• 제목/요약/키워드: Pulse Method

검색결과 3,147건 처리시간 0.523초

전자식 비례 압력제어밸브 내 오일 오염 입자 제거 제어 알고리즘 검증 (Verification of Control Algorithm for Removing Oil Contaminant Factor from Proportional Pressure Control Valve)

  • 천수환;박진감;장경제;심성보;장민호;이진웅
    • 드라이브 ㆍ 컨트롤
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    • 제18권4호
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    • pp.1-8
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    • 2021
  • An electro proportional pressure control valve is mainly used to control the clutch of an agricultural tractor's automatic transmission. During transmission, the operating, hydraulic oil is mix with many kinds of contaminants. The contaminants can be trapped between the valve body and spool of the proportional pressure control valve leading to abnormal operating conditions and finally critical damage to the transmission hydraulic system. The present study aimed to verify the valve control algorithm as a basic study of developing control logic that removes contaminants between the spool and the body of the proportional pressure control valve. To develop the algorithm, MATLAB/SIMULINK was used. PWM method was used to control the applied solenoid coil current. The effectiveness of the algorithm was verified by comparing the actual pressure of the normal valve with the actual pressure of the abnormal valve. Based on the present study findings, when the algorithm was applied, the response of the valve pressure according to the current became stable and oil contaminated particles were removed. In the future study, the control algorithm will be optimized for the stability of the proportional pressure reducing valve, and it will be verified in consideration with the driving of the clutch.

HYDRUS를 이용한 작물재배용 암면배지에서의 수분 이동 시뮬레이션 (Simulation of Water Movement in Rockwool Slab as Soil-less Cultivation Using HYDRUS)

  • 김동현;김종순;권순홍;박종민;최원식
    • 한국산업융합학회 논문집
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    • 제26권1호
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    • pp.153-162
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    • 2023
  • It is important to determine water movement at the growing substrate used in soil-less cultivation for better management of water supply. Numerical simulation is a fast and versatile approach to evaluate highly accurate water distribution. The objective of this study is to simulate the water movement in rockwool as a soil-less medium using HYDRUS-2D. HYDRUS-2D was used to simulate the spatial and temporal water movement in two types of rockwool slabs (Floriculture (FL), high density; Expert (EP), low density). The simulation was performed at two pulse conditions: 10 min ON and 50 min OFF (case A), 20 min ON and 40 min OFF (case B). The total irrigation amounts were the same at both cases. In case A, during the irrigation ON, the water contents at FL increased 1.93-fold faster than the values at EP. Whereas, during the irrigation OFF, the decreasing rate of water contents at FL was almost the same as one at EP. At case B, these values were not changed much from case A. However, the duration of optimum water content (50% - 80%) was 15.0 min and 23.5 min at case A and case B, respectively. Thus, FL and 20 min ON and 40 min OFF (case B) could supply water to rockwool much faster and longer than EP. Once qualitatively validated, this simulation of water movement in rockwool could be used to design an effective optimum irrigation method for vegetables.

전기근육자극 시 주파수 차이가 대퇴 근육 기능에 미치는 영향 (Effects of Frequency Type on Muscle Function of the Thigh during Electrical Muscle Stimulation)

  • Woen-Sik Chae;Jae-Hu Jung
    • 한국운동역학회지
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    • 제33권1호
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    • pp.17-24
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    • 2023
  • Objective: The purpose of this study was to investigate the effects of different frequency on of knee extensors muscle function during electrical muscle stimulation (EMS). Method: In this research, 40 subjects who have no musculoskeletal disorder, and less than a year workout experience were recruited in order to analyze effects of EMS with different stimulus frequency. Forty subjects were randomly divided into four groups of ten subjects in each group. A EMS training program with different frequencies (without EMS [WE], EMS with frequency 30 Hz [E30], EMS with frequency 60 Hz [E60], EMS with frequency 90 Hz [E90]) was assigned to each group. Throughout eight weeks of training, test subjects were simultaneously carried out knee extension exercises such as squat, leg extension, and leg-press while using EMS with different frequency (20 min, pulse width 250 ㎲, on-off ratio 1:1). Isokinetic knee extension strength, muscle activity of the rectus femoris (RF), the vastus medialis (VM), and the vastus lateralis (VL), and the median frequency of the RF, the VM, and the VL were collected and compared between pre and post training in order to find effects of applying EMS with different frequencies. For each dependent variable, a one-way ANOVA was to determine whether there were significant differences among four different conditions (p<.05). When a significant difference was found, post hoc analyses were performed using the contrast procedure. Results: When compared to WE and E90, E30 causes significant increase in isokinetic knee extension strength. No significant differences were found in EMG values across different EMS conditions. However, the median frequency of the VM in E30 was significantly increased than the corresponding value for WE. Conclusion: The results of this study showed that EMS training with 30 Hz frequency had positive effect on knee extensor. Based of the findings of the present study, EMS training with lower frequency may help the performer to focus on developing strength in knee extensor muscles.

