• Title/Summary/Keyword: Measurement Uncertainty Analysis

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A Robust Fault Location Algorithm for Single Line-to-ground Fault in Double-circuit Transmission Systems

  • Zhang, Wen-Hao;Rosadi, Umar;Choi, Myeon-Song;Lee, Seung-Jae;Lim, Il-Hyung
    • Journal of Electrical Engineering and Technology
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    • v.6 no.1
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    • pp.1-7
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    • 2011
  • This paper proposes an enhanced noise robust algorithm for fault location on double-circuit transmission line for the case of single line-to-ground (SLG) fault, which uses distributed parameter line model that also considers the mutual coupling effect. The proposed algorithm requires the voltages and currents from single-terminal data only and does not require adjacent circuit current data. The fault distance can be simply determined by solving a second-order polynomial equation, which is achieved directly through the analysis of the circuit. The algorithm, which employs the faulted phase network and zero-sequence network with source impedance involved, effectively eliminates the effect of load flow and fault resistance on the accuracy of fault location. The proposed algorithm is tested using MATLAB/Simulink under different fault locations and shows high accuracy. The uncertainty of source impedance and the measurement errors are also included in the simulation and shows that the algorithm has high robustness.

A Germanium Detector Structure PENEL OPE Characteristic Analysis by Computer Simulation (HPGe 검출기의 PENELOPE 전산모사에 의한 특성 분석)

  • Jang, Eunsung;Jang, BoSeok
    • Journal of the Korean Society of Radiology
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    • v.9 no.2
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    • pp.73-77
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    • 2015
  • In order to observe the detailed structure of the detector, it was CT scanned to reproduce the detailed structure of the crystal shapes and traverse layer using the Monte Carlo calculation applying the detector model. The uncertainty of measurement was lowered by adjusting the detector core by the edge effect at a higher energy (400 keV or higher) through the offset of peak efficiency of the gamma ray at low energy. It was confirmed that there was the appropriate matching with spatial dependency using the PENELOPE calculation. That was achieved by adjusting the parameters describing the crystal core and rounding of edge and crystal core.

Unambiguous Identification of Fugitive Pollutants and Determination of Annual Emission Flux as Diurnal Monitoring Mode

  • Chang, Shih-Yi;Tso, Tai-Ly;Lo, Jiunn-Gung;Huang, Jer-Luen;Lin, Cheng Ming
    • Analytical Science and Technology
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    • v.8 no.4
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    • pp.731-738
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    • 1995
  • Toxic air pollutants are investigated in a petrochemical industrial park in Taiwan by using a movable open path FTIR. The results show the qualitative and quantitative analysis of emission gases from plants, and also provide the emission rate of different compounds. More than twenty compounds under usual operation are found from this industrial park. The concentration variation with time can be correlated exactly with wind direction. It means that by changing the measuring points, the source of emission can be unambiguously identified. An EPA proved PAL model is applied to estimate the emission rate of either a point or an area source. Local atmospheric stability is determined by releasing the $SF_6$ tracer. The origins of errors come mainly from the uncertainty of source's configuration and the variation of meteorological condition. Through the continuous measurement (half an hour base in this study) of OP-FTIR sensor, the maximum value of emission rate and the annual amount of emission can be derived. The emission rate of the measured toxic gases are derived by the model technique and the results show that the emission amount are in the order of ten to hundred tons per year.

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Influence of Adaptor on the Calibration of Inductance Standards

  • Kassim, Dewi Mohd;Kim, Dan Bee;Kim, Wan-Seop
    • Journal of Electrical Engineering and Technology
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    • v.13 no.2
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    • pp.911-917
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    • 2018
  • Influence of the adaptors on the calibration of $100{\mu}H$ inductance standard was studied as a function of torque, applied when tightening the standard inductor terminal with the adaptor. Two different homemade adaptors of BPO gold-plated brass (BPO-Au) and banana-copper (BN-Cu) were made for the connection between the LCR meter and the inductance standard. The measured inductance (L) of the standard inductor and the contact resistance ($R_C$) between the adaptor and the standard inductor terminal showed exponential decreases against the torque increase from $25cN{\cdot}m$ to $150cN{\cdot}m$. The measured L and the calculated equivalence series resistance ($R_S$) were dependent on the adaptor type as well as on the $R_C$. The results of the adaptor analysis imply that the BPO-Au adaptor with the lower $R_C$ is more suitable for the inductance calibration. The calculated inductance of $99.956{\mu}H$ corrected by subtraction of the adaptor inductance and the contact resistance contributions from the measured value using the BPO-Au adaptor agreed well with the certificate ($99.948{\mu}H$) of the PTB within the measurement uncertainty of $140{\mu}H/H$.

