Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator

This paper evaluates the performance of a recently patented rotationally asymmetrical dielectric totally internally reflective concentrator (RADTIRC) under diffuse radiation. The RADTIRC has a geometrical concentration gain of 4.969 and two half acceptance angles of ± 30° and ± 40° along the x-axis...

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Published in:2016 IEEE 6th International Conference on Photonics, ICP 2016
Main Author: Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
Format: Conference paper
Language:English
Published: Institute of Electrical and Electronics Engineers Inc. 2016
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84981736666&doi=10.1109%2fICP.2016.7510017&partnerID=40&md5=d17d985ebdd637a58a047b7624dee072
id 2-s2.0-84981736666
spelling 2-s2.0-84981736666
Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
2016
2016 IEEE 6th International Conference on Photonics, ICP 2016


10.1109/ICP.2016.7510017
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84981736666&doi=10.1109%2fICP.2016.7510017&partnerID=40&md5=d17d985ebdd637a58a047b7624dee072
This paper evaluates the performance of a recently patented rotationally asymmetrical dielectric totally internally reflective concentrator (RADTIRC) under diffuse radiation. The RADTIRC has a geometrical concentration gain of 4.969 and two half acceptance angles of ± 30° and ± 40° along the x-axis and z-axis respectively. Simulation and experimental work have been carried out to determine the optical concentration gain under diffuse radiation. It was found that the RADTIRC has an optical concentration gain of 1.94 under diffuse irradiance. The experimental results for the single concentrator showed an optoelectronic gain of 2.13, giving a difference of 9.8% due to factors such as the presence of direct radiation during experiments, the increase in diffuse radiation due to the reflection from surrounded buildings as well as from the ground reflection. © 2016 IEEE.
Institute of Electrical and Electronics Engineers Inc.

English
Conference paper
All Open Access; Green Open Access
author Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
spellingShingle Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
author_facet Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
author_sort Freier D.; Muhammad-Sukki F.; Abu-Bakar S.H.; Ramirez-Iniguez R.; Munir A.B.; Yasin S.H.M.; Mas'ud A.A.; Bani N.A.
title Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
title_short Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
title_full Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
title_fullStr Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
title_full_unstemmed Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
title_sort Effect of diffuse radiation on the performance of a rotationally asymmetrical optical concentrator
publishDate 2016
container_title 2016 IEEE 6th International Conference on Photonics, ICP 2016
container_volume
container_issue
doi_str_mv 10.1109/ICP.2016.7510017
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84981736666&doi=10.1109%2fICP.2016.7510017&partnerID=40&md5=d17d985ebdd637a58a047b7624dee072
description This paper evaluates the performance of a recently patented rotationally asymmetrical dielectric totally internally reflective concentrator (RADTIRC) under diffuse radiation. The RADTIRC has a geometrical concentration gain of 4.969 and two half acceptance angles of ± 30° and ± 40° along the x-axis and z-axis respectively. Simulation and experimental work have been carried out to determine the optical concentration gain under diffuse radiation. It was found that the RADTIRC has an optical concentration gain of 1.94 under diffuse irradiance. The experimental results for the single concentrator showed an optoelectronic gain of 2.13, giving a difference of 9.8% due to factors such as the presence of direct radiation during experiments, the increase in diffuse radiation due to the reflection from surrounded buildings as well as from the ground reflection. © 2016 IEEE.
publisher Institute of Electrical and Electronics Engineers Inc.
issn
language English
format Conference paper
accesstype All Open Access; Green Open Access
record_format scopus
collection Scopus
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