• Title/Summary/Keyword: RF 센서

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A Real-Time Monitoring System of Intensity of Illumination for Home Networks using TinyOS (TinyOS를 이용한 홈 네트워크용 실시간 조도 모니터링 시스템)

  • Kim Moon-Ki;Han Byung-Hee;Kim Ji-Hong;Kim Yong-Hyun;Lee Soo-Yong;Hong Yun-Sik
    • Proceedings of the Korea Information Processing Society Conference
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    • 2006.05a
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    • pp.387-390
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    • 2006
  • TinyOS 기반 무선 센서 노드를 사용한 실시간 계측 데이터 측정 및 제어 기술은 특히 홈 네트워크 분야에 널리 적용되고 있다. 본 논문에서는 ATMegal128L을 장착한 최소 8대 이상의 Micaz Mote 센서 노드 모듈을 사용하여 각 방의 노도 값을 실시간 측정하는 시스템을 구현하였다. 특히 TinyOS에서 제공되는 OscilloscopeRF의 메시지 구조를 분석하여, 각 노드의 ID 및 계측 데이터를 추출하였다. 또한 이렇게 추출된 계측 데이터를 센서 네트워크의 싱크 노드로부터 데이터 통제 센터(Doc)로 효율적으로 전송하기 위한 TCP 기반 네트워크 프로그래밍을 구현하였다. 실험 결과 센서 노드 수 및 샘플링 주기에 상관없이 안정적으로 계측 데이터 수신이 이루어짐을 확인하였다. 한편, IEEE802.11a/g 기반 무선 네트워크를 통해 실시간 계측 상황을 휴대용 단말기인 PDA에서 확인할 수 있도록 이를 구현하였다.

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Compact Microwave Heartbeat Proximity Sensor Under Human Body Movement (인체 움직임을 고려한 소형 근접 마이크로파 심박 센서)

  • Yun, Gi-Ho
    • Journal of the Korea Convergence Society
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    • v.11 no.10
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    • pp.63-69
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    • 2020
  • In this paper, a small microwave sensor that can be applied to a wearable device is proposed because it can detect the heartbeat signal of a human body moving irregularly at low speed. It consist of balanced microstrip radiation patches in the 2.4 GHz ISM band, self-oscillation detection circuit, and feedback circuit. Based on the theoretical development and simulation, the validity of the proposed structure was confirmed and the manufactured prototype was tested. The board size of the circuit is as small as 65mm × 85㎟, and has a low power consumption of 60mW thanks to the simple RF circuit structure. Finally heartbeat signal has been obtained from a human body moving at low speed (0.5Hz) within a linear distance of 2 to 30mm close to the sensor and a lateral distance of ±20mm.

$In_2O_3$박막위에 증착된 초박막 Co 촉매가 NO 의 감도에 미치는 영향

  • 이혜정;김경국;정종학;김태송;김광주;최원국
    • Proceedings of the Korean Vacuum Society Conference
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    • 2000.02a
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    • pp.102-102
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    • 2000
  • 최근 자동차 배기 가스 유출에 의한 환경문제가 심각하게 대두되고 있고, 이에 따라 그 중 NOx, SOx 등의 유해가스 검출을 위한 센서 개발이 강력히 요구되고 있다. 본 실험은 자동차에서 배출되는 NO 가스에 대한 민감한 센서 제작을 목적으로 In2O3 박막을 성장시켜 그 특성을 측정하였고, NO 가스에 대한 민감도를 증가시키기 위해 7 ~32 정도의 초박막 Co 촉매를 증착하여 NO 감도에 미치는 현상을 조사하였다. In2O3 2˝ target(순도 99.99%)을 사용하여 RF power와 Ar/O2의 비를 변화시켜가면서 상온에서 알루미나 기판위에 In2O3 박막 성장시켰다. 박막을 성장시킨 후 10$0^{\circ}C$에서 5$0^{\circ}C$까지 온도를 변화시키면서 공기 중에서 열처리를 하였다. In2O3 박막의 결정성은 XRD를 이용하여 측정하였고 표면 특성을 알아보기 위해 AFM과 SEM 측정을 하였다. XRD 분석결과 상온에서부터 50$0^{\circ}C$까지 회절 peck의 강도차이는 있었지만 모든 시편에서 In2O3 박막이 cubic 구조로 성장함을 알 수 있었다. 100ppm 농도 NO 가스에 대한 센서 소자의 감도를 20$0^{\circ}C$~40$0^{\circ}C$ 온도 영역에서 측정하였다. 순수한 In2O3 의 경우 감도(S=Ra/Rg)는 25$0^{\circ}C$에서 S 6 정도로 가장 좋았다. 반면에 Co 촉매를 표면에 흡착시킨 경우 20$0^{\circ}C$~25$0^{\circ}C$ 부근에서 반응속도가 매우 빨라지고, 150 정도 Co를 흡착시킨 센서의 경우 S 14 로 감도가 매우 향상됨을 알 수 있었다.

