• Title/Summary/Keyword: Stator protection

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An Approach for Identifying the Temperature of Inductance Motors by Estimating the Rotor Slot Harmonic Based on Model Predictive Control

  • Wang, Liguo;Jiang, Qingyue;Zhang, Chaoyu;Jin, Dongxin;Deng, Hui
    • Journal of Power Electronics
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    • v.17 no.3
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    • pp.695-703
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    • 2017
  • In order to satisfy the urgent requirements for the overheating protection of induction motors, an approach that can be used to identify motor temperature has been proposed based on the rotor slots harmonic (RSH) in this paper. One method to accomplish this is to improve the calculation efficiency of the RSH by predicting the stator winding distribution harmonic order by analyzing the harmonics spectrum. Another approach is to increase the identification accuracy of the RSH by suppressing the influence of voltage flashes or current surges during temperature estimation based on model predictive control (MPC). First, an analytical expression of the stator inductance is extracted from a steady-state positive sequence motor equivalent circuit model developed from the rotor flux field orientation. Then a procedure that applies MPC for reducing the identification error of the rotor temperature caused by voltage sag or swell of the power system is given. Due to this work, the efficiency and accuracy of the RSH have been significantly improved and validated our experiments. This work can serves as a reference for the on-line temperature monitoring and overheating protection of an induction motor.

A Comparative Analysis of fault Detection Algorithm for AC Generator Protection (교류발전기 보호를 위한 고장검출 알고리즘의 비교 분석)

  • Park, Chul-Won;Shin, Kwang-Chul;Shin, Myong-Chul
    • Proceedings of the KIEE Conference
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    • 2007.11b
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    • pp.75-77
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    • 2007
  • Current percentage differential relaying has been recognized as the principal basis of main protection for stator windings of AC generator. The DWT has merit of obtaining frequency characteristics in time domain. In order to compensate for DFT's defects, we proposed fault detection algorithm using DWT. This paper describes a comparative analysis about conventional DFT-based DFR and advanced DWT-based relaying.

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Internal Fault Detection and Fault Type Discrimination for AC Generator Using Detail Coefficient Ratio of Daubechies Wavelet Transform (다우비시 웨이브릿 변환의 상세계수 비율을 이용한 교류발전기의 내부고장 검출 및 고장종류 판별)

  • Park, Chul-Won;Shin, Kwang-Chul;Shin, Myong-Chul
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.58 no.2
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    • pp.136-141
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    • 2009
  • An AC generator is an important components in producing a electric power and so it requires highly reliable protection relays to minimize the possibility of demage occurring under fault conditions. Conventionally, a DFT based RDR has been used for protecting the generator stator winding. However, when DFTs based on Fourier analysis are used, it has been pointed out that defects can occur during the process of transforming a time domain signal into a frequency domain one which can lead to loss of time domain information. This paper proposes the internal fault detection and fault type discrimination for the stator winding by applying the detailed coefficients by Daubechies Wavelet Transform to overcome the defects in the DFT process. For the case studies reported in the paper, a model system was established for the simulations utilizing the ATP, and this verified the effectiveness of the proposed technique through various off-line tests carried out on the collected data. The propose method is shown to be able to rapidly identify internal fault and did not operate a miss-operation for all the external fault tested.

A Characteristic Analysis of Four-Phase SRM (4상 SRM의 구동 특성해석)

  • Kim Tae-Hyoung;Ahn Jin-Woo;Lee Dong-Hee;Chen Hao
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.988-991
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    • 2004
  • In the paper, a four-phase 16/12 structure Switched Reluctance motor drive is presented. The construction of the stator and the rotor in the motor, the scheme of the rotor position detector and the main circuit of the power converter are described. The comparison of the four-phase 16/12 motor and the four-phase 8/6 motor and the comparison of the four-phase 16/12 motor and the three-phase 12/8 motor are made. In the controller, the PWM control variable-speed control, the commutation control, the four quadrants control, the overvoltage protection, the over current protection and the under voltage protection could be achieved. Tested results of the developed prototype are made.

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A Characteristic Analysis of Four-Phase 16/12 SRM (4상 16/12극 SRM의 특성해석)

  • Song Hyun-Soo;Lee Dong-Hee;Ahn Jin-Woo;Hao Chen
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.415-418
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    • 2002
  • In the paper, a four-phase 16/12 structure Switched Reluctance motor drive is presented. The construction of the stator and the rotor in the motor, the scheme of the rotor position detector and the main circuit of the power converter are described. The comparison of the four-phase 16/12 motor and the four-phase 816 motor and the comparison of the four-phase 16/12 motor and the three-phase 12/8 motor are made. In the controller, the PWM control variable-speed control, the commutation control, the four quadrants control, the overvoltage protection, the overcurrent protection and the under voltage protection could be achieved. Tested results of the developed prototype are made.

