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Comparison of site attenuation analysis results between FDTD and ray-tracing method using compact anechoic chamber

机译:FDTD与紧凑型消声室射线追踪方法的现场衰减分析结果比较

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摘要

The site attenuation is an important parameter to evaluate an anechoic chamber. The ray-tracing method has been applied to analyze it. However, the lowest applicable frequency has not been cleared. In this paper, the FDTD method has been applied to analyze the site attenuation of a compact anechoic chamber from 30 MHz to 250 MHz, and this has been compared with the calculated one by the ray-tracing method to evaluate the lowest frequency where the ray-tracing method could be applied. The compact anechoic chamber, where the absorbers are placed on the all walls, has been used for the calculation. For FDTD analysis, the dipole antenna and the absorber have been modeled by using the large cell, whose size is larger than the diameter of the antenna element. For verification, the site attenuation of a compact anechoic chamber has been measured and compared with the calculated values by the FDTD method and the ray-tracing method. As the results, the calculated values by the ray-tracing method have larger deviation than the ones by the FDTD method when the frequency is less than 180 MHz.
机译:部位衰减是评估消声室的重要参数。射线追踪法已经被应用来分析它。但是,最低适用频率尚未清除。在本文中,FDTD方法已被用于分析紧凑型消声室从30 MHz到250 MHz的位置衰减,并将其与通过射线追踪法计算出的频率进行比较,以评估射线在其中的最低频率。 -跟踪方法可以被应用。计算中使用了紧凑的消声室,所有壁上都放置有吸收体。对于FDTD分析,偶极天线和吸收器已通过使用大型单元建模,该大型单元的尺寸大于天线元件的直径。为了进行验证,已经测量了紧凑型消声室的位置衰减,并通过FDTD方法和射线追踪方法将其与计算值进行了比较。结果,当频率小于180 MHz时,光线跟踪方法的计算值与FDTD方法的计算值具有较大的偏差。

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