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Indoor Positioning System using Geomagnetic Field with Recurrent Neural Network Model (순환신경망을 이용한 자기장 기반 실내측위시스템)

  • Bae, Han Jun;Choi, Lynn;Park, Byung Joon
    • The Journal of Korean Institute of Next Generation Computing
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    • v.14 no.6
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    • pp.57-65
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    • 2018
  • Conventional RF signal-based indoor localization techniques such as BLE or Wi-Fi based fingerprinting method show considerable localization errors even in small-scale indoor environments due to unstable received signal strength(RSS) of RF signals. Therefore, it is difficult to apply the existing RF-based fingerprinting techniques to large-scale indoor environments such as airports and department stores. In this paper, instead of RF signal we use the geomagnetic sensor signal for indoor localization, whose signal strength is more stable than RF RSS. Although similar geomagnetic field values exist in indoor space, an object movement would experience a unique sequence of the geomagnetic field signals as the movement continues. We use a deep neural network model called the recurrent neural network (RNN), which is effective in recognizing time-varying sequences of sensor data, to track the user's location and movement path. To evaluate the performance of the proposed geomagnetic field based indoor positioning system (IPS), we constructed a magnetic field map for a campus testbed of about $94m{\times}26$ dimension and trained RNN using various potential movement paths and their location data extracted from the magnetic field map. By adjusting various hyperparameters, we could achieve an average localization error of 1.20 meters in the testbed.

Fabrication and Characterization of Porous Silicon-based Urea Sensor Syst (다공질 실리콘을 이용한 요소검출용 바이오 센서 제작)

  • Jin, Joon-Hyung;Kang, Chul-Goo;Kang, Moon-Sik;Song, Min-Jung;Min, Nam-Ki;Hong, Seok-In
    • Proceedings of the KIEE Conference
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    • 2002.07c
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    • pp.2003-2005
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    • 2002
  • 바이오 마이크로 시스템 및 바이오 MEMS 분야, 특히 실리콘을 기질로 하는 바이오 센서 제작에서 반도체 공정 기술은 센서의 대량 생산과 초소형화를 위해서 반드시 필요한 기술이다. 그러나, 감지전극의 마이크로화에 따른 센서의 감도 및 안정성 저하 문제는 해결해야 할 과제이다. 최근, 다공질 실리콘이 갖는 대면적이 실리콘 기질과 생체 고분자 (예: 단백질, 핵산 등) 간의 결합력을 향상시킬 수 있음이 알려지면서, 바이오 센서 분야에서, 새로운 형태의 드랜스듀서 재료로서의 다공질 실리콘에 대한 논의가 활발히 전개되고 있으며 또한, ISFET (Ion-Selective Field-Effect Transistors) 와는 달리 다공질 실리콘 층은 저항이 크기 때문에 센서 제작 과정에서의 부가적인 절연막을 필요로 하지 않는다. 본 연구에서는, 백금을 증착한 다공질 실리콘 표면에 전도성 고분자로서 Polypyrrole (PPy) 필름과 생체 고분자 물질로서 Urease를 각각 전기화학적으로 흡착하였다. 다공질 실리콘 층의 형성을 위해 테플론 소재의 전기화학 전지에 불산 (49%), 에탄올 (95%), $H_2O$ 혼합 용액을 넣고 실리콘 웨이퍼에 일정시간 수 mA의 산화 전류를 흘려주었으며, 약 $200{\AA}$의 티타늄 박막과 $200{\AA}$의 백금 박막을 RF 스퍼터링하여 작업 전극을 제작하였고, 백금 박막 및 Ag를 기화 증착하여 제작한 Ag/AgCl 박막을 각각 상대 전극과 기준전극으로 하였다. 박막 전극의 표면 분석을 위해 SEM (Scanning Electron Microscopy), EDX (Energy Dispersive X-ray spectroscopy) 등을 이용하였다. 제작된 요소 센서로부터 요소 농도 범위 0.01 mmol/L ${\sim}$ 100 mmol/L에서 약 0.2 mA/decade의 감도를 얻었다.

