Example #1
0
        // 117.11726427,36.67414252


        public static void MarsToEarth(double[] marsLong, double[] marsLat, double[] earthLong, double[] earthLat,
                                       double[] newMarsLong, double[] newMarsLat, out double[] newEarthLong, out double[] newEarthLat)
        {
            int ptNum = marsLong.Length;

            double[,] X = MatrixTool.Init(2 * ptNum, 1);
            double[,] Y = MatrixTool.Init(2 * ptNum, 1);


            int pN = newMarsLong.Length;

            double[] XX = new double[pN * 2];
            double[] YY = new double[pN * 2];

            newEarthLong = new double[pN];
            newEarthLat  = new double[pN];
            //double[] YYRes = new double[pN * 2];

            for (int i = 0; i < ptNum; i++)
            {
                CoordinateConverter.LatLonToUTMXY(marsLat[i], marsLong[i], out X[2 * i + 0, 0], out X[2 * i + 1, 0]);
                CoordinateConverter.LatLonToUTMXY(earthLat[i], earthLong[i], out Y[2 * i + 0, 0], out Y[2 * i + 1, 0]);
                CoordinateConverter.LatLonToUTMXY(newMarsLat[i], newMarsLong[i], out XX[2 * i + 0], out XX[2 * i + 1]);
            }

            CoordTrans4Param ct = new CoordTrans4Param();

            ct.CalculateTrans4Param(X, Y);
            for (int i = 0; i < pN; i++)
            {
                ct.TransCoord(XX[i * 2 + 0], XX[i * 2 + 1], out YY[i * 2 + 0], out YY[i * 2 + 1]);
                CoordinateConverter.UTMXYToLatLon(YY[i * 2 + 0], YY[i * 2 + 1], out newEarthLat[i], out newEarthLong[i]);
                //Console.WriteLine("准确的 x {0}, y {1}, 计算的 x {2} , y {3} ", YYRead[i * 2 + 0], YYRead[i * 2 + 1], YY84[i * 2 + 0], YY84[i * 2 + 1]);
                //Console.WriteLine("准确的 x {0}, y {1}, 计算的 x {2} , y {3} ", YYRead[i * 2 + 0], YYRead[i * 2 + 1], YY[i * 2 + 0] / sx + cx2, YY[i * 2 + 1] / sy + cy2);
            }
            //return YYRes;
        }
Example #2
0
        private void button2_Click1(object sender, EventArgs e)
        {
            double x1, y1, x2, y2;

            x1 = 119;
            x2 = 120;
            y1 = y2 = 35;
            Console.WriteLine("x:" + CoordinateConverter.getUTMDistance(x1, y1, x2, y2));
            Console.WriteLine("y:" + CoordinateConverter.getUTMDistance(x1, y1, x1, y2 + 1));
            string fileName = @"D:\sevenParamsTest.xlsx";
            //if (chainList.Count > 0)
            //    chainList.Clear();
            //LoadDataTableFromExcel(fileName, "Sheet1");
            int ptNum = 5;

            double[,] X = MatrixTool.Init(2 * ptNum, 1);
            double[,] Y = MatrixTool.Init(2 * ptNum, 1);


            int pN = 10;

            double[] XX     = new double[pN * 2];
            double[] YYRead = new double[pN * 2];
            double[] YY     = new double[pN * 2];

            int i = 0;
            int j = 0;
            int k = 0;

            foreach (DataRow dr in ds.Tables["Sheet1"].Rows)
            {
                if (i % 40 == 0 && j < ptNum)
                {
                    X[j * 2 + 0, 0] = Convert.ToDouble(dr["North"]);
                    X[j * 2 + 1, 0] = Convert.ToDouble(dr["East"]);

                    Y[j * 2 + 0, 0] = Convert.ToDouble(dr["Longitude"]);
                    Y[j * 2 + 1, 0] = Convert.ToDouble(dr["Latitude"]);

                    j++;
                }
                if (i % 20 == 10 && k < pN)
                {
                    XX[k * 2 + 0] = Convert.ToDouble(dr["North"]);
                    XX[k * 2 + 1] = Convert.ToDouble(dr["East"]);

                    YYRead[k * 2 + 0] = Convert.ToDouble(dr["Longitude"]);
                    YYRead[k * 2 + 1] = Convert.ToDouble(dr["Latitude"]);

                    k++;
                }
                i++;
                if (j == ptNum && k == pN)
                {
                    break;
                }
            }
            double cx1, cy1, cx2, cy2;

            cx1 = cy1 = cx2 = cy2 = 0;
            double sx = 91310;
            double sy = 111000;

            for (i = 0; i < pN; i++)
            {
                cx1 += XX[2 * i];
                cy1 += XX[2 * i + 1];
                cx2 += YYRead[2 * i];
                cy2 += YYRead[2 * i + 1];
            }
            cx1 /= pN;
            cy1 /= pN;
            cx2 /= pN;
            cy2 /= pN;

            for (i = 0; i < ptNum; i++)
            {
                X[2 * i, 0]     = X[2 * i, 0] - cx1;
                X[2 * i + 1, 0] = X[2 * i + 1, 0] - cy1;
                Y[2 * i, 0]     = (Y[2 * i, 0] - cx2) * sx;
                Y[2 * i + 1, 0] = (Y[2 * i + 1, 0] - cy2) * sy;
            }

            for (i = 0; i < pN; i++)
            {
                XX[2 * i]     = XX[2 * i] - cx1;
                XX[2 * i + 1] = XX[2 * i + 1] - cy1;
            }

            CoordTrans4Param ct = new CoordTrans4Param();

            ct.CalculateTrans4Param(X, Y);
            for (i = 0; i < pN; i++)
            {
                ct.TransCoord(XX[i * 2 + 0], XX[i * 2 + 1], out YY[i * 2 + 0], out YY[i * 2 + 1]);
                Console.WriteLine("准确的 x {0}, y {1}, 计算的 x {2} , y {3} ", YYRead[i * 2 + 0], YYRead[i * 2 + 1], YY[i * 2 + 0] / sx + cx2, YY[i * 2 + 1] / sy + cy2);
            }
        }