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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >An optimization of the FPGA/NIOS adaptive FIR filter using linear prediction to reduce narrow band RFI for the next generation ground-based ultra-high energy cosmic-ray experiment
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An optimization of the FPGA/NIOS adaptive FIR filter using linear prediction to reduce narrow band RFI for the next generation ground-based ultra-high energy cosmic-ray experiment

机译:利用线性预测对FPGA / NIOS自适应FIR滤波器进行优化,以减少下一代基于地面的超高能宇宙射线实验的窄带RFI

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摘要

The electromagnetic part of an extensive air shower developing in the atmosphere provides significant information complementary to that obtained by water Cherenkov detectors which are predominantly sensitive to the muonic content of an air shower at ground. The emissions can be observed in the frequency band between 10 and 100 MHz. However, this frequency range is significantly contaminated by narrow-band RFI and other human-made distortions. The Auger Engineering Radio Array currently suppresses the RFI by multiple time-to-frequency domain conversions using an FFT procedure as well as by a set of manually chosen IIR notch filters in the time-domain. An alternative approach developed in this paper is an adaptive FIR filter based on linear prediction (LP). The coefficients for the linear predictor are dynamically refreshed and calculated in the virtual NIOS processor. The radio detector is an autonomous system installed on the Argentinean pampas and supplied from a solar panel. Powerful calculation capacity inside the FPGA is a factor. Power consumption versus the degree of effectiveness of the calculation inside the FPGA is a figure of merit to be minimized. Results show that the RFI contamination can be significantly suppressed by the LP FIR filter for 64 or less stages.
机译:在大气中发展的大型空气喷淋器的电磁部分提供了重要的信息,与水切伦科夫探测器获得的信息相辅相成,后者主要对地面的空气喷淋器的粘胶含量敏感。可以在10至100 MHz的频带内观察到发射。但是,该频率范围被窄带RFI和其他人为失真严重污染。俄歇工程无线阵列目前通过使用FFT程序的多个时频域转换以及时域中的一组手动选择的IIR陷波滤波器来抑制RFI。本文开发的另一种方法是基于线性预测(LP)的自适应FIR滤波器。线性预测变量的系数在虚拟NIOS处理器中动态刷新和计算。无线电探测器是安装在阿根廷南美大草原上的自主系统,由太阳能电池板提供。 FPGA内部强大的计算能力是一个因素。功耗与FPGA内部计算的有效性程度之间的关系是一个需要最小化的品质因数。结果表明,LP FIR滤波器可在64个或更短的级数内显着抑制RFI污染。

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