Optimized linear motor and digital PID controller setup used in Mössbauer spectrometer

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Abstract

Optimization of a linear motor and digital PID controller setup used in a Mössbauer spectrometer is presented. Velocity driving system with a digital PID feedback subsystem was developed in the LabVIEW graphical environment and deployed on the sbRIO real-time hardware device (National Instruments). The most important data acquisition processes are performed as real-time deterministic tasks on an FPGA chip. Velocity transducer of a double loudspeaker type with a power amplifier circuit is driven by the system. Series of calibration measurements were proceeded to find the optimal setup of the P, I, D parameters together with velocity error signal analysis. The shape and given signal characteristics of the velocity error signal are analyzed in details. Remote applications for controlling and monitoring the PID system from computer or smart phone, respectively, were also developed. The best setup and P, I, D parameters were set and calibration spectrum of α-Fe sample with an average nonlinearity of the velocity scale below 0.08% was collected. Furthermore, the width of the spectral line below 0.30 mm/s was observed. Powerful and complex velocity driving system was designed.

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Kohout, P., Kouřil, L., Navařík, J., Novák, P., & Pechoušek, J. (2014). Optimized linear motor and digital PID controller setup used in Mössbauer spectrometer. In AIP Conference Proceedings (Vol. 1622, pp. 50–57). American Institute of Physics Inc. https://doi.org/10.1063/1.4898610

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