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Development of Asynchronous Blocking Algorithm through Asynchronous Case Study of Steam Turbine Generator (스팀터빈 발전기 비동기 투입 사례연구를 통한 비동기 방지 알고리즘 개발)

  • Lee, Jong-Hweon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.61 no.10
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    • pp.1542-1547
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    • 2012
  • Asynchronous phenomenon occurs on the synchronous generators under power system when a generator's amplitude of electromagnetic force, phase angle, frequency and waveform etc become different from those of other synchronous generators which can follow instantly varying speed of turbine. Because the amplitude of electromagnetic force, phase frequency and waveform differ from those of other generators with which are to be put into parallel operation due to the change of excitation condition for load sharing and the sharing load change, if reactive current in the internal circuit circulates among generators, the efficiency varies and the stator winding of generators are overheated by resistance loss. When calculation method of protection settings and logic for protection of generator asynchronization will be recommended, a distance relay scheme is commonly used for backup protection. This scheme, called a step distance protection, is comprised of 3 steps for graded zones having different operating time. As for the conventional step distance protection scheme, zone 2 can exceed the ordinary coverage excessively in case of a transformer protection relay especially. In this case, there can be overlapped protection area from a backup protection relay and, therefore, malfunctions can occur when any fault occurs in the overlapped protection area. Distance relays and overcurrent relays are used for backup protection generally, and both relays have normally this problem, the maloperation, caused by a fault in the overlapped protection area. Corresponding to an IEEE standard, this problem can be solved with the modification of the operating time. On the other hand, in Korea, zones are modified to cope with this problem in some specific conditions. These two methods may not be obvious to handle this problem correctly because these methods, modifying the common rules, can cause another coordination problem. To overcome asynchronizing protection, this paper describes an improved backup protection coordination scheme using a new logic that will be suggested.

A Study on Protection of Generator Asynchronization by Impedance Relaying (임피던스 계전기를 이용한 발전기 비동기 투입 보호 연구)

  • Lee, Jong-Hweon
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.60 no.11
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    • pp.2000-2006
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    • 2011
  • Asynchronous phenomenon occurs on the synchronous generators under power system when a generator's amplitude of electromagnetic force, phase angle, frequency and waveform etc become different from those of other synchronous generators which can follow instantly varying speed of turbine. Because the amplitude of electromagnetic force, phase frequency and waveform differ from those of other generators with which are to be put into parallel operation due to the change of excitation condition for load sharing and the sharing load change, if reactive current in the internal circuit circulates among generators, the efficiency varies and the stator winding of generators are overheated by resistance loss. Where calculation method of protection settings and Logic for Protection of Generator Asynchronization will be recommended, A distance relay scheme is commonly used for backup protection. This scheme, called a step distance protection, is comprised of 3 steps for graded zones having different operating time. As for the conventional step distance protection scheme, Zone 2 can exceed the ordinary coverage excessively in case of a transformer protection relay especially. In this case, there can be overlapped protection area from a backup protection relay and, therefore, malfunctions can occur when any fault occurs in the overlapped protection area. Distance relays and overcurrent relays are used for backup protection generally, and both relays have normally this problem, the maloperation, caused by a fault in the overlapped protection area. Corresponding to an IEEE standard, this problem can be solved with the modification of the operating time. On the other hand, in Korea, zones are modified to cope with this problem in some specific conditions. These two methods may not be obvious to handle this problem correctly because these methods, modifying the common rules, can cause another coordination problem. To overcome asynchronizing protection this paper describes an improved backup protection coordination scheme using a new Logic that will be suggested.

Fault Simulation and DFT based Stator Winding Protection Relaying for AC Generator (교류 발전기의 사고 모의와 DFT 기반 고정자 권선 보호 기법)

  • Park, Chul-Won
    • Proceedings of the KIEE Conference
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    • 2007.11c
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    • pp.55-58
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    • 2007
  • 본 논문은 교류발전기의 보호방식에 대하여 검토하였고 종래의 교류발전기의 주보호방식인, 비율차동계전방식에 대하여 서술하였다. 87G에서의 고장전후의 전류를 수집하기 위해서 ATP를 이용하여 간소한 발전기 사고 시뮬레이션 방식을 제안하였다. 또 그 사고모의 데이터를 이용하여 고정자권선 보호를 위한 DFT 기반 디지털 비율차동계전기법에 대하여 타당성을 검증하였다.

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A Study on Stator Differential Protection Relay (고정자 차동보호계전기에 관한 연구)

  • Park, Chul-Won;Ban, Woo-Hyeon;Gang, Mul-Gyeol;Lee, Won-Seop
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.758-759
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    • 2011
  • 대용량 교류발전기는 전력계통의 중요한 요소이다. 발전기의 사고 중 가장 많이 발생하는 부위는 전기자 권선이다. 보호제어시스템의 효율적인 운용과 향후 차세대 ECMS를 위하여 교류발전기의 보호계전분야에 대한 연구가 필요하다. 해외에서 교류발전기의 단락 및 지락 보호에 관한 Standards들이 제정되었고 발전기의 상세 모델링과 내부권선 사고 모의에 대하여도 계속 연구 중에 있다. 본 논문에서는 고정자의 주보호인 비율차동계전방식의 검출방법, 동작영역 및 특성곡선과 정정치 등을 조사한 후 내부 외부고장의 경우 동작 시뮬레이션을 수행하였다.

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Balanced and Unbalanced Fault Analysis of Synchronous Generator (동기 발전기의 평형 및 불평형 고장해석)

  • Park, Cheol-Won;An, Jun-Yeong;Lee, Jong-Su;Lee, Sang-Seong;Sin, Myeong-Cheol
    • Proceedings of the KIEE Conference
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    • 2006.11a
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    • pp.402-404
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    • 2006
  • In this paper, we simulated transient-state under fault in stator windings of synchronous generator. The fault types are line to ground fault, line to line short fault, and three phase short fault. For fault analysis of generator system, the voltage equation of a synchronous machine using the two-axis theory was used. It can be used to analyze important features of faults and to develop enhanced protection methods.

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