首页> 外文会议>Enabling Photonics Technologies for Defense, Security, and Aerospace Applications IV >EXPERIMENTAL RESULTS FOR A PHOTONIC TIMEREVERSAL PROCESSOR FOR ADAPTIVE CONTROL OFAN ULTRA WIDEBAND PHASED ARRAY ANTENNA
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EXPERIMENTAL RESULTS FOR A PHOTONIC TIMEREVERSAL PROCESSOR FOR ADAPTIVE CONTROL OFAN ULTRA WIDEBAND PHASED ARRAY ANTENNA

机译:光子时间逆过程自适应控制超宽带相控阵天线的实验结果

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This paper describes a new concept for a photonic implementation of a time reversed RF antenna array beamforming system. The process does not require analog to digital conversion to implement and is therefore particularly suited for high bandwidth applications. Significantly, propagation distortion due to atmospheric effects, clutter, etc. is automatically accounted for with the time reversal process. The approach utilizes the reflection of an initial interrogation signal from off an extended target to precisely time match the radiating elements of the array so as to re-radiate signals precisely back to the target's location. The backscattered signal(s) from the desired location is captured by each antenna and used to modulate a pulsed laser. An electrooptic switch acts as a time gate to eliminate any unwanted signals such as those reflected from other targets whose range is different from that of the desired location resulting in a spatial null at that location. A chromatic dispersion processor is used to extract the exact array parameters of the received signal location. Hence, other than an approximate knowledge of the steering direction needed only to approximately establish the time gating, no knowledge of the target position is required, and hence no knowledge of the array element time delay is required. Target motion and/or array element jitter is automatically accounted for. Presented here are experimental results that demonstrate the ability of a photonic processor to perform the time-reversal operation on ultra-short electronic pulses.
机译:本文介绍了一种用于时间反向RF天线阵列波束形成系统的光子实现的新概念。该过程不需要模数转换即可实现,因此特别适合于高带宽应用。值得注意的是,由于时间的逆转过程,会自动考虑由于大气效应,杂波等导致的传播失真。该方法利用了来自扩展目标的初始询问信号的反射,以精确地与阵列的辐射元件进行时间匹配,从而将信号精确地重新辐射回到目标的位置。每个天线捕获来自所需位置的反向散射信号,并将其用于调制脉冲激光。电光开关用作时间门,以消除任何有害信号,例如从其他目标反射的信号,其范围与所需位置的范围不同,从而导致该位置的空间无效。色散处理器用于提取接收信号位置的精确阵列参数。因此,除了仅大致建立时间门控所需的转向方向的近似知识之外,不需要目标位置的知识,因此不需要阵列元件时间延迟的知识。目标运动和/或阵列元素的抖动会自动解决。这里提供的实验结果证明了光子处理器对超短电子脉冲执行时间反转操作的能力。

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