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Combination of spatial modulation and non-orthogonal multiple access using hybrid detection scheme

机译:使用混合检测方案的空间调制和非正交多址访问的组合

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Among the key technologies that have been developed for efficient transmission for 5G, are spatial modulation (SM) and non-orthogonal multiple access (NOMA). In SM, multiple transmission antenna is modulated as information in order to increase capacity. On the other hand, NOMA allows to share the same frequency resources at the same time. Obviously, combination of these two techniques offers a new accomplishment for wireless transmission. In this paper, we develop a new technique to combine SM and NOMA for uplink transmission. A hybrid detection scheme is introduced in order to estimate information in receiver side. In transmitter, we set maximum transmission power for near-end user (NEU) and lower transmission power for far-end user (FEU). The main idea of our proposed detection scheme is to perform maximum receive ratio combining (MRRC) to obtain antenna index and then estimate the corresponding symbol for NEU. Afterwards, we apply successive interference cancellation (SIC) to the total received signal in order to eliminate NEU's signal. Finally, maximum likelihood estimation (MLE) is applied to the remaining signal to estimate FEU's antenna index and transmitted symbol. As the result, we also present the bit error rate (BER) comparison and achievable user and system transmission bits.
机译:为有效传输5G而开发的关键技术包括空间调制(SM)和非正交多址(NOMA)。在SM中,多个传输天线被调制为信息以增加容量。另一方面,NOMA允许同时共享相同的频率资源。显然,这两种技术的结合为无线传输提供了新的成就。在本文中,我们开发了一种结合SM和NOMA进行上行传输的新技术。为了估计接收机侧的信息,引入了混合检测方案。在发射机中,我们为近端用户(NEU)设置了最大传输功率,为远端用户(FEU)设置了较低的传输功率。我们提出的检测方案的主要思想是执行最大接收比合并(MRRC)以获得天线索引,然后估计NEU的相应符号。然后,我们对总的接收信号应用连续干扰消除(SIC),以消除NEU的信号。最后,将最大似然估计(MLE)应用于剩余信号,以估计FEU的天线索引和发射符号。结果,我们还提供了误码率(BER)比较以及可实现的用户和系统传输位。

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