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A low-complexity rate compatible modulation via variable weight sets

机译:通过可变权重集的低复杂度速率兼容调制

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Rate Compatible Modulation (RCM) had been shown to be capable of achieving smooth rate adjustment in highly dynamic channel scenarios. However, there still exist two main problems in RCM: (1) The theoretical bound of the achievable rate, which is the benchmark for practical RCM design, has not been obtained. (2) The iterative decoding algorithm for RCM have a high computational complexity due to the long weight set with large value and the much more symbols required by receiver for successful decoding under poor channel conditions. To tackle these problems, Firstly, we get the theoretical achievable rate upper bound of RCM via analysis of the mutual information between transmitted and received symbols, and obtain an important result, i.e., in low SNR, the achievable rates of RCM are completely the same for the cases of large or small weight sets. Based on this result, a low-complexity RCM with variable weight sets (RCM-VWS) is proposed. In addition, we investigate the messages relationship between symbol nodes and information nodes in decoding algorithm based on Bayesian interference and analyze the computational complexity of the RCM-VWS we proposed. Theoretical analysis and simulations show that, in low SNR (<;8dB), the computational complexity of the proposed scheme can be reduced by 95% compared with that of the conventional RCM, while preserving the same BER performance. So the average decoding efficiency is improved significantly.
机译:速率兼容调制(RCM)已被证明能够在高度动态信道场景中实现平滑的速率调整。然而,RCM仍然存在两个主要问题:(1)可实现速率的理论界限,即实际RCM设计的基准,尚未获得。 (2)RCM的迭代解码算法由于具有大值的长重量集和接收器在不良信道条件下成功解码的符号的长重量,具有高计算复杂度。为了解决这些问题,首先,我们通过分析发送和接收符号之间的互信息来获得RCM的理论可实现的速率上限,并获得重要结果,即在低SNR中,RCM的可实现的速率完全相同对于大型或小重量套的情况。基于此结果,提出了具有可变权重集(RCM-VWS)的低复杂度RCM。此外,我们研究了基于贝叶斯干扰的解码算法中符号节点和信息节点之间的消息关系,并分析了我们提出的RCM-VWS的计算复杂度。理论分析和仿真表明,在低SNR(<; 8dB)中,与传统RCM相比,所提出的方案的计算复杂度可以减少95%,同时保持相同的BER性能。因此,平均解码效率显着提高。

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