In this paper, the limitation of T matrix structure is analyzed. It is found that a solution by T matrix method can be transformed to a canonical solution when the boundary of the scatterer tends to the cylindrical ...In this paper, the limitation of T matrix structure is analyzed. It is found that a solution by T matrix method can be transformed to a canonical solution when the boundary of the scatterer tends to the cylindrical form and the scatterer is illuminated by E plane waves. It is concluded that a T matrix is diagonal with the scatter boundary in this limit situation. This is also the best result of numerical solution.展开更多
该文提出一种机载双极化气象雷达多种降水粒子回波仿真方法。该方法基于T-Matrix方法以及天气预报模式(Weather Research and Forecasting,WRF),首先利用WRF建模仿真气象场景;其次考虑降水粒子为球形条件下,结合T-Matrix方法和微物理特...该文提出一种机载双极化气象雷达多种降水粒子回波仿真方法。该方法基于T-Matrix方法以及天气预报模式(Weather Research and Forecasting,WRF),首先利用WRF建模仿真气象场景;其次考虑降水粒子为球形条件下,结合T-Matrix方法和微物理特性计算6种降水粒子反射率因子;最后应用雷达气象方程获得6种类型降水粒子回波信号,实现机载极化气象雷达降水粒子回波信号仿真。仿真结果表明,该方法的仿真结果可准确反映气象特征,与实测数据的对比分析进一步证实了所提方法的有效性、可靠性。展开更多
文摘In this paper, the limitation of T matrix structure is analyzed. It is found that a solution by T matrix method can be transformed to a canonical solution when the boundary of the scatterer tends to the cylindrical form and the scatterer is illuminated by E plane waves. It is concluded that a T matrix is diagonal with the scatter boundary in this limit situation. This is also the best result of numerical solution.
文摘该文提出一种机载双极化气象雷达多种降水粒子回波仿真方法。该方法基于T-Matrix方法以及天气预报模式(Weather Research and Forecasting,WRF),首先利用WRF建模仿真气象场景;其次考虑降水粒子为球形条件下,结合T-Matrix方法和微物理特性计算6种降水粒子反射率因子;最后应用雷达气象方程获得6种类型降水粒子回波信号,实现机载极化气象雷达降水粒子回波信号仿真。仿真结果表明,该方法的仿真结果可准确反映气象特征,与实测数据的对比分析进一步证实了所提方法的有效性、可靠性。