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Advanced optical modulation for integrated computing and networking toward 6G requirement

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【作者】 何舟黄昊张鹏马栋荣石兵华王桐黄媛媛郭佳

【Author】 Zhou He;Hao Huang;Peng Zhang;Dongrong Ma;Binghua Shi;Tong Wang;Yuanyuan Huang;Jia Guo;Hubei Key Laboratory of Digital Finance Innovation, Hubei University of Economics;School of Information Engineering, Hubei University of Economics;Wuhan Second Ship Design and Research Institute;School of Electronic Information and Communications, Huazhong University of Science and Technology;Wuhan Fiberhome Technical Services Co., Ltd.;

【通讯作者】 郭佳;

【机构】 Hubei Key Laboratory of Digital Finance Innovation, Hubei University of EconomicsSchool of Information Engineering, Hubei University of EconomicsWuhan Second Ship Design and Research InstituteSchool of Electronic Information and Communications, Huazhong University of Science and TechnologyWuhan Fiberhome Technical Services Co., Ltd.

【摘要】 The 6G transport network will be intricately designed as an integrated carrier, seamlessly integrating computing and networking capabilities. Leveraging the network as its foundation, it aims to deliver differentiated computing power services through supercomputing/intelligent computing and capability resource pooling. This study proposes an advanced modulation format, alternating polarization chirped return-to-zero frequency shift keying(Apol-CRZ-FSK), specifically designed to meet the integrated computing and networking carrying requirements of future 6G. Furthermore, comprehensive comparison and analysis of the transmission performance of 100 Gbps Apol-CRZ-FSK, CRZ-FSK, and differential quadrature phase shift keying(DQPSK) are conducted under identical conditions. The research indicates the high nonlinearity resistance capability exhibited by Apol-CRZ-FSK, highlighting its superior transmission performance.

【Abstract】 The 6G transport network will be intricately designed as an integrated carrier, seamlessly integrating computing and networking capabilities. Leveraging the network as its foundation, it aims to deliver differentiated computing power services through supercomputing/intelligent computing and capability resource pooling. This study proposes an advanced modulation format, alternating polarization chirped return-to-zero frequency shift keying(Apol-CRZ-FSK), specifically designed to meet the integrated computing and networking carrying requirements of future 6G. Furthermore, comprehensive comparison and analysis of the transmission performance of 100 Gbps Apol-CRZ-FSK, CRZ-FSK, and differential quadrature phase shift keying(DQPSK) are conducted under identical conditions. The research indicates the high nonlinearity resistance capability exhibited by Apol-CRZ-FSK, highlighting its superior transmission performance.

【基金】 supported by the National Natural Science Foundation of China (No. 52201363);Hubei Provincial Natural Science Foundation (Nos. 2022CFB076 and Q20222202);Artificial Intelligence Innovation Project of Wuhan Science and Technology Bureau (Nos. 2023010402040016 and 2022010702040068)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2024年11期
  • 【分类号】TN929.5
  • 【下载频次】8
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