Author Contributions
Conceptualization, J.E.S.-R., N.M.-G., S.D.S.-Z. and J.M.L.-L.; Data curation, J.E.S.-R., N.M.-G., S.D.S.-Z., J.M.L.-L. and J.R.O.-C.; Formal analysis, J.E.S.-R., N.M.-G., S.D.S.-Z. and J.M.L.-L.; Funding acquisition, J.M.L.-L. and N.M.-G.; Investigation, J.E.S.-R., N.M.-G., S.D.S.-Z. and J.M.L.-L.; Methodology, J.E.S.-R., N.M.-G., S.D.S.-Z. and J.M.L.-L.; Project administration, S.D.S.-Z. and N.M.-G.; Resources, S.D.S.-Z., N.M.-G. and J.M.L.-L.; Software, J.E.S.-R.; Supervision, N.M.-G. and J.M.L.-L.; Validation, J.E.S.-R.; Test, J.E.S.-R.; Visualization, J.E.S.-R., N.M.-G., S.D.S.-Z. and J.M.L.-L.; Writing—original draft, J.E.S.-R.; Writing—review and editing, J.R.O.-C., N.M.-G., S.D.S.-Z. and J.M.L.-L. All authors have read and agreed to the published version of the manuscript.
Figure 1.
Single-line diagram of the MG test system.
Figure 1.
Single-line diagram of the MG test system.
Figure 2.
Single-line diagram with faults.
Figure 2.
Single-line diagram with faults.
Figure 3.
Actuation of RL2 vs. RL1 relays for a three-phase fault in the MG test system.
Figure 3.
Actuation of RL2 vs. RL1 relays for a three-phase fault in the MG test system.
Figure 4.
Actuation of RL2 vs. RL1 relays for a single-phase fault.
Figure 4.
Actuation of RL2 vs. RL1 relays for a single-phase fault.
Figure 5.
Actuation of RL4 vs. RL1 relays for a three-phase fault.
Figure 5.
Actuation of RL4 vs. RL1 relays for a three-phase fault.
Figure 6.
Actuation of RL4 vs. RL1 relays for a single-phase fault in the MG test system.
Figure 6.
Actuation of RL4 vs. RL1 relays for a single-phase fault in the MG test system.
Figure 7.
Actuation of RL9 vs. RL1 relays for a three-phase fault in the MG test system.
Figure 7.
Actuation of RL9 vs. RL1 relays for a three-phase fault in the MG test system.
Figure 8.
Actuation of RL9 vs. RL1 relays for a single-phase fault in the MG test system.
Figure 8.
Actuation of RL9 vs. RL1 relays for a single-phase fault in the MG test system.
Figure 9.
Actuation of RL2 vs. RL1 relays for a three-phase fault with DG in the MG test system.
Figure 9.
Actuation of RL2 vs. RL1 relays for a three-phase fault with DG in the MG test system.
Figure 10.
Actuation of RL2 vs. RL1 relays for a single-phase fault with DG for the MG test system.
Figure 10.
Actuation of RL2 vs. RL1 relays for a single-phase fault with DG for the MG test system.
Figure 11.
Actuation of RL4 vs. RL1 relays for a three-phase fault with DG in the MG test system.
Figure 11.
Actuation of RL4 vs. RL1 relays for a three-phase fault with DG in the MG test system.
Figure 12.
Actuation of RL4 vs. RL1 relays for a single-phase fault with DG in the MG test system.
Figure 12.
Actuation of RL4 vs. RL1 relays for a single-phase fault with DG in the MG test system.
Figure 13.
Actuation of RL9 vs. RL1 relays for a three-phase fault with DG.
Figure 13.
Actuation of RL9 vs. RL1 relays for a three-phase fault with DG.
Figure 14.
Actuation of RL9 vs. RL1 for a single-phase fault with DG in the MG test system.
Figure 14.
Actuation of RL9 vs. RL1 for a single-phase fault with DG in the MG test system.
Figure 15.
Current paths for three representative faults.
