| Literature DB >> 33572421 |
Yunbo Shi1, Juanjuan Zhang1, Jingjing Jiao1, Rui Zhao1, Huiliang Cao1.
Abstract
High-G accelerometers are mainly used for motion measurement in some special fields, such as projectile penetration and aerospace equipment. This paper mainly explores the wavelet threshold denoising and wavelet packet threshold denoising in wavelet analysis, which is more suitable for high-G piezoresistive accelerometers. In this paper, adaptive decomposition and Shannon entropy criterion are used to find the optimal decomposition layer and optimal tree. Both methods use the Stein unbiased likelihood estimation method for soft threshold denoising. Through numerical simulation and Machete hammer test, the wavelet threshold denoising is more suitable for the dynamic calibration of a high-G accelerometer. The wavelet packet threshold denoising is more suitable for the parameter extraction of the oscillation phase.Entities:
Keywords: MEMS accelerometer; high-G calibration; noise reduction; wavelet denoising; wavelet packet denoising
Year: 2021 PMID: 33572421 PMCID: PMC7916207 DOI: 10.3390/s21041231
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576