• 제목/요약/키워드: 산소 센서

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Remote treatment and patient monitoring using Arduino (아두이노를 활용한 원격진료 및 환자모니터링)

  • Choi, Duk-Kyu;Woo, Sang-Min;Kim, Han-Ho;An, Su-ho;Son, Seung-Soo;Jun, Eun-Hak;Kim, Dae-Young
    • Proceedings of the Korean Society of Computer Information Conference
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    • 한국컴퓨터정보학회 2022년도 제65차 동계학술대회논문집 30권1호
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    • pp.309-310
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    • 2022
  • 코로나19 팬데믹을 계기로 원격의료의 수요가 폭발하여 비대면 진료가 가능하도록 법률을 개정하려는 추세에 필요한 서비스로 시간과 비용이 없고, 거리 두기 단계 상향등으로 병원에 방문하지 못하는 환자가 늘어나고 있다. 하지만 시중에 건강상태를 확인할수 있는 장비를 판매하지만 전문적인 지식이 없는 일반인은 정확하게 결과를 알 수 없고 한가지의 검사만 측정이 가능하기 때문에 검사결과를 확인하고 싶으면 병원을 방문해야한다. 본 논문은 전문적인 지식이 없는 일반인도 자신의 건강상태를 확인가능하게 하기 위해 심박, 심전도, 산소포화도, 체온센서의 측정값을 그래프로 표현한 후 검사결과를 토대로 의사와 원격진료가 가능하여 병원을 방문하지 않고 의사와 상담 및 진료가 가능하다. 병원에 입원이 불가능한 환자일 경우 산소포화도 측정값이 95%미만이면 산소공급 즉 응급처치가 가능하다.

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Facility Management Smart Door-Lock System for COVID-19 Prevention (COVID-19 예방을 위한 시설 관리 스마트 도어록 시스템)

  • Shin, Seul-Gi;Shin, Seul-Bi;Yoo, Ki-Won
    • Proceedings of the Korea Information Processing Society Conference
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    • 한국정보처리학회 2020년도 추계학술발표대회
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    • pp.323-326
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    • 2020
  • 본 논문은 COVID-19 유증상자를 사전에 판별해 유증상자의 시설 출입을 제한하고, 비접촉 인증 방식인 RFID, 얼굴인식을 사용해 시설 내 COVID-19 집단 감염을 예방하는 시설 관리 스마트 도어록을 제안한다. 기존 디지털 도어록 및 스마트 도어록은 가정용으로 개발되어 많은 사람이 이용하는 다중 시설에서 사용하기에 불편하다. 본 연구에서 구현한 도어록은 아두이노 센서를 통해 시설 사용자의 체온과 산소 포화도 값을 받아 사용자의 COVID-19 증상 유무를 판단한다. 유증상자의 경우 경고음을 울려 시설 출입을 사전에 제한한다. 체온과 산소포화도 측정 후 비접촉 인증 방식인 RFID, 얼굴인식을 통해 시설 출입을 통제한다. 시설 관리자는 RFID, 얼굴인식, 도어록 전용 애플리케이션을 사용해 시설에 출입할 수 있다. 본 시스템을 통해 시설 관리가 편리해지고, 증가하고 있는 스마트 빌딩 및 무인 시설에 활용할 수 있다.

An Experimental Study on the Secondary Waveform Analysis according to Measure of Electronic Control Waveform (가솔린엔진의 전자제어 센서파형 측정을 통한 점화2차 파형 분석에 관한 실험적 연구)

  • Yoo, Jong-Sik;Kim, Chul-Soo;Cha, Kyoung-Ok
    • Transactions of the Korean Society of Automotive Engineers
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    • 제19권1호
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    • pp.95-100
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    • 2011
  • The test was done on cars travelling at speeds of 20km/h, 60km/h and 100km/h, the performance testing mode for chassis dynamometer. In this test, the secondary waveform were measured, including those using faulty MAP sensors, oxygen sensors and spark plugs. The results from these measurements and their analysis of secondary waveform can be summarized as follows: 1) The secondary waveform measured from the faulty oxygen sensor showed a lot of noise around peak voltage and in the rising and falling sections during spark line which means that the air fuel mixture was non-homogeneous. 2) The secondary waveform from the faulty MAP sensor showed the worst shape compared to other sensors, including variation of spark line, state of air-fuel mixture and velocity of flame front. 3) The spark line time of secondary waveform using a faulty spark plug displayed the shortest and smallest energy spark line, which means that a misfire occurred.

