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2020 | OriginalPaper | Chapter

Multiband Broadband Modulator Implementation on Field-Programmable Gate Array

Authors : Cristhian Castro, Carlos Gordón, Patricio Encalada, Myriam Cumbajín

Published in: Applied Technologies

Publisher: Springer International Publishing

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Abstract

The proper management of resources available in FPGA’s is one of the main issues that designers must consider when implementing a high bandwidth communications system. For this reason, we report the hardware-efficient implementation, for mapping stages and pulse shaping, of broadband multi-level QAM signals, in Field-Programmable Gate Array (FPGA) devices. The process for designing the system is based on the large capacity of analog-digital (ADC) converters that exist today, in this case the ADC has a sampling rate of 5 GSPS, which allows the transmission of signals with bandwidths of about 2.5 GHz. The model implements in the same polyphase FIR structure multiplier-less the mapping schemes Q-PSK, 16-QAM, 64-QAM y 256-QAM together with the RRC filter. As a result, this implementation shows that the proposed architecture eliminates the use of dedicated multipliers which would be around 3150 if conventional methods were used. The Error Vector Module is used as a figure of merit in the selection of the RRC filter and the digital quantization levels. We achieved the target frequency for hardware operation at 312.5 MHz con un factor de interpolation de 16 and an EVM < 2%. Also, Hardware Description Language (HDL) models are validates in test benches with reference to the finite precision models of Simulink.

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Metadata
Title
Multiband Broadband Modulator Implementation on Field-Programmable Gate Array
Authors
Cristhian Castro
Carlos Gordón
Patricio Encalada
Myriam Cumbajín
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-42531-9_26

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