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Development of a Mountainous Area Monitoring System based on IoT Technology (IoT 기술 기반의 산악지 모니터링 시스템 개발)

  • Kim, Kyoon-Tai
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.3
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    • pp.437-446
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    • 2017
  • 70 percent of Korea's territory is covered with mountains, whose difficult conditions can cause damage to facilities. Recently, the demand for facilities related to outdoor activities including monorails has been on the rise, and such facilities are much more likely to become damaged. For this reason, a monitoring system applying IoT to mountainous areas was developed and its applicability is evaluated in this study. The current status of the existing mountainous facilities and monitoring systems were reviewed, and the current wired monitoring technology was analyzed. A scenario for IoT-based monitoring was developed, and then sensor nodes were developed, which include an RF-communication module and interface, power-supply and solar-cell. A testbed was set up at K University. The same data was collected by the wireless system as had been collected by the wired one. The study findings are as follows. Firstly, by using the wireless system, it is estimated that the construction duration can be reduced by about 25 percent, while the construction costs can be reduced by about 3~52 percent. Secondly, the safety of the construction workers can be improved by making the working conditions less dangerous, such as by eliminating the need to transport cables.

Characteristics of TMA Gas Detection of a ZnO Thin Films by Annealing (열처리에 따른 ZnO 박막의 TMA 가스 검지 특성)

  • Ryu, Jee-Youl;Park, Sung-Hyun;Choi, Hyek-Hwan;Kwon, Tae-Ha
    • Journal of Sensor Science and Technology
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    • v.5 no.1
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    • pp.30-36
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    • 1996
  • ZnO thin-film sensors were fabricated by RF magnetron sputtering method. The composition of the device material was 4 wt. % $Al_{2}O_{3}$, 1 wt. % $TiO_{2}$ and 0.2 wt. % $V_{2}O_{5}$ on the basis of ZnO material for developing the high sensitive TMA gas sensor which have an appropriate resistivity and the stability for practical use. They were also grown on the $SiO_{2}/Si$ substrates heated at $250^{\circ}C$ under a pure oxygen pressure of about 10 mTorr with a power of about 80 watts for 10 minutes. So as to enhance the stability of the resistivity, the thin films were annealed from $400^{\circ}C$ to $800^{\circ}C$. The sensors made with the thin film which were annealed at $700^{\circ}C$ for 60 minutes in pure oxygen gas exhibited a good sensing properties for TMA gas. The thin film grown at this condition showed the maximum sensitivity of 550 in TMA gas concentration of 160 ppm, and exhibited a good stability and excellent linearity.

