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首页> 外文期刊>IEEE Transactions on Nuclear Science >Real Time FPGA-Based Crosstalk Elimination for Multichannel Interferometry Systems in Fusion Diagnostics
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Real Time FPGA-Based Crosstalk Elimination for Multichannel Interferometry Systems in Fusion Diagnostics

机译:用于融合诊断中多通道干涉测量系统的基于FPGA的实时串扰消除

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摘要

Infrared (IR) interferometry is a well-known method for measuring the Line-Integrated electron Density (LID) of fusion plasmas. In the TJ-II stellarator, an FPGA-based IR-interferometer has recently been installed to accurately measure the LID of the plasma in real time. To guarantee the correct functionality of the interferometer and achieve high precision rates, it is essential to maximize the Signal-to-Noise Ratio (SNR) of the output density signal. In the measurement process, one of the most important distortion sources is the crosstalk or interchannel interference. Thus, in order to increase the SNR of the system, a crosstalk reduction stage has been designed and implemented in an FPGA. This paper presents a novel crosstalk elimination algorithm that provides very high spectral selectivity while preserves the phase linearity. Experimental results have shown that the proposed algorithm successfully separates the desired channels, improving the SNR with 30 dB, and keeping track of the phase of the original signal. In addition, the proposed solution has been optimized for its high-performance hardware implementation in the TJ-II. Resource consumption in the FPGA is now 22% smaller and 71% faster than with the traditional implementation based on linear-phase digital filtering.
机译:红外(IR)干涉测量法是用于测量聚变等离子体的线积分电子密度(LID)的众所周知的方法。在TJ-II恒星仪中,最近安装了基于FPGA的IR干涉仪,以实时准确地测量等离子体的LID。为了保证干涉仪的正确功能并获得高精度,必须最大化输出密度信号的信噪比(SNR)。在测量过程中,最重要的失真源之一是串扰或通道间干扰。因此,为了增加系统的SNR,已经在FPGA中设计并实现了串扰减少级。本文提出了一种新颖的串扰消除算法,该算法在保持相位线性度的同时提供了很高的频谱选择性。实验结果表明,该算法成功地分离了所需的信道,以30 dB改善了SNR,并跟踪了原始信号的相位。此外,针对其在TJ-II中的高性能硬件实现,已对所提出的解决方案进行了优化。与传统的基于线性相位数字滤波的实现相比,FPGA中的资源消耗现在减少了22%,速度加快了71%。

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