• 제목/요약/키워드: RMS signal

검색결과 305건 처리시간 0.026초

HRV 신호의 선형 및 비선형 분석을 이용한 마취심도 평가 (Estimation on the Depth of Anesthesia using Linear and Nonlinear Analysis of HRV)

  • 예수영;백승완;김혜진;김태균;전계록
    • 한국전기전자재료학회논문지
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    • 제23권1호
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    • pp.76-85
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    • 2010
  • In general, anesthetic depth is evaluated by experience of anesthesiologist based on the changes of blood pressure and pulse rate. So it is difficult to guarantee the accuracy in evaluation of anesthetic depth. The efforts to develop the objective index for evaluation of anesthetic depth were continued but there was few progression in this area. Heart rate variability provides much information of autonomic activity of cardiovascular system and almost all anesthetics depress the autonomic activity. Novel monitoring system which can simply and exactly analyze the autonomic activity of cardiovascular system will provide important information for evaluation of anesthetic depth. We investigated the anesthetic depth as following 7 stages. These are pre-anesthesia, induction, skin incision, before extubation, after extubation, Post-anesthesia. In this study, temporal, frequency and chaos analysis method were used to analyze the HRV time series from electrocardiogram signal. There were NN10-NN50, mean, SDNN and RMS parameter in the temporal method. In the frequency method, there are LF and HF and LF/HF ratio, 1/f noise, alphal and alpha2 of DFA analysis parameter. In the chaos analysis, there are CD, entropy and LPE. Chaos analysis method was valuable to estimate the anesthetic depth compared with temporal and frequency method. Because human body was involved the choastic character.

Terra-Scope - a MEMS-based vertical seismic array

  • Glaser, Steven D.;Chen, Min;Oberheim, Thomas E.
    • Smart Structures and Systems
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    • 제2권2호
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    • pp.115-126
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    • 2006
  • The Terra-Scope system is an affordable 4-D down-hole seismic monitoring system based on independent, microprocessor-controlled sensor Pods. The Pods are nominally 50 mm in diameter, and about 120 mm long. They are expected to cost approximately $6000 each. An internal 16-bit, extremely low power MCU controls all aspects of instrumentation, eight programmable gain amplifiers, and local signal storage. Each Pod measures 3-D acceleration, tilt, azimuth, temperature, and other parametric variables such as pore water pressure and pH. Each Pod communicates over a standard digital bus (RS-485) through a completely web-based GUI interface, and has a power consumption of less than 400 mW. Three-dimensional acceleration is measured by pure digital force-balance MEMS-based accelerometers. These accelerometers have a dynamic range of more than 115 dB and a frequency response from DC to 1000 Hz with a noise floor of less than $30ng_{rms}/{\surd}Hz$. Accelerations above 0.2 g are measured by a second set of MEMS-based accelerometers, giving a full 160 dB dynamic range. This paper describes the system design and the cooperative shared-time scheduler implemented for this project. Restraints accounted for include multiple data streams, integration of multiple free agents, interaction with the asynchronous world, and hardened time stamping of accelerometer data. The prototype of the device is currently undergoing evaluation. The first array will be installed in the spring of 2006.

Denoise of Astronomical Images with Deep Learning

  • Park, Youngjun;Choi, Yun-Young;Moon, Yong-Jae;Park, Eunsu;Lim, Beomdu;Kim, Taeyoung
    • 천문학회보
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    • 제44권1호
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    • pp.54.2-54.2
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    • 2019
  • Removing noise which occurs inevitably when taking image data has been a big concern. There is a way to raise signal-to-noise ratio and it is regarded as the only way, image stacking. Image stacking is averaging or just adding all pixel values of multiple pictures taken of a specific area. Its performance and reliability are unquestioned, but its weaknesses are also evident. Object with fast proper motion can be vanished, and most of all, it takes too long time. So if we can handle single shot image well and achieve similar performance, we can overcome those weaknesses. Recent developments in deep learning have enabled things that were not possible with former algorithm-based programming. One of the things is generating data with more information from data with less information. As a part of that, we reproduced stacked image from single shot image using a kind of deep learning, conditional generative adversarial network (cGAN). r-band camcol2 south data were used from SDSS Stripe 82 data. From all fields, image data which is stacked with only 22 individual images and, as a pair of stacked image, single pass data which were included in all stacked image were used. All used fields are cut in $128{\times}128$ pixel size, so total number of image is 17930. 14234 pairs of all images were used for training cGAN and 3696 pairs were used for verify the result. As a result, RMS error of pixel values between generated data from the best condition and target data were $7.67{\times}10^{-4}$ compared to original input data, $1.24{\times}10^{-3}$. We also applied to a few test galaxy images and generated images were similar to stacked images qualitatively compared to other de-noising methods. In addition, with photometry, The number count of stacked-cGAN matched sources is larger than that of single pass-stacked one, especially for fainter objects. Also, magnitude completeness became better in fainter objects. With this work, it is possible to observe reliably 1 magnitude fainter object.