Figure 15.
Current paths for three representative faults.
Table 1.
Characteristics of MG test systems in previous research work.
Table 1.
Characteristics of MG test systems in previous research work.
Reference | Authors | DERs Considered | OCR Functions | Data Availability |
---|
Batteries | Wind | PV | Conv. DG | Single | Multip. | Partial | Total |
---|
[1] | (Zeineldin et al., 2005) | | | | x | x | | x | |
[14] | (Elsamahy et al., 2022) | | | | x | | | x | |
[15] | (Singh et al., 2016) | | | | x | | | x | |
[16] | (Sortomme et al., 2008) | | x | x | x | | | x | |
[17] | (Saleh et al., 2017) | | | | x | x | | x | |
[18] | (Baghaee et al., 2018) | | x | x | x | x | | x | |
[19,20] | (Alam et al., 2020; Zhang et al., 2019) | x | x | x | x | x | | x | |
[21] | (Lin et al., 2019) | | x | | x | x | | x | |
[22,23] | (Alam et al., 2019; Tiwari et al., 2022) | | x | x | x | x | | x | |
[24,25] | (Plongkrathok et al., 2022; Abeid et al., 2022) | | x | | x | x | | x | |
[26] | (Sampaio et al., 2022) | | | | x | x | | x | |
[27] | (Biswal et al., 2020) | | x | x | | x | | x | |
[28] | (Alam et al., 2021) | | x | x | x | x | | x | |
[29] | (Usta et al., 2019) | x | x | x | | x | | x | |
[30] | (Seo et al., 2019) | | | | x | x | | x | |
[31] | (Altaf et al., 2020) | | x | x | | x | | | x |
[32] | (Chae et al., 2021) | x | | | x | x | | x | |
[33] | (Bakkar et al., 2022) | | | | | x | | x | |
Proposed | | x | x | x | x | | x | | x |
Table 2.
Nominal voltage magnitudes of the proposed MG test system.
Table 2.
Nominal voltage magnitudes of the proposed MG test system.
Bus | Label | Voltage [kV] | Bus | Label | Voltage [kV] |
---|
1 | B1-34.5 | 34.50 | 14 | B14-4.16 | 4.16 |
2 | B2-0.48 | 0.48 | 15 | B15-0.48 | 0.48 |
3 | B3-0.48 | 0.48 | 16 | B16-0.48 | 0.48 |
4 | B4-0.48 | 0.48 | 17 | B17-0.48 | 0.48 |
5 | B5-34.5 | 34.50 | 18 | B18-0.48 | 0.48 |
6 | B6-34.5 | 34.50 | 19 | B19-0.21 | 0.21 |
7 | B7-34.5 | 34.50 | 20 | B20-13.2 | 13.2 |
8 | B8-0.48 | 0.48 | 21 | B21-13.2 | 13.2 |
9 | B9-0.48 | 0.48 | 22 | B22-0.48 | 0.48 |
10 | B10-0.48 | 0.48 | 23 | B23-0.48 | 0.48 |
11 | B11-0.48 | 0.48 | 24 | B24-0.48 | 0.48 |
12 | B12-34.5 | 34.50 | 25 | B25-0.48 | 0.48 |
13 | B13-4.16 | 4.16 | 26 | B26-0.48 | 0.48 |
Table 3.
External grid data of the proposed MG test system.
Table 3.
External grid data of the proposed MG test system.
Max. Values | Min. Values |
---|
Short-Circuit Power Sk″max | 356.3 MVA | Short-Circuit Power Sk″min | 318.1 MVA |
Short-Circuit CurrentIk″max | 5.962605 kA | Short-Circuit Current Ik″min | 5.323337 kA |
c-Factor (max.) | 1.1 | c-Factor (min.) | 1 |
R/X (max.) | 0.2 | R/X (min.) | 0.233 |
Impedance Ratio | Impedance Ratio |
Z2/Z1 max. | 1.164126 | Z2/Z1 min. | 1.163282 |
X0/X1 max. | 1.058075 | X0/X1 min. | 1.069984 |
R0/X0 max. | 0.1332985 | R0/X0 min. | 0.16607 |
Table 4.
