• 제목/요약/키워드: Accuracy or grade

검색결과 93건 처리시간 0.027초

Combined Static and Dynamic Platform Calibration for an Aerial Multi-Camera System

  • Cui, Hong-Xia;Liu, Jia-Qi;Su, Guo-Zhong
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제10권6호
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    • pp.2689-2708
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    • 2016
  • Multi-camera systems which integrate two or more low-cost digital cameras are adopted to reach higher ground coverage and improve the base-height ratio in low altitude remote sensing. To guarantee accurate multi-camera integration, the geometric relationship among cameras must be determined through platform calibration techniques. This paper proposed a combined two-step platform calibration method. In the first step, the static platform calibration was conducted based on the stable relative orientation constraint and convergent conditions among cameras in static environments. In the second step, a dynamic platform self-calibration approach was proposed based on not only tie points but also straight lines in order to correct the small change of the relative relationship among cameras during dynamic flight. Experiments based on the proposed two-step platform calibration method were carried out with terrestrial and aerial images from a multi-camera system combined with four consumer-grade digital cameras onboard an unmanned aerial vehicle. The experimental results have shown that the proposed platform calibration approach is able to compensate the varied relative relationship during flight, acquiring the mosaicing accuracy of virtual images smaller than 0.5pixel. The proposed approach can be extended for calibrating other low-cost multi-camera system without rigorously mechanical structure.

Prediction Model of the Exit Cross Sectional Shape of Workpiece in Round-Oval-Round Pass Rolling

  • Lee, Youngseog;Kim, Byung-Min;Kim, Dong-Hwan
    • Journal of Mechanical Science and Technology
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    • 제16권6호
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    • pp.785-798
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    • 2002
  • A reliable analytic model that predicts the surface profile of the exit cross section of workpiece in round-oval (or oval-round) pass sequence is established. The presented model does not require any plasticity theory but needs the only geometric information on workpiece and roll groove. Formulation is based on the linear interpolation of the radius of curvature of an incoming workpiece and that of roll groove in the roll axis direction when the maximum spread of workpiece is known beforehand. The validity of the analytic model is examined by hot rod rolling experiment with the roll gap, specimen size, design parameter of oval groove and steel grade changed. Results revealed that the cross sectional shapes predicted by the model were in good agreement with those obtained experimentally. We found that the analytic model not only has simplicity and accuracy for practical usage but also saves a large amount of computational time in comparison with finite element method.

자동차용 베벨 기어의 탄성변형과 열처리변형에 관한 연구 (A Study on Distortion Induced by Elasticity and Heat Treatment of Automotive Bevel Gears)

  • 김호윤;김명곤;조종래;배원병;이정환
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2004년도 춘계학술대회 논문집
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    • pp.170-173
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    • 2004
  • Recently many kinds of gears have been produced by forging in order to enhance the mechanical properties of the gears and the productivity of the process. Developments in forging technology are the reason for the increased usage. However, a critical problem of the forged gears is the dimensional change or distortion caused by elastic recovery after forging, and relief of the residual stresses during subsequent heat treatments. Distortion is of great concern to the manufacturers of precision parts, because it influences directly the dimensional accuracy and the grade of carburized bevel gears. In the present paper, distortion due to elastic and heat treatment of bevel gears Is investigated. Distortions of forged gears, machined gears and die aremeasured and compared. Numerical analysis is used to simulate the complete cold forged process and heat treatment process for the machined gears and shows good agreement with the experimental measurements.

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A STUDY ON DISTORTION OF BEVEL GEARS AND DIE INDUCED BY FORGING AND HEAT TREATMENT

  • Cho J.R.;Kang W.J.;Kim M.G.;Lee J.H.;Lee Y.S.;Bae W.B.
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 The 8th Asian Symposium on Precision Forging ASPF
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    • pp.73-79
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    • 2003
  • Recently many kinds of gears have been produced by forging in order to enhance the mechanical properties of the gears and the productivity of the process. Developments in forging technology are the reason for the increased usage. However, a critical problem of the forged gears is the dimensional change or distortion caused by elastic recovery after forging, and relief of the residual stresses during subsequent heat treatments. Distortion is of great concern to the manufacturers of precision parts, because it influences directly the dimensional accuracy and the grade of carburized bevel gears. In the present paper, distortion due to cold forging and heat treatment of bevel gears is investigated. Distortions of forged gears, machined gears and die are measured and compared. Numerical analysis is used to simulate the complete cold forging process and heat treatment process for the machined gears and shows good agreement with the experimental measurements.

