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Output SNR analysis and detection criteria for optimum DCT-based multicarrier system

机译:最佳基于DCT的多载波系统的输出SNR分析和检测标准

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The discrete cosine transform (DCT) based multicarrier system is regarded as one of the complementary multicarrier transmission techniques for 5th Generation (5G) applications in near future. By employing cosine basis as orthogonal functions for multiplexing each real-valued symbol with symbol period of T, it is able to reduce the minimum orthogonal frequency spacing to 1/(2T) Hz, which is only half of that compared to discrete Fourier transform (DFT) based multicarrier systems. Critical to the optimal DCT-based system design that achieves interference-free single-tap equalization, not only both prefix and suffix are needed as symmetric extension of information block, but also a so-called front-end pre-filter is necessarily introduced at the receiver side. Since the pre-filtering process is essentially a time reversed convolution for continuous inputs, the output signal-to-noise ratio (SNR) for each subcarrier after filtering is enhanced. In this paper, the impact of pre-filtering on the system performance is analyzed in terms of ergodic output SNR per subcarrier. This is followed by reformulated detection criterion where such filtering process is taken into consideration. Numerical results show that under modified detection criteria, the proposed detection algorithms improve the overall bit error rate (BER) performance effectively.
机译:基于离散余弦变换(DCT)的多载波系统在不久的将来被视为第五代(5G)应用的补充性多载波传输技术之一。通过使用余弦基作为正交函数,将每个实值符号与符号周期为T进行复用,可以将最小正交频率间隔减小为1 /(2T)Hz,这仅是离散傅立叶变换的一半( DFT)的多载波系统。对于实现无干扰的单抽头均衡的基于DCT的最佳系统设计至关重要,不仅需要前缀和后缀作为信息块的对称扩展,而且还必须在其处引入所谓的前端前置滤波器接收方。由于预滤波过程本质上是连续输入的时间逆卷积,因此滤波后每个子载波的输出信噪比(SNR)都得到了增强。本文根据每个子载波的遍历输出SNR分析了预滤波对系统性能的影响。接下来是重新制定的检测标准,其中考虑了这种过滤过程。数值结果表明,在改进的检测标准下,所提出的检测算法可以有效提高整体误码率(BER)性能。

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