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저주파수대의 원자로 출력신호 점검을 위한 대수 카운트레이트 회로 (Log Count Rate Circuits for Checking Electronic Cards in Low Frequency Band Reactor Power Monitoring)

  • 김종호;최규식
    • 한국항행학회논문지
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    • 제24권6호
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    • pp.557-565
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    • 2020
  • 원자로의 출력신호를 감시하는 노외중성자속감시계통의 열화상태를 점검하기 위해서는 원자로에서 방출되는 중성자 펄스를 감지하여 처리하는 전자카드에서 주파수형태로 감지하여 전압으로 변환한 후 대수 형태의 직류전압 값을 얻는 방법을 이용한다. 실제로 원전에서 적용하는 방법으로서는 주파수 카운터와 flip-flop 조합으로 이 과정을 수행하거나, 또는 다이오드펌프와 캐패시터의 조합을 이용하는 방법을 쓰며, 아직도 이 방법이 일반적으로 쓰이고 있다. 이 방법들은 높은 주파수에서는 신뢰성이 높으나 낮은 주파수에는 오차가 크고 측정시간도 오래 걸린다는 문제점이 있다. 따라서 본 연구에서는 고출력대의 고주파수 범위뿐만 아니라 중위출력 범위 주파수대, 그리고 극히 저출력 범위에 속해 있는 취약주파수대인 0.21 Hz~2 kHz 범위의 낮은 주파수대에 이르는 광범위한 주파수를 대수직류전압으로 신뢰성 높게 변환시킬 수 있는 장치를 개발하였다. 개발된 선택회로의 신뢰성을 확인하기 위하여 원전에서 사용되는 실제의 데이터값을 적용하여 테스트하였으며, 그 결과를 분석하여 선택회로의 정당성을 입증하였다.

An improved regularized particle filter for remaining useful life prediction in nuclear plant electric gate valves

  • Xu, Ren-yi;Wang, Hang;Peng, Min-jun;Liu, Yong-kuo
    • Nuclear Engineering and Technology
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    • 제54권6호
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    • pp.2107-2119
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    • 2022
  • Accurate remaining useful life (RUL) prediction for critical components of nuclear power equipment is an important way to realize aging management of nuclear power equipment. The electric gate valve is one of the most safety-critical and widely distributed mechanical equipment in nuclear power installations. However, the electric gate valve's extended service in nuclear installations causes aging and degradation induced by crack propagation and leakages. Hence, it is necessary to develop a robust RUL prediction method to evaluate its operating state. Although the particle filter(PF) algorithm and its variants can deal with this nonlinear problem effectively, they suffer from severe particle degeneracy and depletion, which leads to its sub-optimal performance. In this study, we combined the whale algorithm with regularized particle filtering(RPF) to rationalize the particle distribution before resampling, so as to solve the problem of particle degradation, and for valve RUL prediction. The valve's crack propagation is studied using the RPF approach, which takes the Paris Law as a condition function. The crack growth is observed and updated using the root-mean-square (RMS) signal collected from the acoustic emission sensor. At the same time, the proposed method is compared with other optimization algorithms, such as particle swarm optimization algorithm, and verified by the realistic valve aging experimental data. The conclusion shows that the proposed method can effectively predict and analyze the typical valve degradation patterns.

Depiction of Acute Stroke Using 3-Tesla Clinical Amide Proton Transfer Imaging: Saturation Time Optimization Using an in vivo Rat Stroke Model, and a Preliminary Study in Human