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동적방식 광섬유자이로 콤파스의 제작 (Development of Dynamic Fiber Optic Gyrocompass)

  • 이석정;최우진;배정철;김성진;이상식;권용수;홍창희
    • 한국항해학회지
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    • 제21권3호
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    • pp.67-74
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    • 1997
  • This paper described the method and the result of making a dynamic fiber optic gyrocompass measuring the heading angles of ships by processing the output signal from a constant rotating fiber optic sensor and also showed the measurement to test the performance of our system. Considerig an economical view we designed and ordered a cheap medium grade fiber densors increased not fiber length but the diameter of a fiber sensing loop. The scale factor and noise was 267mV/deg/s and 2 deg/hr/$\sqrt{Hz}(1{\sigma})$, respectively. We made the dynamic fiber optic gyrocompass by this sensor. We measured the heading angles in an arbitrary direction to evaluate the accuracy of our system and the root mean square error was $0.4^\circ$. Moreover, we measured the angles ineach direction of $45^\circ$. successive rotation to know whether this system has distoritions in a specific direction or not and the root mean square error in this case was $0.5^\circ$.

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임피던스법을 이용한 공동주택 바닥 충격음 차음성능 예측방법에 관한 실험 적 연구(II) - 경량 표준충격원을 중심으로 - (An Experimental Study or the Prediction Method of Floor Impact Sound Insulation Performance in Apartment House Using Impedance Method(II))

  • 김재수;장길수;김선우
    • 소음진동
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    • 제2권1호
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    • pp.21-31
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    • 1992
  • In the previous paper, we report a practical floor impact sound level prediction method for a heavyweight impact source(Tire), soft impact source such as children jumping and running. According to these results, the calculated value and the measured value correspond comparatively well, regardless of differences in the floor structures. And the floor impact sound for a heavyweight impact source, soft source was strongly influenced by structural factors such as floor slab stiffness and peripheral support conditions. But the floor impact sound for a light impact source (Tapping machine), hard impact source was influenced by resilient layers, composed of multi-layer in floor structures. Thus, In this paper, 4 actual floor structures, all with differing resilient layers, were calculated using impedance method. When these calculation values were compared with the measured values, approximately all the values fell with one rank of the sound insulation grade, reference curve(L curve) by the JIS standard. So, a sample of measured values and calculated values from floor structures is presented to show the accuracy and appropriateness of the impedance method in domestic.

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Flexural/shear strength of RC beams with longitudinal FRP bars An analytical approach

  • Kosmidou, Parthena-Maria K.;Chalioris, Constantin E.;Karayannis, Chris G.
    • Computers and Concrete
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    • 제22권6호
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    • pp.573-592
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    • 2018
  • An analytical methodology for the calculation of the flexural and the shear capacity of concrete members with Fibre-Reinforced-Polymer (FRP) bars as tensional reinforcement is proposed. The flexural analysis is initially based on the design provisions of ACI 440.1R-15 which have properly been modified to develop general charts that simplify computations and provide hand calculations. The specially developed charts include non-dimensional variables and can easily be applied in sections with various geometrical properties, concrete grade and FRP properties. The proposed shear model combines three theoretical considerations to facilitate calculations. A unified flexural/shear approach is developed in flow chart which can be used to estimate the ultimate strength and the expected failure mode of a concrete beam reinforced with longitudinal FRP bars, with or without transverse reinforcement. The proposed methodology is verified using existing experimental data of 138 beams from the literature, and it predicts the load-bearing capacity and the failure mode with satisfactory accuracy.

실내 미세먼지 측정을 위한 저가형 PM 센서의 실험실/현장 평가 및 보정 방법 (Laboratory/Field evaluation and calibration method of low-cost PM sensor for indoor PM2.5, PM10 measurement)