Transformer data of the MG test system.
Table 4.
Transformer data of the MG test system.
Transformer | Connection | Size [MVA] | High Voltage [kV] | Low Voltage [kV] | Impedance Z [%] |
---|
T1 | Dyn5 | 3.00 | 34.50 | 0.48 | 10.15 |
T2 | Dyn5 | 2.00 | 34.50 | 0.48 | 10.18 |
T3 | Dyn5 | 3.00 | 34.50 | 0.48 | 10.15 |
T4 | Dyn5 | 2.00 | 34.50 | 0.21 | 4.88 |
T5 | Dyn5 | 3.00 | 36.00 | 0.48 | 7.15 |
T6 | Dyn5 | 3.00 | 36.00 | 0.48 | 7.15 |
T7 | Dyn5 | 0.15 | 0.48 | 0.22 | 4.00 |
T8 | Dyn5 | 3.00 | 13.20 | 0.48 | 5.75 |
T9 | Dyn5 | 2.00 | 34.50 | 0.48 | 11.27 |
T10 | Dyn5 | 2.00 | 34.50 | 0.48 | 11.23 |
T11 | Dyn5 | 2.00 | 34.50 | 0.48 | 13.08 |
T12 | Dyn5 | 1.50 | 34.50 | 0.48 | 4.00 |
T13 | Dyn5 | 3.00 | 34.50 | 0.48 | 10.97 |
T14 | Dyn5 | 3.00 | 34.50 | 0.48 | 13.01 |
T15 | Dyn5 | 1.00 | 34.50 | 4.16 | 7.83 |
T16 | Dyn5 | 1.00 | 34.50 | 4.16 | 7.83 |
T17 | Dyn5 | 1.00 | 34.50 | 0.48 | 7.25 |
T18 | Dyn5 | 1.00 | 34.50 | 0.48 | 7.25 |
T19 | Dyn5 | 3.00 | 13.20 | 0.48 | 5.75 |
Table 5.
Line data of the proposed MG test system.
Table 5.
Line data of the proposed MG test system.
Line | Voltage [kV] | Length [km] | Rated Current [kA] | R1 [Ohm/km] | R0 [Ohm/km] | X1 [Ohm/km] | X0 [Ohm/km] |
---|
L0 | 34.500 | 0.400 | 0.29290 | 0.17440 | 0.56132 | 0.39780 | 1.37544 |
L1 | 34.500 | 0.500 | 0.19610 | 0.26973 | 0.44219 | 0.44252 | 1.86004 |
L2 | 34.500 | 0.150 | 0.29290 | 0.17384 | 0.34612 | 0.39850 | 1.84224 |
L3 | 34.500 | 1.900 | 0.19610 | 0.26973 | 0.44219 | 0.44252 | 1.86004 |
L4 | 15.000 | 0.300 | 0.34790 | 0.06400 | 0.24004 | 0.04100 | 1.80540 |
L5 | 34.500 | 0.300 | 0.29290 | 0.17384 | 0.34612 | 0.39850 | 1.84224 |
Table 9.
Non-conventional renewable energy sources of the MG test system.
Table 9.
Non-conventional renewable energy sources of the MG test system.
Element | Technology | Power | Power Factor |
---|
PV1–PV4 | Photovoltaic | 1.00 | 0.80 |
WP1 | Wind | 1.00 | 0.80 |
BESS | Battery | 0.15 | 0.80 |
Table 10.
Demand data of the proposed MG test system.
Table 10.
Demand data of the proposed MG test system.
