• 제목/요약/키워드: Sensor Assessment

검색결과 390건 처리시간 0.027초

동작 모니터링을 위한 웨어러블 센싱 및 피드백 제품 디자인 개발 (Development of Wearable Sensing and Feedback Product Design for Movement Monitoring)

  • 조현승;양진희;이강휘;이정환;박서연;최형익;전학수;이주현
    • 감성과학
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    • 제21권3호
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    • pp.165-176
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    • 2018
  • 본 연구는 시 청각 피드백을 통해 아동의 운동 효과를 증진시킬 수 있는 의류형 웨어러블 동작 센싱 및 피드백 시스템을 개발하는 것을 목적으로 한다. 본 연구에서는 직물 센서 제조 및 이를 적용한 스포츠웨어 디자인, 직물기반 동작 센싱 모듈 설계, 아동의 운동 흥미 유발을 위한 시 청각 피드백 시스템 개발 등의 일련의 연구를 수행하였다. SWCNT 기반의 동작 센싱용 신축성 직물 센서를 개발하고, 이를 의복의 사지 관절 부위에 부착한 스포츠웨어를 디자인하였으며, 센싱 모듈을 설계하여 아동을 대상으로 한 관절 동작 실험을 통해 센싱 성능을 검증하였다. 또한 악세서리 형태로 개발된 피드백 제품을 통해 본 연구에서 개발된 스포츠웨어를 착용한 아동의 동작에 따라 빛과 소리로 반응하도록 구현하였다. 본 연구의 결과로, 아동의 운동 흥미를 유발할 수 있는 아동용 스포츠웨어 및 악세서리 제품의 디자인 프로토타입을 제안하였다.

연초 엽의 색 특성과 원격탐사 반사율지표의 상호관계 (Relationship Between Color Characteristic and Reflectance Index by Ground-based Remote Sensor for Tobacco Leaves)

  • 홍순달;강성수;전상호;정현철
    • 한국토양비료학회지
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    • 제42권4호
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    • pp.274-279
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    • 2009
  • 지상원격탐사 센서를 이용한 황색종의 적숙엽 판단기준을 평가하기 위하여 성숙기에 중엽과 상엽부위에 대하여 수확엽의 녹색도를 5개 수준으로 구분하여 여러 가지 센서지표들의 상호관계를 평가하였다. 건조엽의 색 특성은 색차계(Colorimeter, CR-300)를 이용하여 L, a, b값을 측정하였고 건조엽의 청색도는 육안관찰에 의한 분포정도를 수치화하여 비교 검토하였다. 수확엽의 녹색도에 따른 반사율은 550nm와 675nm에서 녹색도가 증가할수록 감소되는 특성을 보였다. 건조엽의 반사율은 미숙된 엽이 건조된 후 녹색이 잔류되었기 때문에 미숙엽의 675nm 반사율이 더 낮아졌다. 그 결과 동일한 엽위에서 생엽과 건조엽의 반사율지표는 직선적인 정의 상관을 보였다. 또한 건조엽의 청색도는 모든 센서지표들과 유의성 있는 정의 상관을 보였고 명도를 나타내는 색차계 L값은 센서지표들과 유의성 있는 부의 상관을 보였다. 따라서 건조엽의 청색도로 평가된 센서 종류별 적숙엽의 기준은 엽록소 측정치 SPAD 값은 22 이하, 엽록소 측정치 CM-1000 값은 135 이하, 그리고 원격탐사센서 Crop Circle의 gNDVI 값은 0.43 이하로 평가되었다.

IoT 센서연계장치를 이용한 고위험선박의 지능형 운항위험 분석 시스템 개발에 대한 연구 (A Study on the Implementation of Intelligent Navigational Risk Assessment System for High-risk Vessel using IoT Sensor Gateway)

