• 제목/요약/키워드: thermal imaging

검색결과 615건 처리시간 0.027초

열화상 카메라를 적용한 개인 맞춤형 냉각관리 시스템 (Personalized Cooling Management System with Thermal Imaging Camera)

  • 이영지;이주현;이승호
    • 전기전자학회논문지
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    • 제25권4호
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    • pp.782-785
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    • 2021
  • 본 논문에서는 열화상 카메라를 적용한 개인 맞춤형 냉각관리 시스템을 제안한다. 제안하는 장비는 열화상 카메라를 이용하여 사용자의 진행 전 피부 온도와 진행 후 피부온도의 차이에 따라 냉기 배출량 및 시스템을 제어한다. 피부의 온도가 비정상적으로 낮아지면 냉기공급을 차단하여 안전사고 발생 가능성을 방지한다. 피부 온도 감지센서를 열화상 카메라 온도측정으로 대체하여 경제적이고, 열화상 이미지로 온도를 확인할 수 있으므로 시각화가 가능하다. 또한, 제안하는 장비는 열화상 카메라를 적용한 개인 맞춤형 냉각관리 시스템의 안전을 위해 레이저 포인터를 듀얼로 사용하여 초점 거리를 산출하여 피부와의 거리를 측정하는 센서의 감도를 개선시킨다. 제안된 장비의 성능을 평가하기 위하여 외부공인 시험기관에서 실험하였다. 첫 번째로 측정된 온도 범위는 -100℃~-160℃로 측정되어, 현재 현장에서 사용되는 최고 수준인 -150~-160℃(cryo generation/미국) 보다 넓은 온도 범위를 나타내었다. 또한 오차는 ±3.2%~±3.5%로 측정되어 현재 현장에서 사용되는 최고 수준인 ±5%(CRYOTOP/중국) 보다 우수한 결과를 나타내었다. 두 번째로 측정된 거리 정확도는 ±4.0% 이하로 측정되어, 현재 현장에서 사용되는 최고 수준인 ±5%(CRYOTOP/중국) 보다 우수한 결과를 나타내었다. 세 번째로 질소 사용량은 최대 0.15 L/min 미만으로 확인되어, 현재 현장에서 사용되는 최고 수준인 6 L/min(POLAR BEAR/미국) 보다 우수한 결과를 나타내었다. 따라서 본 본문에서 제안한 열화상 카메라를 적용한 개인 맞춤형 냉각관리 시스템의 성능의 우수함이 판별되었다.

Thermal imaging and computer vision technologies for the enhancement of pig husbandry: a review

  • Md Nasim Reza;Md Razob Ali;Samsuzzaman;Md Shaha Nur Kabir;Md Rejaul Karim;Shahriar Ahmed;Hyunjin Kyoung;Gookhwan Kim;Sun-Ok Chung
    • Journal of Animal Science and Technology
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    • 제66권1호
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    • pp.31-56
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    • 2024
  • Pig farming, a vital industry, necessitates proactive measures for early disease detection and crush symptom monitoring to ensure optimum pig health and safety. This review explores advanced thermal sensing technologies and computer vision-based thermal imaging techniques employed for pig disease and piglet crush symptom monitoring on pig farms. Infrared thermography (IRT) is a non-invasive and efficient technology for measuring pig body temperature, providing advantages such as non-destructive, long-distance, and high-sensitivity measurements. Unlike traditional methods, IRT offers a quick and labor-saving approach to acquiring physiological data impacted by environmental temperature, crucial for understanding pig body physiology and metabolism. IRT aids in early disease detection, respiratory health monitoring, and evaluating vaccination effectiveness. Challenges include body surface emissivity variations affecting measurement accuracy. Thermal imaging and deep learning algorithms are used for pig behavior recognition, with the dorsal plane effective for stress detection. Remote health monitoring through thermal imaging, deep learning, and wearable devices facilitates non-invasive assessment of pig health, minimizing medication use. Integration of advanced sensors, thermal imaging, and deep learning shows potential for disease detection and improvement in pig farming, but challenges and ethical considerations must be addressed for successful implementation. This review summarizes the state-of-the-art technologies used in the pig farming industry, including computer vision algorithms such as object detection, image segmentation, and deep learning techniques. It also discusses the benefits and limitations of IRT technology, providing an overview of the current research field. This study provides valuable insights for researchers and farmers regarding IRT application in pig production, highlighting notable approaches and the latest research findings in this field.

