Optical Amplifier Response Estimation Considering Non-Flat Input Signals Characterization Based on Artificial Neural Networks

被引:9
作者
Barboza, Erick de Andrade [1 ]
Bezerra da Silva, Allan Amaro [1 ]
Pinheiro Filho, Jose Carlos [1 ]
da Silva, Marcionilo Jose [2 ]
Bastos-Filho, Carmelo J. A. [3 ]
Martins-Filho, Joaquim Ferreira [2 ]
机构
[1] Univ Fed Alagoas, Comp Inst, BR-57000000 Maceio, Alagoas, Brazil
[2] Univ Fed Pernambuco, Dept Elect & Syst, BR-50740550 Recife, PE, Brazil
[3] Univ Pernambuco, Sch Pernambuco, BR-50740550 Recife, PE, Brazil
关键词
Power generation; Adaptive optics; Optical fiber networks; Estimation; Power amplifiers; Optical noise; Gain; Dynamic optical network; machine learning; optical amplifier; response estimation; ADAPTIVE-CONTROL; OPERATING POINT;
D O I
10.1109/JLT.2020.3025616
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Optical communication systems are facing the challenge to become robust to dynamic operating conditions, thus requiring autonomous devices. Optical amplifiers are essential devices for establishing optical communication systems with good quality of transmission. However, optical amplifiers include noise and present a non-flat spectral response. As a consequence, simple regression methods are not suitable for modeling amplifier response. The amplifier output signal estimation has been studied in other works. However, all the previous works only use characterization data with a flat input signal power spectrum, which can decrease the accuracy of the previous estimators when the amplifiers are under real-world conditions. In this work, we proposed models based on an artificial neural network to estimate the optical amplifier output signal considering characterization data with non-flat signals. The results show that the previous models, proposed for flat characterization, do not perform well with non-flat data. The results obtained by the new models are promising since they returned a smaller estimation error than the previous models. We observed an error reduction of 4 dB when compared with the previous models under certain circumstances. Moreover, the proposed models are robust even when we use limited non-flat data in the training process.
引用
收藏
页码:208 / 215
页数:8
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