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CONFIDENTIAL ENHANCEMENT WITH RECONFIGURABLE AWG-BASED OPTICAL CDMA CODEC OVER FIBER-TO-THE-HOME ACCESS NETWORK

机译:在光纤到户接入网络上通过可重构的基于AWG的光纤CDMA CODEC进行机密增强

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摘要

By extending a protecting mechanism called anticipative warning time policy to improve previous coded-WDM scheme, the reconfigurable arrayed-waveguide grating (AWG)-based coder/decoder (codec) architecture is presented to enhance data confidentiality over fiber-to-the-home (FTTH) access networks. To avoid the huge code space requirements of wavelength hopping, time spreading, or spectral phase coding approaches, this study applies a spectral amplitude coding (SAC) technique and constructs signature address codes using unipolar maximal-length sequence (M-sequence) code. Exploiting the inherent cyclic properties of AWG routers, additional anticipative-warning-time policy is integrated to previous degree of weighted load balance (DWLB) policy and performs the changing codeword algorithm to thwart network attacks by eavesdroppers. Furthermore, the qualitative and quantitative evaluations of the system's network protection performance are investigated by assessing the attained degree of confidentiality (DOC). Under the assumption of the brute-force searching attacking, the proposed active changing codeword scheme shows that for a system capacity of N = 127, the proposed system enhances data network confidentiality by a factor of 8063 times that provided by conventional wavelength-division multiplexed PON (WDM-PON) scheme.
机译:通过扩展称为预期警告时间策略的保护机制以改进以前的编码WDM方案,提出了基于可重构阵列波导光栅(AWG)的编码器/解码器(codec)体系结构,以提高光纤到户的数据机密性(FTTH)接入网。为了避免波长跳跃,时间扩展或频谱相位编码方法对代码空间的巨大需求,本研究应用了频谱幅度编码(SAC)技术,并使用单极性最大长度序列(M-sequence)代码构造了签名地址代码。利用AWG路由器的固有循环特性,将其他预期警告时间策略集成到以前的加权负载平衡(DWLB)策略程度,并执行不断变化的代码字算法,以通过窃听者阻止网络攻击。此外,通过评估获得的机密性(DOC),调查了系统网络保护性能的定性和定量评估。在蛮力搜索攻击的假设下,提出的主动变化码字方案表明,对于系统容量为N = 127的情况,提出的系统将数据网络的机密性提高了传统波分复用PON所提供的8063倍。 (WDM-PON)方案。

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