Generalized Step-Chirp Sequences With Flexible Bandwidth

Fuente: arXiv
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Autori principali: Du, Cheng, Jiang, Yi
Natura: Preprint
Pubblicazione: 2024
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author Du, Cheng
Jiang, Yi
author_facet Du, Cheng
Jiang, Yi
contents Sequences with low aperiodic autocorrelation sidelobes have been extensively researched in literatures. With sufficiently low integrated sidelobe level (ISL), their power spectrums are asymptotically flat over the whole frequency domain. However, for the beam sweeping in the massive multi-input multi-output (MIMO) broadcast channels, the flat spectrum should be constrained in a passband with tunable bandwidth to achieve the flexible tradeoffs between the beamforming gain and the beam sweeping time. Motivated by this application, we construct a family of sequences termed the generalized step-chirp (GSC) sequence with a closed-form expression, where some parameters can be tuned to adjust the bandwidth flexibly. In addition to the application in beam sweeping, some GSC sequences are closely connected with Mow's unified construction of sequences with perfect periodic autocorrelations, and may have a coarser phase resolution than the Mow sequence while their ISLs are comparable.
format Preprint
id arxiv_https___arxiv_org_abs_2404_16327
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Generalized Step-Chirp Sequences With Flexible Bandwidth
Du, Cheng
Jiang, Yi
Information Theory
Signal Processing
Sequences with low aperiodic autocorrelation sidelobes have been extensively researched in literatures. With sufficiently low integrated sidelobe level (ISL), their power spectrums are asymptotically flat over the whole frequency domain. However, for the beam sweeping in the massive multi-input multi-output (MIMO) broadcast channels, the flat spectrum should be constrained in a passband with tunable bandwidth to achieve the flexible tradeoffs between the beamforming gain and the beam sweeping time. Motivated by this application, we construct a family of sequences termed the generalized step-chirp (GSC) sequence with a closed-form expression, where some parameters can be tuned to adjust the bandwidth flexibly. In addition to the application in beam sweeping, some GSC sequences are closely connected with Mow's unified construction of sequences with perfect periodic autocorrelations, and may have a coarser phase resolution than the Mow sequence while their ISLs are comparable.
title Generalized Step-Chirp Sequences With Flexible Bandwidth
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2404.16327