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A new method for ferroresonance suppression in an IEEE 33-bus distribution system integrated with multi distributed
Alaa M Abdel-Hamed1, Mohamed M El-Shafhy2,3, Ebrahim A Badran4
1Electrical Power and Machines Department, High Institute of Engineering, El-Shorouk Academy, Cairo, Egypt.
This study introduces a novel RLC shunt limiter to mitigate ferroresonance in distribution systems (DS) with multiple distributed generations (DGs). The method effectively suppresses ferroresonance, demonstrating superiority over existing techniques.
Area of Science:
- Electrical Engineering
- Power Systems Engineering
Background:
- Integrating distributed generation (DG) into distribution systems (DS) offers benefits but introduces challenges like ferroresonance.
- Ferroresonance in distribution systems with multiple DGs is a significant research gap.
Purpose of the Study:
- To address the research gap by investigating and mitigating ferroresonance in a distribution system with multiple DGs.
- To present and validate a new ferroresonance mitigation method.
Main Methods:
- A novel RLC shunt limiter was designed and implemented for ferroresonance mitigation.
- The RLC shunt limiter's dimensions were optimized for the specific system.
- Ferroresonance in an IEEE-33 bus radial DS integrated with multi-DGs was investigated.
- A negative sequence detector was utilized to activate the shunt limiter during ferroresonance.
Main Results:
- The proposed RLC shunt limiter effectively mitigated ferroresonance in the integrated distribution system.
- The RLC shunt limiter demonstrated superior performance compared to existing methods.
- The negative sequence detector successfully triggered the shunt limiter during ferroresonance events.
Conclusions:
- The developed RLC shunt limiter is an effective solution for ferroresonance mitigation in multi-DG distribution systems.
- The proposed method offers a reliable and superior alternative to existing ferroresonance control strategies.
- Further research can explore the application of this method in more complex power system configurations.
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