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B. Chitti Babu

Researcher at Indian Institute of Information Technology Design & Manufacturing Kancheepuram

Publications -  128
Citations -  1383

B. Chitti Babu is an academic researcher from Indian Institute of Information Technology Design & Manufacturing Kancheepuram. The author has contributed to research in topics: Photovoltaic system & AC power. The author has an hindex of 15, co-authored 115 publications receiving 1043 citations. Previous affiliations of B. Chitti Babu include Wrocław University of Technology & Madurai Kamaraj University.

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A Novel Simplified Two-Diode Model of Photovoltaic (PV) Module

TL;DR: A novel simplified two-diode model of a photovoltaic (PV) module that has a photocurrent source, i.e., two ideal diodes, neglecting the series and shunt resistances is proposed.
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Doubly-Fed Induction Generator for Variable Speed Wind Energy Conversion Systems- Modeling & Simulation

TL;DR: The complete modeling and simulation of wind turbine driven doubly-fed induction generator which feeds ac power to the utility grid in such a way that it can be suited for modeling of all types of induction generator configurations.
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Probabilistic Neural Network Based Islanding Detection in Distributed Generation

TL;DR: Results indicate that the proposed probabilistic neural network based islanding detection technique can reliably detect islanding conditions in the power distribution network with multiple distributed generation interface.
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Time-frequency transform-based islanding detection in distributed generation

TL;DR: In this paper, a new technique for islanding detection in distributed generation (DG) using time-frequency transform such as S -transform is presented, where the spectral energy index (ratio of spectral energy content of the voltage to current signals) is computed to track the islanding situation from non-islanding conditions from sudden load change, tripping of other DG, etc.
Proceedings ArticleDOI

Comparative analysis of mathematical modeling of Photo-Voltaic (PV) array

TL;DR: In this paper, a comparative study between various models of photo-Voltaic (PV) array which have been formulated exclusively using the data sheet parameters has been conducted and the best model that can be used for simulation purposes has been selected.