paper-with-me

Papers

FRaC: FMCW-Based Joint Radar-Communications System via Index Modulation

2021-06-28 · Dingyou Ma, Nir Shlezinger, Tianyao Huang, Yimin Liu, Yonina C. Eldar

Dual function radar communications (DFRC) systems are attractive technologies for autonomous vehicles, which utilize electromagnetic waves to constantly sense the environment while simultaneously communicating with neighbouring devices. An emerging approach to implement DFRC systems is to embed information in radar waveforms via index modulation (IM). Implementation of DFRC schemes in vehicular systems gives rise to strict constraints in terms of cost, power efficiency, and hardware complexity. In this paper, we extend IM-based DFRC systems to utilize sparse arrays and frequency modulated continuous waveforms (FMCWs), which are popular in automotive radar for their simplicity and low hardware complexity. The proposed FMCW-based radar-communications system (FRaC) operates at reduced cost and complexity by transmitting with a reduced number of radio frequency modules, combined with narrowband FMCW signalling. This is achieved via array sparsification in transmission, formulating a virtual multiple-input multiple-output array by combining the signals in one coherent processing interval, in which the narrowband waveforms are transmitted in a randomized manner. Performance analysis and numerical results show that the proposed radar scheme achieves similar resolution performance compared with a wideband radar system operating with a large receive aperture, while requiring less hardware overhead. For the communications subsystem, FRaC achieves higher rates and improved error rates compared to dual-function signalling based on conventional phase modulation.

📄 PDF Abstract BibTeX arXiv:2106.14671

Code (0)

등록된 구현이 없습니다.

Tasks

Autonomous Vehicles

Similar Papers 제목 키워드 기반

Dual-Functional FMCW Waveform for Terahertz Space Debris Detection and Inter-Satellite Communications

2024-11-19 · Zhepu Yin, Weijun Gao, Chong Han

Terahertz (THz) band communication, ranging from 0.1 THz to 10 THz, is envisioned as a key enabling technology for next-generation networks and future applications such as inter-satellite communications and environmental…

parameter estimation

On the Sensing Performance of FMCW-based Integrated Sensing and Communications with Arbitrary Constellations

2025-03-21 · Daniel Gil Gaviria, Benedikt Geiger, Charlotte Muth, Laurent Schmalen

Integrated sensing and communications (ISAC) is expected to play a major role in numerous future applications, e.g., smart cities. Leveraging native radar signals like the frequency modulated continuous wave (FMCW) wavef…

ISAC

Joint Range and Angle Estimation for FMCW MIMO Radar and Its Application

2018-11-16

Recently, frequency-modulated continuous wave (FMCW) radars with array antennas are gaining in popularity on a wide variety of commercial applications. A usual approach of the range and angle estimation of a target with …

Simultaneous Localization and Mapping

FMCW Radar Interference Mitigation based on the Fractional Fourier Transform

2025-04-04 · Christian Oswald, Franz Pernkopf

In this paper, we propose a novel method for frequency modulated continuous wave (FMCW) radar mutual interference mitigation based on the discrete fractional Fourier transform (DFrFT). Interference chirps are detected an…

BlueFMCW: Random Frequency Hopping Radar for Mitigation of Interference and Spoofing

2020-08-03 · Thomas Moon, Jounsup Park, Seungmo Kim

Traffic safety is the foremost value that automotive radar systems aim to pursue. Unlike in mobile communication systems, the literature for radar systems did not adequately address inter-radar interference and security …