태양 복사와 열화상이미지의 관계에 대한 기초 연구 (A Basic Study to Reveal the Relationships between Solar Thermal Radiation and Thermographic Images)

  • 김정배
    • 융복합기술연구소 논문집
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    • 제10권1호
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    • pp.13-17
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    • 2020
  • Among the factors that must be taken into account when using thermal imaging cameras that are expanding their application to various fields, a basic study was conducted focusing on temperature on the effect of solar radiation on the photographed thermal image. Through all experiments, in order to use an image taken with a thermal imaging camera for an object installed or located outdoors, a separate temperature correction according to the size of solar radiation or a separate device to block the effect of solar radiation must be additionally installed. Since the temperature of the same object may vary in the thermal image taken indoors or outdoors, it is necessary to calibrate it through comparison with other temperatures as a reference point. In the case of measuring the temperature of a glossy surface such as metal indoors with a thermal imaging camera, it was confirmed that an environment that can remove the light reflection effect by the glossy surface must be constructed and photographed.

Using a Thermal Imaging Camera to Locate Perforators on the Lower Limb

  • Paul, Sharad P.
    • Archives of Plastic Surgery
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    • 제44권3호
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    • pp.243-247
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    • 2017
  • Reconstruction of the lower limb presents a complex problem after skin cancer surgery, as proximity of skin and bone present vascular and technical challenges. Studies on vascular anatomy have confirmed that the vascular plane on the lower limb lies deep to the deep fascia. Yet, many flaps are routinely raised superficial to this plane and therefore flap failure rates in the lower limb are high. Fascio-cutaneous flaps based on perforators offer a better cosmetic alternative to skin grafts. In this paper, we detail use of a thermal imaging camera to identify perforator 'compartments' that can help in designing such flaps.

셔터렌즈에 의한 검출기 불균일 보정을 적용한 이중배율 적외선 카메라 설계 (Design of Two Zoom Infrared Camels using Noise Uniformity Correction by Shutter Lens)

  • 안규봉;김서현;정재철;조문신;김창우;김현숙
    • 한국광학회지
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    • 제18권2호
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    • pp.135-141
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    • 2007
  • 완전한 2차원 배열을 갖는 중적외선 대역의 $320\times240$ 검출기를 사용하는 3세대 열상 장비의 설계 및 제작은 이차원 배열 검출기 제작 기술의 발달과 영상 신호처리 기술의 진전으로 인해 최근 더욱 더 활발히 이루어지고 있다. 본 논문은 다양한 응용 분야에서 적외선 센서로 사용될 수 있도록 하기 위하여 소형 경량화 제작을 목표로 한 3세대 열상장비의 이중 배율 적외선 카메라의 설계와 Defocus용 셔터 렌즈에 의한 영상기반 불균일 보정 방식에 대해 다룬다.

Non-Invasive in vivo Loss Tangent Imaging: Thermal Sensitivity Estimation at the Larmor Frequency

  • Choi, Narae;Kim, Min-Oh;Shin, Jaewook;Lee, Joonsung;Kim, Dong-Hyun
    • Investigative Magnetic Resonance Imaging
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    • 제20권1호
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    • pp.36-43
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    • 2016
  • Visualization of the tissue loss tangent property can provide distinct contrast and offer new information related to tissue electrical properties. A method for non-invasive imaging of the electrical loss tangent of tissue using magnetic resonance imaging (MRI) was demonstrated, and the effect of loss tangent was observed through simulations assuming a hyperthermia procedure. For measurement of tissue loss tangent, radiofrequency field maps ($B_1{^+}$ complex map) were acquired using a double-angle actual flip angle imaging MRI sequence. The conductivity and permittivity were estimated from the complex valued $B_1{^+}$ map using Helmholtz equations. Phantom and ex-vivo experiments were then performed. Electromagnetic simulations of hyperthermia were carried out for observation of temperature elevation with respect to loss tangent. Non-invasive imaging of tissue loss tangent via complex valued $B_1{^+}$ mapping using MRI was successfully conducted. Simulation results indicated that loss tangent is a dominant factor in temperature elevation in the high frequency range during hyperthermia. Knowledge of the tissue loss tangent value can be a useful marker for thermotherapy applications.

Thermal Infrared Image Analysis for Breast Cancer Detection

  • Min, Sedong;Heo, Jiyoung;Kong, Youngsun;Nam, Yunyoung;Ley, Preap;Jung, Bong-Keun;Oh, Dongik;Shin, Wonhan
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제11권2호
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    • pp.1134-1147
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    • 2017
  • With the rise in popularity of photographic and video cameras, an increasing number of fields are now using thermal imaging cameras. One such application is in the diagnosis of breast cancer, as thermal imaging provides a low-cost and noninvasive method. Thermal imaging is particularly safe for pregnant women, and those with large, dense, or sensitive breasts. In addition, excessive doses of radiation, which may be used in traditional methods of breast cancer detection, can increase the risk of cancer. This paper presents one method of breast cancer detection. Breast images were taken using a thermal camera, with preliminary experiments conducted on Cambodian women. Then the experimental results were analyzed and compared using Shannon entropy and logistic regression.

