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authorAngelo Rossi <angelo.rossi.homelab@gmail.com>2023-06-21 12:04:16 +0000
committerAngelo Rossi <angelo.rossi.homelab@gmail.com>2023-06-21 12:04:16 +0000
commitb18347ffc9db9641e215995edea1c04c363b2bdf (patch)
treef3908dc911399f1a21e17d950355ee56dc0919ee /benchmarks/dcn18.dat
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+BEGIN NEW DATA CASE
+C BENCHMARK DCNEW-18
+C 1st of ? subcases that confirm additional aspects of U.M. usage.
+C U.M. illustration of SHARE. From Dr. Yin Yuexin by E-mail on 30 Jan 1996
+C SIMULATION OF A THREE-PHASE SYNCHRONOUS MOTOR - GENERATOR SET USING THE
+C U.M. MODULE --- believed to be originally from Prof. Juan Martinez
+C The machines have different number of poles: motor = 3 pole pairs, generator
+C is 6 pole pairs. Steady State is calculated using Automatic Initialization.
+C Terminal voltages of motor and generator have been adjusted so that
+C mechanical torques are equal. * Sudden change in the generator load.
+C The simulation is made using SHARE to connect the two shafts mechanically
+C EPSILN = 1.E-12 was removed (default 1.E-8 gives nearly identcal answers).
+C Dynamics shown here, over the first 10 msec, are just the tip of the
+C iceberg. Extend TMAX to 5 sec to see much more. The motor torque is not
+C at all constant as the PRINTER PLOT shows over 10 msec. Instead, it
+C involves an oscillation having a period of about 1.2 sec. The same
+C is true for the envelope of the armature current. For such longer runs,
+C double DELTAT to .2 msec (curves will not change significantly).
+POWER FREQUENCY, 50
+ 0.0001 .010
+ 1 1 1 1 1 -1 1
+ 20 20 100 100 1000 1000
+C ----- Power network equivalent impedance
+ 0BUS-AMBUS-A0 .250 3.50
+ 0BUS-BMBUS-B0BUS-AMBUS-A0
+ 0BUS-CMBUS-C0BUS-AMBUS-A0
+C ----- Generator load
+ 0BUS-AG 5.0 4.5
+ 0BUS-BG 5.0 4.5
+ 0BUS-CG 5.0 4.5
+C ----- Generator load change (connect these by switch closure at 1 msec):
+ 0BUSAG1 4.8 4.0
+ 0BUSBG1 4.8 4.0
+ 0BUSCG1 4.8 4.0
+C - Field circuits of motor:
+ 0BUSFM1 1.0
+ 0BUSFM1BUSFM0 1.E-10
+C - Field circuits for generator:
+ 0BUSFG1 1.0
+ 0BUSFG1BUSFG0 1.E-10
+C ----- Mechanical network data
+ 0BUSMM1BUSMM0 1.E-10
+ 0BUSMM0 10.0E9
+ 0BUSMM0BUSMG0 1.E-10
+ 0BUSMG0 39.4E9
+ 0BUSMG1BUSMG0 1.E-10
+BLANK CARD ENDING BRANCH CARDS.
+ BUS-AGBUSAG1 .001 99.0 { 1st of 3 switches close at 1 msec to add load
+ BUS-BGBUSBG1 .001 99.0
+ BUS-CGBUSCG1 .001 99.0
+C BUS-AGBUSAG1 -1.0 99.0 { 1st of 3 switches close at 1 msec to add load
+C BUS-BGBUSBG1 -1.0 99.0
+C BUS-CGBUSCG1 -1.0 99.0
+BLANK CARD ENDING SWITCH CARDS.
+C ----- Infinite bus source voltages
+14BUS-A0 9800.0 50.0 0.0 -1.0
+14BUS-B0 9800.0 50.0 -120.0 -1.0
+14BUS-C0 9800.0 50.0 120.0 -1.0
+C ----- Excitation source voltages
+C - (Actual value set by Steady State Initialization)
+C - Motor
+14BUSFM1 0.01 .00001 0.0 -1.0
+C - Generator
+14BUSFG1 0.01 .00001 0.0 -1.0
+C ----- Current sources simulating mechanical torques under steady state
+C - (Actual value should be zero)
+14BUSMM1-1 0.01 .00001 0.0 -1.0
+14BUSMG1-1 0.01 .00001 0.0 -1.0
+C ----- Two synchronous machine specifications (using U.M.) follow:
+19 UM { Universal Machine of Prof. Hian Lauw is Type-19 source component
+ 1 { This gives prediction for armature coils ("0" in col. 2 for compensation)
+BLANK card ending Class 1 UM data, which is not repeated
+C ============= Motor data is for 1st of 2 conventional synchronous machines:
+ 1 2 1111BUSMM0 3 .001 50.
