论文标题
VHF数据链接通信中的高级物理层技术
Advanced Physical-Layer Technologies in VHF Data Link Communications
论文作者
论文摘要
由于VHF频道的航班数量迅速增加,VHF频谱变得越来越拥挤,并且使用模拟波形可能无法保持所需的性能。因此,由于较高的频谱效率,已经考虑了数字通信。值得注意的是,已经提出了使用D8PSK调制的VHF数据链接模式2和3(VDL2和3)。 VDL2和3由于其简单性和更恒定的幅度波形而受到关注,得出较低的PAPR。最近,为VHF提出了高级VHF数字链接(A-VDL)。该方案使使用与VDL基本相同的平台使用,除了物理层处理(包括调制)。遵循DVB-S2标准的拟议的A-VDL使用的APSK调制阶比VDL更高,因此提供了比VDL更高的频谱效率。与广泛使用的QAM相比,APSK对放大器振幅和相畸变具有更具耐药性。因此,APSK已成为卫星通信以及A-VDL中的VHF通信感兴趣的。在本文中,我们研究了其他先进的技术,例如通道编码技术低密度平价检查(LDPC),比使用VDL和A-VDL中使用的经典方形 - 根 - 根凸起的滤清器,更有效地标准化语音编码器以及更好的脉冲成型过滤器。通过模拟和分析,我们比较了所提出的方案的链路边缘,PAPR和光谱效率与VDL和A-VDL进行了比较,后者都使用REED所罗门(RS)编码。此外,作为生成相同VDL波形的另一种方式(或可能是其他单一载波航空带波形),我们研究了用于蜂窝LTE和5G上链接通信链路的单载波类型波形,这是离散的傅立叶傅立叶型傅立叶式prener-spread-sprect ofdm(dft-s-ofdm)(DFT-S-ofdm),并讨论如何利用同一LTE和5G难度和5G难度。
Due to the rapidly increasing number of flights and high usage of VHF channels, the VHF spectrum is becoming much more crowded, and use of analog waveforms will likely not maintain the required performance. Therefore, digital communications have been considered due to larger spectral efficiency. Notably, VHF data link modes 2 and 3 (VDL2 and 3) using D8PSK modulation has been proposed. VDL2 and 3 received attention due to its simplicity and more constant amplitude waveform, yielding lower PAPR. Recently, advanced VHF digital link (A-VDL) was proposed for VHF. This scheme enables use of essentially the same platform as VDL except for the physical layer processing, including modulation. The proposed A-VDL, following DVB-S2 standard, uses APSK modulation with higher modulation order than VDL, hence providing higher spectral efficiency than VDL. Compared to the widely used QAM, APSK is more resistant to amplifier amplitude and phase distortions. Thus, APSK has become of interest for satellite communications, as well as VHF communications in A-VDL. In this paper, we investigate other advanced technologies such as channel encoding technique low-density parity-check (LDPC), more efficient standardized voice encoders, as well as better pulse shaping filters than the classical square-root raised-cosine filter used in VDL and A-VDL. Via simulations and analysis, we compare the proposed scheme's link margin, PAPR, and spectral efficiency compared to VDL and A-VDL, which both use Reed Solomon (RS) encoding. In addition, as another way of generating the same VDL waveforms (or possibly other single-carrier aeronautical band waveforms), we investigate the single-carrier type waveform used in cellular LTE and 5G uplink communication links, the discrete Fourier transform-spread OFDM (DFT-s-OFDM), and discuss how we can take advantage of using the same LTE and 5G hardware resources.