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Nasrudin Abd Rahim

Researcher at University of Malaya

Publications -  574
Citations -  25931

Nasrudin Abd Rahim is an academic researcher from University of Malaya. The author has contributed to research in topics: Photovoltaic system & Inverter. The author has an hindex of 79, co-authored 536 publications receiving 19822 citations. Previous affiliations of Nasrudin Abd Rahim include Universiti Malaysia Perlis & King Abdulaziz University.

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Analyses of exergy efficiency and pumping power for a conventional flat plate solar collector using SWCNTs based nanofluid

TL;DR: In this article, the authors theoretically analyzed entropy generation, heat transfer enhancement capabilities and pressure drop for a flat-plate solar collector operated with single wall carbon nanotubes (SWCNTs) based nanofluids as an absorbing medium.
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Operation of a Six-Phase Induction Machine Using Series-Connected Machine-Side Converters

TL;DR: The operation of a multiphase system, which is aimed at both variable-speed drive and generating applications, using back-to-back converter structure with dual three-phase machine-side converters, is discussed, proving that it is possible to achieve satisfactory dc-link voltage control under various operating scenarios.
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Two side serpentine flow based photovoltaic-thermal-phase change materials (PVT-PCM) system: Energy, exergy and economic analysis

TL;DR: In this paper, a photovoltaic/thermal phase change materials (PV/T-PCM) system was designed and developed to evaluate its energy, exergy and economic performance.
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Review on solar water heater collector and thermal energy performance of circulating pipe

TL;DR: In this paper, the effect of thermal conductivity of the absorber plate of a solar collector on the performance of a thermo-siphon solar water heater was found by using the alternative simulation system.
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Modulation Techniques to Reduce Leakage Current in Three-Phase Transformerless H7 Photovoltaic Inverter

TL;DR: It is proven that the proposed topology is able to reduce the leakage current without sacrificing the overall performance of the system.