Cardiac Output Measurement Platform Development Using Swan-Ganz Catheter in Cardiopulmonary Patients with More Accurate (Swan-Ganz Catheter를 이용한 심폐기능 이상자의 정확한 Cardiac Output 측정 플랫폼 개발)

  • Jeong, Yong-Hyun;Na, Sang-Sin;Kim, Young-Kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • 제15권7호
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    • pp.1591-1597
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    • 2011
  • In this paper, on cardiopulmonary function in the intensive care unit over the direction of the state to define the diagnostic or therapeutic cardiac output Study on Implementation of measures as a platform, Swan-Ganz Catheter with sensor inserted into the body by inserting a saline solution Using temperature change caused by using thermodilution be used to obtain cardiac output. Swan-Ganz Catheter with temperature sensors and pressure sensors and sensor value which is entered through the acquisition more closely if the cardiac output CO, systemic and pulmonary vascular resistance, oxygen consumption and may be able to more accurately calculate the patient's condition than accurate diagnosis and treatment is possible.

Design and Implementation of a Mobile Ubiquitous Healthcare System (모바일 유비쿼터스 헬스케어시스템 설계 및 구현)

  • Lee, Bong-Hwan
    • Journal of the Korea Institute of Information and Communication Engineering
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    • 제14권3호
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    • pp.781-793
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    • 2010
  • Recently, owing to the development of ubiquitous sensor network and mobile communication technologies, many studies on healthcare system are being carried out. In this paper, we have designed and implemented a mobile u-Healthcare system based on sensor network. The u-Healthcare system is composed of three components: wireless sensor network at home, healthcare center located at remote site, and gateway which relays sensing physiological signals to healthcare center. In order to measure patient's physiological signal three sensors are used: three channel ECG sensor, pulse oximeter, and blood pressure sensor. Each sensor is mounted on a mote which can send gathered signal to the base node using Zigbee communication protocol. Once the base node receives physiological signal from each sensor, the client in the base node transfers the signal to the healthcare center. The received physiological signal at the healthcare center is analyzed and processed using various algorithms. The processed results are compared to the standard healthcare database and appropriate treatment including dietetics and exercise cure would be sent to the patient as feedback using SMS message or healthcare center web site. Each patient can check and manage one's health state every day using the healthcare system and gain a recovery under the treatments from minor health problems.

Self-diagnosis Algorithm for Water Quality Sensors Based on Water Quality Monitoring Data (수질 모니터링 데이터 기반의 수질센서 자가진단 알고리즘)

  • HongJoong Kim;Jong-Min Kim;Tae-Hyung Kang;Gab-Sang Ryu
    • Journal of Internet of Things and Convergence
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    • 제9권1호
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    • pp.41-47
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    • 2023
  • Today, due to the increase in global population growth, the international community is discussing solving the food problem. The aquaculture industry is emerging as an alternative to solving the food problem. For the innovative growth of the aquaculture industry, smart fish farms that combine the fourth industrial technology are recently being distributed, and full-cycle digitalization is being promoted. Water quality sensors, which are important in the aquaculture industry, are electrochemical portable sensors that check water quality individually and intermittently, making it impossible to analyze and manage water quality in real time. Recently, optically-based monitoring sensors have been developed and applied, but the reliability of monitoring data cannot be guaranteed because the state information of the water quality sensor is unknown. Therefore, this paper proposes an algorithm representing self-diagnosis status such as Failure, Out of Specification, Maintenance Required, and Check Function based on monitoring data collected by water quality sensors to ensure data reliability.

A Study on the On-line Measurement of Biochemical Oxygen Demand of livestock Wastewater (축산 폐수의 생물화학적 산소요구량 자동 측정 방법에 관한 연구)

  • Kim, Hyoung-Mo;Kim, Jin-Kyong;Shin, Kwan-Suk;Kim, Jun-Hyung;Jung, Jae-Chil;Kim, Tai-Jin
    • KSBB Journal
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    • 제23권4호
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    • pp.317-322
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    • 2008
  • The Biochemical Oxygen Demand(BOD) is one of important parameters for the most widely used method of organic pollution in wastewater and wastewater treatment effluent. As the conventional BOD test needs 5-day long incubation period, it is thus incompatible with real time control of wastewater treatment plant. To resolve this problem, in the present study an on-line Dissolved Oxygen(DO) monitoring system was used to observe the transient change of dissolved oxygen concentration in livestock wastewater. The system was composed of BOD sensor, amplifier and computer. It was observed that the concentration of the microorganism in the livestock wastewater was relatively constant during the growth period of initial one hour, which allowed the assumption of the constant Oxygen Uptake Rate(OUR) within one hour of measurement. It was thus concluded that the present scheme provided a protocol for automatic measurement of BOD in livestock wastewater, which can be applicable to optimal control of livestock wastewater treatment plant.