  • 김도연;김길용;박계각;정중식
    • 한국지능시스템학회논문지
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    • 제26권3호
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    • pp.239-245
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    • 2016
  • 국제적인 불황이 이어지고 있는 상황에서도 해상물동량은 지속적으로 성장하고 있고 해양레저시장도 활성화되는 추세이다. 대한민국은 해상교통 센터 등의 시설운영을 통해 해상교통량을 제어하고 있지만, 이러한 추세로 해양교통상황이 복잡해지고 그에 따라 해양사고가 지속적으로 발생하고있다. 해양사고는 그 특성상 환경적, 인적인 피해를 입었을 경우 회복이 어려우며, 선박건조기술이 발달하면서 사고의 규모가 대형화 되고있는 추세이다. 여객선, 유조선 등 고 위험 선박의 경우 보다 상세한 해상상황 감시 및 분석이 필요하며 이러한 배경으로 특수선박 감시를 목적으로 한 다양한 연구가 진행된 바 있다. 하지만 현재 해상에서 연계되어 육상으로 전파되는 데이터 요소는 AIS, ARPA 정도의 한정된 정보가 전부이다. 우리는 다양한 자선 센싱 정보를 수집하여 육상으로 전파할 수 있는 IoT 선박센서수집 및 연계 시스템을 구현하고, 수집한 정보를 활용한 안전운항 상황 분석 시스템을 제시한다.

Total reference-free displacements for condition assessment of timber railroad bridges using tilt

  • Ozdagli, Ali I.;Gomez, Jose A.;Moreu, Fernando
    • Smart Structures and Systems
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    • 제20권5호
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    • pp.549-562
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    • 2017
  • The US railroad network carries 40% of the nation's total freight. Railroad bridges are the most critical part of the network infrastructure and, therefore, must be properly maintained for the operational safety. Railroad managers inspect bridges by measuring displacements under train crossing events to assess their structural condition and prioritize bridge management and safety decisions accordingly. The displacement of a railroad bridge under train crossings is one parameter of interest to railroad bridge owners, as it quantifies a bridge's ability to perform safely and addresses its serviceability. Railroad bridges with poor track conditions will have amplified displacements under heavy loads due to impacts between the wheels and rail joints. Under these circumstances, vehicle-track-bridge interactions could cause excessive bridge displacements, and hence, unsafe train crossings. If displacements during train crossings could be measured objectively, owners could repair or replace less safe bridges first. However, data on bridge displacements is difficult to collect in the field as a fixed point of reference is required for measurement. Accelerations can be used to estimate dynamic displacements, but to date, the pseudo-static displacements cannot be measured using reference-free sensors. This study proposes a method to estimate total transverse displacements of a railroad bridge under live train loads using acceleration and tilt data at the top of the exterior pile bent of a standard timber trestle, where train derailment due to excessive lateral movement is the main concern. Researchers used real bridge transverse displacement data under train traffic from varying bridge serviceability levels. This study explores the design of a new bridge deck-pier experimental model that simulates the vibrations of railroad bridges under traffic using a shake table for the input of train crossing data collected from the field into a laboratory model of a standard timber railroad pile bent. Reference-free sensors measured both the inclination angle and accelerations of the pile cap. Various readings are used to estimate the total displacements of the bridge using data filtering. The estimated displacements are then compared to the true responses of the model measured with displacement sensors. An average peak error of 10% and a root mean square error average of 5% resulted, concluding that this method can cost-effectively measure the total displacement of railroad bridges without a fixed reference.

가스보일러 CO중독 위험성 예측 및 근원적 예방기술 개발 (The Risk Assessment of Carbon Monoxide Poisoning by Gas Boiler Exhaust System and Development of Fundamental Preventive Technology)

