Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end

The hybrid wireless-optical broadband-access network (WOBAN) is a promisingbroadband access network. It provides blanket coverage of broadband and flexible connection forwireless end-users. In this paper, the architecture of the WOBAN is proposed and designed basedon both a wavelengths division multi...

Full description

Saved in:
Bibliographic Details
Main Author: Mohammad, Abu Bakar
Format: Conference or Workshop Item
Published: 2011
Subjects:
Online Access:http://eprints.utm.my/id/eprint/46139/
http://www.academia.edu/1248056/Performance_Parameter_of_Hybrid_Wireless-Optical_Broadband-Access_Network_WOBAN_A_Study_on_the_Physical_Layer_of_Optical_Backhaul_and_Wireless_Front-End
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Teknologi Malaysia
id my.utm.46139
record_format eprints
spelling my.utm.461392017-09-04T10:21:22Z http://eprints.utm.my/id/eprint/46139/ Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end Mohammad, Abu Bakar T58.5-58.64 Information technology The hybrid wireless-optical broadband-access network (WOBAN) is a promisingbroadband access network. It provides blanket coverage of broadband and flexible connection forwireless end-users. In this paper, the architecture of the WOBAN is proposed and designed basedon both a wavelengths division multiplexing/time division multiplexing passive optical network(WDM/TDM PON) at the optical backhaul and wireless fidelity/worldwide interoperability formicrowave access (WiFi/WiMAX) technologies at the wireless front-end. The power budget of the optical backhaul based on maximum split ratio of 1/32 for each wavelength channel anda fiber length of 23km from the central office (CO) to the access point (AP) is analyzed withbit error rate (BER) of 10 − 9. Most of the existing works, based on performance evaluationare concerned on network layer aspects. We report the performance analysis in terms of BER,eye diagram, error vector magnitude (EVM), and signal-to-noise ratio (SNR) of the WOBANphysical layer. It is demonstrated 2Gb/s for downstream/upstream can be achieved at opticalbackhaul for each wavelength channel, at data rates of 54Mb/s (WiFi) and 30Mb/s (WiMAX)per AP along a 50m and 5km wireless links respectively. 2011 Conference or Workshop Item PeerReviewed Mohammad, Abu Bakar (2011) Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end. In: Progress In Electromagnetics Research Symposium Proceedings, 20–23 March 2011, Marrakesh, Morocco. http://www.academia.edu/1248056/Performance_Parameter_of_Hybrid_Wireless-Optical_Broadband-Access_Network_WOBAN_A_Study_on_the_Physical_Layer_of_Optical_Backhaul_and_Wireless_Front-End
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T58.5-58.64 Information technology
spellingShingle T58.5-58.64 Information technology
Mohammad, Abu Bakar
Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
description The hybrid wireless-optical broadband-access network (WOBAN) is a promisingbroadband access network. It provides blanket coverage of broadband and flexible connection forwireless end-users. In this paper, the architecture of the WOBAN is proposed and designed basedon both a wavelengths division multiplexing/time division multiplexing passive optical network(WDM/TDM PON) at the optical backhaul and wireless fidelity/worldwide interoperability formicrowave access (WiFi/WiMAX) technologies at the wireless front-end. The power budget of the optical backhaul based on maximum split ratio of 1/32 for each wavelength channel anda fiber length of 23km from the central office (CO) to the access point (AP) is analyzed withbit error rate (BER) of 10 − 9. Most of the existing works, based on performance evaluationare concerned on network layer aspects. We report the performance analysis in terms of BER,eye diagram, error vector magnitude (EVM), and signal-to-noise ratio (SNR) of the WOBANphysical layer. It is demonstrated 2Gb/s for downstream/upstream can be achieved at opticalbackhaul for each wavelength channel, at data rates of 54Mb/s (WiFi) and 30Mb/s (WiMAX)per AP along a 50m and 5km wireless links respectively.
format Conference or Workshop Item
author Mohammad, Abu Bakar
author_facet Mohammad, Abu Bakar
author_sort Mohammad, Abu Bakar
title Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
title_short Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
title_full Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
title_fullStr Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
title_full_unstemmed Performance parameter of hybrid wireless-optical broadband-access network (WOBAN) : a study on the physical layer of optical backhaul and wireless front-end
title_sort performance parameter of hybrid wireless-optical broadband-access network (woban) : a study on the physical layer of optical backhaul and wireless front-end
publishDate 2011
url http://eprints.utm.my/id/eprint/46139/
http://www.academia.edu/1248056/Performance_Parameter_of_Hybrid_Wireless-Optical_Broadband-Access_Network_WOBAN_A_Study_on_the_Physical_Layer_of_Optical_Backhaul_and_Wireless_Front-End
_version_ 1643651947460296704