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Auto-compatibility Analysis for Ka-band payload of COMS

  • Park, Jae-Woo;Lee, Seong-Pal;Baek, Myung-Jin
    • Journal of Satellite, Information and Communications
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    • v.2 no.2
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    • pp.41-47
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    • 2007
  • The first geostationary satellite made by Korea, COMS, has the three different payload ; Meteorological sensor, Oceanographic sensor and Ka-band communication payload. There are Meteorological & Ocean Data Communication Subsystem(MODCS) and Telemetry, Command and Ranging Subsystem(TC&R) as other RF radiation sources. MODCS transmits and receives Meteo and Ocean measurement data from/to earth using L-band and TC&R using S-band. The Ka-band communication payload will provide high-speed multimedia services and communication services for natural disaster such as prediction, prevention, and recovery services in the government communications network.Ka-band beacon is for the earth antenna pointing and the experiment of rain fading. This paper gives the analysis results about the mutual radiation effect on Ka-band communication payload, Ka-band beacon, MODCS and TC&R. Up/Down link power and coupling factor including the geometrical position and distance of antenna, filter rejection and degradation factor due to the different polarization are considered. The results show MODCS and TC&R are compatible for Ka-band communication payload and Ka-band beacon does not interfere with MODCS and TC&R normal operation.

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The Hall Measurement and TMA Gas Detection of ZnO-based Thin Film Sensors (ZnO 박막 센서의 TMA 가스 및 Hall 효과 측정)

  • Ryu, Jee-Youl;Park, Sung-Hyun;Choi, Hyek-Hwan;Lee, Myong-Kyo;Kwon, Tae-Ha
    • Journal of Sensor Science and Technology
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    • v.6 no.4
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    • pp.265-273
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    • 1997
  • The TMA gas sensors are fabricated with the ZnO-based thin films grown by a RF magnetron sputtering method. We investigate the surface carrier concentration, Hall electron mobility, electrical resistivity and sensitivity according to temperature variation and TMA gas concentration. The ZnO-based thin film sensors prepared by sputtering in oxygen showed higher surface carrier concentration, higher Hall mobility, higher sensitivity, and lower electrical resistivity than sensors prepared by sputtering in argon. The doping ZnO-based thin film sensors showed the same electrical properties in comparison with nondoping sensors. In case of sputtering on the oxygen gaseous atmosphere, the ZnO-based thin film sensors doped with 4.0 wt.% $Al_{2}O_{3}$, 1.0 wt.% $TiO_{2}$, and 0.2 wt.% $V_{2}O_{3}$ showed the highest surface carrier concentration of $5.95{\times}10^{20}cm^{-3}$, Hall electron mobility of $177\;cm^{2}/V{\cdot}s$, lowest electrical resistivity of $0.59{\times}10^{-4}{\Omega}{\cdot}cm$ and highest sensitivity of 12.1(working temperature, $300^{\circ}C$, TMA gas, 8 ppm).

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The Realization on GAS Sensor Module for Inteligent Wireless Communication (지능형 무선통신용 가스 센서 모듈 구현)

  • Kim, Hyo-Chan;Weon, Young-Su;Cho, Hyung-Rae
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.11 no.6
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    • pp.123-132
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    • 2012
  • Gas sensors has been used very differently that depending on following purposes; Automotive (exhaust gas, fuel mixture gas, oxygen, particulates), agriculture / food industry (fresh, stored, CO2, humidity, NH3, nitrogen oxide gas, organic gas, toxic gas emitted from pesticides and insecticides), industrial / medical (chemical gas, hydrogen, oxygen and toxic gases), military (chemical weapon), environmental measurements (CO and other air pollution consisting of sulfur and nitrogen gas), residential (LNG, LPG, butane, indoor air, humidity). The types of industrial toxic substances are known about 700 species and many of these exist in gaseous form under normal conditions. he multi-gas detection sensors will be developed for casualties that detect the most important and find easy three kinds of gases in marine plant; carbon dioxide(CO2), carbon(CO), ammonia(NH3). Package block consists of gas sensing device minor ingredient, rf front end, zigbee chip. Develope interworking technology between the sensor and zigbee chip inside a package. Conduct a performance test through test jig about prototype zigbee sensor module with rf output power and unwanted emission test. This research task available early address when poisonous gas leaked from large industrial site and contribution for workers' safety at the enclosed space.