Feasibility study of CdZnTe and CdZnTeSe based high energy X-ray detector using linear accelerator

  • Beomjun Park;Juyoung Ko;Jangwon Byun;Byungdo Park ;Man-Jong Lee ;Jeongho Kim
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.2797-2801
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    • 2023
  • CdZnTeSe (CZTS) has attracted attention for applications in X- and gamma-ray detectors owing to its improved properties compared to those of CdZnTe (CZT). In this study, we grew and processed single crystals of CZT and CZTS using the Bridgeman method to confirm the feasibility of using a dosimeter for high-energy X-rays in radiotherapy. We evaluated their linearity and precision using the coefficient of determination (R2) and relative standard deviation (RSD). CZTS showed sufficient RSD values lower than 1.5% of the standard for X-ray dosimetry, whereas CZT's RSD values increased dramatically under some conditions. CZTS exhibited an R2 value of 0.9968 at 500 V/cm, whereas CZT has an R2 value of 0.9373 under the same conditions. The X-ray response of CZTS maintains its pulse shape at various dose rates, and its properties are improved by adding selenium to the CdTe matrix to lower the defect density and sub-grain boundaries. Thus, we validated that CZTS shows a better response than CZT to high-energy X-rays used for radiotherapy. Further, the applicability of an onboard imager, a high-energy X-ray (>6 MV) image, is presented. The proposed methodology and results can guide future advances in X-ray dose detection.

Ultrasonic guided waves-based fatigue crack detection in a steel I-beam: an experimental study

  • Jiaqi Tu;Xian Xu;Chung Bang Yun;Yuanfeng Duan
    • Smart Structures and Systems
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    • 제31권1호
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    • pp.13-27
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    • 2023
  • Fatigue crack is a fatal problem for steel structures. Early detection and maintenance can help extend the service life and prevent hazards. This paper presents the ultrasonic guided waves-based (UGWs-based) fatigue crack detection of a steel I-beam. The semi-analytical finite element model has been built to obtain the wave propagation characteristics. Damage indices in both time and frequency domains were analyzed by considering the characteristic variations of UGWs including the amplitude, phase angle, and wave packet energy. The pulse-echo and pitch-catch methods were combined in the detection scheme. Lab-scale experiments were conducted on welded steel I-beams to verify the proposed method. Results show that the damage indices based on the characteristic variations in the time domain can identify and localize the fatigue crack before it enters the rapid growth stage. The damage severity can be reasonably evaluated by analyzing the time-domain damage indices. Two nonlinear damage indices in the frequency domain give earlier warnings of the fatigue crack than the time-domain damage indices do. The identification results based on the above two nonlinear indices are found to be less consistent under various excitation frequencies. More robust nonlinear techniques needed to be searched and tested for early crack detection in steel I-beams in further study.

