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Deep Energy Autoencoder for Noncoherent Multicarrier MU-SIMO Systems

机译:非相干多载波Mu-Simo系统的深才能自动化器

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摘要

We propose a novel deep energy autoencoder (EA) for noncoherent multicarrier multiuser single-input multiple-output (MU-SIMO) systems under fading channels. In particular, a single-user noncoherent EA-based (NC-EA) system, based on the multicarrier SIMO framework, is first proposed, where both the transmitter and receiver are represented by deep neural networks (DNNs), known as the encoder and decoder of an EA. Unlike existing systems, the decoder of the NC-EA is fed only with the energy combined from all receive antennas, while its encoder outputs a real-valued vector whose elements stand for the sub-carrier power levels. Using the NC-EA, we then develop two novel DNN structures for both uplink and downlink NC-EA multiple access (NC-EAMA) schemes, based on the multicarrier MU-SIMO framework. Note that NC-EAMA allows multiple users to share the same sub-carriers, thus enables to achieve higher performance gains than noncoherent orthogonal counterparts. By properly training, the proposed NC-EA and NC-EAMA can efficiently recover the transmitted data without any channel state information estimation. Simulation results clearly show the superiority of our schemes in terms of reliability, flexibility and complexity over baseline schemes.
机译:我们为衰落通道的非组织多载波多用户单输入多输出(MU-SIMO)系统提出了一种新的深度EASENCODER(EA)。特别地,首先提出了一种基于多载波SIMO框架的基于用户非化合因子EA的(NC-EA)系统,其中发射器和接收器都由深神经网络(DNN)表示,称为编码器和一个ea的解码器。与现有系统不同,NC-EA的解码器仅通过组合所有接收天线的能量馈送,而其编码器输出其元素代表子载波功率电平的实值矢量。然后,使用NC-EA,基于多载波MU-SIMO框架,为上行链路和下行链路NC-EA多址(NC-EADA)方案进行两种新型DNN结构。注意,NC-EAMA允许多个用户共享相同的子载波,从而使得能够实现比非组织正交对应物更高的性​​能增益。通过适当的训练,所提出的NC-EA和NC-EAMA可以有效地恢复发送的数据而没有任何信道状态信息估计。仿真结果清楚地展示了我们在基线方案的可靠性,灵活性和复杂性方面的优势。

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