OTFS 与 OFDM:多用户低地轨道卫星通信孰优孰劣

Yu Liu;Ming Chen;Cunhua Pan;Tantao Gong;Jinhong Yuan;Jiangzhou Wang
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摘要

正交时频空间(OTFS)调制是一种对多普勒频移具有较强鲁棒性的延迟多普勒域通信方式,具有应用于低轨道卫星通信的潜力。然而,基于otfs的多用户LEO卫星通信系统与正交频分复用(OFDM)调制的性能比较以及资源分配方案的研究很少。在本文中,我们对OTFS和OFDM调制在各种信道条件下的性能进行了比较,包括对和率和误码率(BER)的评估。此外,我们还研究了基于otfs的多用户下行LEO卫星通信系统的功率和延迟多普勒资源块的联合优化分配,以最大限度地提高和速率。与依赖于时频域(TF)内复杂输入输出关系的传统调制不同,OTFS调制利用了时间和频率的分异,即延时和多普勒频移在OTFS帧期间保持不变,这有助于我们研究DD域的输入输出简单关系。通过解耦条件约束,将得到的非凸组合优化问题转化为凸的等价差分问题,并利用罚凸凹过程算法求解转化后的问题。仿真结果表明,OTFS调制对低轨道卫星高机动性引起的载波频偏具有较强的鲁棒性,具有优于OFDM调制的性能。此外,数值结果表明,本文提出的资源分配方案在高信噪比下比现有的OTFS调制方案(如延迟分多址和多普勒分多址)具有更高的和速率。
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OTFS Versus OFDM: Which is Superior in Multiuser LEO Satellite Communications
Orthogonal time frequency space (OTFS) modulation, a delay-Doppler (DD) domain communication scheme exhibiting strong robustness against the Doppler shifts, has the potentials to be employed in LEO satellite communications. However, the performance comparison with the orthogonal frequency division multiplexing (OFDM) modulation and the resource allocation scheme for multiuser OTFS-based LEO satellite communication system have rarely been investigated. In this paper, we conduct a performance comparison under various channel conditions between the OTFS and OFDM modulations, encompassing evaluations of sum-rate and bit error ratio (BER). Additionally, we investigate the joint optimal allocation of power and delay-Doppler resource blocks aiming at maximizing sum-rate for multiuser downlink OTFS-based LEO satellite communication systems. Unlike the conventional modulations relying on complex input-output relations within the Time-Frequency (TF) domain, the OTFS modulation exploits both time and frequency diversities, i.e., delay and Doppler shifts remain constant during a OTFS frame, which facilitates a DD domain input-output simple relation for our investigation. We transform the resulting non-convex and combinatorial optimization problem into an equivalent difference of convex problem by decoupling the conditional constraints, and solve the transformed problem via penalty convex-concave procedure algorithm. Simulation results demonstrate that the OTFS modulation is robust to carrier frequency offsets (CFO) caused by high-mobility of LEO satellites, and has superior performance to the OFDM modulation. Moreover, numerical results indicate that our proposed resource allocation scheme has higher sum-rate than existing schemes for the OTFS modulation, such as delay divided multiple access and Doppler divided multiple access, especially in the high signal-to-noise ratio (SNR) regime.
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