• 제목/요약/키워드: Resistance error

검색결과 427건 처리시간 0.02초

전위강하법에 의한 접지저항 측정시 보조전극의 위치변화에 따른 오차 분석 (Measurement Error Analysis of Ground Resistance Using the Fall-of-Potential Method According to the Locations of Auxiliary Probes)

  • 김동우;길형준;김동욱;이기연;문현욱;김향곤
    • 전기학회논문지P
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    • 제59권2호
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    • pp.222-231
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    • 2010
  • This paper presents numerical analysis of measurement errors of ground electrode using the fall-of-potential method. In order to analyze ground resistance error according to the positions of auxiliary probes, firstly, national and international standards were researched. Secondly, numerical ground resistance error of hemispheric electrode was analyzed according to the locations of auxiliary probes and the angle between probes. Then, error-reduced positions of auxiliary probes were shown according to the distance to auxiliary current probe versus ground electrode size. Finally, error compensation method was presented. The results presented in this paper provide useful information regarding ground resistance error of alternative positions of auxiliary probes in case that the auxiliary probes could not be located at the proper position in such cases as there are buildings, roadblock or underground metallic pipe at that position.

전압변성기 비교 측정 장치의 비오차 및 위상각 오차의 직선성 평가기술 (Evaluation Technique of Linearity of Ratio Error and Phase Angle Error of Voltage Transformer Comparison Measurement Equipment)

  • 정재갑;박영태;권성원
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제53권9호
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    • pp.470-474
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    • 2004
  • Both ratio error and phase angle error in voltage transformer(VT) depend on values of burden of VT used. A method of evaluation for linearity of ratio error and phase angle error in VT measurement equipment have been developed using the standard resistance burdens, with negligible AC-DC resistance difference less than $10^-6$. These burden consists of five standard resistors, with nominal resistance of 100 $\Omega$, 1 k$\Omega$, 10 k$\Omega$, 100 k$\Omega$, and 1 M$\Omega$. The developed method has been applied in VT measurement equipment of industry and the validity of the developed method has been verified by showing the consistency of the result of linearity obtained using VT with wide ratio error.

역기전력 추정 기반 SMPMSM 센서리스 드라이브에서 저항 오차가 대역폭에 미치는 영향 (Influence of Resistance Error to the Bandwidth of Back-EMF Estimation based SMPMSM Sensorless Drives)

  • 김재석;설승기
    • 전력전자학회논문지
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    • 제21권5호
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    • pp.418-426
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    • 2016
  • This paper analyzes the effect of resistance error to the performance of sensorless drive system of surface-mounted permanent magnet synchronous machine (SMPMSM) based on the back-EMF observer. The analysis shows that the bandwidth of the entire sensorless drive system decreased in the low-speed region when using smaller resistance value than the actual one in the back-EMF observer. Even if the back-EMF observer invokes estimation error, the entire sensorless drive system does not make any steady-state position error. These characteristics may have positive effects such as extension of the low speed limit that goes further down in the sensorless drive. The validity of the analysis is verified by the experimental setup comprising the MG set.

현장조사를 통한 건축물 접지저항 측정용 전극 설치의 개선에 관한 연구 (A Study on the Improvement of Electrode Installation for Measurement of Ground Resistance through Investigation on the Spot in Buildings)

  • 길형준;김동우;길경석
    • 조명전기설비학회논문지
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    • 제25권5호
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    • pp.92-97
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    • 2011
  • This paper deals with the improvement of electrode installation for measurement of ground resistance through investigation on the spot in buildings. The investigation was carried out for an earthing terminal board for measurement of ground resistance, installation of auxiliary electrode, etc. The criteria value is set up by measuring method of ground resistance in international standard. In case of inadequate installation of auxiliary electrode, a relative error is analyzed and adequate installation method of auxiliary electrode is proposed. As a consequence, it is necessary to write direction of ground and equipment, and separate auxiliary electrode for measurement of ground resistance in order to minimize measuring error.

절대 변위 측정용 RVDT의 위상 오차 보상 (RVDT Phase Error Compensation for Absolute Displacement Measurement)

  • 신동윤;양윤기;이창수
    • 제어로봇시스템학회논문지
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    • 제12권7호
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    • pp.658-665
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    • 2006
  • RVDT is a transducer that presents rotary phase angle according to the displacement of eccentric rotor such as press machine. However a study on the phase error of RVDT that affects precision is not enough. This paper analyzes RVDT phase error and obtains compensation curves with serial or parallel resistance through simulation. First, error compensation procedure that analyses errors due to the unbalance of reference inductances of each pole and uses parallel resistance as a compensation is proposed. Second, error compensation procedure due to the amplitude unbalance of the sensor driving currents is examined by serial compensation resistance. Experimentally, we got stable RVDT with phase error under $1^{\circ}$ by the proposed method.

