Impact of ground plane on wind turbine forward scattering

M. B. Raza, T. Fickenscher
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引用次数: 3

Abstract

Mitigation of the impact of wind turbine (WT) forward scattering on radars, navigation systems and terrestrial radio links requires accurate modelling and rapid calculation of diffraction of RF and microwave signals at the tower and rotor of WTs. A proper analysis by 3D numerical field simulation is very time consuming as the problem is electrically extremely large. We are using 2D Fresnel-Kirchhoff diffraction formula and speed up numerical integration using Babinet's principle. Furthermore, perfect conducting and real ground plane is accounted for. Time variant diffraction loss (or obstacle gain) and phase modulation as well as time-frequency spectrum of the frequency deviation of the forward scattered signal is presented. Results are verified by numerical 3D field simulations (Uniform Theory of Diffraction).
地平面对风力机前向散射的影响
为了减轻风力涡轮机前向散射对雷达、导航系统和地面无线电链路的影响,需要对风力涡轮机塔架和转子处射频和微波信号的衍射进行精确建模和快速计算。由于问题的电性能非常大,采用三维数值模拟方法进行分析是非常耗时的。我们采用二维菲涅耳-基尔霍夫衍射公式,利用巴比内原理加速数值积分。此外,还考虑了完美的导电性和真实的接地面。给出了前向散射信号的时变衍射损耗(或障碍增益)、相位调制以及频率偏差的时频谱。结果得到了三维场数值模拟(衍射均匀理论)的验证。
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