  • Park, Ji Eun;Kim, Ho Sung;Jung, Seung Chai;Keupp, Jochen;Jeong, Ha-Kyu;Kim, Sang Joon
    • Investigative Magnetic Resonance Imaging
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    • 제21권2호
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    • pp.65-70
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    • 2017
  • Purpose: To optimize the saturation time and maximizing the pH-weighted difference between the normal and ischemic brain regions, on 3-tesla amide proton transfer (APT) imaging using an in vivo rat model. Materials and Methods: Three male Wistar rats underwent middle cerebral artery occlusion, and were examined in a 3-tesla magnetic resonance imaging (MRI) scanner. APT imaging acquisition was performed with 3-dimensional turbo spin-echo imaging, using a 32-channel head coil and 2-channel parallel radiofrequency transmission. An off-resonance radiofrequency pulse was applied with a Sinc-Gauss pulse at a $B_{1,rms}$ amplitude of $1.2{\mu}T$ using a 2-channel parallel transmission. Saturation times of 3, 4, or 5 s were tested. The APT effect was quantified using the magnetization-transfer-ratio asymmetry at 3.5 ppm with respect to the water resonance (APT-weighted signal), and compared with the normal and ischemic regions. The result was then applied to an acute stroke patient to evaluate feasibility. Results: Visual detection of ischemic regions was achieved with the 3-, 4-, and 5-s protocols. Among the different saturation times at $1.2{\mu}T$ power, 4 s showed the maximum difference between the ischemic and normal regions (-0.95%, P = 0.029). The APTw signal difference for 3 and 5 s was -0.9% and -0.7%, respectively. The 4-s saturation time protocol also successfully depicted the pH-weighted differences in an acute stroke patient. Conclusion: For 3-tesla turbo spin-echo APT imaging, the maximal pH-weighted difference achieved when using the $1.2{\mu}T$ power, was with the 4 s saturation time. This protocol will be helpful to depict pH-weighted difference in stroke patients in clinical settings.

지역적 GPS 관측망을 이용한 준실시간 전리층 모델링 (NEAR REAL-TIME IONOSPHERIC MODELING USING A RBGIONAL GPS NETWORK)

  • 최병규;박종욱;정종균;박필호
    • Journal of Astronomy and Space Sciences
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    • 제22권3호
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    • pp.283-292
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    • 2005
  • 우주환경과 밀접한 연관성을 갖고 있는 전리층은 매질의 전자기적 특성상 전파 신호에 간섭을 유도하게 되는데, 전리층 통과시 GPS 신호에 인가되는 이러한 오차를 분석함으로써 전리층의 상태를 추정할 수 있으며, 이는 상충 대기의 순환과 전지구적인 변화 및 우주환경의 물리적 특성을 이해하는 중요한 열쇠가 될 수 있다. 전리층 총 전자수를 정밀하게 측정하기 위해 한국천문 연구원에서 운영하는 9개의 GPS 관측망 데이터를 사용하였으며, 코드 데이터 잡음을 줄이기 위해 의사거리 데이터를 반송파 위상 데이터와 선형 조합을 하였다. 또한 한반도 상공의 위 경도를 $0.25^{\circ}{\times}0.25^{\circ}$의 공간 해상도로 분할하여 각 격자점의 총 전자수를 추정하는 격자 방식의 지역적 전리층 모델을 개발하였으며, 전리층의 정 밀도 향상을 위 해 Inverse Distance Weight(IDW) 기법과 칼만 필터를 적용하였다. 본 연구에서 개발된 지역적 전리층 모델과 전세계 전리층 분석센터에서 제시하는 글로벌 모델(GIMs)을 8일 동안 자료 처리 비교한 결과 평균적으로 3 ~ 4 Total Electron Contents Unit(TECU)의 RMS값 차이를 보였다.

디지털 흉부영상에서 자동노출제어 및 감도변화를 이용한 영상품질의 정량적인 평가 (Quantitative Evaluation of Image Quality using Automatic Exposure Control & Sensitivity in the Digital Chest Image)

  • 이진수;고성진;강세식;김정훈;김동현;김창수
    • 한국콘텐츠학회논문지
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    • 제13권8호
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    • pp.275-283
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    • 2013
  • 자동노출제어장치를 사용하는 흉부 후전 검사는 이온전리조의 선택에 따라 환자가 받는 피폭선량이 달라진다. 본 논문에서는 자동노출제어장치의 이온전리조의 선택에 따른 최적의 진단 영상을 획득하면서 피폭선량을 최소화하는 방안에 대해 연구하였다. 실험방법은 흉부 후전 검사와 동일한 조건으로 자동노출제어장치의 이온전리조 선택과 감도변화에 따라 실험하였다. 이온전리조의 상단 2개, 하단 1개의 센서를 on/off 선택에 따라 7가지의 경우로 나누어 각각 5회씩 측정하여 평균값을 구하고 피폭선량을 산출하였다. 영상평가는 변조전달함수, 최대신호 대 잡음비, 평균제곱근, 신호 대 잡음비, 대조도 대 잡음비, 평균대표준편차비를 각각 측정하여 평가를 시행하였다. 실험결과 피폭선량 평가에서 이온전리조 상단 2개를 선택한 경우가 다른 조합에 비해 가장 낮은 선량을 나타내었고, 해상력 평가결과로는 감도 625(High)에서 상단2개를 선택한 영상이 두 번째로 높은 공간주파수 1.343 lp/mm를 나타내었다. 상단 2개를 선택한 영상의 평균제곱근 결과값이 두 번째로 낮게 나타났으며, 신호 대 잡음비, 대조도 대 잡음비, 평균 대 표준편차비는 두 번째로 높은 결과값을 나타내었다. 그리고 감도가 증가함에 따라 피폭선량은 감소하였으며, 영상품질 측면에서도 보다 우수한 영상을 얻을 수 있었다. 따라서 피폭선량을 최소화하고, 최적의 의료 영상을 얻기 위해서는 감도 625(High)에서 이온전리조 상단 2개를 선택하는 것이 임상적으로 유용할 것으로 사료된다.