Risk Index of Debris Flow Damage for Hydro- and Geographic Characteristics of Debris Flow with Bayesian Method

  • Lee, JunSeon;Yang, WooJun;You, KwangHo;Kim, MunMo;Lee, Seung Oh
    • Proceedings of the Korea Contents Association Conference
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    • 2016.05a
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    • pp.241-242
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    • 2016
  • Recent abnormal climate change induces localized heavy rainfall and extreme disasters such as debris flow near urban area. Thus many researches have been conducted to estimate and prevent, especially in focus of physical behavior of debris flow. Even though it is hardly to consider overall related parameters to estimate the extent and degree of directly or indirectly damages due to debris flow. Those analytic restraint would be caused by the diversity and complexity of regional topographic and hydrodynamic characteristics of debris flow inside. We have utilized the Bayesian method to compensate the uncertainty due to the complex characteristics of it after analyzing the numerical results from FLO-2D and field measurement data. Revised values by field measurements will enhance the numerical results and the missing parameters during numerical simulation will be supplemented with this methodology. As a final outcome in this study, the risk index of debris flow damage will be suggested to provide quantitative estimation in terms of hazard protection including the impact on buildings, especially in inner and outer of urban area.

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Analysis of COMS In-Orbit Test for Moment of Inertia Measurement (천리안위성 관성모멘트의 궤도상 측정 시험 분석)

  • Park, Keun-Joo;Park, Young-Woong;Choi, Hong-Taek
    • Aerospace Engineering and Technology
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    • v.10 no.2
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    • pp.121-127
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    • 2011
  • In the attitude and orbit control subsystem design, the moment of inertia of the satellite is the major contributor to be considered. Satellites equipped with large solar arrays need to measure the moment of inertia accurately to avoid the interference of the thruster actuation period with its flexible mode. In this paper, the in-orbit tests of COMS to measure the moment of inertia are described. Then, the differences between the measured through in-orbit test and the predicted are compared. Finally, it is verified that the differences are below uncertainty bounds considered in the critical design of COMS attitude and orbit control subsystem.

A Study on the Reliability Comparison of Median Frequency and Spike Parameter and the Improved Spike Detection Algorithm for the Muscle Fatigue Measurement (근피로도 측정을 위한 중간 주파수와 Spike 파라미터의 신뢰도 비교 및 향상된 Spike 검출 알고리듬에 관한 연구)

  • 이성주;홍기룡;이태우;이상훈;김성환
    • The Transactions of the Korean Institute of Electrical Engineers D
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    • v.53 no.5
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    • pp.380-388
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    • 2004
  • This study proposed an improved spike detection algorithm which automatically detects suitable spike threshold on the amplitude of surface electromyography(SEMG) signal during isometric contraction. The EMG data from the low back muscles was obtained in six channels and the proposed signal processing algorithm is compared with the median frequency and Gabriel's spike parameter. As a result, the reliability of spike parameter was inferior to the median frequency. This fact indicates that a spike parameter is inadequate for analysis of multi-channel EMG signal. Because of uncertainty of fixed spike threshold, the improved spike detection algorithm was proposed. It automatically detects suitable spike threshold depending on the amplitude of the EMG signal, and the proposed algorithm was able to detect optimal threshold based on mCFAR(modified Constant False Alarm Rate) in the every EMG channel. In conclusion, from the reliability points of view, neither median frequency nor existing spike detection algorithm was superior to the proposed method.

