/******************************************************************************* NAME MILLER CYLINDRICAL PURPOSE: Transforms input Easting and Northing to longitude and latitude for the Miller Cylindrical projection. The Easting and Northing must be in meters. The longitude and latitude values will be returned in radians. PROGRAMMER DATE ---------- ---- T. Mittan March, 1993 This function was adapted from the Miller Cylindrical projection code (FORTRAN) in the General Cartographic Transformation Package software which is available from the U.S. Geological Survey National Mapping Division. ALGORITHM REFERENCES 1. "New Equal-Area Map Projections for Noncircular Regions", John P. Snyder, The American Cartographer, Vol 15, No. 4, October 1988, pp. 341-355. 2. Snyder, John P., "Map Projections--A Working Manual", U.S. Geological Survey Professional Paper 1395 (Supersedes USGS Bulletin 1532), United State Government Printing Office, Washington D.C., 1987. 3. "Software Documentation for GCTP General Cartographic Transformation Package", U.S. Geological Survey National Mapping Division, May 1982. *******************************************************************************/ #include "cproj.h" /* Variables common to all subroutines in this code file -----------------------------------------------------*/ static double lon_center; /* Center longitude (projection center) */ static double R; /* Radius of the earth (sphere) */ static double false_easting; /* x offset in meters */ static double false_northing; /* y offset in meters */ /* Initialize the Miller Cylindrical projection -------------------------------------------*/ long millinvint(r, center_long,false_east,false_north) double r; /* (I) Radius of the earth (sphere) */ double center_long; /* (I) Center longitude */ double false_east; /* x offset in meters */ double false_north; /* y offset in meters */ { /* Place parameters in static storage for common use -------------------------------------------------*/ R = r; lon_center = center_long; false_easting = false_east; false_northing = false_north; /* Report parameters to the user -----------------------------*/ ptitle("MILLER CYLINDRICAL"); radius(r); cenlon(center_long); offsetp(false_easting,false_northing); return(OK); } /* Miller Cylindrical inverse equations--mapping x,y to lat/long ------------------------------------------------------------*/ long millinv(x, y, lon, lat) double x; /* (O) X projection coordinate */ double y; /* (O) Y projection coordinate */ double *lon; /* (I) Longitude */ double *lat; /* (I) Latitude */ { double dlon; /* Inverse equations ------------------*/ x -= false_easting; y -= false_northing; *lon = adjust_lon(lon_center + x / R); *lat = 2.5 * (atan(exp(y / R / 1.25)) - PI / 4.0); return(OK); }