Demand | Active Power [MW] | Reactive Power [MVAr] |
---|
C1 | 1.00000 | 0.10000 |
C2 | 0.97014 | 0.24254 |
C3 | 1.00000 | 0.20000 |
C4 | 1.00000 | 0.10000 |
C5 | 1.00000 | 0.30000 |
C6 | 0.09500 | 0.03123 |
C7 | 0.09500 | 0.03123 |
C8 | 0.09500 | 0.03123 |
C9 | 0.05142 | 0.07024 |
C10 | 0.04410 | 0.00895 |
C11 | 2.50000 | 0.50000 |
C12 | 1.00000 | 0.20000 |
C13 | 1.00000 | 0.20000 |
C14 | 1.00000 | 0.10000 |
C15 | 0.80000 | 0.10000 |
C16 | 1.00000 | 0.05000 |
C17 | 1.00000 | 0.10000 |
C18 | 0.47500 | 0.15612 |
C19 | 0.28500 | 0.09367 |
C20 | 0.02250 | 0.01090 |
C21 | 0.10000 | 0.09367 |
C22 | 0.02250 | 0.01090 |
C23 | 0.07600 | 0.02498 |
C24 | 0.02250 | 0.01090 |
C25 | 0.93931 | 0.19073 |
C26 | 0.07600 | 0.02498 |
C27 | 0.02250 | 0.01090 |
C28 | 0.02250 | 0.01090 |
Table 11.
Transformation ratios of CTs and PTs.
Table 11.
Transformation ratios of CTs and PTs.
Relays | CT [A/A] | PT [V/V] |
---|
RL1–RL13,RL25,RL26 | 300/5 | 34,500/115 |
RL14–RL22,RL24,RL27 | 800/5 | 480/115 |
RL23 | 300/5 | 4160/115 |
Table 12.
Function 51 settings in relays.
Table 12.
Function 51 settings in relays.
Relay | Current Setting [p.u.] | Time Dial | Tripping Dir | Curve |
---|
RL1 | 1.29 | 0.47 | None | IEC-VI |
RL2 | 0.22 | 0.42 | Forward | IEC-VI |
RL3 | 0.15 | 0.42 | Forward | IEC-VI |
RL4 | 0.22 | 0.42 | Forward | IEC-VI |
RL5 | 0.37 | 0.42 | Forward | IEC-VI |
RL6 | 0.77 | 0.42 | Forward | IEC-VI |
RL7 | 0.22 | 0.70 | Forward | IEC-VI |
RL8 | 0.22 | 0.21 | Forward | IEC-VI |
RL9 | 0.30 | 0.42 | Forward | IEC-VI |
RL10 | 0.08 | 0.42 | Forward | IEC-VI |
RL11 | 0.08 | 0.42 | Forward | IEC-VI |
RL12 | 0.08 | 0.42 | Forward | IEC-VI |
RL13 | 0.08 | 0.42 | Forward | IEC-VI |
RL14 | 1.96 | 0.03 | Forward | IEC-VI |
RL15 | 1.96 | 0.03 | Forward | IEC-VI |
RL16 | 1.96 | 0.03 | Forward | IEC-VI |
RL17 | 1.96 | 0.025 | Forward | IEC-VI |
RL18 | 1.96 | 0.025 | Forward | IEC-VI |
RL19 | 1.96 | 0.025 | Forward | IEC-VI |
RL20 | 1.96 | 0.025 | Forward | IEC-VI |
RL21 | 1.96 | 0.025 | Forward | IEC-VI |
RL22 | 1.51 | 0.025 | Forward | IEC-VI |
RL23 | 0.61 | 0.085 | Forward | IEC-VI |
RL24 | 1.51 | 0.025 | Forward | IEC-VI |
RL25 | 0.06 | 0.025 | Forward | IEC-VI |
RL26 | 0.08 | 0.14 | Forward | IEC-VI |
RL27 | 0.30 | 0.14 | Forward | IEC-VI |
Table 13.
Function 51N settings in relays.
Table 13.
Function 51N settings in relays.
