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Sparse multi-carrier index keying OFDM with index separation over correlated sub-carriers

机译:相关子载波上具有索引分离的稀疏多载波索引键控OFDM

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In this paper, we propose a sparse multi-carrier index keying (MCIK) method for orthogonal frequency division multiplexing (OFDM) system, which uses the indices of sparse sub-carriers to transmit the data, and improve the performance of signal detection in highly correlated sub-carriers. Although a receiver is able to exploit a power gain with precoding in OFDM, the sensitivity of the signal detection is usually high as the orthogonality is not retained in highly dispersive environments. To overcome this, we focus on developing the trade-off between the sparsity of the MCIK, correlation, and performances, analyzing the average probability of the error propagation imposed by incorrect index detection over highly correlated sub-carriers. In asymptotic cases, we are able to see how sparsity of MCIK should be designed in order to perform superior to the classical OFDM system. Based on this feature, sparse MCIK based OFDM is a better choice for low detection errors in highly correlated sub-carriers.
机译:本文提出了一种用于正交频分复用(OFDM)系统的稀疏多载波索引键控(MCIK)方法,该方法利用稀疏子载波的索引来传输数据,并提高了信号检测的性能。相关子载波。尽管接收机能够通过OFDM中的预编码来利用功率增益,但是由于在高度分散的环境中不保留正交性,因此信号检测的灵敏度通常很高。为了克服这个问题,我们专注于在MCIK的稀疏性,相关性和性能之间进行权衡,分析在高度相关的子载波上由错误的索引检测所造成的错误传播的平均概率。在渐近情况下,我们能够看到应如何设计MCIK的稀疏性,以实现优于传统OFDM系统的性能。基于此功能,基于稀疏MCIK的OFDM是高度相关子载波中低检测错误的更好选择。

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