ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION - Info and Reading Options
By Kamal Garg, Dr. Gagandeep Kaur
"ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION" and the language of the book is english-handwritten.
“ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION” Metadata:
- Title: ➤ ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION
- Author: Kamal Garg, Dr. Gagandeep Kaur
- Language: english-handwritten
“ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION” Subjects and Themes:
- Subjects: ➤ Power Quality Disturbance - Voltage Sag - RMS Method - Transformer Configuration - Fault Simulation - MATLAB/SimulinkMATLAB/Simulink - Yg-Yg - Yg-Δ11 - Yg-Y - Voltage Sag Indices
Edition Identifiers:
- Internet Archive ID: ➤ httpsierj.injournalindex.phpierjarticleview4386
AI-generated Review of “ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION”:
"ANALYSIS OF POWER QUALITY DISTURBANCE DUE TO VOLTAGE SAG ON 33/11 KV NETWORK WITH DIFFERENT TRANSFORMER CONFIGURATION" Description:
The Internet Archive:
<span style="color:rgba(0,0,0,0.87);font-family:'Noto Sans', '-apple-system', BlinkMacSystemFont, 'Segoe UI', Roboto, 'Oxygen-Sans', Ubuntu, Cantarell, 'Helvetica Neue', sans-serif;font-size:14px;background-color:rgb(255,255,255);">This paper investigates the impact of voltage sags on power quality in a 33/11 kV distribution network by analyzing the behavior of different transformer configurations under various fault conditions. Voltage sag, a critical power quality disturbance, affects industrial performance and equipment reliability. Using MATLAB/Simulink, the 33/11 kV network supplying Shakti Nagar (MPPTCL) was modeled and subjected to different types of faults (SLG, DLG, DL, and 3-Φ). Simulation results were analyzed across three transformer configurations—Yg-Yg, Yg-Δ11, and Yg-Y. The performance of each configuration was compared using RMS voltage drop and voltage sag indices. The study concludes that transformer connection significantly influences the severity of voltage sag. The Yg-Y configuration offered the most stable response under SLG fault, while Yg-Δ11 performed better under DL and DLG faults.</span>
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