Reactive power loss based voltage instability detection using synchrophasor technology
Hemanthakumar Chappa, Tripta Thakur, Suresh Chandra Srivastava
Abstract
Hemanthakumar Chappa, Tripta Thakur, Suresh Chandra Srivastava
Abstract
This paper present new voltage instability detection index (QLVIDI) based on reactive power loss using Synchrophasor technology. The proposed index is fast as compare to the already existing Voltage Instability Monitoring Index (VIMI) and Improved Voltage Instability Monitoring Index (IVIMI). The proposed scheme utilizes reactive power losses in the lines in consideration with direction of active power flow to calculate the time series data of reactive power losses in the buses. This time series data of reactive power loss is useful for the calculation of change in consecutive reactive power loss and change in reactive power loss from base case reactive power loss for developing QLVIDI. The effectiveness of the proposed index is tested in standard IEEE 30 bus system.
OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper present new voltage instability detection index (QLVIDI) based on reactive power loss using Synchrophasor technology. The proposed index is fast as compare to the already existing Voltage Instability Monitoring Index (VIMI) and Improved Voltage Instability Monitoring Index (IVIMI). The proposed scheme utilizes reactive power losses in the lines in consideration with direction of active power flow to calculate the time series data of reactive power losses in the buses. This time series data of reactive power loss is useful for the calculation of change in consecutive reactive power loss and change in reactive power loss from base case reactive power loss for developing QLVIDI. The effectiveness of the proposed index is tested in standard IEEE 30 bus system.
Key concepts: AC power, Voltage optimisation, Power-flow study, Voltage, Electric power system, Power (physics), Instability, Volt-ampere reactive