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首页> 外文期刊>Communications Surveys & Tutorials, IEEE >A Survey and Tutorial on Low-Complexity Turbo Coding Techniques and a Holistic Hybrid ARQ Design Example
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A Survey and Tutorial on Low-Complexity Turbo Coding Techniques and a Holistic Hybrid ARQ Design Example

机译:低复杂度Turbo编码技术的调查和教程以及整体混合ARQ设计示例

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摘要

Hybrid Automatic Repeat reQuest (HARQ) has become an essential error control technique in communication networks, which relies on a combination of arbitrary error correction codes and retransmissions. When combining turbo codes with HARQ, the associated complexity becomes a critical issue, since conventionally iterative decoding is immediately activated after each transmission, even though the iterative decoder might fail in delivering an error-free codeword even after a high number of iterations. In this scenario, precious battery-power would be wasted. In order to reduce the associated complexity, we will present design examples based on Multiple Components Turbo Codes (MCTCs) and demonstrate that they are capable of achieving an excellent performance based on the lowest possible memory octally represented generator polynomial (2,3)_o. In addition to using low-complexity generator polynomials, we detail two further techniques conceived for reducing the complexity. Firstly, an Early Stopping (ES) strategy is invoked for curtailing iterative decoding, when its Mutual Information (MI) improvements become less than a given threshold. Secondly, a novel Deferred Iteration (DI) strategy is advocated for the sake of delaying iterative decoding, until the receiver confidently estimates that it has received sufficient information for successful decoding. Our simulation results demonstrate that the MCTC aided HARQ schemes are capable of significantly reducing the complexity of the appropriately selected benchmarkers, which is achieved without degrading the begin{changebar}{Packet Loss Ratio (PLR) and throughput.}end{changebar}
机译:混合自动重发请求(HARQ)已成为通信网络中必不可少的错误控制技术,它依赖于任意纠错码和重发的组合。当将turbo码与HARQ结合时,相关联的复杂度成为关键问题,因为常规地,即使在多次迭代之后迭代解码器可能无法递送无错误码字的情况下,在每次传输之后立即激活迭代解码。在这种情况下,将浪费宝贵的电池电量。为了降低相关的复杂性,我们将介绍基于多组件Turbo代码(MCTC)的设计示例,并演示它们能够基于最低的存储八进制表示生成多项式(2,3)_o实现出色的性能。除了使用低复杂度生成器多项式之外,我们还将详细介绍为降低复杂度而设想的另外两种技术。首先,当其互信息(MI)改进小于给定阈值时,调用早期停止(ES)策略以减少迭代解码。其次,为了延迟迭代解码,提倡一种新颖的延迟迭代(DI)策略,直到接收机自信地估计它已收到足够的信息以成功解码为止。我们的仿真结果表明,MCTC辅助的HARQ方案能够显着降低适当选择的基准测试程序的复杂度,而这无需降低开始{changebar} {数据包丢失率(PLR)和吞吐量。} end {changebar}

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