  • 박찬일;류기윤
    • 한국가스학회지
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    • 제25권3호
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    • pp.27-38
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    • 2021
  • 본 연구에서는 가스보일러 가동 중 배기통이 이탈하는 상황이 발생했을 때, 시스템적으로 인지하고 자동으로 보일러 가동을 중지하여 일산화탄소를 포함한 유해 배기가스가 실내로 유입되는 상황을 근원적으로 차단하는 방안을 제시하였다: (1) 연소에 필요한 공기량을 제어하기 위해 설치된 풍압센서(APS : Air Pressure Sensor)의 출력전압을 측정하여 배기통의 정상상태와 이탈상태를 감시하는 기능을 추가한다. (2) 배기통이 이탈하면 APS의 출력전압이 상시 운전범위에서 일시적으로 상승하게 된다. 보일러 제어부인 PCB가 이 상태를 배기통 이탈로 간주하여 보일러 가동을 멈추면서 배기통 이탈 상태를 실내온도 조절기에 표시하도록 한다. 또한 국토교통부령으로 정한 「건축물의 설비기준 등에 관한 규칙」에서 명시한 공동주택 및 다중이용시설의 환기시설 기준에 따라, 실내공기 교환횟수에 맞는 풍량을 적용하여 실내공기를 환기하는 실험을 실시하였다. 이 실험 결과 실제 일산화탄소가 실내에 누출된 최악의 상태에서, 중독사고 예방이 가능하다는 것을 확인하였다. 다만, 동 규칙에서 정의한 시간당 실내공기 교환횟수를 기존 0.7회에서 0.5회로 2013년부터 완화하여 운영하고 있는데, 실험결과 8시간 가중평균 노출기준인 TWA 30 ppm을 초과하는 농도가 측정되어 기준을 강화할 필요성이 있다. 본 연구 결과에 기초하여 가스보일러 배기압력의 기계적 인지를 통해 배기통 이탈을 감지하는 기술과 일산화탄소 경보기와 연동된 실내공기 환기시스템 기술을 도입한다면 일산화탄소 중독사고가 크게 감소될 것으로 판단된다. 제조 및 검사단계의 문제점을 보완하고, 올바른 설치 및 수리, 사용자의 배기통 이탈에 대한 관심이 더해졌을 때, 일산화탄소 중독으로 인한 인명사고를 예방하는데 효과적인 대책이 될 것으로 사료된다.

인지부하의 정도에 따른 뇌신경생리학적 변화 (Changes in Electrophysiological Activation Due to Different Levels of Cognitive Load)

  • 권주희;김의진;김정희;임창환;김도원
    • 대한의용생체공학회:의공학회지
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    • 제43권1호
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    • pp.52-60
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    • 2022
  • Purpose: For now, cognitive load is assessed based on survey-based methods, which can be difficult to track the amount of cognitive load in real-time. In this study, we investigated the difference in electrophysiological activation due to different levels of cognitive load not only at sensor-level but also at source-level using electroencephalogram that might be potentially used for quantitative cognitive load evaluation. Materials and Methods: In this study, ten healthy subjects (mean age 24.3 ± 2.1, three female) participated the experiment. All participants performed 4 sessions of n-back task in different difficulties: 0-, 1-, 2-, and 3-back during electroencephalogram recording. For sensor-level analysis, we calculated the event-related potential and event-related spectral perturbation while low resolution brain electromagnetic tomography (LORETA) to estimate the source activation. Each result was compared between different workload conditions using statistical analysis. Results: Statistical results revealed that the accuracy of the task performance was significantly different between different cognitive loads (p = 0.018). The post-hoc analysis confirmed that the accuracy of the 3-back task was significantly decreased compared to 1-back condition (p = 0.018), but not with 2-back condition (p = 0.180). ERP results showed that P300 target amplitude between 1-back and 3-back had a marginal difference in Cz (p = 0.059) and Pz(p = 0.093). A significant inhibition in Cz high-beta activation (p = 0.017) and decrease in source activation of right parahippocampal gyrus was found in 3-back condition compared to 1-back condition (p < 0.05). Conclusion: In this study, we compared the sensor- and source-level differences in electroencephalogram between different levels of cognitive load, that were found to be in line with the previous reports related to cognitive load evaluation. We expect that the outcome of the current study can be used as a feature to establish a quantitative cognitive load assessment system.

임상가를 위한 특집 3 - 교합력 측정의 방법과 임상적 적용 (The methods for occlusal force measurement and their clinical applicatio)

  • 박지만;허성주;전윤식
    • 대한치과의사협회지
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    • 제50권1호
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    • pp.22-30
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    • 2012
  • The methods for the occlusal force measurement have long been developed. The occlusal analyzing equipment utilizing the pressure-sensitive film (Prescale) is useful for the assessment and comparison among large group of patients. On the other hand, the apparatus which uses the grid-based sensor sheet (T-scan) can be a useful assistant for acquiring the well-balanced occlusion. The device that can process the electrical input from the strain gauge which is attached to the tooth surface can collect the dynamic data of actual masticatory force. This device has been developed for the measurement of actual mastication with the food bolus and it can be a useful method for the comparison before and after the restorative treatment. Occlusal force measurement can be applied for the analysis of therapeutic action, diagnosis of crack- tooth syndrome, temporomandibul ar disease, and idiopathic implant loosening.

