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time |
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/* |
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2
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*+ |
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3
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* Name: |
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4
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* palAltaz |
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5
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6
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* Purpose: |
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7
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* Positions, velocities and accelerations for an altazimuth telescope mount |
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8
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9
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* Language: |
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10
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* Starlink ANSI C |
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11
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12
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* Type of Module: |
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13
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* Library routine |
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14
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15
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* Invocation: |
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16
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* palAltaz ( double ha, double dec, double phi, |
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17
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* double *az, double *azd, double *azdd, |
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18
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* double *el, double *eld, double *eldd, |
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19
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* double *pa, double *pad, double *padd ); |
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20
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21
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* Arguments: |
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22
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* ha = double (Given) |
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23
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* Hour angle (radians) |
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24
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* dec = double (Given) |
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25
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* Declination (radians) |
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26
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* phi = double (Given) |
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27
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* Observatory latitude (radians) |
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28
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* az = double * (Returned) |
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29
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* Azimuth (radians) |
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30
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* azd = double * (Returned) |
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31
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* Azimuth velocity (radians per radian of HA) |
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32
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* azdd = double * (Returned) |
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33
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* Azimuth acceleration (radians per radian of HA squared) |
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34
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* el = double * (Returned) |
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35
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* Elevation (radians) |
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36
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* eld = double * (Returned) |
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37
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* Elevation velocity (radians per radian of HA) |
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38
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* eldd = double * (Returned) |
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39
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* Elevation acceleration (radians per radian of HA squared) |
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40
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* pa = double * (Returned) |
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41
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* Parallactic angle (radians) |
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42
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* pad = double * (Returned) |
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43
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* Parallactic angle velocity (radians per radian of HA) |
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44
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* padd = double * (Returned) |
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45
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* Parallactic angle acceleration (radians per radian of HA squared) |
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46
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47
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48
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* Description: |
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49
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* Positions, velocities and accelerations for an altazimuth |
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50
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* telescope mount. |
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51
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52
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* Authors: |
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53
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* PTW: P. T. Wallace |
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54
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* TIMJ: Tim Jenness (Cornell) |
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55
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* {enter_new_authors_here} |
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56
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57
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* Notes: |
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58
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* - Natural units are used throughout. HA, DEC, PHI, AZ, EL |
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59
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* and ZD are in radians. The velocities and accelerations |
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60
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* assume constant declination and constant rate of change of |
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61
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* hour angle (as for tracking a star); the units of AZD, ELD |
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62
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* and PAD are radians per radian of HA, while the units of AZDD, |
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63
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* ELDD and PADD are radians per radian of HA squared. To |
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64
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* convert into practical degree- and second-based units: |
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65
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* |
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66
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* angles * 360/2pi -> degrees |
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67
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* velocities * (2pi/86400)*(360/2pi) -> degree/sec |
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68
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* accelerations * ((2pi/86400)**2)*(360/2pi) -> degree/sec/sec |
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69
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* |
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70
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* Note that the seconds here are sidereal rather than SI. One |
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71
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* sidereal second is about 0.99727 SI seconds. |
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72
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* |
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73
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* The velocity and acceleration factors assume the sidereal |
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74
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* tracking case. Their respective numerical values are (exactly) |
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75
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* 1/240 and (approximately) 1/3300236.9. |
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76
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* |
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77
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* - Azimuth is returned in the range 0-2pi; north is zero, |
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78
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* and east is +pi/2. Elevation and parallactic angle are |
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79
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* returned in the range +/-pi. Parallactic angle is +ve for |
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80
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* a star west of the meridian and is the angle NP-star-zenith. |
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81
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* |
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82
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* - The latitude is geodetic as opposed to geocentric. The |
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83
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* hour angle and declination are topocentric. Refraction and |
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84
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* deficiencies in the telescope mounting are ignored. The |
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85
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* purpose of the routine is to give the general form of the |
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86
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* quantities. The details of a real telescope could profoundly |
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87
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* change the results, especially close to the zenith. |
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88
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* |
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89
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* - No range checking of arguments is carried out. |
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90
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* |
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91
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* - In applications which involve many such calculations, rather |
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92
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* than calling the present routine it will be more efficient to |
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93
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* use inline code, having previously computed fixed terms such |
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94
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* as sine and cosine of latitude, and (for tracking a star) |
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95
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* sine and cosine of declination. |
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96
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97
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* History: |
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98
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* 2014-09-30 (TIMJ): |
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99
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* Initial version. Ported from Fortran SLA |
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100
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* {enter_further_changes_here} |
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101
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102
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* Copyright: |
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103
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* Copyright (C) 2004 P.T. Wallace |