Study of Failure Examples for Emission Gas Control System in Gasoline Engine (가솔린 엔진 배출가스 제어장치에 대한 고장사례 고찰)

  • Lee, Il Kwon;Lee, Jong Ho;Lee, Young Suk;Youm, Kwang Wook;han, Jae Oh;Lim, Ha young
    • Journal of the Korean Institute of Gas
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    • 제20권6호
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    • pp.37-42
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    • 2016
  • The purpose of this paper is to study for the emission gas control of passenger car. The first example, the PCSV never open when operating condition, but it opened by causing malfunction because of trouble. As a result, the purge gas entered into surge tank, a mount of fuel was displayed with excessive supply on tester. Therefore, it certified the bad-condition of the engine when idling by decreasing of fuel injection quantity from engine ECU. The second example, the hose activating a EGR valve didn't supply the vacuum pressure because of assembling the other part. Thus, it knew the bad-condition of engine that the EGR valve would not work normally by leaking with the other port. The third example, as the rear oxygen sensor of two sensor were fault-installing by changing the sensor of other a car it could not detect of oxygen quantity. Finally, it found the phenomenon of abruptly decreasing vehicle speed when braking a car. Therefore, the system including with emission control has to drastically manage by maximizing condition to role decreasing the emission gas.

The Plug-in Module for Simultaneous Monitoring of Multi Bio-signal in Wearable Devices (착용형 단말에서 다수 생체신호의 동시 측정을 가능하게 하는 플러그인 모듈)

  • Choi, Moon Sik;Choi, Dong Jin;Kang, Soon Ju
    • KIISE Transactions on Computing Practices
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    • 제22권4호
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    • pp.195-200
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    • 2016
  • With development of wearable devices, there is an increased interest in bio-signal monitoring techniques that can measure the user's health condition. However, embedding several bio-signal sensors in one wearable device has some inherent problems in terms of limited resources such as its size. Furthermore, such problem also arise when new bio-signal sensors are added. In this paper, we introduced the Bio-Cradle, which is a Plug-in module that can transfer the biological signals in real time from the accelerometer, ECG, or PPG sensor to other wearable devices at the request from the user of wearable devices. When the Bio-Cradle plugged in to the other device, it can transfer several synchronized bio-signals regardless of the type of device.

Fabrication of $Sr_2FeMoO_6$ thin films by RF Sputtering (RF 스퍼터법에 의한 $Sr_2FeMoO_6$ 박막 제조)

  • Ryu, Hee-Uk;Sun, Ho-Jun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 한국전기전자재료학회 2010년도 하계학술대회 논문집
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    • pp.24-24
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    • 2010
  • 대형구조물의 구조안정성 진단, 로봇과 같은 지능기계의 제어, 환경오염을 감지하기 위한 센서의 중요성은 날로 증대되고 있다. 이러한 센서의 감도와 성능을 높이기 위해서 소형화, 다기능화, 집적화가 요구되고 있는데, 고성능 센서소자들의 집적화를 위해서 기존에 적용된 벌크형태의 재료들을 박막화하여 다층적층 및 소형화할 필요가 있다. 집적화 센서의 구현에 있어서 전극박막은 센서의 특성을 좌우하는 중요한 역할을 한다. 일반적으로 금속박막이 전극으로 사용되고 있으나 열적 불안정성 및 박리현상의 문제점을 지니고 있다. 따라서 이를 해결하기 위해 전도성산화막을 전극으로 적용하고자하는 연구가 요구되고 있다. 전도성산화막을 전극으로 적용하면 센서소자의 성능이 개선되는 경향이 있다. $Sr_2FeMoO_6$(SFMO) 산화물은 자기장을 인가했을 때 저항이 감소하는 CMR(colossal magnetoresistance) 물질이며 상온비저항이 낮은 것으로 알려져 있다. 이중 페롭스카이트 (double perovskite) 구조를 갖는 $Sr_2FeMoO_6$ 박막은 센서소자의 전극으로 적용 가능할 것으로 생각되어 박막을 제조하고자 하였으며 미세구조와 전기전도 특성을 조사하였다. 박막제조를 위해서는 RF 스퍼터법을 사용하였다. 스퍼터를 위한 타겟은 고상반응법으로 분말타겟을 제조하였다. Ar/$O_2$ 가스 유랑변화, 압력변화, 기판 온도변화가 박막의 상형성 등 박막특성에 미치는 영향을 조사하였다. 기판으로는 $SiO_2$(100nm)/Si 기판을 사용하였다. 증착직후에는 비정질막이 얻어졌으며 SFMO 상을 만들기 위해서는 후열처리가 필요하였는데, 환원성 가스 분위기 [$H_2$(5%)/Ar] 에서 열처리 조건을 최적화하여 이중 페롭스카이트 구조의 단일상 박막을 제조할 수 있었다. SFMO 단일상 박막은 증착시에나 후열처리 시 산소의 억제가 중요함을 알 수 있었다.

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