Title :
An FFT based algorithm for particle charge measurement in the presence of a square-wave excitation field using Phase Doppler Anemometry
Author :
Kulon, J. ; Roula, A. ; Al-Daher, Zaid ; Lu Zhang
Author_Institution :
Fac. of Adv. Technol., Univ. of Glamorgan, Pontypridd, UK
Abstract :
This paper evaluates the performance of a bespoke signal processing algorithm based on spectral analysis to obtain aerosol particle charge distribution. The measurement method is based on tracking particle motion in square-wave excitation electric field using Phase Doppler Anemometry (PDA). The system performance has been tested using Monte Carlo simulations obtained from the synthesized Doppler burst signals. The velocity estimation range of the system was from 10 mm/s to 800 mm/s for a wide range of SNRs, with an error less than 1% for the velocity greater than 50 mm/s. The corresponding chargemass ratio measurement range was from around 1 μC/g to the saturation level. The percentage of successfully processed single and multi-burst signals was evaluated using numerical simulations.
Keywords :
Doppler measurement; Monte Carlo methods; aerosols; anemometry; charge measurement; fast Fourier transforms; mass measurement; numerical analysis; phase measurement; signal processing; signal synthesis; spectral analysis; FFT; Monte Carlo simulation; PDA; SNR; aerosol particle charge distribution; bespoke signal processing algorithm; charge-mass ratio measurement; numerical simulation; particle charge measurement; particle motion tracking; phase doppler anemometry; spectral analysis; square-wave excitation field; synthesized Doppler burst signal; velocity 10 mm/s to 800 mm/s; velocity estimation; Atmospheric measurements; Estimation; Frequency measurement; Measurement by laser beam; Particle measurements; Satellite broadcasting; Volume measurement; aerosols; signal processing; spectral analysis particle measurements;
Conference_Titel :
Industrial Technology (ICIT), 2013 IEEE International Conference on
Conference_Location :
Cape Town
Print_ISBN :
978-1-4673-4567-5
Electronic_ISBN :
978-1-4673-4568-2
DOI :
10.1109/ICIT.2013.6505820