• 제목/요약/키워드: COMPASS

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전자자기 컴퍼스를 이용한 GPS 컴퍼스의 선수방위 안정화에 관한 연구 (A Study on the Ship's Heading Stabilization of GPS Compass Using Electromagnetic Compass)

  • 조현정;신형일;이대재;현윤기;배문기;김광식
    • 수산해양기술연구
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    • 제41권1호
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    • pp.70-77
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    • 2005
  • 연근해 어선에서 사용되는 저가이면서 고정도의 GPS 컴퍼스는 위성 신호의 차단 및 선박이 고속 선회시 선수방위의 산출이 불안정해지는 문제점을 지니고 있어 전자자기 컴퍼스를 이용하여 안정된 선수방위 검출이 가능하도록 고안한 하이브리드 GPS-전자자기 컴퍼스를 시작(試作)하여, 그 성능을 평가하고 고찰한 결과는 다음과 같다. 스텝모터를 이용한 선회각속도별 실험에서 GPS 컴퍼스는 선회각속도 25^{\circ}$/sec 이하에서는 1회/sec 씩 0.1^{\circ}$ 단위로 안정된 선수방위를 검출하였으나, 그 이상의 선회각속도에서는 선수방위를 검출하지 못하였다. 한편, 전자자기 컴퍼스는 선회각속도에 상관없이 항상 선수방위를 나타내었으나, 컴퍼스 오차를 내포하고 있어 GPS 컴퍼스에 비해 정밀도는 낮음을 알 수 있었다. 고정점과 차량으로 이동 중에 하이브리드 GPS-전자자기 컴퍼스의 선수방위 정보를 출력한 결과, GPS 컴퍼스가 정상적으로 작동한 경우에는 GPS 컴퍼스의 선수방위 정보가 출력되고, 그렇지 못할 경우에는 선수방위 정보가 출력되고, 그렇지 못할 경우에는 전자자기 컴퍼스의 선수방위에 컴퍼스 오차를 가감하여 출력됨으로써 선수방위가 안정적으로 제공되었다. 또한, GPS 컴퍼스와 전자자기 컴퍼스에 의한 선수방위의 유사성을 검증하기 위하여, 두 데이터의 이동거리에 대한 선수방위를 이용하여 공분산분석을 행한 결과, 두 컴퍼스의 선수방위는 95%의 신뢰수준으로 유사성이 검증되었다.

소형어선에 있어서 자기 컴퍼스를 이용한 자동항법시스템의 정도 (Precision of Autopilot System using Magnetic Compass in Small Fishing Boat)

  • 이유원
    • 수산해양교육연구
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    • 제19권3호
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    • pp.510-516
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    • 2007
  • The efficiency of magnetic compass direction sensor and magnetic compass by the laboratory experiment for the apparatus of generating artificial magnetic force and the onboard experiment on the fishing boat of coastal pot at the outside of Pusan Namhang were investigated. The results showed that the bearing angle of magnetic compass direction sensor was coincided with that of magnetic compass. However, the performance of magnetic compasses was unsuitable under the ISO rule by the characteristic experiment of damping curve. Therefore, the use of autopilot system using magnetic compass direction sensor which is based on the magnetic compass needs the sufficient notice.

소형 어선에서 전자자기 컴퍼스를 이용한 항행자동시스템의 실용화에 관한 기초적 연구 (A Basic Study for Utilization of Autopilot System Using Electromagnetic Compass in a Small Fishing Boat)

