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Numerical Modeling of Ultrawideband Propagation Along a Wind Turbine Blade

机译:风力涡轮机叶片超宽带传播的数值模拟

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摘要

Full-wave numerical analysis of an ultrawideband wireless link in frequency band 3–5 GHz along a 37.3 m long wind turbine blade is presented. The method used for the analysis is the well-established finite-difference time-domain (FDTD) method with staggered Yee mesh. Simulated results are compared to data obtained from measurement on a real blade, in two experiments involving antennas transmitting both from outside near the blade tip and from inside the blade. In the first experiment, when the wave is propagated along the entire blade and received near the blade root, the differences between the simulation and the measurement are found in pulse magnitudes within 3 dB and in delay within 1.5 ns. In the second experiment, the emitted waves are studied at only 10 m distance, but at higher elevations, and the error reaches 6 dB in magnitude and 1.9 ns in delay. Possible reasons for observed discrepancies between the simulations and the measurements are briefly discussed. Despite the long distances involved and challenges connected to the numerical dispersion and anisotropy, the FDTD method turns out to be a feasible choice for full-wave numerical modeling of problems of this type, albeit with slightly high sensitivity to the underlying model.
机译:给出了沿37.3 m长的风力涡轮机叶片在3–5 GHz频带内的超宽带无线链路的全波数值分析。用于分析的方法是成熟的带有交错Yee网格的有限差分时域(FDTD)方法。在两个涉及天线从叶片尖端附近的外部和叶片内部发射的天线的实验中,将模拟结果与通过真实叶片测量获得的数据进行了比较。在第一个实验中,当波沿整个叶片传播并在叶片根部附近接收时,发现仿真和测量值之间的差异在于3 dB以内的脉冲幅度和1.5 ns内的延迟。在第二个实验中,仅在10 m的距离上但在更高的海拔高度研究发射的波,并且误差达到6 dB的幅度和1.9 ns的延迟。简要讨论了观察到的模拟与测量之间差异的可能原因。尽管涉及到长距离和与数值分散和各向异性有关的挑战,但FDTD方法对于这类问题的全波数值建模仍然是一种可行的选择,尽管对底层模型的敏感性较高。

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