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iac.cpp
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1 /*
2  * iac.cpp - AC current source class implementation
3  *
4  * Copyright (C) 2004, 2006, 2007, 2008 Stefan Jahn <stefan@lkcc.org>
5  *
6  * This is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation; either version 2, or (at your option)
9  * any later version.
10  *
11  * This software is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14  * GNU General Public License for more details.
15  *
16  * You should have received a copy of the GNU General Public License
17  * along with this package; see the file COPYING. If not, write to
18  * the Free Software Foundation, Inc., 51 Franklin Street - Fifth Floor,
19  * Boston, MA 02110-1301, USA.
20  *
21  * $Id$
22  *
23  */
24 
25 #if HAVE_CONFIG_H
26 # include <config.h>
27 #endif
28 
29 #include "component.h"
30 #include "iac.h"
31 
32 using namespace qucs;
33 
34 iac::iac () : circuit (2) {
35  type = CIR_IAC;
36  setISource (true);
37 }
38 
39 void iac::initSP (void) {
40  allocMatrixS ();
41  setS (NODE_1, NODE_1, 1.0);
42  setS (NODE_1, NODE_2, 0.0);
43  setS (NODE_2, NODE_1, 0.0);
44  setS (NODE_2, NODE_2, 1.0);
45 }
46 
47 void iac::initDC (void) {
48  allocMatrixMNA ();
49  clearI ();
50 }
51 
52 void iac::initAC (void) {
53  nr_double_t a = getPropertyDouble ("I");
54  nr_double_t p = getPropertyDouble ("Phase");
55  nr_complex_t i = qucs::polar (a, rad (p));
56  allocMatrixMNA ();
57  setI (NODE_1, +i); setI (NODE_2, -i);
58 }
59 
60 void iac::calcTR (nr_double_t t) {
61  nr_double_t f = getPropertyDouble ("f");
62  nr_double_t p = getPropertyDouble ("Phase");
63  nr_double_t d = getPropertyDouble ("Theta");
64  nr_double_t a = getPropertyDouble ("I");
65  nr_double_t s = getNet()->getSrcFactor ();
66  nr_double_t o = 2 * M_PI * f;
67  nr_double_t T = p / f / 360;
68  nr_double_t i = s * a * std::exp (-(t + T) * d * f) * std::sin (o * t + rad (p));
69  setI (NODE_1, +i); setI (NODE_2, -i);
70 }
71 
72 // properties
73 PROP_REQ [] = {
74  { "I", PROP_REAL, { 1e-3, PROP_NO_STR }, PROP_NO_RANGE }, PROP_NO_PROP };
75 PROP_OPT [] = {
76  { "Phase", PROP_REAL, { 0, PROP_NO_STR }, PROP_RNGII (-360, 360) },
77  { "Theta", PROP_REAL, { 0, PROP_NO_STR }, PROP_POS_RANGE },
78  { "f", PROP_REAL, { 1e9, PROP_NO_STR }, PROP_POS_RANGE },
79  PROP_NO_PROP };
80 struct define_t iac::cirdef =
std::complex< nr_double_t > nr_complex_t
Definition: complex.h:31
#define PROP_POS_RANGE
Definition: netdefs.h:129
PROP_NO_SUBSTRATE
Definition: iac.cpp:81
#define NODE_2
Definition: circuit.h:35
nr_double_t getSrcFactor(void)
Definition: net.h:87
#define PROP_RNGII(f, t)
Definition: netdefs.h:138
void setISource(bool i)
Definition: circuit.h:194
#define PROP_DEF
Definition: netdefs.h:189
Definition: iac.cpp:80
void initDC(void)
Definition: iac.cpp:47
nr_double_t getPropertyDouble(const char *)
Definition: object.cpp:176
#define PROP_REAL
Definition: netdefs.h:174
t
Definition: parse_vcd.y:290
#define PROP_NO_PROP
Definition: netdefs.h:122
#define PROP_NO_RANGE
Definition: netdefs.h:126
#define PROP_NO_STR
Definition: netdefs.h:125
void allocMatrixS(void)
Definition: circuit.cpp:251
#define PROP_LINEAR
Definition: netdefs.h:120
void clearI(void)
Definition: circuit.cpp:730
i
Definition: parse_mdl.y:516
void initAC(void)
Definition: iac.cpp:52
nr_complex_t sin(const nr_complex_t z)
Compute complex sine.
Definition: complex.cpp:66
#define PROP_COMPONENT
Definition: netdefs.h:116
net * getNet(void)
Definition: circuit.h:173
void calcTR(nr_double_t)
Definition: iac.cpp:60
#define M_PI
Archimedes' constant ( )
Definition: consts.h:47
void setI(int, nr_complex_t)
Definition: circuit.cpp:397
#define rad(x)
Convert degree to radian.
Definition: constants.h:118
void allocMatrixMNA(void)
Definition: circuit.cpp:267
PROP_OPT[]
Definition: iac.cpp:75
#define NODE_1
Definition: circuit.h:34
nr_complex_t exp(const nr_complex_t z)
Compute complex exponential.
Definition: complex.cpp:205
void setS(int, int, nr_complex_t)
Definition: circuit.cpp:587
nr_complex_t polar(const nr_double_t mag, const nr_double_t ang)
Construct a complex number using polar notation.
Definition: complex.cpp:551
PROP_REQ[]
Definition: iac.cpp:73
void initSP(void)
placehoder for S-Parameter initialisation function
Definition: iac.cpp:39