배터리 'State of Charge' 예측 알고리즘 구현 (Implementation of Battery 'State of Charge' Estimation algorithm)

  • 김용호;김대환
    • 정보통신설비학회논문지
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    • 제10권1호
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    • pp.27-32
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    • 2011
  • These days more electric devices are implemented in car, and more accurate estimation of SoC is required. OCV with current integration and Internal Resistance is essential method of Battery SoC Estimation. In this paper we propose OCV with current integration method and compare with Internal Resistance method. In OCV with current integration method estimation error was less than average 2%, but requires more than 5 minutes to stabilize OCV. If Stop and Running conditions are change frequently, estimation error will increase. In Internal resistance Modeling method, in high SoC state, estimation error was more than 15%, and in low SoC state, estimation error was less than 8%.

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수직 접지전극의 접지임피던스 측정에서 도전유도에 의한 오차 평가 (Evaluation of Errors Due to Earth Mutual Resistance in Measuring Ground Impedance of Vertically-driven Ground Electrode)

  • 최종혁;최영철;이복희
    • 전기학회논문지
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    • 제58권9호
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    • pp.1778-1783
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    • 2009
  • Ground impedance for the large grounding system is measured according to the IEEE Standard 81.2 which is based on the revised fall-of-potential method of installing auxiliary electrode at a right angle. When the auxiliary electrodes are located at an angle of $90^{\circ}$, the ground impedance inevitably includes the error due to earth mutual resistance. In this paper, in order to accurately measure the ground impedance of vertically-driven ground electrodes, error rates due to earth mutual resistance are evaluated by ground resistance and ground impedance measuring devices and compared with calculated values. As a result, the measured results are in good agreement with the computed results considering soil layer with different resistivity. The error rates due to earth mutual resistance decrease with increasing the length of ground electrode in the case that the ratio of the distance between the ground rod to be measured and the auxiliary electrodes to the length of ground electrode(D/L) is same. The ground impedance should be measured at the minimum distance between the auxiliary electrodes that will have an estimated measurement accuracy due to earth mutual resistance.

Simplified Rotor and Stator Resistance Estimation Method Based on Direct Rotor Flux Identification

  • Wang, Mingyu;Wang, Dafang;Dong, Guanglin;Wei, Hui;Liang, Xiu;Xu, Zexu
    • Journal of Power Electronics
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    • 제19권3호
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    • pp.751-760
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    • 2019
  • Since parameter mismatch seriously impacts the efficiency and stability of induction motor drives, it is important to accurately estimate the rotor and stator resistance. This paper introduces a method to directly calculate the rotor flux that is independent of stator and rotor resistance and electrical angle. It is based on obtaining the rotor and stator resistance using the model reference adaptive system (MRAS) method. The method has a lower computation burden and less adaptation time when compared with other rotor resistance estimation methods. This paper builds three coordinate frames to analyze the rotor flux error and rotor resistance error. A number of implementation issues are also considered.

전위보조전극의 위치변화에 따른 접지저항 측정값의 상대오차분석 (Relative Error Analysis for Measuring Value of Ground Resistance according to Position Variation of Potential Probe))

  • 길형준;김동우
    • 조명전기설비학회논문지
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    • 제23권2호
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    • pp.96-102
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    • 2009
  • 본 논문에서는 전위강하법을 이용한 접지저항 측정시 전위보조전극의 위치 및 각도의 영향에 대하여 기술하였으며, 측정시 오차를 최소화하는 기법을 제안하였다. 전위강하법은 이론적으로 전위와 전류의 측정원리에 근간을 두고 있으며 측정오차는 주로 보조전극의 위치와 각도에 기인한다. 전위보조전각의 위치에 의한 접지저항 측정값의 상대오차를 분석하기 위해 전류보조전극의 거리를 50[m]로 고정시키고 전위보조전극의 거리를 10[m]에서 50[m]까지 변화시키며 접지저항을 측정하였고 또한 전위보조전극과 전류보조전극 사이의 각도를 30[$^{\circ}$], 45[$^{\circ}$], 60[$^{\circ}$], 90[$^{\circ}$], 180[$^{\circ}$]로 변화시키며 측정하였다. 결과적으로 전위보조전극의 거리 증가 및 전류보조전극과 전위보조전극 사이의 각도가 감소할수록 상대오차가 작게 나타났다. 본 실험결과는 접지시스템의 접지저항을 측정할 때 전위보조전극의 위치를 결정하는데 활용될 수 있다.

지역난방배관의 누수감지 신뢰성 향상에 관한 연구 (A Study on the Improvement of Water-Leakage Detection Reliability in Local Heating System)

  • 신춘식;안영주;변기식
    • 한국안전학회지
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    • 제14권1호
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    • pp.66-72
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    • 1999
  • Local heating transportation pipe has sensor and return lines to detect water-leakage. There are impulse and resistance comparison measurement types for a water-leakage detection. The impulse type shows large detection error within a measurement range. Since the resistance comparison type can find a comparative accurate single water-leakage point in the measurement range of heating pipe, it has been used to detect water-leakages these days. However if the multi water-leakages are happened in the measurement range of transportation pipe. the resistance comparison type shows a detection error point by the parallel resistance between a detection sensor line and ground. But the detection error will be minimized by the divided transportation pipe loops. In this research, it suggests the design of remote controlled detection system which can divide a large pipe loop and a possible single water-leakage measurement process in each divided loops.

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