  • 조현정;이유원
    • 수산해양기술연구
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    • 제40권1호
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    • pp.54-59
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    • 2004
  • 최근 개발되고 있는 전자자기 컴퍼스를 이용한 소형어선의 항행자동화시스템을 구축하기 위한 기초 연구로서, 부두에 계류된 선박에서 각종 장비의 가동 시켰을 때 나타나는 컴퍼스 오차 변화를 측정하여 비교 분석한 결과를 요약하면 다음과 같다. 1. 목선에서 85kW의 집어등을 점등하였을 때, 조타용 자기컴퍼스는 7$^{\circ}$편서되었고, 전자자기 컴퍼스는 13$^{\circ}$~16$^{\circ}$ 까지 편서되는 것으로 나타났다. 2. FRP 어선에서 13OkW의 집어등을 점등하였을때, 전자자기 컴퍼스는 19$^{\circ}$~23$^{\circ}$ 까지 편동되는 것으로 나타났다. 3. 강선에서 225kW의 전력으로 각종 장비를 가동 시킬 때, 가동전과 비교하여 컴퍼스 오차의 차분은 조타용 자기 컴퍼스에서는 13$^{\circ}$ 편서되고, 전자자기 컴퍼스는 상갑판에서는 68$^{\circ}$ 편서되었고, 선수루 갑판과 조타실 및 컴퍼스갑판에서는 각각 16$^{\circ}$, 32$^{\circ}$, 20$^{\circ}$ 편동되어 나타났다. 4. 소형어선의 항행자동화시스템에 전자자기 컴퍼스를 활용하기 위해서는 선박내에서 사용하는 각종 장비에 의해 발생하는 컴퍼스 오차를 측정하여 적절하게 수정하여 사용해야 할 것으로 판단된다.

2-체널 링-코어 프럭스-게이트 콤파스의 성능평가 시스템 개발 (Performance Evaluation System for Tow-Channel Ring-Core Flux-Gate Compass)

  • 임정빈;김봉석
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2002년도 추계공동학술대회논문집
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    • pp.13-19
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    • 2002
  • 2-체널 링-코어 프럭스-게이트 콤파스(two-channel ring-core Flux-Gate Compass: FG-Compass)의 성능평가 시스템 설계와 구현방법 및, 다항회귀 모형 기반의 평가 절차와 방법을 기술했다. 성능평가 시스템은 스텝모터 구동 유닛과, 방위정보 전송 유닛, 다항회귀식을 이용한 평가 프로그램 등으로 구성하였다. 성능평가 실험결과, FG-Compass를 전체 잔차 $\pm$4$^{\circ}$, 고유 잔차 $\pm$2$^{\circ}$로 분석하였다. 이 결과는 일반적인 FG-Compass의 고유 잔차 $\pm$4$^{\circ}$와 비교하여 정밀한 것으로, 성능이 향상된 새로운 FG-Compass 설계가 가능함을 나타낸다. 또한, 자동으로 잔차를 추정하고 도정할 수 있는 스마트 FG-Compass 콤파스의 설계론에 관해서도 논의하였다.

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접안된 선박에 있어서 자기 compass 의 자착수정에 관한 연구 (A Study on the Adjustment of the Magnetic Compass on the Vessel alongside the Wharf)

  • 이상집;노태현
    • 한국항해학회지
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    • 제12권2호
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    • pp.23-32
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    • 1988
  • This paper offers a method of magnetic compass adjustment for the vessel alongside the wharf using newly designed magnetic north former, which makes the same magnetic field-change as the turning vessel does. The characteristics of the magnetic north former was examined by observing the deviation curves of the magnetic compass installed on the compass deviascop at laboratory. The magnetic north former consists of A and B arms which hold the permanent bar magnets at the both ends of each arm. The arm is to rotae in the horizontal plane about the vertical axis fixed at the center boss of the magnetic compass and it is to compensate the horizontal plane about the vertical axis fixed at the center boss of the magnetic compass and it is to compensate the horizontal component of the earth's field. The B arm makes the artificial magnetic north around the magnetic compass for every ship's heading. The results of investigation are summarized as follows ; 1. The observation and correction of magnetic compass deviation can be done without swinging the ship, of the effect of D coefficient is negligible. 2. The residual deviation curve of the magnetic compass depends on the accuracy of deduced value of ship's multplier($\lambda$). 3. The errors due to the inaccuracy of deduced value of ship's multiplier change in the same way as the B and C coefficient do.

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Robust Electric Compass to Dynamic Magnetic Field Interference

  • Ko, Jae-Pyung;Kim, Yang-Hwan;Kang, Woong-Ki;Lee, Jang-Myung
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.1814-1819
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    • 2004
  • The purpose of this research is to improve the reliability of automobile navigation system that utilizes the magnetic compass for localization. On account of its sensitiveness against the dynamic external interference of the magnetic field, the electronic compass itself is not accurate enough to be used for the localization compared to the gyro-compass. To overcome this shortcoming, in this research, a robust electronic compass is designed by using two magnetic compasses to cancel out the dynamic interferences efficiently. That is, a dual compass predictive calibration algorithm against irregular external interference of magnetic field is newly proposed and implemented in this paper. When the dynamic interference can be eliminated from the electronic compass, it becomes much accurate than the gyro-based system that suffers from the accumulative drift error. The reliability and performance of the designed system have been verified through the real driving experiments.

