基于三个平行SOA-MZIs联结的全光同步频率变形

3区 物理与天体物理 Q1 Materials Science
Hassan Termos, Ali Tharthar, A. Mansour
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引用次数: 3

摘要

在本文中,我们开发了一种标准的调制设计,通过在Virtual Photonics Inc. (VPI)软件中采用采样安排来完成依赖于三个并行soa - mzi的伴随频率上混。每个SOA-MZI用于获取更高频率的频率输出采样信号。然后,这三个混合信号的合并导致同时上转换过程。峰值和正转换增益(CGs)与soa - mzi并联,用于0.5至98 GHz、1至98.5 GHz和1.5至99 GHz数据信号的高频混频,同时与五次谐波频率的控制信号相连。此外,我们评估了使用正交频分复用(OFDM)复调制信号的混合系统的性能表征的价值。首次完成了三并联SOA-MZIs系统,实现了频率向高频的转换。数值计算的CG、误差矢量幅度(EVM)和误码率(BER)值与通过VPI模拟器获得的值异常一致。对于OFDM调制,符合前向纠错(FEC)限制的最高比特率为2gbit /s。三个并行SOA-MZIs设置取得了良好的效果,被认为是一个优秀的系统。随后,对该系统进行了分析,以便与之前基于信号SOA-MZI和级联SOA-MZI链路的系统进行对比。此外,通过比较表明,三种并行SOA-MZIs系统具有良好的效率和质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All-Optical Simultaneous Frequency Metamorphose Contingent on a Three Parallel SOA-MZIs Copula
In this treatise, we develop a standard modulation design to consummate concomitant frequency up mixing dependent on the three parallel SOA-MZIs by employing a sampling arrangement in Virtual Photonics Inc. (VPI) software. Each SOA-MZI is used to acquire a frequency output sampled signal at higher frequencies. Then, the amalgamation of these three mixed signals leads to a simultaneous up-conversion procedure. The peak and positive conversion gains (CGs) are compassed with the SOA-MZIs connected in parallel for frequency mixing for higher frequencies of data signals from 0.5 to 98 GHz, 1 to 98.5 GHz, and 1.5 to 99 GHz, concurrently, which are in connection with the control signal at the frequency of the fifth harmonic. Moreover, we assess the worth of the performance characterizations of the mixing system using orthogonal frequency division multiplexing (OFDM) complex modulated signals. This novel three parallel SOA-MZIs system is completed for the first time in order to achieve frequency transformation to higher frequencies. The numerically calculated CG, error vector magnitude (EVM), and bit error rate (BER) values are in exceptional concurrence with those procured through the VPI simulator. The upper bit rate that concurs the forward error correction (FEC) confines is 2 Gbit/s for OFDM modulations. The three parallel SOA-MZIs setup leads to well-recognized results and it is deemed as a superb system due to its good achievement. Subsequently, this system is analyzed in order to contrast with our previous systems based on a signal SOA-MZI and a cascaded SOA-MZIs link. Furthermore, this comparison shows that the three parallel SOA-MZIs system has perfect efficiency and quality.
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来源期刊
Progress in Optics
Progress in Optics 物理-光学
CiteScore
4.50
自引率
0.00%
发文量
8
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