Relay | Current Setting [p.u.] | Time Dial | Tripping Dir | Curve |
---|
RL1 | 0.391 | 0.700 | None | IEC-VI |
RL2 | 0.067 | 0.420 | Forward | IEC-VI |
RL3 | 0.045 | 0.420 | Forward | IEC-VI |
RL4 | 0.070 | 0.420 | Forward | IEC-VI |
RL5 | 0.112 | 0.420 | Forward | IEC-VI |
RL6 | 0.235 | 0.420 | Forward | IEC-VI |
RL7 | 0.067 | 0.420 | Forward | IEC-VI |
RL8 | 0.067 | 0.420 | Forward | IEC-VI |
RL9 | 0.09 | 0.420 | Forward | IEC-VI |
RL10 | 0.023 | 0.140 | Forward | IEC-VI |
RL11 | 0.023 | 0.140 | Forward | IEC-VI |
RL12 | 0.023 | 0.140 | Forward | IEC-VI |
RL13 | 0.023 | 0.140 | Forward | IEC-VI |
RL14 | 0.602 | 0.140 | Forward | IEC-VI |
RL15 | 0.602 | 0.140 | Forward | IEC-VI |
RL16 | 0.602 | 0.140 | Forward | IEC-VI |
RL17 | 0.602 | 0.025 | Forward | IEC-VI |
RL18 | 0.602 | 0.025 | Forward | IEC-VI |
RL19 | 0.602 | 0.025 | Forward | IEC-VI |
RL20 | 0.602 | 0.025 | Forward | IEC-VI |
RL21 | 0.602 | 0.025 | Forward | IEC-VI |
Table 14.
Function 50 settings in relays.
Table 14.
Function 50 settings in relays.
Relay | Pickup Current [p.u.] | Time Setting [s] | Tripping Dir |
---|
RL2 | 2.26 | 0.10 | Forward |
RL3 | 1.48 | 0.10 | Forward |
RL4 | 2.19 | 0.10 | Forward |
RL7 | 2.88 | 0.10 | Forward |
RL8 | 2.79 | 0.10 | Forward |
RL10 | 0.99 | 0.10 | Forward |
RL11 | 0.99 | 0.10 | Forward |
RL12 | 0.99 | 0.10 | Forward |
RL13 | 0.99 | 0.10 | Forward |
Table 15.
Fuse characteristics of the MG test system.
Table 15.
Fuse characteristics of the MG test system.
Fuse | Brand | Type | Voltage [V] | Current [A] |
---|
F1 | HV-Fuse Links Size Standard | HHD | 36,000.0 | 40.0 |
F2 | HV-Fuse Links Size Standard | HHD | 17,500.0 | 160.0 |
F3 | HV-Fuse Links Size Standard | HHD | 36,000.0 | 31.5 |
Table 16.
F1 fuse curve.
Min. Melt.: I [A] | Min. Melt.: t [s] | Total Clear: I [A] | Total Clear: t [s] |
---|
129.9006 | 9.9865 | 154.0072 | 15.1117 |
137.6387 | 5.1140 | 158.7731 | 9.9865 |
144.7772 | 3.0380 | 168.2164 | 5.1140 |
153.3936 | 1.8937 | 176.9520 | 3.0380 |
166.8041 | 1.0304 | 187.4766 | 1.8937 |
183.3859 | 0.5757 | 203.8726 | 1.0303 |
211.3557 | 0.2749 | 224.1353 | 0.5758 |
268.0909 | 0.0972 | 258.3283 | 0.2748 |
367.2151 | 0.0305 | 327.6598 | 0.0972 |
513.0226 | 0.0103 | 448.8239 | 0.0305 |
Table 17.
F2 fuse curve.
Min. Melt.: I [A] | Min. Melt.: t [s] | Total Clear: I [A] | Total Clear: t [s] |
---|
579.0485 | 4.9354 | 660.0041 | 8.3986 |
654.7481 | 2.1969 | 707.7302 | 4.9354 |
741.4207 | 1.1203 | 800.2503 | 2.1969 |
864.3313 | 0.5854 | 906.1835 | 1.1203 |
1042.6310 | 0.2811 | 1056.3990 | 0.5853 |
1396.1350 | 0.0980 | 1274.3170 | 0.2810 |
2003.1280 | 0.0306 | 1706.3840 | 0.0980 |
2831.8190 | 0.0102 | 2448.2710 | 0.0306 |
Table 18.
