Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.

To improve the performance of wind sensors in the high velocity range, this paper proposes a wind measurement strategy for thermal wind velocity sensors that combines the constant power and constant temperature difference driving modes of the heating element. Based on the airflow distribution charac...

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Autores principales: Tian Wang, Yunbo Shi, Xiaoyu Yu, Guangdong Lan, Congning Liu
Formato: article
Lenguaje:EN
Publicado: Public Library of Science (PLoS) 2021
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Acceso en línea:https://doaj.org/article/1cd7f916d0c84501a867f735e1398e63
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spelling oai:doaj.org-article:1cd7f916d0c84501a867f735e1398e632021-12-02T20:19:39ZNovel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.1932-620310.1371/journal.pone.0254256https://doaj.org/article/1cd7f916d0c84501a867f735e1398e632021-01-01T00:00:00Zhttps://doi.org/10.1371/journal.pone.0254256https://doaj.org/toc/1932-6203To improve the performance of wind sensors in the high velocity range, this paper proposes a wind measurement strategy for thermal wind velocity sensors that combines the constant power and constant temperature difference driving modes of the heating element. Based on the airflow distribution characteristics from fluid dynamics, sequential measurement and correction is proposed as a method of measuring wind direction. In addition, a wind velocity and direction measurement instrument was developed using the above-mentioned approaches. The test results showed that the proposed instrument can obtain large dynamic wind velocity measurements from 0 to 60 m/s. The wind velocity measurement accuracy was ±0.5 m/s in the common velocity range of 0-20 m/s and ±1 m/s in the high velocity range of 20-60 m/s. The wind direction accuracy was ±3° throughout the 360° range. The proposed approaches and instrument are not only practical but also capable of meeting the requirements of wide-range and large dynamic wind vector measurement applications.Tian WangYunbo ShiXiaoyu YuGuangdong LanCongning LiuPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 16, Iss 7, p e0254256 (2021)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Tian Wang
Yunbo Shi
Xiaoyu Yu
Guangdong Lan
Congning Liu
Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
description To improve the performance of wind sensors in the high velocity range, this paper proposes a wind measurement strategy for thermal wind velocity sensors that combines the constant power and constant temperature difference driving modes of the heating element. Based on the airflow distribution characteristics from fluid dynamics, sequential measurement and correction is proposed as a method of measuring wind direction. In addition, a wind velocity and direction measurement instrument was developed using the above-mentioned approaches. The test results showed that the proposed instrument can obtain large dynamic wind velocity measurements from 0 to 60 m/s. The wind velocity measurement accuracy was ±0.5 m/s in the common velocity range of 0-20 m/s and ±1 m/s in the high velocity range of 20-60 m/s. The wind direction accuracy was ±3° throughout the 360° range. The proposed approaches and instrument are not only practical but also capable of meeting the requirements of wide-range and large dynamic wind vector measurement applications.
format article
author Tian Wang
Yunbo Shi
Xiaoyu Yu
Guangdong Lan
Congning Liu
author_facet Tian Wang
Yunbo Shi
Xiaoyu Yu
Guangdong Lan
Congning Liu
author_sort Tian Wang
title Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
title_short Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
title_full Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
title_fullStr Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
title_full_unstemmed Novel strategy for wide-range wind vector measurement using the hybrid CP/CTD heating mode and sequential measuring and correcting.
title_sort novel strategy for wide-range wind vector measurement using the hybrid cp/ctd heating mode and sequential measuring and correcting.
publisher Public Library of Science (PLoS)
publishDate 2021
url https://doaj.org/article/1cd7f916d0c84501a867f735e1398e63
work_keys_str_mv AT tianwang novelstrategyforwiderangewindvectormeasurementusingthehybridcpctdheatingmodeandsequentialmeasuringandcorrecting
AT yunboshi novelstrategyforwiderangewindvectormeasurementusingthehybridcpctdheatingmodeandsequentialmeasuringandcorrecting
AT xiaoyuyu novelstrategyforwiderangewindvectormeasurementusingthehybridcpctdheatingmodeandsequentialmeasuringandcorrecting
AT guangdonglan novelstrategyforwiderangewindvectormeasurementusingthehybridcpctdheatingmodeandsequentialmeasuringandcorrecting
AT congningliu novelstrategyforwiderangewindvectormeasurementusingthehybridcpctdheatingmodeandsequentialmeasuringandcorrecting
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