现最优性。通过系统地扩展我们的计划以适用于K用户案例,我们表明它可以提供现有方案的显着增益。与实践中目前采用的K-User方案相比,它专门为用户分配了子信道的块,我们展示了我们的计划具有重要性的性能改善,因为与K的乘法增益秤相比。此外,我们发现我们的方案优于表现通过大边缘的最先进的K-USE方案的每个子信道扩展,进一步降低了最优性差距。我们的结果表明,可以在未来的无线系统中使用的潜在编码方案,以满足不断增长的移动数据需求。

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