Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip

In this paper, the design of AXI4-Stream based modulator IP core for Visible Light Communication is reported. The modulator IP core conforms to the AXI4-Stream protocol standard, which is widely used in System-on-Chip (SoC) design. There are three modulation types in this IP core namely, Binary Phas...

Full description

Bibliographic Details
Main Authors: Erwin Setiawan, Trio Adiono
Format: Article
Language:Indonesian
Published: LPPM Institut Teknologi Telkom Purwokerto 2018-07-01
Series:Jurnal Infotel
Online Access:http://ejournal.st3telkom.ac.id/index.php/infotel/article/view/367
id doaj-d8de20967ebe480ca814153c40d5690a
record_format Article
spelling doaj-d8de20967ebe480ca814153c40d5690a2020-11-25T01:14:12ZindLPPM Institut Teknologi Telkom PurwokertoJurnal Infotel2085-36882460-09972018-07-01102838910.20895/infotel.v10i2.367367Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-ChipErwin Setiawan0Trio Adiono1Institut Teknologi BandungInstitut Teknologi BandungIn this paper, the design of AXI4-Stream based modulator IP core for Visible Light Communication is reported. The modulator IP core conforms to the AXI4-Stream protocol standard, which is widely used in System-on-Chip (SoC) design. There are three modulation types in this IP core namely, Binary Phase Shift Keying (BPSK), Quadrature Phase Shift Keying (QPSK), and Quadrature Amplitude Modulation-16 (QAM-16). These modulation types are commonly used in DCO-OFDM system. The modulation types can be selected programmatically from software that runs in main processor by accessing the control register. The output of the modulator is designed for DCO-OFDM modulation using 64-point IFFT. According to the simulation results, this modulator IP core can achieve a throughput of 95.36 Mb/s, 184.77 Mb/s, and 347.81 Mb/s for BPSK, QPSK, and QAM-16, respectively. This modulator IP core is reusable in DCO-OFDM system, so it increases productivity in DCO-OFDM system design.http://ejournal.st3telkom.ac.id/index.php/infotel/article/view/367
collection DOAJ
language Indonesian
format Article
sources DOAJ
author Erwin Setiawan
Trio Adiono
spellingShingle Erwin Setiawan
Trio Adiono
Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
Jurnal Infotel
author_facet Erwin Setiawan
Trio Adiono
author_sort Erwin Setiawan
title Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
title_short Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
title_full Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
title_fullStr Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
title_full_unstemmed Design of AXI4-Stream based Modulator IP Core for Visible Light Communication System-on-Chip
title_sort design of axi4-stream based modulator ip core for visible light communication system-on-chip
publisher LPPM Institut Teknologi Telkom Purwokerto
series Jurnal Infotel
issn 2085-3688
2460-0997
publishDate 2018-07-01
description In this paper, the design of AXI4-Stream based modulator IP core for Visible Light Communication is reported. The modulator IP core conforms to the AXI4-Stream protocol standard, which is widely used in System-on-Chip (SoC) design. There are three modulation types in this IP core namely, Binary Phase Shift Keying (BPSK), Quadrature Phase Shift Keying (QPSK), and Quadrature Amplitude Modulation-16 (QAM-16). These modulation types are commonly used in DCO-OFDM system. The modulation types can be selected programmatically from software that runs in main processor by accessing the control register. The output of the modulator is designed for DCO-OFDM modulation using 64-point IFFT. According to the simulation results, this modulator IP core can achieve a throughput of 95.36 Mb/s, 184.77 Mb/s, and 347.81 Mb/s for BPSK, QPSK, and QAM-16, respectively. This modulator IP core is reusable in DCO-OFDM system, so it increases productivity in DCO-OFDM system design.
url http://ejournal.st3telkom.ac.id/index.php/infotel/article/view/367
work_keys_str_mv AT erwinsetiawan designofaxi4streambasedmodulatoripcoreforvisiblelightcommunicationsystemonchip
AT trioadiono designofaxi4streambasedmodulatoripcoreforvisiblelightcommunicationsystemonchip
_version_ 1725158238778818560