F3 fuse curve.
Min. Melt.: I [A] | Min. Melt.: t [s] | Total Clear: I [A] | Total Clear: t [s] |
---|
99.2086 | 22.3410 | 121.0026 | 23.1480 |
105.1097 | 10.0494 | 121.2522 | 22.3410 |
111.3726 | 5.1354 | 128.4662 | 10.0493 |
117.3136 | 3.0700 | 136.1164 | 5.1354 |
123.6731 | 1.9136 | 143.3843 | 3.0700 |
134.0065 | 1.0325 | 151.1546 | 1.9137 |
145.3057 | 0.5784 | 163.7763 | 1.0325 |
162.9285 | 0.2799 | 177.5962 | 0.5783 |
201.3958 | 0.0978 | 199.1389 | 0.2800 |
274.7829 | 0.0308 | 246.1509 | 0.0978 |
391.1513 | 0.0103 | 335.8471 | 0.0307 |
Table 19.
Contingencies considered in the MG test system.
Table 19.
Contingencies considered in the MG test system.
Contingency | Element | Contingency | Element |
---|
Cont. 1 | L1 | Cont. 8 | T16 |
Cont. 2 | L2 | Cont. 9 | T17 |
Cont. 3 | L3 | Cont. 10 | T18 |
Cont. 4 | L5 | Cont. 11 | T2 |
Cont. 5 | Line to external network | Cont. 12 | T3 |
Cont. 6 | T1 | Cont. 13 | T5 |
Cont. 7 | T15 | | |
Table 20.
Voltage magnitudes of the microgrid test system without DG.
Table 20.
Voltage magnitudes of the microgrid test system without DG.
Bus | Voltage [p.u.] | Bus | Voltage [p.u.] |
---|
B1-34.5 | 0.998 | B14-4.16 | 0.988 |
B2-0.48 | 0.988 | B15-0.48 | 0.985 |
B3-0.48 | 0.958 | B16-0.48 | 0.985 |
B4-0.48 | 0.958 | B17-0.48 | 0.934 |
B5-34.5 | 0.998 | B18-0.48 | 0.931 |
B6-34.5 | 0.998 | B19-0.21 | 0.996 |
B7-34.5 | 0.997 | B20-13.2 | 0.930 |
B8-0.48 | 0.917 | B21-13.2 | 0.929 |
B9-0.48 | 0.977 | B22-0.48 | 0.990 |
B10-0.48 | 0.971 | B23-0.48 | 0.995 |
B11-0.48 | 0.976 | B24-0.48 | 0.985 |
B12-34.5 | 0.998 | B25-0.48 | 0.985 |
B13-4.16 | 0.988 | B26-0.48 | 0.979 |
Table 21.
Loadability of assets without GD.
Table 21.
Loadability of assets without GD.
Asset | Loadability [% ] | Asset | Loadability [% ] |
---|
L0 | 94.67 | T8 | 92.65 |
L1 | 17.67 | T9 | 51.76 |
L2 | 25.05 | T10 | 51.76 |
L3 | 21.84 | T11 | 50.78 |
L4 | 34.94 | T12 | 54.00 |
L5 | 48.61 | T13 | 51.15 |
T1 | 14.04 | T14 | 34.22 |
T2 | 61.21 | T15 | 29.47 |
T3 | 55.91 | T16 | 29.46 |
T4 | 50.46 | T17 | 60.72 |
T5 | 68.25 | T18 | 59.53 |
T6 | 72.99 | T19 | 92.65 |
T7 | 68.12 | | |
Table 22.
Most affected buses under contingency.
Table 22.
Most affected buses under contingency.
Contingency | Bus | Voltage [p.u.] |
---|
Cont. 6 T1 | Bus 2-0.48kV | 0.756 |
Cont. 12 T3 | Bus 3-0.48kV | 0.888 |
Cont. 12 T3 | Bus 4-0.48kV | 0.888 |
Cont. 12 T3 | Bus 8-0.48kV | 0.842 |
Table 23.
