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Compact and programmable delay line using a micro-laser array

机译:使用微激光阵列的紧凑型可编程延迟线

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Abstract: A dynamic optical system for producing variable delays of a radio frequency signal is presented. The approach uses a micro-laser diode array to tap an acousto-optic (AO) cell at varying spatial positions along the acoustic channel to generate multiple delayed versions of the input signal to the AO cell. The diffracted and undiffracted laser light exiting the AO cell are heterodyne detected at a photodiode. The resulting output signal is maintained at the input signal frequency, but with a delay corresponding to the tap position along the AO delay line. The use of the laser diode array allows for a programmable time delay, programmable weighting of each delay, a large number of delays equal to the number of elements in the diode array, and multiple delays at one time. Experimental results are presented for a two-tap proof of concept system and a sixteen-tap programmable delay line. Results include dynamic range measurements of the input RF power and the input laser power for the system. Areas of application for this device include use as a programmable transversal filter for clutter cancellation in radar, false signal generation in electronic warfare, and coded waveform generation in communication systems.!4
机译:摘要:提出了一种用于产生射频信号可变延迟的动态光学系统。该方法使用微激光二极管阵列在沿声通道变化的空间位置处敲击声光(AO)单元,以生成到AO单元的输入信号的多个延迟版本。离开AO单元的衍射和未衍射激光在光电二极管处检测到外差。所得的输出信号保持在输入信号频率,但具有与沿AO延迟线的抽头位置相对应的延迟。激光二极管阵列的使用允许可编程的时间延迟,每个延迟的可编程加权,等于二极管阵列中元件数量的大量延迟以及一次具有多个延迟。给出了两抽头概念验证系统和16抽头可编程延迟线的实验结果。结果包括系统的输入RF功率和输入激光功率的动态范围测量。该设备的应用领域包括用作可编程横向滤波器,以消除雷达中的杂波,在电子战中生成虚假信号以及在通信系统中生成编码波形。4

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