About KugJin Jung KugJin Jung Ph.D., Electrical and Computer Engineering Free Space Optics KugJin Jung is a Ph.D student in the Communication Theory Lab (CTL) under the supervision of Professor Mohamed-Slim Alouini at King Abdullah University of Science and Technology (KAUST). Education and Early Career KugJin Jung obtained his B.S. degree in electrical engineering from Korea University in 2016. He is also currently a Ph.D. student at Korea University. Research Interest KugJin Jung is focusing on the area of wireless communication and free space optical communication. Education Profile B.S. in school of Electrical Engineering, Korea University, Seoul, South Korea, March 2012-Febuary Events Presented Events Dec 11 - Dec 17, 2022 Performance Analysis of Free Space Optical (FSO) Link with Pointing Errors KugJin Jung, Ph.D., Electrical and Computer Engineering Dec 13, 10:00 - 12:00 B1 L3 R3119 Free Space Optics Free-space optical communication (FSO) has been proposed as an attractive alternative to radio frequency communication in the sense that it provides wide bandwidth and high capacity without the requirement of a license. However, the scalability of the FSO link is limited by pointing errors, atmospheric turbulence, and loss. Especially, when it comes to the FSO link between moving platforms, it is imperative works to analyze the statistical channel model considering accurate pointing errors and atmospheric turbulence at the same time. In this paper, we analyze the performance of FSO links over various atmospheric situations with pointing errors.
Performance Analysis of Free Space Optical (FSO) Link with Pointing Errors KugJin Jung, Ph.D., Electrical and Computer Engineering Dec 13, 10:00 - 12:00 B1 L3 R3119 Free Space Optics Free-space optical communication (FSO) has been proposed as an attractive alternative to radio frequency communication in the sense that it provides wide bandwidth and high capacity without the requirement of a license. However, the scalability of the FSO link is limited by pointing errors, atmospheric turbulence, and loss. Especially, when it comes to the FSO link between moving platforms, it is imperative works to analyze the statistical channel model considering accurate pointing errors and atmospheric turbulence at the same time. In this paper, we analyze the performance of FSO links over various atmospheric situations with pointing errors.
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