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104
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* Copyright (C) 2014 Cornell University |
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105
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* All Rights Reserved. |
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106
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107
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* Licence: |
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108
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* This program is free software; you can redistribute it and/or |
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109
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* modify it under the terms of the GNU General Public License as |
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110
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* published by the Free Software Foundation; either version 3 of |
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111
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* the License, or (at your option) any later version. |
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112
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* |
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113
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* This program is distributed in the hope that it will be |
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114
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* useful, but WITHOUT ANY WARRANTY; without even the implied |
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115
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* warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR |
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116
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* PURPOSE. See the GNU General Public License for more details. |
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117
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* |
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118
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* You should have received a copy of the GNU General Public License |
|
119
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* along with this program. If not, see . |
|
120
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121
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* Bugs: |
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122
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* {note_any_bugs_here} |
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123
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*- |
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124
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*/ |
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125
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126
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#include |
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127
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128
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#include "pal.h" |
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129
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#include "palmac.h" |
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130
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131
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void |
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132
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1
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palAltaz ( double ha, double dec, double phi, |
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133
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double *az, double *azd, double *azdd, |
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134
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double *el, double *eld, double *eldd, |
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135
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double *pa, double *pad, double *padd ) { |
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136
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137
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const double TINY = 1E-30; |
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138
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139
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double sh,ch,sd,cd,sp,cp,chcd,sdcp,x,y,z,rsq,r,a,e,c,s, |
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140
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q,qd,ad,ed,edr,add,edd,qdd; |
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141
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142
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143
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/* Useful functions */ |
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144
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1
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sh=sin(ha); |
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145
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1
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ch=cos(ha); |
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146
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1
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sd=sin(dec); |
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147
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1
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cd=cos(dec); |
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148
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1
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sp=sin(phi); |
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149
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1
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cp=cos(phi); |
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150
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1
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chcd=ch*cd; |
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151
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1
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sdcp=sd*cp; |
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152
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1
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x=-chcd*sp+sdcp; |
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153
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1
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y=-sh*cd; |
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154
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1
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z=chcd*cp+sd*sp; |
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155
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1
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rsq=x*x+y*y; |
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156
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1
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r=sqrt(rsq); |
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157
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158
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/* Azimuth and elevation */ |
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159
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1
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50
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if (rsq == 0.0) { |
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160
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a=0.0; |
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161
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} else { |
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162
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1
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a=atan2(y,x); |
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163
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} |
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164
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1
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50
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if (a < 0.0) a += PAL__D2PI; |
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165
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1
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e=atan2(z,r); |
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166
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167
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/* Parallactic angle */ |
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168
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1
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c=cd*sp-ch*sdcp; |
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169
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1
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s=sh*cp; |
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170
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1
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50
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if (c*c+s*s > 0) { |
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171
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1
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q=atan2(s,c); |
|
172
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} else { |
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173
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0
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q= PAL__DPI - ha; |
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174
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} |
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175
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176
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/* Velocities and accelerations (clamped at zenith/nadir) */ |
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177
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1
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50
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if (rsq < TINY) { |
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178
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rsq=TINY; |
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179
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r=sqrt(rsq); |
|
180
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} |
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181
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1
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qd=-x*cp/rsq; |
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182
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1
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ad=sp+z*qd; |
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183
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1
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ed=cp*y/r; |
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184
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1
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edr=ed/r; |
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185
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1
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add=edr*(z*sp+(2.0-rsq)*qd); |
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186
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1
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edd=-r*qd*ad; |
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187
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1
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qdd=edr*(sp+2.0*z*qd); |
|
188
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189
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/* Results */ |
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190
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1
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*az=a; |
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191
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1
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*azd=ad; |
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192
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1
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*azdd=add; |
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193
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1
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*el=e; |
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194
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1
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*eld=ed; |
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195
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1
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*eldd=edd; |
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196
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1
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*pa=q; |
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197
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1
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*pad=qd; |
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198
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1
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*padd=qdd; |
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199
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200
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1
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} |