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    드론 기반 자기 이상 탐지를 이용한 해양에서의 강자성 표적 탐지 = Ferromagnetic Target Detection in the Ocean Using Drone-based Magnetic Anomaly Detection

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    https://www.riss.kr/link?id=A109064121

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Magnetic anomaly signals from the ferromagnetic targets such as ships in the sea are measured by drone-basedmagnetic anomaly detection. A quantum magnetometer is suspended from the drone by 4 strings. Flight altitudeand speed of drone are 100 m and 5 m/s, respectively. We obtain magnetic anomaly signals of few nT from theships clearly. We analyze the signal characteristics by the ferromagnetic target through simulation using COMSOLmultiphysics.
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    Magnetic anomaly signals from the ferromagnetic targets such as ships in the sea are measured by drone-basedmagnetic anomaly detection. A quantum magnetometer is suspended from the drone by 4 strings. Flight altitudeand speed of drone are 100 m and 5 ...

    Magnetic anomaly signals from the ferromagnetic targets such as ships in the sea are measured by drone-basedmagnetic anomaly detection. A quantum magnetometer is suspended from the drone by 4 strings. Flight altitudeand speed of drone are 100 m and 5 m/s, respectively. We obtain magnetic anomaly signals of few nT from theships clearly. We analyze the signal characteristics by the ferromagnetic target through simulation using COMSOLmultiphysics.

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    참고문헌 (Reference)

    1 "electromag netism"

    2 C. Uribe, "Radio Communication Model for Underwater WSN" 2009

    3 J. Watermann, "Magnetic detection techniques in antisubmarine warfare" 18 : 1997

    4 "Magnetic Anomaly Detection Extended Role(MAD-XR)" CAE. Inc

    5 A. V. Parshin, "Low-altitude geophysical magnetic prospecting based on multirotor UAV as a promising replacement for traditional ground survey" 21 (21): 2018

    6 M. Caresta, "Low frequency structural and acoustic responses of a submarine hull" 36 (36): 2008

    7 B. N. Kim, "Investigation of iron ore mineral distribution using aero-magnetic exploration techniques : case study at Pochen, Korea" 11 : 2021

    8 I. B-. Olkowska, "Ferromagnetic Underwater Target Detection Based on a Magnetic Anomaly Map" 14 (14): 2020

    9 임신혁 ; 김동규 ; 윤지훈 ; 김보나 ; 방은석 ; 심규민 ; 이상경 ; 오종식, "Drone based Magnetic Anomaly Detection to detect Ferromagnetic Target" 26 (26): 2023

    10 L-S. Yoo, "Application of a drone magnetometer system to military mine detection in the demilitarized zone" 21 : 2021

    1 "electromag netism"

    2 C. Uribe, "Radio Communication Model for Underwater WSN" 2009

    3 J. Watermann, "Magnetic detection techniques in antisubmarine warfare" 18 : 1997

    4 "Magnetic Anomaly Detection Extended Role(MAD-XR)" CAE. Inc

    5 A. V. Parshin, "Low-altitude geophysical magnetic prospecting based on multirotor UAV as a promising replacement for traditional ground survey" 21 (21): 2018

    6 M. Caresta, "Low frequency structural and acoustic responses of a submarine hull" 36 (36): 2008

    7 B. N. Kim, "Investigation of iron ore mineral distribution using aero-magnetic exploration techniques : case study at Pochen, Korea" 11 : 2021

    8 I. B-. Olkowska, "Ferromagnetic Underwater Target Detection Based on a Magnetic Anomaly Map" 14 (14): 2020

    9 임신혁 ; 김동규 ; 윤지훈 ; 김보나 ; 방은석 ; 심규민 ; 이상경 ; 오종식, "Drone based Magnetic Anomaly Detection to detect Ferromagnetic Target" 26 (26): 2023

    10 L-S. Yoo, "Application of a drone magnetometer system to military mine detection in the demilitarized zone" 21 : 2021

    11 김보나, "Aeromagnetic Exploration using Unmanned Aerial Vehicles : Current and Future Trends" 23 (23): 2020

    12 이효선 ; 정현기 ; 조성호 ; 김예솔 ; 임형래, "A Study on the Geophysical Characteristics of the Coastal Area near Haenam Using Airborne and Shipborne Magnetic Survey" 56 (56): 2019

    13 김민호 ; 주웅걸 ; 임창선 ; 윤상기 ; 문상택, "A Study on Detection of Underwater Ferromagnetic Target for Harbor Surveillance" 18 (18): 2015

    14 임병선 ; 홍성표 ; 김영길, "A Study on Actuation Probability of Underwater Weapon Based on Magnetic Field" 17 (17): 2013

    15 임병선 ; 한승환 ; 김영길, "3-Axis Magnetometer Modeling & Simulation and Implementation for Under Water Weapon System" 18 (18): 2014

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