DocumentCode :
85790
Title :
Real Time FPGA-Based Crosstalk Elimination for Multichannel Interferometry Systems in Fusion Diagnostics
Author :
Hernandez-Montero, S. ; Lopez, Jesus A. ; Sanchez, Miriam ; Esteban, L. ; Lopez, C.A.
Author_Institution :
Lab. de Sist. Integrados, Univ. Politec. de Madrid, Madrid, Spain
Volume :
60
Issue :
5
fYear :
2013
fDate :
Oct. 2013
Firstpage :
3585
Lastpage :
3591
Abstract :
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.
Keywords :
adjacent channel interference; crosstalk; density measurement; field programmable gate arrays; interferometry; plasma confinement; stellarators; IR interferometry; LID measurement; SNR; TJ-II stellarator; crosstalk elimination algorithm; crosstalk reduction stage; fusion diagnostics; fusion plasmas; infrared interferometry; interchannel interference; interferometer; line-integrated electron density measurement; measurement process; multichannel interferometry system; real time FPGA; resource consumption; signal-to-noise ratio; Algorithm design and analysis; Computer architecture; Crosstalk; Field programmable gate arrays; Plasmas; Real-time systems; Signal processing algorithms; Crosstalk; FPGA; diagnostics; hardware implementation; interferometry; line-integrated electron density; nuclear fusion; real time; signal separation;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2013.2272892
Filename :
6581926
Link To Document :
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