  • 김도헌;신동민;황정호
    • 한국입자에어로졸학회지
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    • 제18권4호
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    • pp.109-127
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    • 2022
  • Recently, low-cost particulate matter (PM) sensors have been widely used in monitoring mass concentration. Maintaining the accuracy of the sensors is important and requires rigorous performance evaluation and calibration. In this study, two commercial low-cost PM sensors(LCS), Plantower PMS3003 and Plantower PMS7003, were evaluated in the laboratory and field with a reference-grade PM monitor (GRIMM 11-D). Laboratory evaluation was conducted with single/mixed particles of PSL (Poly Styrene Latex) in an acrylic chamber at 20℃ and relative humidity of 20%. Field evaluation was conducted inside a building of Yonsei University (Shinchon) from February 12 to March 31, 2022. In both evaluations, LCS measured values became different from reference measured values when the relative humidity was high or the outdoor air PM10/PM2.5 ratio was high. Based on the field evaluation, the LCS measured values were corrected through four different regression analysis models. As a result, the multivariate polynomial regression analysis model showed highest matching with the reference PM monitor (PM2.5 >0.9, PM10 >0.85). In this model, the PM10/PM2.5 ratio and relative humidity were chosen as independent variables.

체중부하 자세에 따른 요통환자와 정상인의 양측골반높이에 대한 연구 (Comparison of the Pelvic Height Difference in Subjects with Lower Back Pain and in Normal Subjects in Different Postures)

  • 이주희;이완희
    • 대한물리치료과학회지
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    • 제11권3호
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    • pp.28-37
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    • 2004
  • Background: Lumbar joint dysfunction is reported to be the main cause of lower back pain (LBP). The purpose of this study was to evaluate the effect of joint dysfunction on the postural balance of the lower hack and pelvis in different normal activities such as walking or stair management. Also it was studied whether the status of LBP (intensity and duration of LBP, length of treatment) contributes to die pelvic height difference (PHD) in various postures. Subjects: 28 patients with LBP and 32 normal adult volunteers, 60 years of age or younger, who came to the Community Health Center and orthopedic clinics in Incheon, South Korea. Methods: In order to determine the accuracy of the manual angulometer method in measuring the PHD, it was compared to the pelvic x-ray method in selected subjects. In the manual angulometer method, the arm of the angulometer was placed on the top of both iliac crests. The PHD was measured in static upright stance, then one-legged stance, on the affected leg or unaffected leg each time. Information regarding the disease status was obtained through interviews. Visual assessment scale was used to grade the intensity of LBP. Data analysis was performed using SPSS 10.0/PC program. Homogeneity between the two groups was tested by 2-test and t-test. To compare the PHD of the subgroups, we used t-test, F-test and two-way ANOVA. Relationships among dependent variables were analyzed by Pearson correlation analysis. Conclusion: In patients with LBP, lumbar joint dysfunction causes lumbar and pelvic postural asymmetry during normal activities.

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벼 생엽의 질소함량 현장분석을 위한 NIRS 검량식 개발 및 검증 (NIRS Calibration Equation Development and Validation for Total Nitrogen Contents Field Analysis in Fresh Rice Leaves)

  • 송영은;이덕렬;조승현;이기권;정종성;권영립;조규채
    • 한국작물학회지
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    • 제58권3호
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    • pp.301-307
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    • 2013
  • 연구용 NIR 장비에서 수집된 벼 생엽의 질소 함량 검량식 및 데이터베이스를 현장용 NIR 장비에 검량식을 이설, 검증함으로서 현장 적용 가능성을 평가하기 위해 수행한 결과는 다음과 같다. 1. 2003년부터 2009년까지 스펙트럼을 수집한 시료 중 선발 된 A 데이터 세트(개체수 454점)의 총 질소범위는 2.041%~4.933%, 2012년 수집된 B 데이터 세트(258점)는 2.180%~3.690%이며 각각의 전체 평균은 3.497%, 2.712%였다. 2. A, B 데이터 세트에서 유도된 검량식 결과 결정계수($R^2$)는 각각 0.845, 0.777,표준오차(SEC)는 0.196, 0.126, SECV는 0.238, 0.150이었다. 3. 연구용 NIR 장비 400 nm~2500 nm 파장에서 얻어진 데이터베이스를 현장용 NIR 장비 1200 nm~2400 nm 파장에 맞게 잘라 이설한 후 2012년 데이터베이스에 업데이트 확장한 후 작성된 검량식 결과 결정계수($R^2$)는 0.880, 표준오차(SEC)는 0.191이었다. 4. 연구용 NIR 장비에 구축된 데이터베이스를 현장용 NIR 장비에 맞춰 데이터베이스를 확장 업데이트하고 검량식을 이설한 결과 연구용 장비와의 표준오차는 0.005%로 거의 동일한 수준의 결과를 얻었다.