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作 者:Muhammad Irfan Farman Ali Fazal Muhammad Saifur Rahman Ammar Armghan Yousaf Khan Faisal Althobiani Rehan Shafiq Mohammed Alshareef Mohammad E.Gommosani
机构地区:[1]Electrical Engineering Department,College of Engineering,Najran University,Najran,61441,Saudi Arabia [2]Department of Electrical Engineering,Qurtuba University of Science and IT,Dera Ismail Khan,29050,Pakistan [3]Department of Electrical Engineering,University of Engineering Technology,Mardan,23200,Pakistan [4]Department of Electrical Engineering,College of Engineering,Jouf University,Sakaka,Saudi Arabia [5]Faulty of Electrical Engineering,University of Engineering and Technology,Peshawar,Pakistan [6]Faculty of Maritime Studies,King Abdulaziz University,Jeddah,21589,Saudi Arabia [7]Department of Electrical Engineering,Sarhad University of Science and Information Technology,Peshawar,25220,Khyber Pukhtunkhwa,Pakistan [8]Ports&Maritime Transportation Faculty of Maritime Studies King Abdulaziz University,Jeddah,Saudi Arabia [9]Nautical Science Department,Faculty of Maritime Studies,King Abdulaziz University,Jeddah,Saudi Arabia
出 处:《Computers, Materials & Continua》2022年第12期4885-4895,共11页计算机、材料和连续体(英文)
基 金:The authors acknowledge the support from the Deanship of Scientific Research,Najran University.Kingdom of Saudi Arabia,for funding this work under the research groups funding program grant code number(NU/RG/SERC/11/3).
摘 要:The fiber nonlinearity and phase noise(PN)are the focused impairments in the optical communication system,induced by high-capacity transmission and high laser input power.The channels include high-capacity transmissions that cannot be achieved at the end side without aliasing because of fiber nonlinearity and PN impairments.Thus,addressing of these distortions is the basic objective for the 5G mobile network.In this paper,the fiber nonlinearity and PN are investigated using the assembled methodology of millimeter-wave and radio over fiber(mmWave-RoF).The analytical model is designed in terms of outage probability for the proposed mmWave-RoF system.The performance of mmWave-RoF against fiber nonlinearity and PN is studied for input power,output power and length using peak to average power ratio(PAPR)and bit error rate(BER)measuring parameters.The simulation outcomes present that the impacts of fiber nonlinearity and PNcan be balanced for a huge capacity mmWave-RoF model applying input power carefully.
关 键 词:Fiber nonlinearity phase noise radio over fiber network advanced modulation system
分 类 号:TN929.11[电子电信—通信与信息系统]
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