Home > matpower7.0 > extras > sdp_pf > case2local.m

case2local

PURPOSE ^

CASE2LOCAL Power flow data for 2-bus system used in [1].

SYNOPSIS ^

function mpc = case2local

DESCRIPTION ^

CASE2LOCAL    Power flow data for 2-bus system used in [1].
   Please see CASEFORMAT for details on the case file format.

   The semidefinite relaxation of the OPF problem fails to solve
   case2local for upper limits on bus two voltage magnitude between 
   0.985 and 1.04. See [1] for more details.

   [1] W. Bukhsh, A. Grothey, K. McKinnon, and P. Trodden, "Local
       Solutions of Optimal power Flow," Tech. Report. ERGO-11-017,
       University of Edinburgh School of Mathematics, Edinburgh Research
       Group in Optimization, 2011. [Online]. Available:
       https://www.maths.ed.ac.uk/ERGO/pubs/ERGO-11-017.html

CROSS-REFERENCE INFORMATION ^

This function calls: This function is called by:

SOURCE CODE ^

0001 function mpc = case2local
0002 %CASE2LOCAL    Power flow data for 2-bus system used in [1].
0003 %   Please see CASEFORMAT for details on the case file format.
0004 %
0005 %   The semidefinite relaxation of the OPF problem fails to solve
0006 %   case2local for upper limits on bus two voltage magnitude between
0007 %   0.985 and 1.04. See [1] for more details.
0008 %
0009 %   [1] W. Bukhsh, A. Grothey, K. McKinnon, and P. Trodden, "Local
0010 %       Solutions of Optimal power Flow," Tech. Report. ERGO-11-017,
0011 %       University of Edinburgh School of Mathematics, Edinburgh Research
0012 %       Group in Optimization, 2011. [Online]. Available:
0013 %       https://www.maths.ed.ac.uk/ERGO/pubs/ERGO-11-017.html
0014 
0015 t = 17.625;
0016 
0017 %% MATPOWER Case Format : Version 2
0018 mpc.version = '2';
0019 
0020 %%-----  Power Flow Data  -----%%
0021 %% system MVA base
0022 mpc.baseMVA = 100;
0023 
0024 %% bus data
0025 %    bus_i    type    Pd    Qd    Gs    Bs    area    Vm    Va    baseKV    zone    Vmax    Vmin
0026 mpc.bus = [
0027     1    3    0    0    0    0    1    0.9703    0    345    1    1.05    0.95;
0028     2    1    20*t    -20.3121*t    0    0    1    1.03    -64.3755    345    1    1.03    0.95;
0029 ];
0030 
0031 %% generator data
0032 %    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
0033 mpc.gen = [
0034     1    447.67    153.55    900    -900    0.9703    100    1    900    0    0    0    0    0    0    0    0    0    0    0    0;
0035 ];
0036 
0037 %% branch data
0038 %    fbus    tbus    r    x    b    rateA    rateB    rateC    ratio    angle    status    angmin    angmax
0039 mpc.branch = [
0040     1    2    0.04    0.20    0.0    900    900    900    0    0    1    -360    360;
0041 ];
0042 
0043 %%-----  OPF Data  -----%%
0044 %% area data
0045 %    area    refbus
0046 mpc.areas = [
0047     1    1;
0048 ];
0049 
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    1500    0    3    0    1    0;
0055 ];

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