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A New Method to Reduce Truncation Errors in Partial Spherical Near-Field Measurements

机译:减少局部球面近场测量中的截断误差的新方法

摘要

A new and effective method for reduction of truncation errors in partial spherical near-field (SNF) measurements is proposed. The method is useful when measuring electrically large antennas, where the measurement time with the classical SNF technique is prohibitively long and an acquisition over the whole spherical surface is not practical. Therefore, to reduce the data acquisition time, partial sphere measurement is usually made, taking samples over a portion of the spherical surface in the direction of the main beam. But in this case, the radiation pattern is not known outside the measured angular sector as well as a truncation error is present in the calculated far-field pattern within this sector. The method is based on the Gerchberg-Papoulis algorithm used to extrapolate functions and it is able to extend the valid region of the calculated far-field pattern up to the whole forward hemisphere. To verify the effectiveness of the method, several examples are presented using both simulated and measured truncated near-field data.
机译:提出了一种新的有效的方法来减少部分球面近场(SNF)测量中的截断误差。该方法在测量大型天线时非常有用,在传统的SNF技术下,测量时间过长,并且无法在整个球面上进行采集。因此,为了减少数据采集时间,通常进行部分球面测量,在主光束方向上对球面的一部分进行采样。但是在这种情况下,辐射图案在测得的角扇区之外是未知的,并且在该扇区内的计算出的远场图案中存在截断误差。该方法基于用于外推功能的Gerchberg-Papoulis算法,并且能够将计算出的远场模式的有效区域扩展到整个前半球。为了验证该方法的有效性,给出了使用模拟和测量的截断近场数据的几个示例。

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