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The new generation of remote sensors based on the integration of optics and electronics

机译:基于光学和电子产品集成的新一代远程传感器

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The cross-fertilization between photonic and microwave systems is setting new paradigms in radio sensor technologies, providing improved performance and new applications, and allowing for an integration of radio and optics sensors with strong benefits in monitoring and safety applications. Radio sensors as radars are evolving toward multiband multifunctional systems that are putting electronic technologies under pressure. Thanks to its intrinsic high stability, ultra-wide bandwidth, low loss propagation, EMI insensitivity, and high frequency of the optical carrier, photonics can be exploited for facing these new requirements. Photonics can find application in: generation of very stable multiband radiofrequency (RF) sources, very precise and wideband RF signal detection and digitization, wideband beam steering of RF signals in phased array antennas, realization of tunable RF filters, radio over fiber for easier antenna remotization. Moreover, photonics can also be exploited for integrating optical sensors that exhibit complementary features compared to photonics-based RF sensors, in order to improve the awareness of the scene under observation. This integration is based on the partial sharing of the optical hardware, allowing for heterogeneous networks of coherent sensors as well as reduction of power budget and complexity. Finally, on-chip implementations allow for a further reduction of power consumption and footprint.
机译:光子和微波系统之间的互受精在无线电传感器技术设置新的模式,从而提供改进的性能和新的应用程序,并允许积分无线电和光学传感器中的与监测和安全应用强的好处。无线电传感器作为雷达正朝着正在把电子技术在压力下多频带的多功能系统。由于其固有的高稳定性,超宽带,低损耗传播,EMI不敏感,并且该光载波的频率高,光子可以被利用为面临这些新的要求。光子可以在找到应用:在光纤上产生非常稳定的多波段射频(RF)源,非常精确和宽带RF信号检测和数字化,宽带中相控阵天线的RF信号的波束转向,实现的可调谐射频滤波器,无线电,便于天线remotization。此外,光子学也可以被利用用于集成与基于光子-RF传感器表现出互补的特性的光学传感器,为了提高场景的观察下的认识。这种集成是基于光学硬件的部分共享,允许用于相干传感器的异构网络以及减少功率预算和复杂性。最后,芯片上实现允许进一步降低功耗和足迹。

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