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Accuracy of the frequency and phase measurement concerning different noise sources for phase Doppler Anemometry

  • North China Electric Power University
  • University of South Wales
  • University of Kent

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The measurement accuracy of the estimation of the Doppler frequency and the signal phase difference in Phase Doppler Anemometry (PDA) systems is investigated in this paper by taking into account the effect of the particle trajectory via the measurement volume and the different noise sources. Both the signal dependent (quantum shot) noise and the signal independent (thermal and dark current) noise are considered. The minimum achievable measurement uncertainty of the phase shift estimation for the signal independent noise is determined by employing the 2D model of the Doppler Burst Signal with the Gaussian envelope and compared with the performance of the correlation method. Additionally, the Cramér-Rao lower bound (CRLB) of the frequency estimation concerning the quantum shot noise is calculated. The numerical examples show the performance of the correlation method with various parameter configurations compared with the derived CRLB. The numerical results confirm the validity of the analysis in terms of the relative effect of the particle trajectory, relative measurement time, size of the volume and signal-to-noise ratio on the accuracy of the estimation.

源语言英语
主期刊名2015 IEEE International Conference on Smart Instrumentation, Measurement and Applications, ICSIMA 2015
出版商Institute of Electrical and Electronics Engineers Inc.
ISBN(电子版)9781467372558
DOI
出版状态已出版 - 1 9月 2016
已对外发布
活动3rd IEEE International Conference on Smart Instrumentation, Measurement and Applications, ICSIMA 2015 - Kuala Lumpur, 马来西亚
期限: 24 11月 201525 11月 2015

出版系列

姓名2015 IEEE International Conference on Smart Instrumentation, Measurement and Applications, ICSIMA 2015

会议

会议3rd IEEE International Conference on Smart Instrumentation, Measurement and Applications, ICSIMA 2015
国家/地区马来西亚
Kuala Lumpur
时期24/11/1525/11/15

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