00001 #ifndef PMSM_H
00002 #define PMSM_H
00003 
00004 #include <stat/libFN.h>
00005 #include <userinfo.h>
00006 
00007 
00008 
00009 RV rx ( "1 2 3 4", "{ia ib om th }", ones_i ( 4 ), zeros_i ( 4 ));
00010 RV ru ( "5 6", "{ua ub }", ones_i ( 2 ) ,zeros_i ( 2 ));
00011 RV ry ( "7 8", "{oia oib }", ones_i ( 2 ) ,zeros_i ( 2 ));
00012 
00013 class uipmsm : public uibase{
00014         double Rs, Ls, dt, Ypm, kp, p,  J, Mz;
00015 };
00016 
00018 class IMpmsm : public diffbifn {
00019 protected:
00020         double Rs, Ls, dt, Ypm, kp, p,  J, Mz;
00021 
00022 public:
00023         IMpmsm() :diffbifn (rx.count(), rx, ru ) {};
00025         void set_parameters ( double Rs0, double Ls0, double dt0, double Ypm0, double kp0, double p0, double J0, double Mz0 ) {Rs=Rs0; Ls=Ls0; dt=dt0; Ypm=Ypm0; kp=kp0; p=p0; J=J0; Mz=Mz0;}
00026 
00027         vec eval ( const vec &x0, const vec &u0 ) {
00028                 
00029                 double iam = x0 ( 0 );
00030                 double ibm = x0 ( 1 );
00031                 double omm = x0 ( 2 );
00032                 double thm = x0 ( 3 );
00033                 double uam = u0 ( 0 );
00034                 double ubm = u0 ( 1 );
00035 
00036                 vec xk=zeros ( 4 );
00037                 
00038                 xk ( 0 ) = ( 1.0- Rs/Ls*dt ) * iam + Ypm/Ls*dt*omm * sin ( thm ) + uam*dt/Ls;
00039                 
00040                 xk ( 1 ) = ( 1.0- Rs/Ls*dt ) * ibm - Ypm/Ls*dt*omm * cos ( thm ) + ubm*dt/Ls;
00041                 
00042                 xk ( 2 ) = omm + kp*p*p * Ypm/J*dt* ( ibm * cos ( thm )-iam * sin ( thm ) ) - p/J*dt*Mz;
00043                 
00044                 xk ( 3 ) = thm + omm*dt; 
00045                 if ( xk ( 3 ) >pi ) xk ( 3 )-=2*pi;
00046                 if ( xk ( 3 ) <-pi ) xk ( 3 ) +=2*pi;
00047                 return xk;
00048         }
00049 
00050         void dfdx_cond ( const vec &x0, const vec &u0, mat &A, bool full=true ) {
00051                 double iam = x0 ( 0 );
00052                 double ibm = x0 ( 1 );
00053                 double omm = x0 ( 2 );
00054                 double thm = x0 ( 3 );
00055                 
00056                 A ( 0,0 ) = ( 1.0- Rs/Ls*dt ); A ( 0,1 ) = 0.0;
00057                 A ( 0,2 ) = Ypm/Ls*dt* sin ( thm ); A ( 0,3 ) = Ypm/Ls*dt*omm * ( cos ( thm ) );
00058                 
00059                 A ( 1,0 ) = 0.0 ; A ( 1,1 ) = ( 1.0- Rs/Ls*dt );
00060                 A ( 1,2 ) = -Ypm/Ls*dt* cos ( thm ); A ( 1,3 ) = Ypm/Ls*dt*omm * ( sin ( thm ) );
00061                 
00062                 A ( 2,0 ) = kp*p*p * Ypm/J*dt* ( - sin ( thm ) );
00063                 A ( 2,1 ) = kp*p*p * Ypm/J*dt* ( cos ( thm ) );
00064                 A ( 2,2 ) = 1.0;
00065                 A ( 2,3 ) = kp*p*p * Ypm/J*dt* ( -ibm * sin ( thm )-iam * cos ( thm ) );
00066                 
00067                 A ( 3,0 ) = 0.0; A ( 3,1 ) = 0.0; A ( 3,2 ) = dt; A ( 3,3 ) = 1.0;
