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Protograph LDPC-Coded BICM-ID With Irregular Mapping: An Emerging Transmission Technique for Massive Internet of Things

机译:具有不规则映射的质子,具有不规则测绘的BICM-ID:一种用于大规模互联网的新兴传输技术

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摘要

Bit-interleaved coded modulation with iterative decoding (BICM-ID) is a key technology enabling the communication systems to realize reliable and efficient data transmission. In this work, we present a study on the adaptive irregular-mapping (AIM)-aided BICM-ID systems with the use of protograph low-density parity-check (PLDPC) codes. To be specific, we first propose a three-step design strategy to generate a type of adaptive constellations, which can be combined with their corresponding initial constellations to formulate an AIM scheme for improving the BICM-ID performance. Then, we put forward a theoretical-analysis tool, called AIM-based protograph extrinsic information transfer (PEXIT) algorithm, to estimate the convergence performance of PLDPC codes in the AIM-aided BICM-ID systems. By making use of such an algorithm, we further develop a code-design method to construct a new type of PLDPC codes, called enhanced PLDPC codes, tailored for the AIM-aided BICM-ID systems. Both convergence analysis and simulations indicate that the proposed AIM-aided BICM-ID systems perform better than the existing counterparts, and their performance can be significantly improved by using the enhanced PLDPC codes. Consequently, the proposed designs have great potential to meet the high-reliability, high-throughput, and strong link-adaptation requirements of future wireless-communication scenarios, such as green Internet of Things (IoT).
机译:利用迭代解码(BICM-ID)的比特交织编码调制是一种关键技术,使得通信系统能够实现可靠且有效的数据传输。在这项工作中,我们展示了对具有质子低密度奇偶校验(PLDPC)代码的适应性不规则 - 映射(AIM)-AIVED的BICM-ID系统的研究。具体而言,我们首先提出了一种三步的设计策略来产生一种自适应星座,可以与其相应的初始星座组合以制定用于改善BICM-ID性能的AIM方案。然后,我们提出了一个理论分析工具,称为AIM的质子图外在信息传输(PEXIT)算法,以估算AIM辅助BICM-ID系统中PLDPC代码的收敛性能。通过利用这种算法,我们进一步开发了一种代码设计方法来构建一种新型的PLDPC代码,称为增强型PLDPC代码,针对目标辅助BICM-ID系统定制。融合分析和模拟都表明所提出的目标辅助BICM-ID系统比现有对应物更好,并且通过使用增强型PLDPC代码可以显着提高它们的性能。因此,所提出的设计具有很大的潜力,可以满足未来的无线通信场景的高可靠性,高吞吐量和强大的链路适应要求,例如绿色的东西(IOT)。

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