교량의 동적 거동 계측을 위한 스마트폰 가속도센서의 적용성에 관한 연구 (A Study on the Applicability of Smart-phone Accelerometer for the Measurement of Dynamic Behavior in Bridges)

  • 이형진
    • 한국산업융합학회 논문집
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    • 제23권5호
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    • pp.747-756
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    • 2020
  • In recent years, measurement in a smart-phone environment is attracting attention in various fields due to its easy set-up process, various functions, convenience and expandability. Even in the field of safety evaluation and maintenance of large-scale infra-structures, the appropriate application of these effective and convenient measurement techniques can be of great help. In this paper, an experimental study was conducted to investigate the effectiveness, problems and complementary methods of applying smart-phone accelerometers to the measurement in infra-structure such as bridges. In model bridge subjected to impact and moving loads, the measured accelerations using a smart-phone and a professional accelerometer were directly compared in time domain. And the statistical and frequency characteristics of the measured signal and transfer function were also examined in frequency domain. The results show that the accuracy of measurement using smart-phone sensor is primarily affected by its incomplete sampling performance. In conclusion, smart-phone sensors cannot be considered suitable for precise assessment, where measurements must be accurate over a wide frequency range, but we can say that the technique is still useful and fairly accurate for some purpose over a limited frequency range, such as the low pass frequency range, which is a major concern for civil structures.

Assessment of temperature effect in structural health monitoring with piezoelectric wafer active sensors

  • Kamas, Tuncay;Poddar, Banibrata;Lin, Bin;Yu, Lingyu
    • Smart Structures and Systems
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    • 제16권5호
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    • pp.835-851
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    • 2015
  • This paper presents theoretical and experimental evaluation of the structural health monitoring (SHM) capability of piezoelectric wafer active sensors (PWAS) at elevated temperatures. This is important because the technologies for structural sensing and monitoring need to account for the thermal effect and compensate for it. Permanently installed PWAS transducers have been One of the extensively employed sensor technologies for in-situ continuous SHM. In this paper, the electro-mechanical impedance spectroscopy (EMIS) method has been utilized as a dynamic descriptor of PWAS behavior and as a high frequency standing wave local modal technique. Another SHM technology utilizes PWAS as far-field transient transducers to excite and detect guided waves propagating through the structure. This paper first presents how the EMIS method is used to qualify and quantify circular PWAS resonators in an increasing temperature environment up to 230 deg C. The piezoelectric material degradation with temperature was investigated and trends of variation with temperature were deduced from experimental measurements. These effects were introduced in a wave propagation simulation software called Wave Form Revealer (WFR). The thermal effects on the substrate material were also considered. Thus, the changes in the propagating guided wave signal at various temperatures could be simulated. The paper ends with summary and conclusions followed by suggestions for further work.

초전도 모터의 상태진단을 위한 데이터 신호 무선처리 기법개발 (Development of the Wireless Technique for Health Monitoring of Superconducting Motor)

  • 서경철;이민래;이준현;권영길;손명환
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.829-834
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    • 2004
  • This research is to development advanced health(condition) monitoring system of superconducting motors. Development of advanced condition monitoring systems offers the prospect of improved performance, assessment, and operation, simplified design, enhanced safety, and reduced overall cost of advanced and next generation superconducting motor. For advanced and next generation superconducting motor design, the opportunity exists to develop and implement real-time and continuous monitoring systems by integrating wireless and computational technique. Generally, condition monitoring and control of temperature is essential for managing the superconducting motor components, rotor and structures. In this research, development of advanced monitoring in low temperature and high speed operating environments offers the potential to greatly improve the control of harsh environments. In conventional method, slip rings have been used to acquire data from these sensors. However, the increase of sensors leads to vibration of the rotation axis and noise signals due to kinematics contact. In this study, the wireless data acquisition technique was employed to develop more stable monitoring system adequate for high speed rotating system.

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