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Shortest range length to measure the total radiated power

机译:最短距离长度,用于测量总辐射功率

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摘要

Total radiated power (TRP) is a key performance metric in over-the-air (OTA) testing of wireless devices. The TRP is evaluated by integration of the power density over a surface enclosing the device under test (DUT). In principle, this total power flow shall be independent from the surface. However, the power received at the instrumentation in a given polarisation typically relates to the intensity of the corresponding component of the impinging E-field. In the far-field, the E-field magnitude and power density are straightforwardly related, but not in the near-field. Therefore, the measured TRP generally depends on the scanned surface and test distance. This study introduces a closed-form expression for the measured power integrated over a surface surrounding the DUT, including the influence of the probe. The formulas are first applied to simulated spherical testing systems, where three different measurement probes coupled to a DUT model radiating at 28 GHz. Results are then validated experimentally in two spherical scanners, using physical samples of one of the modelled probes and the DUT. Both numerical and experimental results confirm the Fraunhofer distance as a lower bound range length for OTA TRP evaluation with negligible influence from the measurement probe.
机译:总辐射功率(TRP)是无线设备的空中(OTA)测试中的一项关键性能指标。通过对封装被测器件(DUT)的表面上的功率密度进行积分来评估TRP。原则上,该总功率流应与表面无关。然而,在仪器处以给定极化接收的功率通常与撞击电场的相应分量的强度有关。在远场中,电场强度和功率密度直接相关,而在近场中则不相关。因此,测得的TRP通常取决于扫描的表面和测试距离。这项研究引入了一种封闭形式的表达式,用于表示DUT周围表面上积分的测量功率,包括探头的影响。该公式首先应用于模拟球形测试系统,其中三个不同的测量探针与以28 GHz辐射的DUT模型耦合。然后,使用两个建模的探头之一和DUT的物理样本,在两个球形扫描仪中通过实验验证结果。数值和实验结果均证实弗劳恩霍夫距离是OTA TRP评估的下限范围长度,而来自测量探针的影响可忽略不计。

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