열적외선 기기와 3차원 레이저 스캐너를 이용한 암석 표면의 풍화강도 분석 (Analysis The Intensity of Weathering of The Rock Surface Using 3D Terrestrial Laser Scanner and Thermal Infrared Instrument)

  • 이수곤;조항교;쉬징
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.1324-1333
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    • 2010
  • This paper is used in a recent civil engineering field in three-dimensional laser-meter tiles using thermal imaging cameras for the weathered rock slopes precisely measured indirectly, to the degree that began in the will. In the field is difficult to access the degree of weathering of the rock slope to the existing direct way to compensate for the shortcomings of 3D Terrestrial Laser Scanner and weathering characteristics of rocks using thermal imaging cameras to get the information to analyze the degree of rock weathering is. Intensity of 3D TLS and the thermal camera with image analysis to analyze the degree of weathering of bedrock in the field of core drilling targeting indoor laboratory tests were analyzed through the study. Granite, gneiss, sandstone, much of the cancerous samples, each experiment has a 40 per category, each of which 30 were used to analyze the data collected. That degree of rock weathering, the rock, depending on the strength of the Intensity values can change, depending on the level of thermal imaging camera, also weathered the changes in temperature could see. Intensity is the strength of weak rocks, the more value decrease, the temperature of the thermal imaging camera through the swell Intensity and notice that the temperature had an inverse relationship. Intensity value of the low strength of weak rock, but the value came out of the rocks have been proved to be largely dependent on the contrast. The contrast of the surface rocks are weathered dark Intensity values lower temperature to swell the contrary, the degree of weathering can be distinguished.

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몰리브덴 스퍼터링 처리 의류소재의 열적 특성과 전기적 특성에 관한 연구 (A study on thermal and electrical properties of molybdenum sputtered clothing materials)

  • 한혜리
    • 복식문화연구
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    • 제30권1호
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    • pp.88-101
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    • 2022
  • Molybdenum is used in electrical contacts, industrial motors, and transportation materials due to its remarkable ability to resist heat and corrosion. It is also used to flame coat other metals. This study investigated, the thermal characteristics of the molybdenum sputtered material, such as electrical conductivity, and stealth effects on infrared thermal imaging cameras. To this end, molybdenum sputtered samples were prepared by varying the density of the base sample and the type of base materials used. Thereafter, the produced samples were evaluated for their surface state, electrical conductivity, electromagnetic field characteristics, thermal characteristics, stealth effect on infrared thermal imaging cameras, and moisture characteristics. As a result of infrared thermal imaging, the molybdenum layer was directed towards the outside air, and when the sample was a film, it demonstrated a greater stealth effect than the fabric. When the molybdenum layer was directed to the outside air, all of the molybdenum sputtering-treated samples exhibited a lower surface temperature than the "untreated sample." In addition, as a result of confirming electrical properties following the molybdenum sputtering treatment, it was determined that the film exhibited better electrical conductivity than the fabric. All samples that were subjected to molybdenum sputtering exhibited significantly reduced electromagnetic and IR transmission. As a result, the stealth effect on infrared thermal imaging cameras is considered to be a better way of interpreting heat transfer than infrared transmission. These results are expected to have future applications in high-performance smartwear, military uniforms, and medical wear.

적외선열화상카메라의 응답 및 노이즈 특성 평가 (Responsivity and Noise Evaluation of Infrared Thermal Imaging Camera)

  • 김동익;김기석;김건희;장기수
    • 비파괴검사학회지
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    • 제33권4호
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    • pp.342-348
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    • 2013
  • 본 논문에서는 비접촉 비파괴검사에 사용되는 적외선열화상카메라의 응답 및 노이즈 특성을 평가할 수 있는 방법을 제시하고 있으며 차동모드흑체의 적외선 표적과 그 주변의 온도차 ${\Delta}$T를 이용하여 상용 적외선열화상카메라의 신호전달함수 및 온도분해능을 구하고 그 결과를 카메라 사양과 비교함으로써 본 평가 방법의 적합성을 검증하였다. 또한 비균일성 보정의 적용 유무로부터 나타나는 온도분해능의 차이 0.01 K을 통하여 적외선열화상카메라의 성능평가에 있어서 비균일성 보정이 필수적인 과정임을 확인하였다.