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首页> 外文期刊>Communications, IEEE Transactions on >Optimal Allocation of Redundancy Between Packet-Level Erasure Coding and Physical-Layer Channel Coding in Fading Channels
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Optimal Allocation of Redundancy Between Packet-Level Erasure Coding and Physical-Layer Channel Coding in Fading Channels

机译:衰落信道中分组级擦除编码和物理层信道编码之间的冗余最佳分配

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摘要

For a block-fading channel, this paper optimizes the allocation of redundancy between packet-level erasure coding (which provides additional packets to compensate for packet loss) and physical layer channel coding (which lowers the probability of packet loss). After some manipulation, standard optimization techniques determine the trade-off between the amount of packet-level erasure coding and physical-layer channel coding that minimizes the transmit power required to provide reliable communication. Our results indicate that the optimal combination of packet-level erasure coding and physical-layer coding provides a significant benefit over pure physical-layer coding when no form of channel diversity is present within a packet transmission. However, the benefit of including packet-level erasure coding diminishes as more diversity becomes available within a packet transmission. Even with no diversity within a packet transmission, this paper shows that as the total redundancy becomes large the optimal redundancy for packet-level erasure coding reaches a limit while the optimal redundancy for physical-layer coding continues to increase. Hence providing limitless redundancy at the packet-level with rateless codes such as fountain codes is not the best use of limitless redundancy for block-fading channels.
机译:对于块衰落信道,本文优化了数据包级擦除编码(可提供更多数据包以补偿数据包丢失)和物理层信道编码(可降低数据包丢失的可能性)之间的冗余分配。经过一些操作后,标准的优化技术确定了数据包级擦除编码量与物理层信道编码量之间的权衡,从而使提供可靠通信所需的发射功率最小。我们的结果表明,当分组传输中不存在任何形式的信道分集时,分组级擦除编码和物理层编码的最佳组合比纯物理层编码具有明显的优势。但是,随着更多的分集在数据包传输中变得可用,包括数据包级擦除编码的好处将减少。即使数据包传输中没有分集,本文也表明,随着总冗余度变大,数据包级擦除编码的最佳冗余度将达到极限,而物理层编码的最佳冗余度将继续增加。因此,在无包速率信道的无速率编码的分组级别上提供无限冗余不是最佳使用无限冗余。

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