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Oprava PF a MPF + jejich implementace pro pmsm system

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[33]1\section{IMpmsm Class Reference}
2\label{classIMpmsm}\index{IMpmsm@{IMpmsm}}
3State evolution model for a PMSM drive and its derivative with respect to \$x\$
4
5
6{\tt \#include $<$pmsm.h$>$}
7
8Inheritance diagram for IMpmsm:\nopagebreak
9\begin{figure}[H]
10\begin{center}
11\leavevmode
12\includegraphics[width=51pt]{classIMpmsm__inherit__graph}
13\end{center}
14\end{figure}
15Collaboration diagram for IMpmsm:\nopagebreak
16\begin{figure}[H]
17\begin{center}
18\leavevmode
19\includegraphics[width=60pt]{classIMpmsm__coll__graph}
20\end{center}
21\end{figure}
22\subsection*{Public Member Functions}
23\begin{CompactItemize}
24\item 
25void {\bf set\_\-parameters} (double Rs0, double Ls0, double dt0, double Ypm0, double kp0, double p0, double J0, double Mz0)\label{classIMpmsm_42818f3426d99fecb7e97be8ffe2e228}
26
27\begin{CompactList}\small\item\em Set mechanical and electrical variables. \item\end{CompactList}\item 
28vec {\bf eval} (const vec \&x0, const vec \&u0)\label{classIMpmsm_45785869d978dda42828a072ec2caebe}
29
30\begin{CompactList}\small\item\em Evaluates \$f(x0,u0)\$. \item\end{CompactList}\item 
31void {\bf dfdx\_\-cond} (const vec \&x0, const vec \&u0, mat \&A, bool full=true)
32\begin{CompactList}\small\item\em Evaluates $A=\frac{d}{dx}f(x,u)|_{x0,u0}$ and writes result into {\tt A} . \item\end{CompactList}\item 
33void {\bf dfdu\_\-cond} (const vec \&x0, const vec \&u0, mat \&A, bool full=true)
34\begin{CompactList}\small\item\em Evaluates $A=\frac{d}{du}f(x,u)|_{x0,u0}$ and writes result into {\tt A} . \item\end{CompactList}\item 
35vec {\bf eval} (const vec \&cond)\label{classdiffbifn_ad7673e16aa1a046b131b24c731c4632}
36
37\begin{CompactList}\small\item\em Evaluates \$f(x0,u0)\$ (VS: Do we really need common eval? ). \item\end{CompactList}\item 
38int {\bf \_\-dimx} () const \label{classdiffbifn_436de7a7301ea9eac7d6081b893bbf57}
39
40\begin{CompactList}\small\item\em access function \item\end{CompactList}\item 
41int {\bf \_\-dimu} () const \label{classdiffbifn_fc8779acbff170611aff0ee70cee3879}
42
43\begin{CompactList}\small\item\em access function \item\end{CompactList}\item 
44int {\bf \_\-dimy} () const \label{classfnc_a8891973d0ca48ce38e1886df45ca298}
45
46\begin{CompactList}\small\item\em access function \item\end{CompactList}\end{CompactItemize}
47\subsection*{Protected Attributes}
48\begin{CompactItemize}
49\item 
50{\bf RV} {\bf rvx}\label{classdiffbifn_bcf96b86250c3cbd465ba5ee62474b75}
51
52\begin{CompactList}\small\item\em Indentifier of the first rv. \item\end{CompactList}\item 
53{\bf RV} {\bf rvu}\label{classdiffbifn_c41c74c7942dba51ef0b0bfed963447d}
54
55\begin{CompactList}\small\item\em Indentifier of the second rv. \item\end{CompactList}\item 
56int {\bf dimx}\label{classdiffbifn_f6918bc0a9dad656b4cddc028137eb78}
57
58\begin{CompactList}\small\item\em cache for rvx.count() \item\end{CompactList}\item 
59int {\bf dimu}\label{classdiffbifn_2e07ce491e973f03d763e37624d0fe79}
60
61\begin{CompactList}\small\item\em cache for rvu.count() \item\end{CompactList}\item 
62int {\bf dimy}\label{classfnc_22d51d10a7901331167f64f80d1af8e9}
63
64\begin{CompactList}\small\item\em Length of the output vector. \item\end{CompactList}\end{CompactItemize}
65
66
67\subsection{Detailed Description}
68State evolution model for a PMSM drive and its derivative with respect to \$x\$.
69
70\subsection{Member Function Documentation}
71\index{IMpmsm@{IMpmsm}!dfdx_cond@{dfdx\_\-cond}}
72\index{dfdx_cond@{dfdx\_\-cond}!IMpmsm@{IMpmsm}}
73\subsubsection{\setlength{\rightskip}{0pt plus 5cm}void IMpmsm::dfdx\_\-cond (const vec \& {\em x0}, const vec \& {\em u0}, mat \& {\em A}, bool {\em full} = {\tt true})\hspace{0.3cm}{\tt  [inline, virtual]}}\label{classIMpmsm_b4378b5d3bf64c683e4cf5c5f1cd56f1}
74
75
76Evaluates $A=\frac{d}{dx}f(x,u)|_{x0,u0}$ and writes result into {\tt A} .
77
78\begin{Desc}
79\item[Parameters:]
80\begin{description}
81\item[{\em full}]denotes that even unchanged entries are to be rewritten. When, false only the changed elements are computed. \item[{\em x0}]numeric value of \$x\$, \item[{\em u0}]numeric value of \$u\$ \item[{\em A}]a place where the result will be stored. \end{description}
82\end{Desc}
83
84
85Reimplemented from {\bf diffbifn} \doxyref{}{p.}{classdiffbifn_6d217a02d4fa13931258d4bebdd0feb4}.\index{IMpmsm@{IMpmsm}!dfdu_cond@{dfdu\_\-cond}}
86\index{dfdu_cond@{dfdu\_\-cond}!IMpmsm@{IMpmsm}}
87\subsubsection{\setlength{\rightskip}{0pt plus 5cm}void IMpmsm::dfdu\_\-cond (const vec \& {\em x0}, const vec \& {\em u0}, mat \& {\em A}, bool {\em full} = {\tt true})\hspace{0.3cm}{\tt  [inline, virtual]}}\label{classIMpmsm_c3f8dad22ae9855c04a1d593b45c99b5}
88
89
90Evaluates $A=\frac{d}{du}f(x,u)|_{x0,u0}$ and writes result into {\tt A} .
91
92\begin{Desc}
93\item[Parameters:]
94\begin{description}
95\item[{\em full}]denotes that even unchanged entries are to be rewritten. When, false only the changed elements are computed. \item[{\em x0}]numeric value of \$x\$, \item[{\em u0}]numeric value of \$u\$ \item[{\em A}]a place where the result will be stored. \end{description}
96\end{Desc}
97
98
99Reimplemented from {\bf diffbifn} \doxyref{}{p.}{classdiffbifn_1978bafd7909d15c139a08c495c24aa0}.
100
101The documentation for this class was generated from the following file:\begin{CompactItemize}
102\item 
103work/mixpp/tests/pmsm.h\end{CompactItemize}
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