Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks

A crucial issue in the next-generation satellite-based communication systems is the satellite on-board reallocation of information which requires digital flexible frequency-band reallocation (FBR) networks. This paper introduces a new class of flexible FBR networks based on variable oversampled comp...

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Main Authors: Per Löwenborg, Håkan Johansson
Format: Article
Language:English
Published: SpringerOpen 2007-01-01
Series:EURASIP Journal on Advances in Signal Processing
Online Access:http://dx.doi.org/10.1155/2007/63714
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author Per Löwenborg
Håkan Johansson
author_facet Per Löwenborg
Håkan Johansson
author_sort Per Löwenborg
collection DOAJ
description A crucial issue in the next-generation satellite-based communication systems is the satellite on-board reallocation of information which requires digital flexible frequency-band reallocation (FBR) networks. This paper introduces a new class of flexible FBR networks based on variable oversampled complex-modulated filter banks (FBs). The new class can outperform the previously existing ones when all the aspects flexibility, low complexity and inherent parallelism, near-perfect frequency-band reallocation, and simplicity are considered simultaneously.
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spelling doaj.art-c96eb4957c554e7081e2eb19c4178fce2022-12-22T02:59:36ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61721687-61802007-01-01200710.1155/2007/63714Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter BanksPer LöwenborgHåkan JohanssonA crucial issue in the next-generation satellite-based communication systems is the satellite on-board reallocation of information which requires digital flexible frequency-band reallocation (FBR) networks. This paper introduces a new class of flexible FBR networks based on variable oversampled complex-modulated filter banks (FBs). The new class can outperform the previously existing ones when all the aspects flexibility, low complexity and inherent parallelism, near-perfect frequency-band reallocation, and simplicity are considered simultaneously.http://dx.doi.org/10.1155/2007/63714
spellingShingle Per Löwenborg
Håkan Johansson
Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
EURASIP Journal on Advances in Signal Processing
title Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
title_full Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
title_fullStr Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
title_full_unstemmed Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
title_short Flexible Frequency-Band Reallocation Networks Using Variable Oversampled Complex-Modulated Filter Banks
title_sort flexible frequency band reallocation networks using variable oversampled complex modulated filter banks
url http://dx.doi.org/10.1155/2007/63714
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