00068         }
00069 
00070         void dfdu_cond ( const vec &x0, const vec &u0, mat &A, bool full=true ) {it_error ( "not needed" );};
00071 
00072 };
00073 
00074 class IMpmsmStat : public IMpmsm {
00075         IMpmsmStat() :IMpmsm() {};
00077         void set_parameters ( double Rs0, double Ls0, double dt0, double Ypm0, double kp0, double p0, double J0, double Mz0 ) {Rs=Rs0; Ls=Ls0; dt=dt0; Ypm=Ypm0; kp=kp0; p=p0; J=J0; Mz=Mz0;}
00078 
00079         vec eval ( const vec &x0, const vec &u0 ) {
00080                 
00081                 double iam = x0 ( 0 );
00082                 double ibm = x0 ( 1 );
00083                 double omm = x0 ( 2 );
00084                 double thm = x0 ( 3 );
00085                 double uam = u0 ( 0 );
00086                 double ubm = u0 ( 1 );
00087 
00088                 vec xk=zeros ( 4 );
00089                 
00090                 xk ( 0 ) = ( 1.0- Rs/Ls*dt ) * iam + Ypm/Ls*dt*omm * sin ( thm ) + uam*dt/Ls;
00091                 
00092                 xk ( 1 ) = ( 1.0- Rs/Ls*dt ) * ibm - Ypm/Ls*dt*omm * cos ( thm ) + ubm*dt/Ls;
00093                 
00094                 xk ( 2 ) = omm;
00095                 
00096                 xk ( 3 ) = rem(thm + omm*dt,2*pi); 
00097                 return xk;
00098         }
00099 
00100         void dfdx_cond ( const vec &x0, const vec &u0, mat &A, bool full=true ) {
00101 
00102 
00103                 double omm = x0 ( 2 );
00104                 double thm = x0 ( 3 );
00105                 
00106                 A ( 0,0 ) = ( 1.0- Rs/Ls*dt ); A ( 0,1 ) = 0.0;
00107                 A ( 0,2 ) = Ypm/Ls*dt* sin ( thm ); A ( 0,3 ) = Ypm/Ls*dt*omm * ( cos ( thm ) );
00108                 
00109                 A ( 1,0 ) = 0.0 ; A ( 1,1 ) = ( 1.0- Rs/Ls*dt );
00110                 A ( 1,2 ) = -Ypm/Ls*dt* cos ( thm ); A ( 1,3 ) = Ypm/Ls*dt*omm * ( sin ( thm ) );
00111                 
00112                 A ( 2,0 ) = 0.0;
00113                 A ( 2,1 ) = 0.0;
00114                 A ( 2,2 ) = 1.0;
00115                 A ( 2,3 ) = 0.0;
00116                 
00117                 A ( 3,0 ) = 0.0; A ( 3,1 ) = 0.0; A ( 3,2 ) = dt; A ( 3,3 ) = 1.0;
00118         }
00119 
00120         void dfdu_cond ( const vec &x0, const vec &u0, mat &A, bool full=true ) {it_error ( "not needed" );};
00121 
00122 };
00123 
00125 class OMpmsm: public diffbifn {
00126 public:
00127         OMpmsm() :diffbifn (2, rx,ru ) {};
00128 
00129         vec eval ( const vec &x0, const vec &u0 ) {
00130                 vec y ( 2 );
00131                 y ( 0 ) = x0 ( 0 );
00132                 y ( 1 ) = x0 ( 1 );
00133                 return y;
00134         }
00135 
00136         void dfdx_cond ( const vec &x0, const vec &u0, mat &A, bool full=true ) {
00137                 A.clear();
00138                 A ( 0,0 ) = 1.0;
00139                 A ( 1,1 ) = 1.0;
00140         }
00141 };
00142 
00143 #endif //PMSM_H