Distance-Enhanced Hybrid Hierarchical Modulation and QAM Modulation Schemes for UAV Terahertz Communications

Drones Pub Date : 2024-07-06 DOI:10.3390/drones8070300
Zhenzhen Hu, Yong Xu, Yonghong Deng, Zhongpei Zhang
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Abstract

Unmanned aerial vehicles (UAVs) are extensively employed in pursuit, rescue missions, and agricultural applications. These operations require substantial data and video transmission, demanding significant spectral resources. The ultra-broad bandwidth of 0.1–10 THz in the Terahertz (THz) frequency range is essential for future UAV-based wireless communications. However, the available bandwidth in the THz frequency spectrum varies with transmission distance. To enhance spectral efficiency over this variable bandwidth, we propose using hierarchical modulation (HM) in the overlapped spectrum and traditional quadrature amplitude modulation (QAM) in the non-overlapped spectrum for closer users. Furthermore, we analyze the single-user case and utilize the block-coordinated descent (BCD) method to jointly optimize the modulation order, subcarrier bandwidth, and sub-band power to improve the system sum rate. Finally, considering the mobility and randomness of UAV users, we design a modulation switching rule to dynamically adjust to changes in distance as users move, thereby enhancing data rates. Simulation results demonstrate superior performance in data rate and design complexity compared to existing methods such as hierarchical bandwidth modulation (HBM) and HM schemes.
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用于无人机太赫兹通信的距离增强混合分层调制和 QAM 调制方案
无人驾驶飞行器(UAV)广泛应用于追捕、救援任务和农业应用。这些行动需要大量的数据和视频传输,需要大量的频谱资源。太赫兹(THz)频率范围内 0.1-10 THz 的超宽带宽对未来基于无人机的无线通信至关重要。然而,太赫兹频谱的可用带宽随传输距离而变化。为了提高这种可变带宽的频谱效率,我们建议在重叠频谱中使用分层调制(HM),而在非重叠频谱中使用传统的正交幅度调制(QAM),以满足距离较近的用户的需求。此外,我们还分析了单用户情况,并利用分块协调下降(BCD)方法共同优化调制阶次、子载波带宽和子带功率,以提高系统总和速率。最后,考虑到无人机用户的移动性和随机性,我们设计了一种调制切换规则,以动态适应用户移动时的距离变化,从而提高数据传输率。仿真结果表明,与分层带宽调制(HBM)和 HM 方案等现有方法相比,该方法在数据传输率和设计复杂度方面具有更优越的性能。
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