요추부 추간판 탈출증 환자에 대한 고전압 미세전류치료의 누적치료효과 (Cumulative Therapeutic Effect of High-Voltage Microcurrent Therapy in Patients with Herniated Lumbar Disc)

  • 윤왕현;박진영;김도영;박중현
    • Clinical Pain
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    • 제18권2호
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    • pp.65-69
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    • 2019
  • Objective: This study aims to evaluate the efficacy of high-voltage microcurrent therapy in patients with herniated lumbar disc (HLD) presenting radicular or back pain. Method: This is a retrospective study with 33 patients who are complaining pain with HLD findings on magnetic resonance image. Microcurrent therapy was applied to leg or paralumbar area. Treatment was conducted for seven minutes with 250~1000 uA intensity as high as the patients could tolerate via stimulating probe with roller type and the frequency was 60 Hz with a sine wave pulse. The visual analogue scale (VAS) was measured just before and after the treatment. Results: The degree of pain reduction (△VAS) was 1.6 points after treatment on average. The △VAS according to the diagnosis, stenosis, dermatome area, medication, pain site and caudal epidural block was not statistically significant. However, the △VAS according to the number of treatments (< 3, ≥ 3 times) showed a statistically significant difference (p=0.04). Conclusion: High-voltage microcurrent therapy may help reduce lumbar or lumbosacral radiating pain after the procedure. The effect was better when microcurrent was applied three times or more. This result suggests that the microcurrent would have cumulative effect on reducing radicular or back pain in patients with HLD.

Design of power and phase feedback control system for ion cyclotron resonance heating in the Experimental Advanced Superconducting Tokamak

  • L.N. Liu;W.M. Zheng;X.J. Zhang;H. Yang;S. Yuan;Y.Z. Mao;W. Zhang;G.H. Zhu;L. Wang;C.M. Qin;Y.P. Zhao;Y. Cheng;K. Zhang
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.216-221
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    • 2024
  • Ion cyclotron range of frequency (ICRF) heating system is an important auxiliary heating method in the experimental Advanced Superconducting Tokamak (EAST). In EAST, several megawatts of power are transmitted with coaxial transmission lines and coupled to the plasma. For the long pulse and high power operation of the ICRF waves heating system, it is very important to effectively control the power and initial phase of the ICRF signals. In this paper, a power and phase feedback control system is described based on field programmable gate array (FPGA) devices, which can realize complicated algorithms with the advantages of fast running and high reliability. The transmitted power and antenna phase are measured by a power and phase detector and digitized. The power and phase feedback control algorithms is designed to achieve the target power and antenna phase. The power feedback control system was tested on a dummy load and during plasma experiments. Test results confirm that the feedback control system can precisely control ICRF power and antenna phase and is robust during plasma variations.

양극산화에 의한 티타늄 산화막의 표면 특성 및 생체 활성에 관한 연구 (SURFACE CHARACTERISTICS AND BIOACTIVITY OF ANODICALLY OXIDIZED TITANIUM SURFACES)