Atmospheric correction by Spectral Shape Matching Method (SSMM): Accounting for horizontal inhomogeneity of the atmosphere

  • ;안유환
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 춘계학술대회 논문집
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    • pp.341-343
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    • 2006
  • The current spectral shape matching method (SSMM), developed by Ahn and Shanmugam (2004), relies on the assumption that the path radiance resulting from scattered photons due to air molecules and aerosols and possibly direct-reflected light from the air-sea interface is spatially homogeneous over the sub-scene of interest, enabling the retrieval of water-leaving radiances ($L_w$) from the satellite ocean color image data. This assumption remains valid for the clear atmospheric conditions, but when the distribution of aerosol loadings varies dramatically the above postulation of spatial homogeneity will be violated. In this study, we present the second version of SSMM which will take into account the horizontal variations of aerosol loading in the correction of atmospheric effects in SeaWiFS ocean color image data. The new version includes models for the correction of the effects of aerosols and Raleigh particles and a method fur computation of diffuse transmittance ($t_{os}$) as similar to SeaWiFS. We tested this method over the different optical environments and compared its effectiveness with the results of standard atmospheric correction (SAC) algorithm (Gordon and Wang, 1994) and those from in-situ observations. Findings revealed that the SAC algorithm appeared to distort the spectral shape of water-leaving radiance spectra in suspended sediments (SS) and algal bloom dominated-areas and frequently yielded underestimated or often negative values in the lower green and blue part of the electromagnetic spectrum. Retrieval of water-leaving radiances in coastal waters with very high sediments, for instance = > 8g $m^{-3}$, was not possible with the SAC algorithm. As the current SAC algorithm does not include models for the Asian aerosols, the water-leaving radiances over the aerosol-dominated areas could not be retrieved from the image and large errors often resulted from an inappropriate extrapolation of the estimated aerosol radiance from two IR bands to visible spectrum. In contrast to the above results, the new SSMM enabled accurate retrieval of water-leaving radiances in a various range of turbid waters with SS concentrations from 1 to 100 g $m^{-3}$ that closely matched with those from the in-situ observations. Regardless of the spectral band, the RMS error deviation was minimum of 0.003 and maximum of 0.46, in contrast with those of 0.26 and 0.81, respectively, for SAC algorithm. The new SSMM also remove all aerosol effects excluding areas for which the signal-to-noise ratio is much lower than the water signal.

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음압자극에 대한 경락의 근전도 및 경혈의 수분도.탄성도 변화 분석 (Analysis of Moisture, Elasticity and EMG Change on Meridian Acupoints by Cupping(Negative Pressure) Stimulation)

  • 김수병;이나라;주예일;정병조;이용흠
    • 한국정보통신학회논문지
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    • 제14권12호
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    • pp.2747-2754
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    • 2010
  • 부항요법은 다양한 질환에 치료목적으로 널리 사용되어 왔다. 그러나 부항에 대한 경락과 경혈의 상태 변화에 관한 연구가 전무한 상태이다. 본 연구에서는 부항자극에 대한 경락경혈의 상태변화를 분석하여 인체 전체에 미치는 파급효과를 확인하고자하였다. 이에 일정 음압(30kPa)으로 자극 가능한 시스템을 개발하였으며, 좌측 수태음폐경(LU)의 협백(LU4)과 척택(LU5)의 경락선상 중간지점을 자극하였다. 좌/우 수태음폐경의 경혈 및 비경혈에서 수분, 탄성도를 측정하였으며 상완이두박근에서 EMG 신호를 자극 전/후 측정하여 부항 요법이 인체에 미치는 영향을 관찰하였다. 그 결과, 자극 전/후 수분의 변화는 12.49%로 미비하였으며, 탄성도는 64.42%로 높은 변화를 확인하였다. 또한, 경혈이 비경혈 보다 탄성도 변화가 많았으며, 좌측보다 우측에서의 탄성도 변화가 많이 관찰되었다. 좌/우 EMG 신호의 RMS와 Median Power가 유의하게 낮아졌으나 Median frequency에서는 유의성을 확인할 수 없었다. 따라서, 음압자극은 경락경혈의 탄성도 및 근전도 변화를 유도함으로써 인체 전체에 파급적 효과를 줄 수 있음을 확인하였다.