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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A state metrics compressed decoding technique for energy-efficient turbo decoder
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A state metrics compressed decoding technique for energy-efficient turbo decoder

机译:节能涡轮解码器的状态指标压缩解码技术

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Abstract In the energy resource-constrained wireless applications, turbo codes are frequently employed to guarantee reliable data communication. To both reduce the power dissipation of the turbo decoder and the probability of data frame retransmission in the physical layer, memory capacity reduced near optimal turbo decoder is of special importance from the perspective of practical implementation. In this regard, a state metrics compressed decoding technique is proposed. By inserting two modules in the conventional turbo decoding architecture, a smaller quantization scheme can be applied to the compressed state metrics. Furthermore, structure of the inserted modules is described in detail. We demonstrate that one or two rounds of compression/decompression are performed in most cases during the iterative decoding process. At the cost of limited dummy decoding complexity, the state metrics cache (SMC) capacity is reduced by 53.75%. Although the proposed technique is a lossy compression strategy, the introduced errors only have tiny negative influence on the decoding performance as compared with the optimal Log-MAP algorithm.
机译:摘要在能量资源受限的无线应用中,频繁采用Turbo代码来保证可靠的数据通信。为了减少Turbo解码器的功耗和物理层中数据帧重传的概率,从实际实现的角度来看,存储器容量降低了近的最佳涡轮解码器。在这方面,提出了一种状态度量压缩解码技术。通过在传统的Turbo解码架构中插入两个模块,可以将较小的量化方案应用于压缩状态度量。此外,详细描述了插入的模块的结构。我们证明在迭代解码过程中大多数情况下在大多数情况下进行一轮压缩/解压缩。以有限的虚拟解码复杂性成本,状态度量高速缓存(SMC)容量减少了53.75%。虽然所提出的技术是损失压缩策略,但与最佳日志映射算法相比,引入的误差仅对解码性能进行了微小的负面影响。

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