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The performance of unbiased balanced photodiodes for optical calibration of radio-frequency antenna arrays

机译:无偏平衡光电二极管在射频天线阵列光学校准中的性能

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The accurate calibration of radio-frequency (RF) antenna arrays is critical to their performance. Real-time, in situ calibration is particularly desirable and recent photonic implementations [1],[2] have stirred interest for onboard naval applications. These photonic architectures are primarily suited for large shipboard arrays [3] but may also be pertinent to the calibration of the smaller arrays found in avionic platforms. The concept is to feed each receive-mode antenna element with an optically-encoded test signal that is demodulated with unbiased photodiodes placed near every element [1],[2]. This technique provides the distinct advantage of having no metallic components near the aperture but the unbiased photodiodes will exhibit reduced performance as compared to reversed-biased photodiodes of the same type. Most notably, an unbiased photodiode will demonstrate decreased optical-to-electrical conversion efficiency and increased RF distortion.
机译:射频(RF)天线阵列的准确校准对其性能至关重要。实时,原位校准是特别需要的,并且最近的光子实现[1],[2]引起了舰载海军应用的兴趣。这些光子架构主要适用于大型舰载阵列[3],但也可能与航空电子平台中较小阵列的校准有关。该概念是向每个接收模式天线元件馈入一个光学编码的测试信号,该信号通过放置在每个元件[1],[2]附近的无偏光电二极管进行解调。与相同类型的反向偏置光电二极管相比,该技术具有以下独特优势:在孔口附近没有金属组件,但无偏置光电二极管的性能下降。最值得注意的是,无偏光电二极管将表现出降低的光电转换效率和增加的RF失真。

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