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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >A Hybrid ARQ Scheme Based on Rate-Compatible Low-Density Parity-Check Codes by Shortening and Extending
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A Hybrid ARQ Scheme Based on Rate-Compatible Low-Density Parity-Check Codes by Shortening and Extending

机译:通过缩短和扩展基于速率兼容的低密度奇偶校验码的混合ARQ方案

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摘要

Incremental Redundancy Hybrid ARQ (IR-HARQ) based on rate-compatible punctured low-density parity-check (LDPC) codes can achieve high throughput over a wide range of SNRs. One drawback of such IR-HARQ schemes is high computational complexity of decoding for early transmission at high rates. In order to overcome this problem, a HARQ scheme based on rate-compatible LDPC codes by shortening and extending is presented in this paper. In the HARQ scheme, a high-rate mother code is transmitted at first, and parity-bits of a shortened code are transmitted for early retransmission requests. With a low-complexity decoder of the high-rate mother code, this shortened-code approach would result in low computational complexity of decoding, but it causes smaller length and larger number of shortened codes to be decoded as retransmission repeats. To prevent the resultant degradation of performance and complexity, extending is efficiently applied to the shortened codes after predetermined retransmission-times. A multi-edge type code-design is employed to construct irregular LDPC codes that meet the requirement of the HARQ scheme. Simulation results show that the HARQ scheme can achieve lower computational complexity of decoding than a conventional IR-HARQ scheme with good throughput over a wide range of SNRs.
机译:基于速率兼容打孔的低密度奇偶校验(LDPC)码的增量冗余混合ARQ(IR-HARQ)可以在宽范围的SNR上实现高吞吐量。这种IR-HARQ方案的一个缺点是用于高速率的早期传输的解码的高计算复杂性。为了克服这个问题,本文提出了一种通过缩短和扩展基于速率兼容LDPC码的HARQ方案。在HARQ方案中,首先发送高速率的母码,并为早期重发请求发送缩短码的奇偶校验位。对于高速率母码的低复杂度解码器,这种缩短的代码方法将导致解码的计算复杂度较低,但是随着重传重复,它会导致长度缩短,且缩短的代码数量更多。为了防止性能和复杂性的下降,在预定的重传时间之后,有效地将扩展应用于缩短的代码。采用多边缘型码设计来构造符合HARQ方案要求的不规则LDPC码。仿真结果表明,与传统的IR-HARQ方案相比,HARQ方案可以在较低的SNR范围内实现良好的吞吐量,从而实现较低的解码计算复杂度。

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