PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION

We are thankful to Almighty Allah for giving us the courage and enthusiasm to complete the thesis work. Our heartiest gratitude, profound indebtedness and deep respect go to our supervisor Dr. M. Shamim Kaiser, Jahangirnagar University (JU), Dhaka, Bangladesh, for his constant supervision, affection...

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Hoofdauteurs: Islam khan, Mohibbul, Imtiaz, Farah Mohammad, Shahal Abdullah, Khondaker Abu
Formaat: Thesis
Taal:Engels
Gepubliceerd in: Department of Electrical Electronic and Communication Engineering, Military Institute of Science and Technology 2015
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Online toegang:http://hdl.handle.net/123456789/125
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author Islam khan, Mohibbul
Imtiaz, Farah Mohammad
Shahal Abdullah, Khondaker Abu
author_browse Imtiaz, Farah Mohammad
Islam khan, Mohibbul
Shahal Abdullah, Khondaker Abu
author_facet Islam khan, Mohibbul
Imtiaz, Farah Mohammad
Shahal Abdullah, Khondaker Abu
author_sort Islam khan, Mohibbul
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description We are thankful to Almighty Allah for giving us the courage and enthusiasm to complete the thesis work. Our heartiest gratitude, profound indebtedness and deep respect go to our supervisor Dr. M. Shamim Kaiser, Jahangirnagar University (JU), Dhaka, Bangladesh, for his constant supervision, affectionate guidance and great encouragement and motivation. His keen interest on the topic and valuable advices throughout the study was of great help in completing our thesis work.
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publisherStr Department of Electrical Electronic and Communication Engineering, Military Institute of Science and Technology
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spelling oai:localhost:123456789-1252015-08-04T08:22:13Z PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION Islam khan, Mohibbul Imtiaz, Farah Mohammad Shahal Abdullah, Khondaker Abu Optical wireless, indoor system, beam delay, signal-to-noise plus interference ratio (SNIR), adaptive neuro-fuzzy interference system (ANFIS), Doppler shift effect, multi-spot diffuse system (LSMS) We are thankful to Almighty Allah for giving us the courage and enthusiasm to complete the thesis work. Our heartiest gratitude, profound indebtedness and deep respect go to our supervisor Dr. M. Shamim Kaiser, Jahangirnagar University (JU), Dhaka, Bangladesh, for his constant supervision, affectionate guidance and great encouragement and motivation. His keen interest on the topic and valuable advices throughout the study was of great help in completing our thesis work. There has been a growing interest in optical wireless communications for indoor and outdoor applications. The high cost of reconfiguring and maintaining wired networks makes wireless an economical and flexible alternative to wired systems. This paper presents an up-to-date review of the Performance evaluation of optical wireless communication for indoor application. Our motivation is to look at suitable means of achieving high-speed wireless connectivity for indoor applications. Infrared is one such alternative. Compared with radio frequency, the optical signal carrier considered for wireless communication does not fall under regulations and there is no interference with the electromagnetic spectrum. Since the optical power is confined to the room where it is generated, there is no interference with similar systems operating next door. It offers a potentially huge bandwidth with is unregulated worldwide, and is capable of supporting the high data rates demanded by future multi-media applications. In order to improve the performance of indoor optical wireless communication links, multi-spot diffusing (MSD) geometries combine the advantages of the diffuse and the line-of-sight systems, giving great robustness and ease of use. MSD transmitter modulates data onto a series of beams that are projected onto the ceiling above the communications floor. The MSD receiver ideally images one or perhaps several spots and decodes data from the diffusely reflected energy. The same data is modulated for all spots and the arrangement and number of spots is optimized so that at least one spot is in the imager for every receiver position . Delay spread results at various locations are calculated to get the mean delay time for SNR and BER calculation. From the numerical analysis it was found that significant SNR improvement of almost 3 dB is observed as spot beams moved, select the best positioned spot v only and allocate the power adaptively based on channel condition of the selected slots. Department of Electrical Electronic and Communication Engineering, Military Institute of Science and Technology 2015-06-30T04:19:55Z 2015-06-30T04:19:55Z 2013-12 Thesis http://hdl.handle.net/123456789/125 en Bachelor of Science In Electrical Electronic and Communication Engineering; application/pdf application/pdf application/pdf Department of Electrical Electronic and Communication Engineering, Military Institute of Science and Technology
spellingShingle Optical wireless, indoor system, beam delay, signal-to-noise plus interference ratio (SNIR), adaptive neuro-fuzzy interference system (ANFIS), Doppler shift effect, multi-spot diffuse system (LSMS)
Islam khan, Mohibbul
Imtiaz, Farah Mohammad
Shahal Abdullah, Khondaker Abu
PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title_full PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title_fullStr PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title_full_unstemmed PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title_short PERFORMANCE EVALUATION OF OPTICAL WIRELESS COMMUNICATION FOR INDOOR APPLICATION
title_sort performance evaluation of optical wireless communication for indoor application
topic Optical wireless, indoor system, beam delay, signal-to-noise plus interference ratio (SNIR), adaptive neuro-fuzzy interference system (ANFIS), Doppler shift effect, multi-spot diffuse system (LSMS)
url http://hdl.handle.net/123456789/125
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