短包传输中有限导频开销的增强稀疏矢量编码

S. K. Bandari, C. V. R. Rao
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引用次数: 2

摘要

随着万物互联(IoE)的新兴趋势,不断传输数据以提供自主设备之间的无缝连接的需求巨大。毫无疑问,在超可靠和低延迟通信(URLLC)和大规模机器类型通信(mMTC)场景中处理短数据包的有效方法是最感兴趣的。为了减少这种短分组传输中的导频开销,我们提出了一种合适的方案,即稀疏矢量按衰落信道进行缩放。在该公式中,传感矩阵为伪随机扩频矩阵,传输信号矢量随信道进行修正。接收端短包的解码可以首先通过识别不需要信道信息的支持位置,并估计非零位置的符号来完成。此外,为了提高方案的可靠性,还研究了单输入多输出(SIMO)配置。
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Enhanced sparse vector coding with limited pilot overhead for short packet transmission
With emerging trends in the internet-of-everything (IoE), there is a huge demand for transferring the data continuously to provide a seamless connection between autonomous devices. Undoubtedly an efficient way of handling short packets in ultra-reliable and low latency communication (URLLC) and massive machine-type communication (mMTC) scenarios is of utmost interest. To reduce the pilot overhead in such a short packet transmission, we propose a suitable scheme where the sparse vector is scaled by the fading channel. In this formulation, the sensing matrix will be the pseudo-random spreading matrix and the transmitted signal vector is modified with the channel. Decoding of the short packet at the receiver can be done first by identifying the support positions, for which no channel information is required, and estimating the symbols at nonzero positions. Further, in order to increase the reliability of the proposed scheme, single input multiple output (SIMO) configuration is also investigated.
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