Microgrid protection against high impedance faults with robustness to harmonic intrusion and weather intermittency
暂无分享,去创建一个
[1] Seyedali Mirjalili,et al. SCA: A Sine Cosine Algorithm for solving optimization problems , 2016, Knowl. Based Syst..
[2] Mohammad Shahidehpour,et al. Adaptive Protection System for Microgrids: Protection practices of a functional microgrid system. , 2014, IEEE Electrification Magazine.
[3] Mahmood Joorabian,et al. Harmonic estimation in a power system using a novel hybrid Least Squares-Adaline algorithm , 2009 .
[4] R. K. Patnaik,et al. Detection, classification, and location of faults on grid‐connected and islanded AC microgrid , 2017 .
[5] Ehab F. El-Saadany,et al. Fault Type Classification in Microgrids Including Photovoltaic DGs , 2016, IEEE Transactions on Smart Grid.
[6] Innocent Kamwa,et al. Oscillatory stability assessment of microgrid in autonomous operation with uncertainties , 2017 .
[7] Subhojit Ghosh,et al. Microgrid protection under weather uncertainty using joint probabilistic modeling of solar irradiance and wind speed , 2020, Comput. Electr. Eng..
[8] Joydeep Mitra,et al. Microgrid Protection Using Communication-Assisted Digital Relays , 2010, IEEE Transactions on Power Delivery.
[9] Subhransu Ranjan Samantaray,et al. Ensemble decision trees for high impedance fault detection in power distribution network , 2012 .
[10] John E. Fletcher,et al. Protection of inverter‐based microgrids from ground faults by an innovative directional element , 2018, IET Generation, Transmission & Distribution.
[11] Ramesh C. Bansal,et al. Integration of renewable distributed generators into the distribution system: a review , 2016 .
[12] D. Sutanto,et al. High-impedance fault detection using discrete wavelet transform and frequency range and RMS conversion , 2005, IEEE Transactions on Power Delivery.
[13] Fábio Gonçalves Jota,et al. Fuzzy detection of high impedance faults in radial distribution feeders , 1999 .
[14] Soumya R. Mohanty,et al. Microgrid protection using Hilbert–Huang transform based-differential scheme , 2016 .
[15] Sang-Hee Kang,et al. High-impedance fault detection in distribution networks with use of wavelet-based algorithm , 2006, IEEE Transactions on Power Delivery.
[16] Mahesh S. Illindala,et al. Comprehensive Protection Strategy for an Islanded Microgrid Using Intelligent Relays , 2015, IEEE Transactions on Industry Applications.
[17] Subhojit Ghosh,et al. Protection scheme for power transmission lines based on SVM and ANN considering the presence of non-linear loads , 2017 .
[18] Manohar Mishra,et al. Detection and classification of micro-grid faults based on HHT and machine learning techniques , 2017 .
[19] Garikoitz Buigues,et al. High impedance fault detection methodology using wavelet transform and artificial neural networks , 2011 .
[20] G.T. Heydt,et al. Fault Current Contribution From Synchronous Machine and Inverter Based Distributed Generators , 2007, IEEE Transactions on Power Delivery.
[21] Aurobinda Routray,et al. Harmonic estimation in a power system using adaptive perceptrons , 1996 .
[22] S.M. Rovnyak,et al. Decision tree-based methodology for high impedance fault detection , 2004, IEEE Transactions on Power Delivery.
[23] Om P. Malik,et al. Soft computing applications in high impedance fault detection in distribution systems , 2005 .
[24] Hamzah Arof,et al. High impedance fault location in 11 kV underground distribution systems using wavelet transforms , 2014 .
[25] Dusmanta Kumar Mohanta,et al. Spatio-temporal information based protection scheme for PV integrated microgrid under solar irradiance intermittency using deep convolutional neural network , 2020 .