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Abstract
MWML(Multiweight-Multilength)-OOC (Optical Orthogonal Code)-光符号分割多元接続(CDMA)方式において,符号長および重み数を可変にすることで,ユーザの要求にしたがって伝送速度および受信品質を変化させることができる.しかしながら,従来のMWML-OOC-光CDMA方式では,多元接続干渉(MAI)の影響緩和の対策が用いられておらず,高い受信品質を要求する高優先ユーザにおいて,MAIの影響のために,ビット誤り率(BER)が10^<-12>以下を達成することができないという問題がある.また,一般的な誤り訂正符号は,冗長ビットを付加したり,重み数を増加させたりする必要があるが,伝送速度の低下を招き,重み数の増加は符号数の減少を招く.そこで,本論文では,MWML-OOC-光CDMA方式に対して,MAIの影響緩和のために,冗長ビットの付加および重み数の増加がなくても誤り訂正が可能な誤り訂正符号であるSOC (Super-Orthogonal-Code)を適応する方式を提案する.理論解析の結果,提案方式はSOCを用いない従来方式と比較して,MAIの影響を軽減でき,BER特性を改善できることを示す.
In the MWML(Multiweight-Multilength)-OOC(Optical Orthogonal Code) Optical code division multiple acccess (CDMA), the differentiation of the transmission rate and QoS(Quality of Service) can be realized by changing the code-length and number of weights according to user requirement. However, mitigation of MAI(Multi Access Interference) is not done in the conventional MWML-OOC Optical CDMA. Therefore users who demand high QoS cannot achieve Bit Error Rate(BER) performance less than or equal to 10^<-12> due to the effect of the MAI. Moreover, general error correcting codes require the addition of the redundancy bits or an increase in number of weights, where the redundancy bits cause the decrease at the transmission rate, and the increase in the number of weights causes a decrease in the number of codes. In this paper, we apply SOC(Super-Orthogonal Code) which can correct the error without addition of redundancy bit and an increase in number of weight for MWML-OOC Optical CDMA to mitigate MAI. Since our scheme can reduce the number of optical pulses, the proposed scheme can mitigate the effect of MAI compared with the conventional scheme. We show that the proposed scheme can improve the BER performance in comparison with the conventional scheme.
Journal
- Technical report of IEICE. OPE [List of Volumes]
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Technical report of IEICE. OPE 107(465), 95-100, 2008-01-21 [Table of Contents]
The Institute of Electronics, Information and Communication Engineers