论文标题

低复杂性的设计和实施可重新配置基于OFDM的LDACS

Design and Implementation of Low Complexity Reconfigurable Filtered-OFDM based LDACS

论文作者

Agrawal, N., Ambede, A., Darak, S. J., Vinod, A. P., Madhukumar, A. S.

论文摘要

L波段数字航空通信系统(LDACS)旨在通过频谱共享来利用L波段中的空谱,而正交频部多路复用(OFDM)是当前接受的LDACS波形。最近,正在探索通过过滤/窗口来改善LDAC的光谱利用率的各种作品。在这个方向上,我们建议使用基于新颖的插值和基于掩盖的多阶段数字滤波器的基于DM(LREF-OFFDM)的LDAC进行改进和低复杂性重新配置的过滤效果。所提出的过滤器旨在满足LDACS标准的严格的非均匀光谱衰减要求。与最先进的方法相比,它具有明显低的复杂性和更高的传输带宽。我们还将所提出的过滤器集成在我们的端到端LDACS测试台上,该滤镜在芯片上使用ZYNQ系统实现,并在存在$ L $ band旧用户干扰以及LDACS特定的无线通道的情况下分析性能。通过广泛的实验结果,我们在功率频谱密度,位错误率,实现复杂性和组延迟参数方面证明了所提出的LREF-OFFDM优于OFDM和基于OFDM的LDAC的优势。

L-band Digital Aeronautical Communication System (LDACS) aims to exploit vacant spectrum in L-band via spectrum sharing, and orthogonal frequency division multiplexing (OFDM) is the currently accepted LDACS waveform. Recently, various works dealing with improving the spectrum utilization of LDACS via filtering/windowing are being explored. In this direction, we propose an improved and low complexity reconfigurable filtered OFDM (LRef-OFDM) based LDACS using novel interpolation and masking based multi-stage digital filter. The proposed filter is designed to meet the stringent non-uniform spectral attenuation requirements of LDACS standard. It offers significantly lower complexity as well as higher transmission bandwidth than state-of-the-art approaches. We also integrate the proposed filter in our end-to-end LDACS testbed realized using Zynq System on Chip and analyze the performance in the presence of $L$-band legacy user interference as well as LDACS specific wireless channels. Via extensive experimental results, we demonstrate the superiority of the proposed LRef-OFDM over OFDM and Filtered-OFDM based LDACS in terms of power spectral density, bit error rate, implementation complexity, and group delay parameters.

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