Improving Covariance Based Adaptive Estimation for GPS/INS Integration

  • Ding, Weidong;Wang, Jinling;Rizos, Chris
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • v.1
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    • pp.259-264
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    • 2006
  • It is well known that the uncertainty of the covariance parameters of the process noise (Q) and the observation errors (R) has a significant impact on Kalman filtering performance. Q and R influence the weight that the filter applies between the existing process information and the latest measurements. Errors in any of them may result in the filter being suboptimal or even cause it to diverge. The conventional way of determining Q and R requires good a priori knowledge of the process noises and measurement errors, which normally comes from intensive empirical analysis. Many adaptive methods have been developed to overcome the conventional Kalman filter's limitations. Starting from covariance matching principles, an innovative adaptive process noise scaling algorithm has been proposed in this paper. Without artificial or empirical parameters to be set, the proposed adaptive mechanism drives the filter autonomously to the optimal mode. The proposed algorithm has been tested using road test data, showing significant improvements to filtering performance.

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A Cascaded Fuzzy Inference System for University Non-Teaching Staff Performance Appraisal

  • Neogi, Amartya;Mondal, Abhoy Chand;Mandal, Soumitra Kumar
    • Journal of Information Processing Systems
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    • v.7 no.4
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    • pp.595-612
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    • 2011
  • Most organizations use performance appraisal system to evaluate the effectiveness and efficiency of their employees. In evaluating staff performance, performance appraisal usually involves awarding numerical values or linguistic labels to employees performance. These values and labels are used to represent each staff achievement by reasoning incorporated in the arithmetical or statistical methods. However, the staff performance appraisal may involve judgments which are based on imprecise data especially when a person (the superior) tries to interpret another person's (his/her subordinate) performance. Thus, the scores awarded by the appraiser are only approximations. From fuzzy logic perspective, the performance of the appraisee involves the measurement of his/her ability, competence and skills, which are actually fuzzy concepts that can be captured in fuzzy terms. Accordingly, fuzzy approach can be used to handle these imprecision and uncertainty information. Therefore, the performance appraisal system can be examined using Fuzzy Logic Approach, which is carried out in the study. The study utilized a Cascaded fuzzy inference system to generate the performance qualities of some University non-teaching staff that are based on specific performance appraisal criteria.

Uncertainty Analysis about the Change of Partial Section of Discharge Measurement (유량측정에 따른 측선수 변화에 대한 불확도 분석)

  • Kim, Jung-Nam;Lee, Jae-Hyug;Jeon, Byung-Hark;Kim, Sung-Hoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.688-688
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    • 2012
  • 불확도의 요인은 유속-면적법에 적용되는 방정식의 일반화된 형태를 고려하여 나타낼 수 있다. 하천에 대한 불확도, 수심에 대한 불확도, 점 유속의 결정에 대한 불확도, 평균유속의 예측과 유량에 대한 불확도가 불확도산정에 많은 영향을 미치는 요소라 할 수 있다. 유량측정을 실시할 때 불확도를 개선하기 위해서는 유속에 비례하여 측선수를 조절함이 좋은 등급을 확보하기에 성과의 품질 향상에 크게 기여하는 결과를 얻을 수 있다. 본 연구에서는 자연하천의 현장지점에서 실시간 수위를 확인하며 유속을 측정하였고, 측정 성과를 이용하여 유량과 불확도를 산정, 비교 분석하였다. 유량측정에 있어 측정 기기로는 국내에서 일반적으로 사용되는 회전식 유속계(PriceAA)를 사용하여 측정을 실시하였으며, 측정방법으로는 도섭법을 기준으로 1점법, 2점법, 3점법에 이르게 다양한 성과를 실측하여 측정한 결과에 적용된 측선수에 따른 불확도를 분석하였다. 그 결과 0.5 m/s 이하의 유속과 $1.5m^3/s$ 의 유량에서는 그림 2에서 제시하였듯 30개 이상의 측선수를 확보하므로 5 % 미만의 2등급을 확보할 수 있었다. 그림 3은 9개의 지점 28회의 측정 결과를 측선수별 평균 불확도를 산정하여 유속 0.5m/s ~ 0.7m/s의 범위에서는 30개 미만의 측선수를 확보하여도 2등급의 품질을 확보할 수 있었으며, 이는 유속과 측선수의 관계를 나타내는 결과이다. 따라서 측정 자료의 신뢰성을 확보할 수 있는 2등급 이상을 얻기 위해서는 국제기준(ISO 748)에 따른 측선수를 적용하되 현장지점의 특성에 따라 유속을 고려한 측선수를 적용하는 것이 필요할 것으로 판단된다.

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