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Per-Subchannel Joint Equalizer and Receiver Filter Design in OFDM/OQAM Systems

机译:OFDM / OQAM系统中的每子通道联合均衡器和接收器滤波器设计

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Orthogonal-frequency-division-multiplexing/offset quadrature amplitude modulation (OFDM/OQAM) based multicarrier system achieves better spectral efficiency in comparison with the widely used multicarrier OFDM system. However, the OFDM/OQAM system suffers from intersubchannel interference and intersymbol interference in frequency-selective channels, which cause poor bit error rate (BER) performance. To overcome these challenging issues, in this paper, we propose a per-subchannel joint equalizer and receiver filter design method based on maximizing signal-to-interference-plus-noise ratio (SINR) of each subchannel. An iterative two-step algorithm is developed to design equalizer and receiver filter jointly. At the first step, by assuming that the receiver filter impulse response is identified, an equalizer is designed for each subchannel by maximizing its SINR. At the second step, by assuming that the channel and equalizer impulse responses are known, the SINR of each subchannel is derived based on the receiver filter impulse response coefficients. In this way, the receiver filter of each subchannel is designed independently by maximizing the SINR of that subchannel. The convergence of the proposed iterative design algorithm is proven and also the designing procedure is extended for multi-input–multi-output channels. Simulation results show that the proposed OFDM/OQAM system, in addition of its superior bandwidth efficiency, significantly achieves better performance in comparison with the OFDM system. Moreover, the convergence speed of the iterative SINR maximization algorithm is evaluated by numerical assessments under different scenarios.
机译:与广泛使用的多载波OFDM系统相比,基于正交频分复用/偏移正交幅度调制(OFDM / OQAM)的多载波系统可实现更好的频谱效率。然而,OFDM / OQAM系统在频率选择信道中遭受子信道间干扰和符号间干扰,这导致差的误码率(BER)性能。为了克服这些挑战性的问题,在本文中,我们提出了一种基于最大化每个子信道的信干噪比(SINR)的每子信道联合均衡器和接收机滤波器的设计方法。提出了一种迭代两步算法来联合设计均衡器和接收器滤波器。第一步,通过假设识别出了接收机滤波器的脉冲响应,通过最大化每个子信道的SINR为每个子信道设计一个均衡器。在第二步,假设信道和均衡器脉冲响应是已知的,则基于接收器滤波器脉冲响应系数推导每个子信道的SINR。这样,通过最大化该子信道的SINR,独立设计每个子信道的接收器滤波器。证明了所提出的迭代设计算法的收敛性,并且针对多输入多输出通道扩展了设计过程。仿真结果表明,所提出的OFDM / OQAM系统除了具有出色的带宽效率外,与OFDM系统相比,还具有明显更好的性能。此外,通过在不同情况下的数值评估来评估迭代SINR最大化算法的收敛速度。

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