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Enhancing the Reliability of Power Distribution Networks

This thesis presents methods to enhance the reliability of distribution networks, ensuring a consistent and high-quality power supply. Distribution utilities face challenges due to grid interruptions, often caused by prolonged faults. The integration of large-scale renewable sources systems adds further complexity, compromising reliability.
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Reliability and cost comparison of power distribution configurations

2008 IEEE/IAS Industrial and Commercial Power Systems Technical Conference, 2008
Reliability and installed cost are key parameters in the selection of the appropriate power system distribution design. This paper presents a relative comparison of reliability and costs for radial, primary selective, looped, main-tie-main, synchronous bus, ring bus, and double bus medium voltage configurations.
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Flexible self-charging power sources

Nature Reviews Materials, 2022
Ruiyuan Liu   +2 more
exaly  

Power System Reliability Analysis with Distributed Generators

2014
Reliability is a key aspect of power system design and planning. In this research we present a reliability analysis algorithm for large scale, radially operated (with respect to substation), reconfigurable, electrical distribution systems. The algorithm takes into account equipment power handling constraints and converges in a matter of seconds on ...
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Reliability analysis of power transformers of a power distribution company

International Journal of System Assurance Engineering and Management, 2023
Nabila Al Balushi   +3 more
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Power Distribution System Reliability

2009
Ali A. Chowdhury, Don O. Koval
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Outdoor air pollution and cancer: An overview of the current evidence and public health recommendations

Ca-A Cancer Journal for Clinicians, 2020
Michelle C Turner   +2 more
exaly  

Reliability Analysis of Power Distribution System

Reliability of power systems has been occupying an important measure of system performance and a key factor in system planning, design, and maintenance. The power regime can be divided into three major areas of operation namely, generation, transmission, and distribution.
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Pseudocapacitance: From Fundamental Understanding to High Power Energy Storage Materials

Chemical Reviews, 2020
Simon Fleischmann   +2 more
exaly  

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