Overloaded elements.
Table 23.
Overloaded elements.
Contingency | Element | Loadability [%] | Contingency | Element | Loadability [%] |
---|
Cont. 6-T1 | L5 | 163.81 | Cont. 12-T3 | T19 | 100.96 |
Cont. 9-T17 | T18 | 122.39 | Cont. 12-T3 | T2 | 158.02 |
Cont. 10-T18 | T17 | 122.12 | Cont. 12-T3 | T8 | 100.96 |
Table 24.
Fault currents of the microgrid test system without DG.
Table 24.
Fault currents of the microgrid test system without DG.
Failed Element | Single-Phase Failure [kA] | Three-Phase Failure [kA] | Failed Element | Single-Phase Failure [kA] | Three-Phase Failure [kA] |
---|
71%L2 | 5.012 | 56.087 | B9-0.48 | 36.397 | 456.611 |
79%L3 | 3.727 | 47.078 | B10-0.48 | 40.537 | 453.567 |
B1-34.5 | 5.173 | 57.019 | B11-0.48 | 40.537 | 453.567 |
B2-0.48 | 25.235 | 289.534 | B12-34.5 | 5.173 | 57.019 |
B3-0.48 | 51.659 | 447.391 | B13-4.16 | 3.640 | 36.105 |
B4-0.48 | 51.659 | 447.391 | B14-4.16 | 3.640 | 36.105 |
B5-34.5 | 4.646 | 53.601 | B15-0.48 | 30.747 | 312.063 |
B6-34.5 | 4.976 | 56.041 | B16-0.48 | 30.747 | 312.063 |
B7-34.5 | 3.523 | 45.134 | B17-0.48 | 39.945 | 424.859 |
B8-0.48 | 24.004 | 181.684 | B18-0.48 | 37.470 | 399.330 |
Table 25.
Voltage in buses with DG.
Table 25.
Voltage in buses with DG.
Bus | Voltage [p.u.] | Bus | Voltage [p.u.] |
---|
B1-34.5 | 0.999 | B14-4.16 | 0.992 |
B2-0.48 | 0.996 | B15-0.48 | 0.994 |
B3-0.48 | 0.977 | B16-0.48 | 0.994 |
B4-0.48 | 0.977 | B17-0.48 | 0.935 |
B5-34.5 | 0.999 | B18-0.48 | 0.932 |
B6-34.5 | 0.999 | B19-0.21 | 0.996 |
B7-34.5 | 0.998 | B20-13.2 | 0.949 |
B8-0.48 | 0.937 | B21-13.2 | 0.949 |
B9-0.48 | 0.980 | B22-0.48 | 0.990 |
B10-0.48 | 0.976 | B23-0.48 | 0.996 |
B11-0.48 | 0.982 | B24-0.48 | 0.986 |
B12-34.5 | 0.999 | B25-0.48 | 0.986 |
B13-4.16 | 0.992 | B26-0.48 | 0.987 |
Table 26.
Loadability of elements with DG.
Table 26.
Loadability of elements with DG.
Element | Loadability [%] | Element | Loadability [%] |
---|
L0 | 67.51 | T8 | 90.67 |
L1 | 9.59 | T9 | 51.73 |
L2 | 18.59 | T10 | 51.73 |
L3 | 19.92 | T11 | 50.75 |
L4 | 34.20 | T12 | 53.97 |
L5 | 59.64 | T13 | 47.49 |
T1 | 2.13 | T14 | 30.34 |
T2 | 29.37 | T15 | 18.87 |
T3 | 26.83 | T16 | 18.86 |
T4 | 50.44 | T17 | 33.75 |
T5 | 67.23 | T18 | 33.09 |
T6 | 72.95 | T19 | 90.67 |
T7 | 67.53 | | |
Table 27.
Fault currents with DG.
Table 27.
Fault currents with DG.