  • 이상한;조인호
    • 대한치과보철학회지
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    • 제45권1호
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    • pp.85-97
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    • 2007
  • Statement of problem: Recently, anodic oxidation of cp-titanium is a popular method for treatment of titanium implant surfaces. It is a relatively easy process, and the thickness, structure, composition, and the microstructure of the oxide layer can be variably modified. Moreover the biological properties of the oxide layer can be controlled. Purpose: In this study, the roughness, microstructure, crystal structure of the variously treated groups (current, voltage, frequency, electrolyte, thermal treatment) were evaluated. And the specimens were soaked in simulated body fluid (SBF) to evaluate the effects of the surface characteristics and the oxide layers on the bioactivity of the specimens which were directly related to bone formation and integration. Materials and methods: Surface treatments consisted of either anodization or anodization followed thermal treatment. Specimens were divided into seven groups, depending on their anodizing treatment conditions: constant current mode (350V for group 2), constant voltage mode (155V for group 3), 60 Hz pulse series (230V for group 4, 300V for group 5), and 1000 Hz pulse series (400V for group 6, 460V for group 7). Non-treated native surfaces were used as controls (group 1). In addition, for the purpose of evaluating the effects of thermal treatment, each group was heat treated by elevating the temperature by $5^{\circ}C$ per minute until $600^{\circ}C$ for 1 hour, and then bench cured. Using scanning electron microscope (SEM), porous oxide layers were observed on treated surfaces. The crystal structures and phases of titania were identified by thin-film x-ray diffractmeter (TF-XRD). Atomic force microscope (AFM) was used for roughness measurement (Sa, Sq). To evaluate bioactivity of modified titanium surfaces, each group was soaked in SBF for 168 hours (1 week), and then changed surface characteristics were analyzed by SEM and TF-XRD. Results: On basis of our findings, we concluded the following results. 1. Most groups showed morphologically porous structures. Except group 2, all groups showed fine to coarse convex structures, and the groups with superior quantity of oxide products showed superior morphology. 2. As a result of combined anodization and thermal treatment, there were no effects on composition of crystalline structure. But, heat treatment influenced the quantity of formation of the oxide products (rutile / anatase). 3. Roughness decreased in the order of groups 7,5,2,3,6,4,1 and there was statistical difference between group 7 and the others (p<0.05), but group 7 did not show any bioactivity within a week. 4. In groups that implanted ions (Ca/P) on the oxide layer through current and voltage control, showed superior morphology, and oxide products, but did not express any bioactivity within a week. 5. In group 3, the oxide layer was uniformly organized with rutile, with almost no titanium peak. And there were abnormally more [101] orientations of rutile crystalline structure, and bonelike apatite formation could be seen around these crystalline structures. Conclusion: As a result of control of various factors in anodization (current, voltage, frequency, electrolytes, thermal treatment), the surface morphology, micro-porosity, the 2nd phase formation, crystalline structure, thickness of the oxide layer could be modified. And even more, the bioactivity of the specimens in vitro could be induced. Thus anodic oxidation can be considered as an excellent surface treatment method that will able to not only control the physical properties but enhance the biological characteristics of the oxide layer. Furthermore, it is recommended in near future animal research to prove these results.

합성구경 기반의 교차어레이를 이용한 실시간 3차원 초음파 영상화 기법 : I. 구형파 송신 방법 (Real-Time 3D Ultrasound Imaging Method Using a Cross Array Based on Synthetic Aperture Focusing: I. Spherical Wave Transmission Approach)

  • 김강식;송태경
    • 대한의용생체공학회:의공학회지
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    • 제25권5호
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    • pp.391-401
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    • 2004
  • 이차원 위상 어레이 변환자를 이용하는 실시간 3차원 영상 시스템은 많은 수의 채널 수를 가지기 때문에 고 비용의 매우 복잡한 빔집속부를 사용하여야 한다. 또한 각 주사선에 대해 초음파를 매번 송수신해야 하므로 볼륨 레이트 또한 낮게 된다. 이를 해결하기 위해 기존에 제안된 교차어레이를 이용한 3차원 영상화 기법은 실시간 3차원 영상을 위한 고속 주사가 가능하고 측방향으로는 동적집속이 가능하지만, 고도방향으로는 송신집속깊이를 제외하고는 고도방향의 해상도가 저하된다는 문제점이 있다. 이러한 문제점을 극복하기 위해 본 논문에서는 합성구경 기반의 교차 어레이를 사용한 3차원 영상화 기법을 제안한다. 제안한 방법에서는 고도방향으로 놓인 일차원 송신어레이의 각 변환소자를 한번에 하나씩 순차적으로 송신하고, 반사된 신호들을 측방향으로 놓인 일차원 수신어레이의 모든 변환소자를 이용하여 수신하게 된다. 수신시 측방향으로는 동적집속, 고도방향으로는 합성구경 기법을 이용하여 빔을 집속함으로써 모든 영상 점에 대해 측방향과 고도방향 모두 동적집속된 효과를 얻을 수 있다. 또한, 제안한 방법은 고도방향으로 합성구경 기법을 이용함으로써 송신어레이 변화소자 개수만큼의 초음파 송수신 과정을 통해 관심 영역의 입제영상을 임의의 요구되는 단면영상 수를 이용하여 구성할 수 있다. 제안한 방법을 통해 기존의 고정집속 기반의 교차어레이를 이용한 3차원 영상화 기법과 비교하여 측방향으로는 동일하고 고도방향으로는 훨씬 우수한 해상도의 영상을 획득할 수 있음을 컴퓨터 모사실험을 통해 점증하였다. 또한 동반논문에서는 제안한 방법에 비해 송신전력과 고도방향 해상도를 더욱 향상시킬 수 있는 선형파면 기반의 합성구경 기법을 제안한다.

