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GMR센서 배열을 이용한 자석팁의 2D 위치 추정
2D Location Estimation of a Magnetized Tip Using Arrayed GMR Sensors
이승철 ( Sc Lee ) , 김정관 ( Jk Kim ) , 안중환 ( Jh Ahn ) , 김화영 ( Hy Kim )
UCI I410-ECN-0102-2021-500-000654292

This paper proposes a method for estimating the location of a magnetized tip that is inside a non-transparent space or body by using arrayed giant magnetoresistance (GMR) sensors. In general, an object located in such an opaque space can be detected using X-rays, magnetic fields, ultra-sonic sensors, etc., depending on its characteristics. X-ray is mostly used for medical purposes but frequent exposure to it could cause harm to patients as well as doctors. In this study, how well a GMR sensor is applicable instead of an X-ray is investigated. The sensor’s voltage output is experimentally fitted to distance with a relationship of 3rd degree polynomial. To detect a small magnetized tip with 900 Oe inside a human body, a 2×2 arrayed GMR sensor and a location estimation algorithm based on information acquired from four sensors is developed. Evaluation tests show that the suggested method is applicable to limited cases with a distance less than 33-55 mm, and the location of a magnet tip is estimated relatively well with an error less than 1.5 mm.

1. 서 론
2. GMR 센서를 이용한 자기장 검출
3. 행렬 센서를 이용한 자석팁의 2차원 위치 추정
4. 위치 추정 시스템의 성능 평가
5. 결 론
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[자료제공 : 네이버학술정보]
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