Home > matpower7.1 > lib > t > t_case_int.m

t_case_int

PURPOSE ^

T_CASE_INT Case data in internal format used to test EXT2INT and INT2EXT.

SYNOPSIS ^

function mpc = t_case_int

DESCRIPTION ^

T_CASE_INT  Case data in internal format used to test EXT2INT and INT2EXT.

CROSS-REFERENCE INFORMATION ^

This function calls: This function is called by:

SOURCE CODE ^

0001 function mpc = t_case_int
0002 %T_CASE_INT  Case data in internal format used to test EXT2INT and INT2EXT.
0003 
0004 %   MATPOWER
0005 
0006 %% MATPOWER Case Format : Version 2
0007 mpc.version = '2';
0008 
0009 %%-----  Power Flow Data  -----%%
0010 %% system MVA base
0011 mpc.baseMVA = 100;
0012 
0013 %% bus data
0014 %    bus_i    type    Pd    Qd    Gs    Bs    area    Vm    Va    baseKV    zone    Vmax    Vmin
0015 mpc.bus = [
0016     1    3    0    0    0    0    1    1    0    345    1    1.1    0.9;
0017     2    2    0    0    0    0    1    1    0    345    1    1.1    0.9;
0018     3    2    0    0    0    0    1    1    0    345    1    1.1    0.9;
0019     4    1    0    0    0    0    1    1    0    345    1    1.1    0.9;
0020     5    1    90    30    0    0    1    1    0    345    1    1.1    0.9;
0021     6    1    0    0    0    0    1    1    0    345    1    1.1    0.9;
0022     7    1    100    35    0    0    1    1    0    345    1    1.1    0.9;
0023     8    1    0    0    0    0    1    1    0    345    1    1.1    0.9;
0024     9    1    125    50    0    0    1    1    0    345    1    1.1    0.9;
0025 ];
0026 
0027 %% generator data
0028 %    bus    Pg    Qg    Qmax    Qmin    Vg    mBase    status    Pmax    Pmin    Pc1    Pc2    Qc1min    Qc1max    Qc2min    Qc2max    ramp_agc    ramp_10    ramp_30    ramp_q    apf
0029 mpc.gen = [
0030     3    85    0    300    -300    1    100    1    270    10    0    0    0    0    0    0    0    0    0    0    0;
0031     2    163    0    300    -300    1    100    1    300    10    0    0    0    0    0    0    0    0    0    0    0;
0032     1    0    0    300    -300    1    100    1    250    90    0    0    0    0    0    0    0    0    0    0    0;
0033 ];
0034 
0035 %% branch data
0036 %    fbus    tbus    r    x    b    rateA    rateB    rateC    ratio    angle    status    angmin    angmax
0037 mpc.branch = [
0038     1    4    0    0.0576    0    0    250    250    0    0    1    -360    360;
0039     4    5    0.017    0.092    0.158    0    250    250    0    0    1    -360    360;
0040     5    6    0.039    0.17    0.358    150    150    150    0    0    1    -360    360;
0041     3    6    0    0.0586    0    0    300    300    0    0    1    -360    360;
0042     6    7    0.0119    0.1008    0.209    40    150    150    0    0    1    -360    360;
0043     7    8    0.0085    0.072    0.149    250    250    250    0    0    1    -360    360;
0044     8    2    0    0.0625    0    250    250    250    0    0    1    -360    360;
0045     8    9    0.032    0.161    0.306    250    250    250    0    0    1    -360    360;
0046     9    4    0.01    0.085    0.176    250    250    250    0    0    1    -360    360;
0047 ];
0048 
0049 %%-----  OPF Data  -----%%
0050 %% generator cost data
0051 %    1    startup    shutdown    n    x1    y1    ...    xn    yn
0052 %    2    startup    shutdown    n    c(n-1)    ...    c0
0053 mpc.gencost = [
0054     2    0    0    2    15    0    0    0    0    0    0    0;
0055     1    0    0    4    0    0    100    2500    200    5500    250    7250;
0056     1    0    0    4    0    0    100    2000    200    4403.5    270    6363.5;
0057 ];
0058 
0059 %% bus names
0060 mpc.bus_name = {
0061             'BUS 1';
0062             'BUS 2';
0063             'BUS 30';
0064             'BUS 4';
0065             'BUS 5';
0066             'BUS 6';
0067             'BUS 7';
0068             'BUS 8';
0069             'BUS 9';
0070 };
0071 
0072 %% generator unit type (see GENTYPES)
0073 mpc.gentype = {
0074     'ST';
0075     'GT';
0076     'HY';
0077 };
0078 
0079 %% generator fuel type (see GENFUELS)
0080 mpc.genfuel = {
0081     'coal';
0082     'ng';
0083     'hydro';
0084 };
0085 
0086 mpc.A = [
0087     1    2    3    4    5    7    8    9    10    11    12    13    14    15    17    18    19    20    21    22    24    25    26    28    29    30;
0088     2    4    6    8    10    14    16    18    20    22    24    26    28    30    34    36    38    40    42    44    48    50    52    56    58    60;
0089 ];
0090 
0091 mpc.N = [
0092     30    29    28    27    26    24    23    22    21    20    19    18    17    16    14    13    12    11    10    9    7    6    5    3    2    1;
0093     60    58    56    54    52    48    46    44    42    40    38    36    34    32    28    26    24    22    20    18    14    12    10    6    4    2;
0094 ];

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