Failed Element | Single-Phase Failure [kA] | Three-Phase Failure [kA] | Failed Element | Single-Phase Failure [kA] | Three-Phase Failure [kA] |
---|
71%L2 | 7.725 | 89.312 | B9-0.48 | 54.952 | 692.371 |
79%L3 | 5.667 | 73.929 | B10-0.48 | 61.515 | 690.815 |
B1-34.5 | 7.966 | 90.689 | B11-0.48 | 61.515 | 690.815 |
B2-0.48 | 77.774 | 711.800 | B12-34.5 | 7.966 | 90.689 |
B3-0.48 | 97.231 | 1.020.720 | B13-4.16 | 6.564 | 65.220 |
B4-0.48 | 97.231 | 1.020.720 | B14-4.16 | 6.564 | 65.220 |
B5-34.5 | 7.185 | 85.646 | B15-0.48 | 46.781 | 475.750 |
B6-34.5 | 7.668 | 89.244 | B16-0.48 | 46.781 | 475.750 |
B7-34.5 | 5.346 | 70.663 | B17-0.48 | 58.391 | 624.170 |
B8-0.48 | 34.334 | 268.966 | B18-0.48 | 54.931 | 586.970 |
Table 28.
Operating times (in seconds) of relays without DG.
Table 28.
Operating times (in seconds) of relays without DG.
Fault | Main Relay | Backup Relay | Current [kA] | Fault | Main Relay | Backup Relay | Current [kA] |
---|
Fault 1 | RL2 | RL1 | 5.702 | Fault 7 | RL8 | RL1 | 5.702 |
| 0.120 | 0.462 | | | 0.120 | 0.462 | |
Fault 2 | RL3 | RL1 | 5.702 | Fault 8 | RL9 | RL1 | 5.702 |
| 0.120 | 0.462 | | | 0.298 | 0.462 | |
Fault 3 | RL4 | RL1 | 5.702 | Fault 9 | RL10 | RL9 | 5.667 |
| 0.120 | 0.462 | | | 0.120 | 0.298 | |
Fault 4 | RL5 | RL1 | 5.702 | Fault 10 | RL11 | RL9 | 5.672 |
| 0.298 | 0.462 | | | 0.120 | 0.298 | |
Fault 5 | RL6 | RL1 | 5.702 | Fault 11 | RL12 | RL9 | 5.588 |
| 0.298 | 0.462 | | | 0.120 | 0.298 | |
Fault 6 | RL7 | RL1 | 5.702 | Fault 12 | RL13 | RL9 | 5.592 |
| 0.120 | 0.462 | | | 0.120 | 0.298 | |
Table 29.
Operating times (in seconds) of relays in scenario with DG.
Table 29.
Operating times (in seconds) of relays in scenario with DG.
Faults | Main Relay | Backup Relay | Current [kA] | Faults | Main Relay | Backup Relay | Current [kA] |
---|
Fault 1 | RL2 | RL1 | 8.918 | Fault 7 | RL8 | RL1 | 8.918 |
| 0.120 | 0.462 | | | 0.120 | 0.462 | |
Fault 2 | RL3 | RL1 | 8.918 | Fault 8 | RL9 | RL1 | 8.918 |
| 0.120 | 0.462 | | | 0.298 | 0.462 | |
Fault 3 | RL4 | RL1 | 8.918 | Fault 9 | RL10 | RL9 | 8.860 |
| 0.120 | 0.462 | | | 0.120 | 0.298 | |
Fault 4 | RL5 | RL1 | 8.918 | Fault 10 | RL11 | RL9 | 8.869 |
| 0.298 | 0.462 | | | 0.120 | 0.298 | |
Fault 5 | RL6 | RL1 | 8.918 | Fault 11 | RL12 | RL9 | 8.727 |
| 0.298 | 0.462 | | | 0.120 | 0.298 | |
Fault 6 | RL7 | RL1 | 8.918 | Fault 12 | RL13 | RL9 | 8.734 |
| 0.120 | 0.462 | | | 0.120 | 0.298 | |