English

FPGA Implementation of OTFS Modulation for 6G Communication Systems

Hardware Architecture 2023-10-17 v1 Systems and Control Systems and Control

Abstract

Sixth-generation (6G) communication systems are poised to accommodate high data-rate wireless communication services in highly dynamic channels, with applications including high-speed trains, unmanned aerial vehicles, and intelligent transportation systems. Orthogonal frequency-division multiplexing (OFDM) modulation suffers from performance degradation in such high-mobility applications due to high Doppler spread in the channel. The recently proposed Orthogonal Time Frequency Space (OTFS) modulation scheme outperforms OFDM in terms of supporting a higher transmitter (Tx) and receiver (Rx) user velocity. Additionally, the highly-dynamic time-frequency (TF) channel has little effect on OTFS modulated signals, which enables the realization of low-complexity pre-processing architectures for implementing massive-multiple input multiple outputs (MIMO) based OTFS systems. However, while OTFS has received attention in the literature from a theory and simulation perspective, there has been comparatively little work on real-time FPGA implementation of OTFS waveforms. Thus, in this paper, we first present a mathematical overview of OTFS modulation and then describe an FPGA implementation of OTFS implementation on hardware. Power, area, and timing analysis of the implemented design on a Zynq UltraScale+ RFSoC FPGA are provided for benchmarking purposes.

Keywords

Cite

@article{arxiv.2310.09671,
  title  = {FPGA Implementation of OTFS Modulation for 6G Communication Systems},
  author = {Murat Isik and Malvin Nkomo and Anup Das and Kapil R. Dandekar},
  journal= {arXiv preprint arXiv:2310.09671},
  year   = {2023}
}

Comments

Accepted at IEEE Future Networks, 2023

R2 v1 2026-06-28T12:50:47.379Z