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Design of an optical UWB pulse leading to an in-band interference tolerant impulse radio UWB transceiver

机译:光学UWB脉冲的设计导致带内干扰耐受无线电UWB收发器的光学UWB脉冲

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Impulse-radio UWB (IR-UWB) transceivers are quite interesting since they can achieve high data rate while consuming low power. But UNII Band interferers are a serious problem for using the whole spectrum in IR-UWB. Also the short range of UWB is a serious limitation to this technology. Here we have proposed a solution to overcome both of the above mentioned problems. Matched filter concept shapes the output noise according to its spectrum so it can act as a noise filter. Matched filter is implemented in analog domain by designing an all optical UWB pulse featuring notches that can be tuned to a certain frequency. Therefore, any narrowband interferer can be nulled out passing through the matched filter. Also no transmission is done in the spectrum of the narrow band system so no interference is caused by UWB system. On the other hand since the pulse is implemented fully optically, by using UWB over fiber, the UWB range can be greatly extended. Modified Hermite polynomials have unique properties which are used for designing an optical UWB pulse with frequency nulls in its spectrum. For optical implementation of the proposed UWB pulse, Gaussian laser beams are combined to provide a signal with similar properties of Modified Hermite polynomials. The proposed system consists of a single wave length laser source, optical delay, power splitter/combiner, a length of single mode fiber (SMF) and a photo detector (APD). The simulation results shows that for short range communication the proposed architecture can tolerate large in band interferers up to 30 dBm. For long range the tolerance is degraded to 0dBm interferer power which is still quite high.
机译:脉冲无线电UWB(IR-UWB)收发器非常有趣,因为它们可以在消耗低功率时实现高数据速率。但是,UNII频段干扰是在IR-UWB中使用整个频谱的严重问题。此外,UWB的短程是对这项技术的严重限制。在这里,我们提出了一种解决方案来克服上述问题。匹配的滤波器概念根据其频谱形状输出噪声,因此它可以充当噪声滤波器。匹配的滤波器通过设计缺口可以调谐到某个频率的缺口的所有光学UWB脉冲在模拟域中实现。因此,任何窄带干扰都可以通过匹配的滤波器来无效。在窄带系统的频谱中也没有进行传输,因此UWB系统没有干扰。另一方面,由于脉冲完全光学地实现,通过使用UWB在光纤上,可以大大延伸UWB范围。修改的Hermite多项式具有独特的性质,用于设计具有频谱中频率无效的光学UWB脉冲。对于所提出的UWB脉冲的光学实现,将高斯激光束组合以提供具有改进的Hermite多项式的类似性质的信号。所提出的系统由单波长激光源,光学延迟,功率分配器/组合器,单模光纤(SMF)的长度和照片检测器(APD)组成。仿真结果表明,对于短程通信,所提出的架构可以容忍高达30 dBm的带干扰器中的大。对于长距离的范围,公差降低到0dBm干扰率仍然非常高。

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