• 제목/요약/키워드: Multiple distance measuring equipment

검색결과 3건 처리시간 0.022초

시각 비동기 오차를 고려한 다중 DME 측위 적용 방안 연구 (A Feasibility Study on Multiple DME Positioning Considering Time-Misaligned Range Measurements)

  • 최광호;임준후;유원재;소형민;이형근
    • 한국항행학회논문지
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    • 제19권6호
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    • pp.534-543
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    • 2015
  • 본 논문에서는 다수의 DME (distance measuring equipment) 지상국에 대한 거리 측정치들을 결합할 경우 문제가 될 수 있는 시각 비동기 오차를 소개하고 이를 대비한 위치 결정 방법을 제안하였다. 소개된 시각 비동기 오차는 한 개의 DME와 한 개의 VOR (VHF omnidirectional range)을 활용하는 기존의 위치 결정 방법에서는 발생하지 않는 오차요인이다. 제안된 방법은 항공기의 속도벡터를 이용하여 동기화 되지 않은 다수의 임의 시점의 DME 거리 측정값들을 위치 결정 시점으로 투영하는 원리를 활용하였다. 한 개의 대표적 궤적을 활용한 시뮬레이션을 통하여 제안된 방법을 활용할 경우 이미 구축되어진 DME 인프라의 변경 없이 다수의 DME를 활용하여 항공기의 위치를 높은 정확도로 추정할 수 있음을 확인하였다.

양손 전극의 임피던스법을 이용한 심박출량 측정의 최적화 (Optimization of Measuring Cardiac Output by Both Hands Electrode Impedance Method)

  • 정상오;심명헌;정운모;김민용;윤찬솔;윤형로
    • 전기학회논문지
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    • 제60권9호
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    • pp.1770-1776
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    • 2011
  • In this study, a new method that can estimate ICG data from a subject's both hands to measure Cardiac Output under convenient sensor environment. With this aim, a grip-type electrode was implemented to measure ICG. To improve the accuracy of measurement, the regression equation was extracted using multiple bio-parameters and our result was compared with the thoracic ICG equipment(Physio Flow$^{(R)}$, PF104D, Manatec Biomedical, France), which is being used in clinics. The subjects consist of 26 men and 4 women(age in $22.0{\pm}3.32$). They are no cardiac disease. Parameters available for regression model were used gender, BMI, MBP, LVET, dZ/dt(max), distance between the measured electrodes, body impedance, and PTT. As a result of analyzing the ICG measurement value on thorax and both hands, the correlation with stroke volume, heart rate, and cardiac output was $R^2$=0.853, $R^2$=0.958 and $R^2$=0.899, respectively.

은 나노입자 프린팅 기반의 재활치료용 신축성 관절센서 개발 (Development of Stretchable Joint Motion Sensor for Rehabilitation based on Silver Nanoparticle Direct Printing)

  • Chae, Woen-Sik;Jung, Jae-Hu
    • 한국운동역학회지
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    • 제31권3호
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    • pp.183-188
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    • 2021
  • Objective: The purpose of this study was to develop a stretchable joint motion sensor that is based on silver nano-particle. Through this sensor, it can be utilized as an equipment for rehabilitation and analyze joint movement. Method: In this study, precursor solution was created, after that, nozel printer (Musashi, Image master 350PC) was used to print on a circuit board. Sourcemeter (Keithley, Keithley-2450) was used in order to evaluate changes of electric resistance as the sensor stretches. In addition, the sensor was attached on center of a knee joint to 2 male adults, and performed knee flexion-extension in order to evaluate accurate analysis; 3 infrared cameras (100 Hz, Motion Master 100, Visol Inc., Korea) were also used to analyze three dimensional movement. Descriptive statistics were suggested for comparing each accuracy of measurement variables of joint motions with the sensor and 3D motions. Results: The change of electric resistance of the sensor indicated multiple of 30 times from initial value in 50% of elongation and the value of electric resistance were distinctively classified by following 10%, 20%, 30%, 40% of elongation respectively. Through using the sensor and 3D camera to analyze movement variable, it showed a resistance of 99% in a knee joint extension, whereas, it indicated about 80% in flexion phase. Conclusion: In this research, the stretchable joint motion sensor was created based on silver nanoparticle that has high conductivity. If the sensor stretches, the distance between nanoparticles recede which lead gradual disconnection of an electric circuit and to have increment of electric resistance. Through evaluating angle of knee joints with observation of sensor's electric resistance, it showed similar a result and propensity from 3D motion analysis. However, unstable electric resistance of the stretchable sensor was observed when it stretches to maximum length, or went through numerous joint movements. Therefore, the sensor need complement that requires stability when it comes to measuring motions in any condition.