paper-with-me

Papers

A Wave Trapping Dispersive Delay Structure Based on Substrate Integrated Waveguide (SIW)

2021-01-07 · Hossein Nazemi-Rafi, Masoud Movahhedi

A dispersive delay structure (DDS) is a device that creates a specified group delay function over frequency bandwidth. In this paper, the idea of trapping the electromagnetic waves in a feedback loop is proposed to achieve higher group delay swing. The proposed structure includes two transmission lines and two junctions that act as power divider/combiner. The transmission lines can be either dispersive or non-dispersive. The group delay in the proposed configuration is proportional to the injected power into the feedback loop. So, an increase in the group delay swing can be done by improving the junctions or by adding more feedback loops to the structure. Based on this configuration, a novel DDS, using the substrate integrated waveguide (SIW) transmission line, is introduced. According to the experimental results, the proposed device with a relatively compact size creates high group delay swings (9 ns), and its insertion loss is about 7 dB.

📄 PDF Abstract BibTeX arXiv:2104.02601

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

From OTFS to AFDM: A Comparative Study of Next-Generation Waveforms for ISAC in Doubly-Dispersive Channels

2024-01-15 · Hyeon Seok Rou, Giuseppe Thadeu Freitas de Abreu, Junil Choi, David González G. 외

Next-generation wireless systems will offer integrated sensing and communications (ISAC) functionalities not only in order to enable new applications, but also as a means to mitigate challenges such as doubly-dispersive …

ISAC

AFDM vs OTFS: A Comparative Study of Promising Waveforms for ISAC in Doubly-Dispersive Channels

2023-09-10 · Hyeon Seok Rou, Giuseppe Thadeu Freitas de Abreu, Junil Choi, David González G. 외

**PLEASE FIND THE FULL EXTENDED ARTICLE "From OTFS to AFDM: A Comparative Study of Next-Generation Waveforms for ISAC in Doubly-Dispersive Channels" (Accepted for publication at the IEEE Signal Processing Magazine - Spec…

ISAC

Data-driven peakon and periodic peakon travelling wave solutions of some nonlinear dispersive equations via deep learning

2021-01-12 · Li Wang, Zhenya Yan

In the field of mathematical physics, there exist many physically interesting nonlinear dispersive equations with peakon solutions, which are solitary waves with discontinuous first-order derivative at the wave peak. In …

Experimental Design

Ambiguity Function Analysis of Affine Frequency Division Multiplexing for Integrated Sensing and Communication

2025-04-03 · Ebrahim Bedeer

Affine frequency division multiplexing (AFDM) is a chirp-based multicarrier waveform that was recently proposed for communication over doubly dispersive channels. Given its chirp nature, AFDM is expected to have superior…

Integrated sensing and communicationISAC

Orthogonal Time Frequency Space Modulation: A Discrete Zak Transform Approach

2021-06-24 · Franz Lampel, Alex Alvarado, Frans M. J. Willems

In orthogonal time frequency space (OTFS) modulation, information-carrying symbols reside in the delay-Doppler (DD) domain. By operating in the DD domain, an appealing property for communication arises: time-frequency (T…