A detection method of offshore area depth utilizing the x-band microwave radar is proposed. The method is based on the sea clutter imaging mechanism of microwave radar, and combined with dispersion equation of the lin...A detection method of offshore area depth utilizing the x-band microwave radar is proposed. The method is based on the sea clutter imaging mechanism of microwave radar, and combined with dispersion equation of the liner wave theorem and least square method (LSM), consequently get the inversion results of water depth in the detected region. The wave monitoring system OSMAR-X exploited by the Ocean State Laborato-ry, Wuhan University, based on a microwave radar has proven to be a powerful tool to monitor ocean waves in time and space. Numerical simulation and inversion of offshore area depth are carried out here; since JONSWAP model can give description of stormy waves in different growth phase, it is suitable for simulation. Besides, some results from measured data detected by OSMAR-X x-band radar located at Longhai of Fujian Province, China, validates this method. The tendency of the average water depths inferred from the radar images is in good agreement with the tide level detected by Xiamen tide station. These promising results suggest the possibility of using OSMAR-X to monitor operationally morphodynamics in coastal zones. This method can be applied to both shore-based and shipborne x-band microwave radar.展开更多
在Walsh海杂波模型的基础上,结合实测天波超视距雷达(over the horizon radar,OTHR)回波数据,同时考虑海面洋流、电离层垂直运动以及电离层非平稳性引起的相位污染的影响,提出了改进的OTHR海杂波模型。利用改进模型,从OTHR检测舰船速度...在Walsh海杂波模型的基础上,结合实测天波超视距雷达(over the horizon radar,OTHR)回波数据,同时考虑海面洋流、电离层垂直运动以及电离层非平稳性引起的相位污染的影响,提出了改进的OTHR海杂波模型。利用改进模型,从OTHR检测舰船速度盲区的角度深入分析了海态和电离层非平稳性对OTHR多普勒谱的影响。仿真数据和实测数据的对比说明了改进模型能够较好的模拟实测海杂波,得出的结论为选择最佳的OTHR工作参数和电离层传播信道提供了理论参考。展开更多
基金The National High Technology Research and Development Program(863 Program)of China under contract No.2012AA091701the Specialized Research Fund for the Doctoral Program of Higher Education of China under contract No.2014212020203
文摘A detection method of offshore area depth utilizing the x-band microwave radar is proposed. The method is based on the sea clutter imaging mechanism of microwave radar, and combined with dispersion equation of the liner wave theorem and least square method (LSM), consequently get the inversion results of water depth in the detected region. The wave monitoring system OSMAR-X exploited by the Ocean State Laborato-ry, Wuhan University, based on a microwave radar has proven to be a powerful tool to monitor ocean waves in time and space. Numerical simulation and inversion of offshore area depth are carried out here; since JONSWAP model can give description of stormy waves in different growth phase, it is suitable for simulation. Besides, some results from measured data detected by OSMAR-X x-band radar located at Longhai of Fujian Province, China, validates this method. The tendency of the average water depths inferred from the radar images is in good agreement with the tide level detected by Xiamen tide station. These promising results suggest the possibility of using OSMAR-X to monitor operationally morphodynamics in coastal zones. This method can be applied to both shore-based and shipborne x-band microwave radar.
文摘在Walsh海杂波模型的基础上,结合实测天波超视距雷达(over the horizon radar,OTHR)回波数据,同时考虑海面洋流、电离层垂直运动以及电离层非平稳性引起的相位污染的影响,提出了改进的OTHR海杂波模型。利用改进模型,从OTHR检测舰船速度盲区的角度深入分析了海态和电离层非平稳性对OTHR多普勒谱的影响。仿真数据和实测数据的对比说明了改进模型能够较好的模拟实测海杂波,得出的结论为选择最佳的OTHR工作参数和电离层传播信道提供了理论参考。