Home / Electrical electronics engineering / Improved energy efficiency using facts-device technique- a case study of ogui-enugu power distribution network.

Improved energy efficiency using facts-device technique- a case study of ogui-enugu power distribution network.

 

Table Of Contents


Chapter ONE

1.1 Introduction
1.2 Background of Study
1.3 Problem Statement
1.4 Objective of Study
1.5 Limitation of Study
1.6 Scope of Study
1.7 Significance of Study
1.8 Structure of the Research
1.9 Definition of Terms

Chapter TWO

2.1 Overview of Energy Efficiency
2.2 Introduction to FACTS Devices
2.3 Importance of FACTS Devices in Power Distribution
2.4 Types of FACTS Devices
2.5 Applications of FACTS Devices
2.6 Case Studies on FACTS Device Implementation
2.7 Challenges in Implementing FACTS Devices
2.8 Benefits of Using FACTS Devices
2.9 Comparison of FACTS Devices with Traditional Methods
2.10 Future Trends in FACTS Device Technology

Chapter THREE

3.1 Research Methodology Overview
3.2 Research Design
3.3 Data Collection Methods
3.4 Sampling Techniques
3.5 Data Analysis Procedures
3.6 Validity and Reliability of Data
3.7 Ethical Considerations
3.8 Limitations of the Research Methodology

Chapter FOUR

4.1 Overview of Research Findings
4.2 Analysis of Data Collected
4.3 Comparison of Results with Research Objectives
4.4 Interpretation of Findings
4.5 Discussion on Patterns and Trends Identified
4.6 Implications of Findings
4.7 Recommendations for Future Research
4.8 Practical Applications of Research Findings

Chapter FIVE

5.1 Summary of Research
5.2 Conclusions Drawn from the Study
5.3 Implications of the Research
5.4 Contributions to the Field
5.5 Recommendations for Practical Implementation

Project Abstract

In this thesis, the objective is to determine the steady state operating condition of thirteen bus Ogui-Enugu Radial power distribution network. The steady-state was determined by finding out, for a given set of loading conditions, the flow of active and reactive powers throughout the network, the voltage magnitudes and phase angles at all buses of the network. This was achieved using Newton-Raphson power flow algorithm written in MATLAB environment. A critical analysis of the network results revealed that buses 11, 12 and 13 far away from the slack generator have voltage magnitudes not within the acceptable voltage limits of ±6% of the declared voltage. Against this background, a power electronic FACTS-Device currently used in the electricity supply industry for the purpose of voltage regulation, active and reactive power flow control was installed at bus 13 to determine how FACTS controller narrows the gap between the electromechanically controlled and the power electronic controlled power system mode of operation. The result of the STATCOM Newton-Raphson power flow algorithm written in MATLAB environment shows that voltage magnitudes at buses 11, 12 and 13 fell back within the acceptable limit of ±6% of declared voltage and eminently increased real power flow in those buses but conversely reduced the reactive power flow in those buses specified. The result of the study gives an insight into the new opportunities available in power semi-conductor control of power system parameters and enhancement of power quality using FACTS- DEVICES.

Project Overview

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