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Analysis of the wind turbine RCS and micro-Doppler feature based on FEKO

机译:基于Feko的风力涡轮机RCS和微多普勒特征分析

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As a kind of renewable and clean energy, wind energy has been widespread concerned by countries around the world. However, it is shown that wind turbines will have a serious impact on Air Traffic Control (ATC) communication, navigation and surveillance systems due to the complex electromagnetic scattering properties. Therefore, analysis of the wind turbine Radar Cross Section (RCS) and micro-Doppler feature are of great significance. FEKO is a suit of professional electromagnetic analysis tool which has a large advantage of calculating the RCS of wind turbines and other electrically large objects. The RCS of wind turbines is calculated by FEKO, and the variability of wind turbine RCS with azimuth and elevation angles is analyzed in the paper. Meanwhile, in order to further present the micro-Doppler features of wind turbine echo, wind turbine echo is simulated based on FEKO and the characteristics of wind turbine echo in time domain, frequency domain and time-frequency domain are also analyzed, by which we reveal the micro-Doppler features of wind turbine caused by the rotation of wind turbine blades. The great agreement between simulation and real data confirms the validity of the FEKO simulation results in the paper.
机译:作为一种可再生和清洁的能源,风能在全球各国受到广泛的涉及。然而,结果表明,由于复杂的电磁散射特性,风力涡轮机将对空气交通管制(ATC)通信,导航和监测系统产生严重影响。因此,风力涡轮机雷达横截面(RCS)和微多普勒特征的分析具有重要意义。 Feko是一套专业电磁分析工具,具有计算风力涡轮机和其他电气大物体的RCS的大优势。通过Feko计算风力涡轮机的RCS,并在纸上分析了具有方位角和仰角的风力涡轮机RC的可变性。同时,为了进一步提出风力涡轮机回波的微多普勒特征,基于Feko模拟风力涡轮机回波,并且还分析了频域和时频域的风力涡轮机回声的特性,我们通过风力涡轮机叶片旋转引起的风力涡轮机的微多普勒特征。模拟和实际数据之间的巨大一致性确认了Feko仿真结果的有效性。

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