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동적간섭자기장에 강인한 전자컴파스 (Robust Electric Compass to Dynamic Magnetic Field Interference)

  • 고재평;강웅기;김양환;이장명
    • 제어로봇시스템학회논문지
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    • 제11권1호
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    • pp.27-33
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    • 2005
  • The purpose of this research is to improve the reliability of automobile navigation system that utilizes the magnetic compass for localization. On account of its sensitiveness against the dynamic external interference of the magnetic field, the electronic compass itself is not accurate enough to be used for the localization compared to the gyro-compass. To overcome this shortcoming, in this research, a robust electronic compass is designed by using two magnetic compasses to cancel out the dynamic interences efficiently. That is, a dual compass predictive calibration algorithm against irregular external interference of magnetic field is newly proposed and implemented in this paper. When the dynamic interference can be eliminated from the electronic compass, it becomes much accurate than the gyro-based system that suffers from the accumulative drift error. The reliability and performance of the designed system have been verified through the real driving experiments.

2 축 가속도계 기반 지자기 센서 모듈의 교정 및 가속도계 오차에 의한 방위각 계산 오차 분석 (Biaxial Accelerometer-based Magnetic Compass Module Calibration and Analysis of Azimuth Computational Errors Caused by Accelerometer Errors)

  • 조성윤
    • 제어로봇시스템학회논문지
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    • 제20권2호
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    • pp.149-156
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    • 2014
  • A magnetic compass module must be calibrated accurately before use. Moreover, the calibration process must be performed taking into account any magnetic dip if the magnetic compass module has tilt angles. For this, a calibration method for a magnetic compass module is explained. Tilt error of the magnetic compass module is compensated using a biaxial accelerometer generally. The accelerometer error causes a tilt angle calculation error that gives rise to an azimuth calculation error. For error property analysis, error equations are derived and simulations are performed. In the simulation results, the accuracy of derived error equations is verified. If a biaxial magnetic compass module is used instead of a triaxial one, the magnetic dip and z-axis magnetic compass data must be estimated for tilt compensation. Lastly, estimation equations for the magnetic dip and z-axis magnetic compass data are derived, and the performance of the equations is verified based on a simulation.

A Calibration Technique for a Two-Axis Magnetic Compass in Telematics Devices

  • Cho, Seong-Yun;Park, Chan-Gook
    • ETRI Journal
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    • 제27권3호
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    • pp.280-288
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    • 2005
  • This paper presents an efficient algorithm for using the two-axis magnetic compass in portable devices. The general magnetic compass module consists of a three-axis magnetic compass and a two-axis inclinometer to calculate tilt-compensated azimuth information. In this paper, the tilt error is compensated using just a two-axis magnetic compass and two-axis accelerometer. The third-axis data of the magnetic compass is estimated using coordinate information that includes the extended dip angle and tilt information. The extended dip angle is estimated during the normalization process. This algorithm can be used to provide the tilt-compensated heading information to small portable devices such as navigation systems, PDAs, cell phones, and so on.

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자기검출소자를 이용한 전자자기컴퍼스의 기초적 연구 (Basic Research on an Electro-Magnetic Compass Using a Magnetic Detect Elements)

  • 안영화
    • 수산해양기술연구
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    • 제30권3호
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    • pp.182-188
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    • 1994
  • In recent years, navigational and fisheries instruments are rapidly advancing. Especially data processing. data transferring and data interchange throughout the digital signals has been in high progress. Even though the ship's heading is also provided by a gyro-compass, an electro-magnetic compass studying by us currently is easy to issue adequate data to instruments requiring the information for the ship's heading. especially in small fishing boats. As the main element of the electro-magnetic compass is a three-axis magnetic sensors, the developing of the high performance sensor is in highly necessity in the beginning. This paper describes on the development of electro-magnetic compass of three-axis fixed type by using three-axis detection new type magnetic sensor without gimbals. even though usual electro-magnetic compass have to need necessarily a gimbal system in order to keep horizontal condition of the compass.

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