English

Energy-efficient Integrated Sensing and Communication System and DNLFM Waveform

Signal Processing 2024-12-02 v1

Abstract

Integrated sensing and communication (ISAC) is a key enabler of 6G. Unlike communication radio links, the sensing signal requires to experience round trips from many scatters. Therefore, sensing is more power-sensitive and faces a severer multi-target interference. In this paper, the ISAC system employs dedicated sensing signals, which can be reused as the communication reference signal. This paper proposes to add time-frequency matched windows at both the transmitting and receiving sides, which avoids mismatch loss and increases energy efficiency. Discrete non-linear frequency modulation (DNLFM) is further proposed to achieve both time-domain constant modulus and frequency-domain arbitrary windowing weights. DNLFM uses very few Newton iterations and a simple geometrically-equivalent method to generate, which greatly reduces the complex numerical integral in the conventional method. Moreover, the spatial-domain matched window is proposed to achieve low sidelobes. The simulation results show that the proposed methods gain a higher energy efficiency than conventional methods.

Keywords

Cite

@article{arxiv.2309.09415,
  title  = {Energy-efficient Integrated Sensing and Communication System and DNLFM Waveform},
  author = {Yihua Ma and Zhifeng Yuan and Shuqiang Xia and Chen Bai and Zhongbin Wang and Yuxin Wang},
  journal= {arXiv preprint arXiv:2309.09415},
  year   = {2024}
}
R2 v1 2026-06-28T12:24:13.497Z