최대강도투사를 이용한 관찰 위치와 거리에 최적화 된 입체 자기공명 뇌 혈관영상 재구성 (Reconstruction of Stereo MR Angiography Optimized to View Position and Distance using MIP)

  • 신석현;황도식
    • Investigative Magnetic Resonance Imaging
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    • 제16권1호
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    • pp.67-75
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    • 2012
  • 목적 : 뇌에 분포하는 동맥혈관을 관찰할 때 흔히 자기공명 뇌혈관 데이터(Magnetic Resonance Angiography, MRA)를 이용한다. 하지만 뇌혈관 데이터의 경우 관찰하고자 하는 부위의 혈관을 직접적으로 관찰하기 어렵다. 이러한 3차원 데이터를 2차원 디스플레이 장치에 나타내기 위해 최대강도투사(Maximum Intensity Projection, MIP) 영상이 흔히 이용된다. 데이터의 투사방향에 위치한 복셀들 중 최대값을 가지는 복셀을 투사하여 최대강도투사 영상을 얻게 된다. 혈관의 경우 큰 복셀값을 가지기 때문에 영상에서 밝게 나타난다. 하지만 투사방향에 중첩되어 있는 일부 혈관들이 투사하는 과정에서 최대값을 가지는 혈관들에 가려져 나타나지 않게 되기 때문에 깊이 정보를 잃게 된다. 또한 정해진 위치에서의 투사영상 밖에 얻을 수 없다는 단점이 있다. 본 논문에서는 기존의 최대강도투사 영상이 가지는 이러한 단점들을 개선하여 뇌혈관의 분포를 3차원 공간상에서 최적화 된 입체영상으로 보는 새로운 방법을 제안하였다. 대상 및 방법 : 우리는 4개의 채널 코일과 3.0T 자기공명영상장치 (Siemens Tim Trio MRI scanner)를 이용하여 피험자의 머리를 고정시키고 3차원 위상대조 (Phase-Contrast, PC) 시퀀스를 적용하여 3차원 뇌혈관 데이터를 얻었다. 얻어진뇌혈관 데이터의 중심점을 기준으로 3차원 공간 회전 알고리즘을 적용하여 회전된 새로운 데이터를 얻은 다음 이 데이터를 기준 수평면상에 투사하여 뇌혈관에 대한 2차원 최대강도투사 영상을 구한다. 이 때 입체영상 구현을 위해 두 눈과 데이터의 중심이 이루는 수렴각에 맞게 뇌혈관 데이터를 각각 공간 회전시킨 후 투사하여 각각의 눈에 적합한 영상들을 구하고 이를 적청안경방식 (anaglyph)을 이용하여 관찰함으로써 최적의 입체감을 가지는 최대강도투사 영상을 얻는다. 결과 : 결과 영상을 살펴보면 우선 기존의 방법들에서는 불가능했던 뇌혈관 데이터의 다양한 위치에서의 최대강도투사 영상이 가능해졌다는 것을 알 수 있다. 또한 관찰자와 데이터 사이의 거리와 두 눈 사이의 거리를 고려하여 보다 사실적인 입체감을 가지는 입체 최대강도투사 영상을 얻었다. 결론적으로 관찰자가 바라보는 방향과 관찰자와 데이터 사이의 거리에 따른 최적의 입체영상을 얻을 수 있었다. 결론 : 제안하는 방법은 단일 최대강도투사 영상을 관찰자의 위치를 고려하여 입체영상으로 변환시킴으로써 최적의 입체감을 가지는 입체 투사 영상을 구하였다. 그리고 구면좌표계 상에서 뇌혈관 데이터의 다양한 투사방향에서의 최대강도투사 영상을 나타낼 수 있었다. 추후 알고리즘 최적화와 병렬연산 프로세스가 적용된다면 진단과 수술 계획에 필요한 뇌혈관의 입체 정보들을 실시간으로 제공해 줄 수 있을 것으로 예상된다.