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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Application of Digital Signal Processing to Underground Power Cables Fault Detection

Pandey, Abhishek 06 August 2011 (has links)
Underground power cables encounter various problems caused by manufacturing defects and/or environmental contact. In keeping with the Smart Grid vision, researchers must develop diagnostic techniques that can be utilized to facilitate the decision making processes regarding replacement prior to failure can occur, thereby minimizing impact to customers. Due to the impact of the aging infrastructure and in particular underground polymeric cables, various offline and online methods have been developed for the detection of the remaining life of underground cables. The offline methods require power outage, which can lead to further difficulty in their implementation. Signal processing techniques hold promise to provide real time or near real time diagnostics. In this thesis, three different signal processing techniques; fast Fourier transform, short-time Fourier transform, and wavelet transform; are investigated for identifying and classifying various fault types encountered in underground power cables based on cable current and voltage measurements.
2

An Online Monitoring and Fault Location Methodology for Underground Power Cables

January 2016 (has links)
abstract: With the growing importance of underground power systems and the need for greater reliability of the power supply, cable monitoring and accurate fault location detection has become an increasingly important issue. The presence of inherent random fluctuations in power system signals can be used to extract valuable information about the condition of system equipment. One such component is the power cable, which is the primary focus of this research. This thesis investigates a unique methodology that allows online monitoring of an underground power cable. The methodology analyzes conventional power signals in the frequency domain to monitor the condition of a power cable. First, the proposed approach is analyzed theoretically with the help of mathematical computations. Frequency domain analysis techniques are then used to compute the power spectral density (PSD) of the system signals. The importance of inherent noise in the system, a key requirement of this methodology, is also explained. The behavior of resonant frequencies, which are unique to every system, are then analyzed under different system conditions with the help of mathematical expressions. Another important aspect of this methodology is its ability to accurately estimate cable fault location. The process is online and hence does not require the system to be disconnected from the grid. A single line to ground fault case is considered and the trend followed by the resonant frequencies for different fault positions is observed. The approach is initially explained using theoretical calculations followed by simulations in MATLAB/Simulink. The validity of this technique is proved by comparing the results obtained from theory and simulation to actual measurement data. / Dissertation/Thesis / Masters Thesis Electrical Engineering 2016
3

Técnica do Pulso Eletroacústico para medidas de Perfis de Carga Espacial em Dielétricos / Electro-acoustic Pulse to Measure Space Charge Profile in Dielectric Materials

Tomioka, Jorge 31 May 1999 (has links)
Neste trabalho descreve-se a implementação da técnica do pulso eletroacústico (PEA) para a determinação de perfis de carga espacial em dielétricos. O método é baseado no sinal acústico gerado pela aplicação de um pulso de tensão elétrica de curta duração na amostra. O sinal acústico gerado é detectado usando-se um transdutor piezoelétrico acoplado à amostra. São discutidos os detalhes experimentais do sistema e os procedimentos matemáticos para o tratamento do sinal elétrico medido. O tratamento matemático do sinal é baseado na técnica de desconvolução que permite determinar a função de transferência do sistema. A função de transferência permite eliminar do sinal medido as distorções introduzidas pelo circuito de medida, pelas reflexões espúrias do sinal acústico, etc.. Mostra-se também os procedimentos matemáticos para se corrigir a atenuação e dispersão do sinal acústico durante a propagação através da amostra. A técnica PEA foi utilizada para o estudo dos perfis de carga espacial injetada em amostras de polietileno sintetizados com diferentes catalisadores: Ziegler-Natta e Metallocene. O campo elétrico aplicado para polarizar as amostras e injetar cargas elétricas nas amostras foi variado de 0,05 MV/cm a 0,9 MV/cm. Nas amostras de polietileno sem aditivos a injeção de cargas elétricas na amostra é bem menor que em amostras com aditivos anti-oxidantes Mostra-se também que o campo elétrico de ruptura depende da carga injetada na amostra, sendo ele maior quando a polaridade da tensão de teste de ruptura é a mesma da tensão aplicada que provocou a injeção de cargas elétricas na amostra. / It is described the implementation of the electroacustic pulse technique, PEA, for the determination of space charge profiles in dielectrics. The method is based on the acoustic signal generated by the application of a voltage pulse with short duration on the sample. The acoustic signal generated by pulse is detected by using a piezoelectric transducer coupled to the sample. Details of the experimental system and of the mathematical procedure for the treatment of the measured electric signals are discussed. The mathematical treatment is based on the deconvolution technique which enables us to obtain the transference function of the system. The use of a transference function eliminates distortions caused by reflections that are introduced by the measurement circuit. Mathematical procedures for the correction of attenuation and dispersion of the acoustic signal during the propagation throughout the sample are also discussed. The PEA technique was used to measure the profiles of injected space charge in polyethylene synthesized using different catalysts: Ziegler-Natta and Metallocene. The electric field applied to polarize and to inject electric charges in the sample was varied form 0.05MV/cm to 0.9MV/cm. In samples of polyethylene without additives it was observed that the injection of charges is less intense than in samples containing anti oxidant additives. It is also shown that the critical electric field for the breakdown depends on the injected charge on the sample being; larger if the rupture tests were performed using the same polarity of the voltage used to pole the samples. Breakdown measurements were also performed with ozone treated samples.
4

