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首页> 外文期刊>IEEE Transactions on Communications >Data-Rate Driven Transmission Strategies for Deep Learning-Based Communication Systems
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Data-Rate Driven Transmission Strategies for Deep Learning-Based Communication Systems

机译:基于深度学习的通信系统的数据速率驱动传输策略

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摘要

Deep learning (DL) based autoencoder is a promising architecture to implement end-to-end communication systems. One fundamental problem of such systems is how to increase the transmission rate. Two new schemes are proposed to address the limited data rate issue: adaptive transmission scheme and generalized data representation (GDR) scheme. In the first scheme, an adaptive transmission is designed to select the transmission vectors for maximizing the data rate under different channel conditions. The block error rate (BLER) of the first scheme is 80% lower than that of the conventional one-hot vector scheme. This implies that higher data rate can be achieved by the adaptive transmission scheme. In the second scheme, the GDR replaces the conventional one-hot representation. The GDR scheme can achieve higher data rate than the conventional one-hot vector scheme with comparable BLER performance. For example, when the vector size is eight, the proposed GDR scheme can double the date rate of the one-hot vector scheme. Besides, the joint scheme of the two proposed schemes can create further benefits. The effect of signal-to-noise ratio (SNR) is analyzed for these DL-based communication systems. Numerical results show that training the autoencoder using data set with various SNR values can attain robust BLER performance under different channel conditions.
机译:基于深度学习(DL)的AutoEncoder是一个有前途的架构,用于实现端到端通信系统。此类系统的一个基本问题是如何提高传输速率。提出了两个新方案来解决有限的数据速率问题:自适应传输方案和广义数据表示(GDR)方案。在第一方案中,设计自适应传输以选择用于最大化不同信道条件下的数据速率的传输矢量。第一方案的块错误率(BLER)低于传统的单热量矢量方案的80%。这意味着可以通过自适应传输方案来实现更高的数据速率。在第二个方案中,GDR取代了传统的单热表示。 GDR方案可以实现比具有可相当的BLER性能的传统单热量矢量方案更高的数据速率。例如,当向量尺寸为8时,所提出的GDR方案可以将次热向量方案的日期速率加倍。此外,两种建议方案的联合计划可以产生进一步的益处。对基于DL的通信系统分析信噪比(SNR)的效果。数值结果表明,使用具有各种SNR值的数据集培训AutoEncoder可以在不同的信道条件下实现鲁棒BLER性能。

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