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Filter Bank Multicarrier Transmission Based on the Discrete Hartley Transform

机译:基于离散哈特利变换的滤波器组多载波传输

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摘要

This paper presents a new filter bank multicarrier (FBMC) transmission scheme that uses the real-valued discrete Hartley transform (DHT) for both multicarrier modulation and demodulation, rather than the complex-valued inverse discrete Fourier transform (IDFT) and DFT for multicarrier modulation and demodulation respectively in conventional FBMC systems. The DHT-FBMC scheme is with quadrature amplitude modulation (QAM) and adopts a pair of orthogonal or nearly orthogonal pulse shaping filters, one for even-numbered subcarriers and the other for odd-numbered subcarriers, to mitigate self-interference. The proposed method potentially has advantages in terms of performance and implementation, due to the fact that it possesses some distinct channel diversity on mirror-symmetrical subcarriers and involves identical real-valued transform operations at the transmitter and receiver. In contrast to existing DFT-FBMC systems using QAM or offset QAM (OQAM), the DHT-FBMC scheme using QAM achieves better bit-error-rate performance with comparable or reduced computational complexity.
机译:本文提出了一种新的滤波器组多载波(FBMC)传输方案,该方案使用实值离散Hartley变换(DHT)进行多载波调制和解调,而不是使用复值逆离散傅里叶变换(IDFT)和DFT进行多载波调制分别在常规FBMC系统中进行解调和解调。 DHT-FBMC方案具有正交幅度调制(QAM),并采用一对正交或近乎正交的脉冲整形滤波器,一个用于偶数子载波,另一个用于奇数子载波,以减轻自干扰。所提出的方法由于在镜像对称子载波上具有一些独特的信道分集并且在发射器和接收器处涉及相同的实值变换操作,因此在性能和实现方面可能具有优势。与使用QAM或偏移QAM(OQAM)的现有DFT-FBMC系统相比,使用QAM的DHT-FBMC方案可实现更好的误码率性能,并且具有可比的或降低的计算复杂度。

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