Modeling of the Transfer Function Characteristics of an Electrical Power Distribution System

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Onoriode K. Idiapho
Onoriode K. Idiapho
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Osagie Aitokhuehi
Osagie Aitokhuehi
α University of Benin University of Benin

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Modeling of the Transfer Function Characteristics of an Electrical Power Distribution System

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Abstract

This study seeks to determine the mathematical model for the transfer function characteristics of a single-input-single-output (SISO) electrical power distribution system with a view to understanding better, how the variation in input variables affects the overall output of electrical power distribution. It involved taking input-output data from a real life electrical power distribution system over a given period of four months and developing a transfer function model for the system so as to determine its operations efficiency using SPSS software. From the analysis carried out, the value of (coefficient of performance) in the month 1-2 was found to be 0.670 while the value was 1.065 in the month 3-4. The higher the value of the more efficient is the power distribution system.

References

8 Cites in Article
  1. G Box,G Jenkins,G Reinsel (1994). Time Series Analysis: Forecasting and Control.
  2. G Box,G Jenkins,G Reinsel (2008). Time Series Analysis Forecasting and Control.
  3. Richard Brown (2002). Electric Power Distribution Reliability.
  4. S Delurgio (1998). Forecasting Principles and Applications. 3rd Edition.
  5. P Lai (1979). Transfer Function Modelling Relationship Between Time Series Variables.
  6. Chidozie Nwobi-Okoye,Anthony Igboanugo (2012). Performance evaluation of hydropower generation system using transfer function modelling.
  7. Chidozie Nwobi-Okoye,Anthony Igboanugo (2015). Performance appraisal of gas based electric power generation system using transfer function modelling.
  8. Chidozie Nwobi-Okoye,Stanley Okiy,Anthony Igboanugo (2015). Performance evaluation of multi-input–single-output (MISO) production process using transfer function and fuzzy logic: Case study of a brewery.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Onoriode K. Idiapho. 2016. \u201cModeling of the Transfer Function Characteristics of an Electrical Power Distribution System\u201d. Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 16 (GJRE Volume 16 Issue F6): .

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Keywords
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GJRE-F Classification: FOR Code: 090699
Version of record

v1.2

Issue date

November 21, 2016

Language
en
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This study seeks to determine the mathematical model for the transfer function characteristics of a single-input-single-output (SISO) electrical power distribution system with a view to understanding better, how the variation in input variables affects the overall output of electrical power distribution. It involved taking input-output data from a real life electrical power distribution system over a given period of four months and developing a transfer function model for the system so as to determine its operations efficiency using SPSS software. From the analysis carried out, the value of (coefficient of performance) in the month 1-2 was found to be 0.670 while the value was 1.065 in the month 3-4. The higher the value of the more efficient is the power distribution system.

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Modeling of the Transfer Function Characteristics of an Electrical Power Distribution System

Onoriode K. Idiapho
Onoriode K. Idiapho University of Benin
Osagie Aitokhuehi
Osagie Aitokhuehi

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