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THE SECOND-ORDER MONOSTATIC HF RADAR CROSS SECTION INCORPORATING ANTENNA BARGE MOTION

机译:结合天线驳船运动的二阶机HF雷达横截面

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The second-order HF radar ocean cross section is derived for the case of the transmitting and receiving antenna undergoing platform (i.e. barge) motion. The derivation for electromagnetic patch scatter begins with a general expression for the bistatically received second-order electric field. Based on an assumption that the ocean surface can be described as a Fourier series with coefficients being zero-mean Gaussian random variables, the second-order monostatic radar cross section is developed. The derivation for the hydrodynamic patch scatter follows from an earlier first-order analysis. The second-order HF radar cross section is found to consist of Bessel functions, and no singularity exists in the new electromagnetic coupling coefficient. Simulation results depict the effects of barge motion under a variety of sea states. It is evident that first-order effects spread into the second-order region and thus could have detrimental effects on wave measurement schemes.
机译:用于发射和接收天线接收平台(即驳船)运动的情况来导出二阶HF雷达海洋横截面。电磁贴片散射的推导始于自由地接收的二阶电场的一般表达式。基于海洋表面可以描述为具有系数的傅里叶串的假设是零表示高斯随机变量的傅立叶序列,开发了二阶单体雷达横截面。流体动力斑点散射的推导在较早的一阶分析中遵循。发现二阶HF雷达横截面由贝塞尔函数组成,并且在新的电磁耦合系数中没有奇异性。仿真结果描绘了驳船运动在各种海区下的影响。显然,一阶效果扩散到二阶区域,因此可能对波测量方案产生不利影响。

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