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Kanendra Naidu

Researcher at University of Kuala Lumpur

Publications -  43
Citations -  1083

Kanendra Naidu is an academic researcher from University of Kuala Lumpur. The author has contributed to research in topics: Electric power system & PID controller. The author has an hindex of 13, co-authored 38 publications receiving 734 citations. Previous affiliations of Kanendra Naidu include UCSI University & University of Malaya.

Papers
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Photovoltaic penetration issues and impacts in distribution network - A review

TL;DR: In this article, a comprehensive overview on important issues affecting the distribution system as a result of PV penetration is presented, including voltage fluctuation, voltage rise, voltage balance, and harmonics and their effect on the system.
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Multiobjective optimization using weighted sum Artificial Bee Colony algorithm for Load Frequency Control

TL;DR: In this article, the authors used the weighted sum approach of the ABC to optimize the PID controller's gains to provide a compromise between the frequency response's settling time and maximum overshoot.
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Mix-mode energy management strategy and battery sizing for economic operation of grid-tied microgrid

TL;DR: In this paper, the authors presented a novel "mixmode" energy management strategy (MM-EMS) and its appropriate battery sizing method for operating the microgrid at the lowest possible operating cost.
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Distribution Network Planning Enhancement via Network Reconfiguration and DG Integration Using Dataset Approach and Water Cycle Algorithm

TL;DR: The results show that the discretization of reconfiguration search space avoids that WCA to get trapped in local optima and improves the solution quality of IEEE 33-bus network and 69- bus network by 29.20% and 27.88%, respectively.
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Application of firefly algorithm with online wavelet filter in automatic generation control of an interconnected reheat thermal power system

TL;DR: In this article, an online wavelet filter based on the Firefly Algorithm (FA) was proposed for the automatic generation control (AGC) model for a three unequal area interconnected reheat thermal power system, which includes time delay, dead zone, boiler, Generation Rate Constraint (GRC), and high frequency noise components.