+ .0082506
+ .0059588
+SHARE 2 { Shaft of this UM-1 is to be connected to shaft of UM-2
+9444.02 -9.4 BUSFM1BUSMM1
+C - UM Coil-Table
+0.014400 0.0005500 BUS-AM 1
+0.014400 0.0013751 BUS-BM
+0.014400 0.0013751 BUS-CM
+0.001450 0.0010313 BUSFM0
+0.020372 0.0001019
+0.133560 0.0007192
+C ============ Generator data is for 2nd of 2 conventional synchronous machines
+ 1 2 111 BUSMG0 6 .001 100.
+ .0095748
+ .0073339
+SHARE 1 { Shaft of this UM-2 is to be connected to shaft of UM-1
+9400.0 0.0 BUSFG1
+C - UM Coil-Table
+0.0256000 0.0009167 BUS-AG 1
+0.0256000 0.0018335 BUS-BG
+0.0256000 0.0018335 BUS-CG
+0.0012913 0.0014012 BUSFG0
+0.0271620 0.0002445
+0.1333400 0.0006667
+BLANK CARD ENDING UM DATA.
+BLANK CARD ENDING SOURCE CARDS.
+C Total network loss P-loss by summing injections = 2.085588779750E+07
+C Total network loss P-loss by summing injections = 2.998766670851E+16
+C Total network loss P-loss by summing injections = 2.998766672952E+16
+C Total network loss P-loss by summing injections = 2.998766672952E+16
+C 1st gen: UM2MCC 104.71975511966 104.71975511966 -.1628101692E-3 .1211292268344 -.0085247205233 6.3423114859661
+C 0.0 0.0 .12112911741752 90.0770115 -6.342305756912 -0.0013441
+C
+C 2nd gen: BUSMM0 104.71975511966 104.71975511966 192780.21968365 192780.49349675 .100939486986E8 .100939630354E8
+C 0.0 0.0 324.91779476689 0.0965680 -17012.655951 0.9999986
+ BUS-AMBUS-AG { Request for output of node voltages
+C Step Time BUS-AM BUS-AG UM-1 UM-1 UM-1 UM-1 UM-2 UM-2 UM-2
+C TQGEN OMEGM THETAM IPA TQGEN OMEGM IPA
+C 0 0.0 9317.20779 9400.00222 -192780.22 104.719755 -.49123491 -1428.7533 192782.988 104.719755 1424.4929
+C 1 .1E-3 9361.30121 9382.16106 -192781.1 104.719755 -.49123491 -1431.6422 192780.108 104.719755 1472.24713
+C 2 .2E-3 9395.4359 9325.62226 -192781.13 104.719755 -.49123491 -1433.1122 192777.93 104.719755 1514.19778
+C 3 .3E-3 9421.26214 9234.08498 -192781.15 104.719755 -.49123491 -1433.1679 192775.738 104.719755 1550.17388
+C 100 .01 -9315.4209 8085.5945 -192956.77 104.696694 -.49153195 1430.08855 307671.343 104.696652 2304.75957
+BLANK card ending node voltage output requests
+C maxima : 9444.04202 9400.00222 -192780.22 104.719755 -.49123491 1430.08855 349434.719 104.719755 2304.75957
+C Times of max : .5E-3 0.0 0.0 0.0 .0016 .01 .0034 0.0 .01
+C minima : -9315.4209 -8421.5743 -192956.77 104.696694 -.49153195 -1433.1679 192762.301 104.696652 -3028.4258
+C Times of min : .01 .0052 .01 .01 .01 .3E-3 .1E-2 .01 .006
+ PRINTER PLOT
+ 194 2. 0.0 10. UM-1 TQGEN UM-2 TQGEN { Limits: (-1.930, 3.494)
+ 144 2. 0.0 10. BUS-AMBUS-AG { Limits: (-9.315, 9.444)
+BLANK card ending plot cards
+BEGIN NEW DATA CASE
+BLANK