source: Sophya/trunk/Cosmo/RadioBeam/mdish.h@ 3788

Last change on this file since 3788 was 3788, checked in by ansari, 15 years ago

Ajout classe de soustraction d'avant plans, Reza 25/06/2010

File size: 4.4 KB
Line 
1// Classes to compute Multi-Dish or CRT-like radio interferometer response
2// R. Ansari - Avril-Mai 2010
3
4#ifndef MDISH_SEEN
5#define MDISH_SEEN
6
7#include "machdefs.h" // SOPHYA .h
8#include "sopnamsp.h" // SOPHYA .h
9#include <math.h>
10#include <iostream>
11#include <vector>
12#include <string>
13
14#include "genericfunc.h" // SOPHYA .h
15#include "array.h" // SOPHYA .h
16#include "qhist.h"
17
18#ifndef DeuxPI
19#define DeuxPI 2.*M_PI
20#endif
21
22// -- Four2DResponse : Reponse instrumentale ds le plan k_x,k_y (angles theta,phi)
23// typ=1 : Reponse gaussienne parabole diametre D exp[ - 0.5 (lambda k_g / D )^2 ]
24// typ=2 : Reponse parabole diametre D Triangle <= kmax= 2 pi D / lambda
25// typ=3 : Reponse rectangle Dx x Dy Triangle (|kx|,|k_y|) <= (2 pi Dx / lambda, 2 pi Dx / lambda)
26class Four2DResponse {
27public:
28 // On donne dx=D/lambda=Dx/lambda , dy=Dy/lambda
29 Four2DResponse(int typ, double dx, double dy);
30
31 Four2DResponse(Four2DResponse const& a)
32 { typ_ = a.typ_; dx_=a.dx_; dy_=a.dy_; }
33 Four2DResponse& operator=(Four2DResponse const& a)
34 { typ_ = a.typ_; dx_=a.dx_; dy_=a.dy_; return (*this); }
35
36 inline void setLambdaRef(double lambda=1.)
37 { lambdaref_ = lambda; }
38 inline void setLambda(double lambda=1.)
39 { lambda_ = lambda; lambda_ratio_ = lambdaref_/lambda_; }
40
41 // Return the 2D response for wave vector (kx,ky)
42 virtual double Value(double kx, double ky);
43 inline double operator()(double kx, double ky)
44 { return Value(kx, ky); }
45 virtual Histo2D GetResponse(int nx=256, int ny=256);
46 inline double D() { return dx_; } ;
47 inline double Dx() { return dx_; } ;
48 inline double Dy() { return dy_; } ;
49
50 int typ_;
51 double dx_, dy_;
52 double lambdaref_, lambda_;
53 double lambda_ratio_; // lambdaref_/lambda_;
54
55};
56
57
58// -- Four2DRespTable : Reponse tabulee instrumentale ds le plan k_x,k_y (angles theta,phi)
59class Four2DRespTable : public Four2DResponse {
60public:
61 // On donne dx=D/lambda=Dx/lambda , dy=Dy/lambda
62 Four2DRespTable(Histo2D const & hrep, double d);
63 // Return the 2D response for wave vector (kx,ky)
64 virtual double Value(double kx, double ky);
65 Histo2D hrep_;
66};
67
68
69// -- Four2DRespRatio: Retourne le rapport de la reponse entre deux objets Four2DResponse
70class Four2DRespRatio : public Four2DResponse {
71public:
72 Four2DRespRatio(Four2DResponse& a, Four2DResponse& b);
73 // Return the ratio a.Value(kx,ky) / b.Value(kx, ky) - with protection against divide by zero
74 virtual double Value(double kx, double ky);
75 Four2DResponse& a_;
76 Four2DResponse& b_;
77};
78
79// Classe toute simple pour representer un element de reception de type dish
80class Dish {
81public:
82 // Circular dish
83 Dish(int id, double x, double y, double diam)
84 : id_(id), X(x), Y(y), D(diam), Dx(D), Dy(D), fgcirc_(true) { }
85 // Receiver with rectangular type answer in kx,ky plane
86 Dish(int id, double x, double y, double dx, double dy)
87 : id_(id), X(x), Y(y), D(sqrt(dx*dy)), Dx(dx), Dy(dy), fgcirc_(false) { }
88 Dish(Dish const& a)
89 : id_(a.id_), X(a.X), Y(a.Y), D(a.D), Dx(a.Dx), Dy(a.Dy), fgcirc_(a.fgcirc_) { }
90 inline bool isCircular() { return fgcirc_; }
91 inline int ReflectorId() { return id_; }
92 inline double Diameter() { return D; }
93 inline double DiameterX() { return Dx; }
94 inline double DiameterY() { return Dx; }
95
96 int id_; // numero de reflecteur
97 double D,X,Y;
98 double Dx, Dy;
99 bool fgcirc_; // false -> rectangular dish
100};
101
102
103// -------------------------------------------------------------------
104// -- Pour calculer la reponse ds le plan kx,ky d'un system MultiDish
105class MultiDish {
106public:
107 MultiDish(double lambda, double dmax, vector<Dish>& dishes, bool fgnoauto=false);
108
109 inline void SetThetaPhiRange(double thetamax=0., int ntet=1, double phimax=0., int nphi=1)
110 { thetamax_=thetamax; ntet_=ntet; phimax_=phimax; nphi_=nphi; }
111
112 inline void SetRespHisNBins(int nx=128, int ny=128)
113 { nx_=nx; ny_=ny; }
114 Histo2D GetResponse();
115
116 double CumulResp(Four2DResponse& rd, double theta=0., double phi=0.);
117 inline size_t NbDishes() { return dishes_.size(); }
118 inline Dish& operator[](size_t k) { return dishes_[k]; }
119
120 virtual Histo2D PosDist(int nx=30, int ny=30, double dmax=0.);
121
122protected:
123 double AddToHisto(double kx0, double ky0, double x, double y, double w, bool fgfh);
124
125 double lambda_, dmax_;
126 vector<Dish> dishes_;
127 bool fgnoauto_;
128 double thetamax_, phimax_;
129 int ntet_,nphi_;
130 int nx_, ny_;
131 // Histo2D h2w_, h2cnt_;
132 QHis2D h2w_;
133 int mcnt_;
134};
135
136
137#endif
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