Demonstration of SAC OCDMA PON Using a New Code Family

碩士 === 國立臺灣大學 === 電信工程學研究所 === 99 === The Optical code division multi-access (OCDMA) system is commonly used in passive optical network (PON) because it provides multiple users to access the network simultaneously with high data transmission rate and moderate security. However, when many users acces...

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Main Authors: Meam-Shieh Kuo, 郭明學
Other Authors: Jingshown Wu
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/53224644714803869923
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spelling ndltd-TW-099NTU054350802015-10-16T04:03:09Z http://ndltd.ncl.edu.tw/handle/53224644714803869923 Demonstration of SAC OCDMA PON Using a New Code Family 實作與驗證應用一全新碼族於頻域振幅編碼光分碼多工被動光網路 Meam-Shieh Kuo 郭明學 碩士 國立臺灣大學 電信工程學研究所 99 The Optical code division multi-access (OCDMA) system is commonly used in passive optical network (PON) because it provides multiple users to access the network simultaneously with high data transmission rate and moderate security. However, when many users access the network simultaneously, multi-user interference (MUI) will severely degrade the system performance. Hence, the spectral amplitude coding (SAC) OCDMA systems were proposed to solve the MUI problem. When applying code with fixed cross-correlation in SAC OCDMA PONs, we can eliminate the MUI completely at the receiver. Nevertheless, the noncoherent broadband light source is used in SAC OCDMA systems, the system performance suffers from phase induced intensity noise(PIIN). In this thesis, we propose a new SAC OCDMA PON which uses a new code family called extended super perfect difference(ESPD) codes. In our system, we use cyclic shifted property of ESPD code and arrayed waveguide router to construct a simpler spectrum encoder. Furthermore, the numerical results show that the proposed system using our code has better performance than the systems using other codes. Moreover, we also present an experiment according to our theoretical model which uses ESPD codes with cardinality equal to 8. The goal of our experiment is to verify the feasibility and performance of applying our code family to the SAC OCDMA PON. Because the number of active users and effective received power are the two main factors that limit the system performance, we change these parameters separately during our experiment. The experimental results show that our system can support maximum number of 8 users when transmission rate is 622Mbps and 7 to 8 users when transmission rate is 1.25Gbps. Jingshown Wu 吳靜雄 2011 學位論文 ; thesis 86 zh-TW
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description 碩士 === 國立臺灣大學 === 電信工程學研究所 === 99 === The Optical code division multi-access (OCDMA) system is commonly used in passive optical network (PON) because it provides multiple users to access the network simultaneously with high data transmission rate and moderate security. However, when many users access the network simultaneously, multi-user interference (MUI) will severely degrade the system performance. Hence, the spectral amplitude coding (SAC) OCDMA systems were proposed to solve the MUI problem. When applying code with fixed cross-correlation in SAC OCDMA PONs, we can eliminate the MUI completely at the receiver. Nevertheless, the noncoherent broadband light source is used in SAC OCDMA systems, the system performance suffers from phase induced intensity noise(PIIN). In this thesis, we propose a new SAC OCDMA PON which uses a new code family called extended super perfect difference(ESPD) codes. In our system, we use cyclic shifted property of ESPD code and arrayed waveguide router to construct a simpler spectrum encoder. Furthermore, the numerical results show that the proposed system using our code has better performance than the systems using other codes. Moreover, we also present an experiment according to our theoretical model which uses ESPD codes with cardinality equal to 8. The goal of our experiment is to verify the feasibility and performance of applying our code family to the SAC OCDMA PON. Because the number of active users and effective received power are the two main factors that limit the system performance, we change these parameters separately during our experiment. The experimental results show that our system can support maximum number of 8 users when transmission rate is 622Mbps and 7 to 8 users when transmission rate is 1.25Gbps.
author2 Jingshown Wu
author_facet Jingshown Wu
Meam-Shieh Kuo
郭明學
author Meam-Shieh Kuo
郭明學
spellingShingle Meam-Shieh Kuo
郭明學
Demonstration of SAC OCDMA PON Using a New Code Family
author_sort Meam-Shieh Kuo
title Demonstration of SAC OCDMA PON Using a New Code Family
title_short Demonstration of SAC OCDMA PON Using a New Code Family
title_full Demonstration of SAC OCDMA PON Using a New Code Family
title_fullStr Demonstration of SAC OCDMA PON Using a New Code Family
title_full_unstemmed Demonstration of SAC OCDMA PON Using a New Code Family
title_sort demonstration of sac ocdma pon using a new code family
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/53224644714803869923
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