Study on Malfunction of OCR Due to Penetration of DER into Power Distribution System with SFCL
Abstract
:1. Introduction
2. Modeling for The Fault Simulation
2.1. Simulated Power Distribution System Modeling
2.2. OCR’s Characteristic Equation Modeling
2.3. Trigger-Type SFCL Modeling
3. Simulation Results
- Case 1: fault simulation without DER and SFCL
- Case 2: fault simulation without DER with SFCL
- Case 3: fault simulation with DER without SFCL
- Case 4: fault simulation with DER and SFCL
3.1. Fault Simulations of Sympathetic Tripping Case
3.2. Fault Simulations of Protection Blinding Case
3.3. Discussion
4. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Index | Value | Unit | |
---|---|---|---|
Source & Transformer | Voltage (main) | 154 j1.0 | kV % |
Leakage Reactance (main) | |||
Capacity (TRmain) | 60 154/22.9 | MVA kV | |
Transformer Ratio (TRmain) | |||
Active power (PDER) | 4 | MW | |
Capacity (TRDER) | 10 4/22.9 | MVA kV | |
Transformer Ratio (TRDER) | |||
Distribution Line | Line Impedance (Z1) | 3.86 + j7.42 | %Ω/km |
Line Impedance (Z0) | 9.87 + j22.68 | %Ω/km | |
Line Length (Z11, Z12, Z21, Z22) | 5 | km | |
Load | Load (Load11, Load12, Load21, Load22) | 5 | MW |
Power factor (Load11, Load12, Load21, Load22) | 0.95 | - |
Index | Value | Unit | |
---|---|---|---|
CB11 | TD | 0.3 | - |
Ipickup | 0.3 | kA | |
CB12 | TD | 0.3 | - |
Ipickup | 0.15 | kA | |
CB22 | TD | 0.02 | - |
Ipickup | 0.15 | kA | |
Common | A | 39.85 | - |
B | 1.084 | - | |
p | 1.95 | - |
Index | Value | Unit | |
---|---|---|---|
HTSC & CLR | Convergence resistance (Rn) | 2 | Ω |
Critical current (IC) | 1.5 | kA | |
Current limiting reactor (CLR) | j0.8 | Ω | |
SW | Vset | 1 | kV |
Ireset | 0.5 | kA |
Trip Time of OCR11 | Trip Time of OCR22 | Note | |
---|---|---|---|
Case1 | 0.877 [s] | - | |
Case2 | 0.907 [s] | - | |
Case3 | 0.874 [s] | 0.818 [s] | OCR22′s sympathetic tripping |
Case4 | 0.904 [s] | 0.763 [s] | OCR22′s sympathetic tripping |
Trip Time of OCR12 | INT Value of OCR11 | Note | |
---|---|---|---|
Case1 | 0.873 [s] | 0.760 | - |
Case2 | 0.886 [s] | 0.711 | Delayed trip time of OCR12, Decreased INT value of OCR11 |
Case3 | 0.858 [s] | 0.691 | Faster trip time of OCR12, Decreased INT value of OCR11 |
Case4 | 0.864 [s] | 0.627 | Faster trip time of OCR12, Decreased INT value of OCR11 |
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Park, M.-K.; Lim, S.-H. Study on Malfunction of OCR Due to Penetration of DER into Power Distribution System with SFCL. Energies 2023, 16, 6137. https://doi.org/10.3390/en16176137
Park M-K, Lim S-H. Study on Malfunction of OCR Due to Penetration of DER into Power Distribution System with SFCL. Energies. 2023; 16(17):6137. https://doi.org/10.3390/en16176137
Chicago/Turabian StylePark, Min-Ki, and Sung-Hun Lim. 2023. "Study on Malfunction of OCR Due to Penetration of DER into Power Distribution System with SFCL" Energies 16, no. 17: 6137. https://doi.org/10.3390/en16176137
APA StylePark, M. -K., & Lim, S. -H. (2023). Study on Malfunction of OCR Due to Penetration of DER into Power Distribution System with SFCL. Energies, 16(17), 6137. https://doi.org/10.3390/en16176137