2022Unpublished venueRequires access

Improvement of Voltage Stability in Power System using SVC

Amirul Hakim Ramli, Nor Adni Mat Leh, Shabinar Abdul Hamid, Zuraida Muhammad

Open publisher page 3 citations

Abstract

The increased demand for electricity has pushed the electrical grid closer to its stability limit. Due to many methods used to enhance the power system, voltage instability and line overloading have become a difficulty. The creation, transmission, and consumption of reactive power can all be used to investigate the nature of voltage stability. Reactive power unbalancing, which happens when the power system is strained, is one of the key reasons of voltage instability. Flexible AC transmission system (FACTS) devices are vital for enhancing the performance of a power system, but they are also quite expensive, thus they must be placed optimally in the power system. Static var compensator (SVC), a FACTS device, can be used to minimise flows in densely laden lines, resulting in minimal system loss and enhanced voltage stability. A method is proposed based on the index of line stability and overall system of VAR power losses was used to select the best position for the SVC device. Using VSI calculation on the power flow system, the weakest bus will be determined and will be assign as the optimal location for SVC. Also, along with this paper an observation on a power flow system with and without SVC are compared. Therefore, the finding of this research paper will show that SVC can stabilize the voltage profile of a power flow system.

About this research paper

What this paper is about

The increased demand for electricity has pushed the electrical grid closer to its stability limit. Due to many methods used to enhance the power system, voltage instability and line overloading have become a difficulty. The creation, transmission, and consumption of reactive power can all be used to investigate the nature of voltage stability. Reactive power unbalancing, which happens when the power system is strained, is one of the key reasons of voltage instability. Flexible AC transmission system (FACTS) devices are vital for enhancing the performance of a power system, but they are also quite expensive, thus they must be placed optimally in the power system. Static var compensator (SVC), a FACTS device, can be used to minimise flows in densely laden lines, resulting in minimal system loss and enhanced voltage stability. A method is proposed based on the index of line stability and overall system of VAR power losses was used to select the best position for the SVC device. Using VSI calculation on the power flow system, the weakest bus will be determined and will be assign as the optimal location for SVC. Also, along with this paper an observation on a power flow system with and without SVC are compared. Therefore, the finding of this research paper will show that SVC can stabilize the voltage profile of a power flow system.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The increased demand for electricity has pushed the electrical grid closer to its stability limit. Due to many methods used to enhance the power system, voltage instability and line overloading have become a difficulty. The creation, transmission, and consumption of reactive power can all be used to investigate the nature of voltage stability. Reactive power unbalancing, which happens when the power system is strained, is one of the key reasons of voltage instability. Flexible AC transmission system (FACTS) devices are vital for enhancing the performance of a power system, but they are also quite expensive, thus they must be placed optimally in the power system. Static var compensator (SVC), a FACTS device, can be used to minimise flows in densely laden lines, resulting in minimal system loss and enhanced voltage stability. A method is proposed based on the index of line stability and overall system of VAR power losses was used to select the best position for the SVC device. Using VSI calculation on the power flow system, the weakest bus will be determined and will be assign as the optimal location for SVC. Also, along with this paper an observation on a power flow system with and without SVC are compared. Therefore, the finding of this research paper will show that SVC can stabilize the voltage profile of a power flow system.

Key concepts: Static VAR compensator, Electric power system, AC power, Voltage optimisation, Volt-ampere reactive, Control theory (sociology), Flexible AC transmission system, Power-flow study

Related papers

Back to paper searchBrowse research topicsOriginal source
Improvement of Voltage Stability in Power System using SVC — Research Paper | ScholarLens