Model-Centric Distribution Automation: Capacity, Reliability, and Efficiency

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Date

2016

Journal Title

Journal ISSN

Volume Title

Publisher

Taylor & Francis inc

Open Access Color

BRONZE

Green Open Access

Yes

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76

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117

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No
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Average
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Abstract

A series of analyses along with field validations that evaluate efficiency, reliability, and capacity improvements of model-centric distribution automation are presented. With model-centric distribution automation, the same model is used from design to real-time control calculations. A 14-feeder system with 7 substations is considered. The analyses involve hourly time-varying loads and annual load growth factors. Phase balancing and capacitor redesign modifications are used to better prepare the system for distribution automation, where the designs are performed considering time-varying loads. Coordinated control of load tap changing transformers, line regulators, and switched capacitor banks is considered. In evaluating distribution automation versus traditional system design and operation, quasi-steady-state power flow analysis is used. In evaluating distribution automation performance for substation transformer failures, reconfiguration for restoration analysis is performed. In evaluating distribution automation for storm conditions, Monte Carlo simulations coupled with reconfiguration for restoration calculations are used. The evaluations demonstrate that model-centric distribution automation has positive effects on system efficiency, capacity, and reliability.

Description

Onen, Ahmet/0000-0001-7086-5112;

Keywords

Coordinated Control, Power System Efficiency, Distribution Automation, Power System Capacity, Power System Reliability, Monte Carlo Simulation, power system capacity, power system reliability, distribution automation, power system efficiency, coordinated control, Monte Carlo simulation

Turkish CoHE Thesis Center URL

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
5

Source

Electric Power Components and Systems

Volume

44

Issue

5

Start Page

495

End Page

505
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CrossRef : 1

Scopus : 8

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8

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4

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5

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