Técnica do Pulso Eletroacústico para medidas de Perfis de Carga Espacial em Dielétricos / Electro-acoustic Pulse to Measure Space Charge Profile in Dielectric Materials

Jorge Tomioka 31 May 1999 (has links)
Neste trabalho descreve-se a implementação da técnica do pulso eletroacústico (PEA) para a determinação de perfis de carga espacial em dielétricos. O método é baseado no sinal acústico gerado pela aplicação de um pulso de tensão elétrica de curta duração na amostra. O sinal acústico gerado é detectado usando-se um transdutor piezoelétrico acoplado à amostra. São discutidos os detalhes experimentais do sistema e os procedimentos matemáticos para o tratamento do sinal elétrico medido. O tratamento matemático do sinal é baseado na técnica de desconvolução que permite determinar a função de transferência do sistema. A função de transferência permite eliminar do sinal medido as distorções introduzidas pelo circuito de medida, pelas reflexões espúrias do sinal acústico, etc.. Mostra-se também os procedimentos matemáticos para se corrigir a atenuação e dispersão do sinal acústico durante a propagação através da amostra. A técnica PEA foi utilizada para o estudo dos perfis de carga espacial injetada em amostras de polietileno sintetizados com diferentes catalisadores: Ziegler-Natta e Metallocene. O campo elétrico aplicado para polarizar as amostras e injetar cargas elétricas nas amostras foi variado de 0,05 MV/cm a 0,9 MV/cm. Nas amostras de polietileno sem aditivos a injeção de cargas elétricas na amostra é bem menor que em amostras com aditivos anti-oxidantes Mostra-se também que o campo elétrico de ruptura depende da carga injetada na amostra, sendo ele maior quando a polaridade da tensão de teste de ruptura é a mesma da tensão aplicada que provocou a injeção de cargas elétricas na amostra. / It is described the implementation of the electroacustic pulse technique, PEA, for the determination of space charge profiles in dielectrics. The method is based on the acoustic signal generated by the application of a voltage pulse with short duration on the sample. The acoustic signal generated by pulse is detected by using a piezoelectric transducer coupled to the sample. Details of the experimental system and of the mathematical procedure for the treatment of the measured electric signals are discussed. The mathematical treatment is based on the deconvolution technique which enables us to obtain the transference function of the system. The use of a transference function eliminates distortions caused by reflections that are introduced by the measurement circuit. Mathematical procedures for the correction of attenuation and dispersion of the acoustic signal during the propagation throughout the sample are also discussed. The PEA technique was used to measure the profiles of injected space charge in polyethylene synthesized using different catalysts: Ziegler-Natta and Metallocene. The electric field applied to polarize and to inject electric charges in the sample was varied form 0.05MV/cm to 0.9MV/cm. In samples of polyethylene without additives it was observed that the injection of charges is less intense than in samples containing anti oxidant additives. It is also shown that the critical electric field for the breakdown depends on the injected charge on the sample being; larger if the rupture tests were performed using the same polarity of the voltage used to pole the samples. Breakdown measurements were also performed with ozone treated samples.

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