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Undersampled Blade Tip-Timing Vibration Reconstruction under Rotating Speed Fluctuation: Uniform and Nonuniform Sensor Configurations
Blade tip-timing (BTT) is a promising method of online monitoring rotating blade vibrations. Since BTT-based vibration signals are typically undersampled, how to reconstruct characteristic vibrations from BTT signals is a big challenge. Existing reconstruction methods are mainly based on the assumpt...
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Published in: | Shock and vibration 2019, Vol.2019 (2019), p.1-13 |
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description | Blade tip-timing (BTT) is a promising method of online monitoring rotating blade vibrations. Since BTT-based vibration signals are typically undersampled, how to reconstruct characteristic vibrations from BTT signals is a big challenge. Existing reconstruction methods are mainly based on the assumption of constant rotation speeds. However, rotating speed fluctuation is inevitable in many engineering applications. In this case, the BTT sampling process should be nonuniform, which will cause existing reconstruction methods to be unavailable. In order to solve this problem, this paper proposes a new reconstruction method based on nonlinear time transformation (NTT). Firstly, the effects of rotating speed fluctuation on BTT vibration reconstruction are analyzed. Next, the NTT of BTT sampling times under rotating speed fluctuation is presented. Then, two NTT-based reconstruction algorithms are derived for uniform and nonuniform BTT sensor configurations, respectively. Also several evaluation metrics of BTT vibration reconstruction under rotating speed fluctuation are defined. Finally, numerical simulations are done to verify the proposed algorithms. The results testify that the proposed NTT-based reconstruction method can reduce effectively the influence of rotating speed fluctuation and decrease the reconstruction error. In addition, rotating speed fluctuation has more bad effects on the reconstruction method under nonuniform sensor configuration than under uniform sensor configuration. For nonuniform BTT signal reconstruction under rotating speed fluctuation, more attentions should be paid on selecting proper angles between BTT sensors. In summary, the proposed method will benefit for detecting early blade damages by reducing frequency aliasing. |
doi_str_mv | 10.1155/2019/8103216 |
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Since BTT-based vibration signals are typically undersampled, how to reconstruct characteristic vibrations from BTT signals is a big challenge. Existing reconstruction methods are mainly based on the assumption of constant rotation speeds. However, rotating speed fluctuation is inevitable in many engineering applications. In this case, the BTT sampling process should be nonuniform, which will cause existing reconstruction methods to be unavailable. In order to solve this problem, this paper proposes a new reconstruction method based on nonlinear time transformation (NTT). Firstly, the effects of rotating speed fluctuation on BTT vibration reconstruction are analyzed. Next, the NTT of BTT sampling times under rotating speed fluctuation is presented. Then, two NTT-based reconstruction algorithms are derived for uniform and nonuniform BTT sensor configurations, respectively. Also several evaluation metrics of BTT vibration reconstruction under rotating speed fluctuation are defined. Finally, numerical simulations are done to verify the proposed algorithms. The results testify that the proposed NTT-based reconstruction method can reduce effectively the influence of rotating speed fluctuation and decrease the reconstruction error. In addition, rotating speed fluctuation has more bad effects on the reconstruction method under nonuniform sensor configuration than under uniform sensor configuration. For nonuniform BTT signal reconstruction under rotating speed fluctuation, more attentions should be paid on selecting proper angles between BTT sensors. In summary, the proposed method will benefit for detecting early blade damages by reducing frequency aliasing.</description><identifier>ISSN: 1070-9622</identifier><identifier>EISSN: 1875-9203</identifier><identifier>DOI: 10.1155/2019/8103216</identifier><language>eng</language><publisher>Cairo, Egypt: Hindawi Publishing Corporation</publisher><subject>Algorithms ; Aliasing ; Blade tips ; Computer simulation ; Configurations ; Cracks ; Damage detection ; Engineering ; Methods ; Numerical analysis ; Parameter identification ; Principal components analysis ; Rotation ; Sampling ; Sensors ; Signal processing ; Signal reconstruction ; Strain gauges ; Variation ; Vibration ; Vibration analysis ; Vibration monitoring</subject><ispartof>Shock and vibration, 2019, Vol.2019 (2019), p.1-13</ispartof><rights>Copyright © 2019 Zhongsheng Chen et al.</rights><rights>COPYRIGHT 2019 John Wiley & Sons, Inc.</rights><rights>Copyright © 2019 Zhongsheng Chen et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. http://creativecommons.org/licenses/by/4.0</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c465t-224cfcc6ea2557f9035dd8bc3a7e81ac5e6cd4e6579c9a52fc9787c1113d005b3</citedby><cites>FETCH-LOGICAL-c465t-224cfcc6ea2557f9035dd8bc3a7e81ac5e6cd4e6579c9a52fc9787c1113d005b3</cites><orcidid>0000-0001-7354-0006 ; 0000-0002-3650-3270 ; 0000-0002-6986-0936</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktopdf>$$Uhttps://www.proquest.com/docview/2279675486/fulltextPDF?pq-origsite=primo$$EPDF$$P50$$Gproquest$$Hfree_for_read</linktopdf><linktohtml>$$Uhttps://www.proquest.com/docview/2279675486?pq-origsite=primo$$EHTML$$P50$$Gproquest$$Hfree_for_read</linktohtml><link.rule.ids>314,780,784,4024,25753,27923,27924,27925,37012,44590,75126</link.rule.ids></links><search><contributor>Chasalevris, Athanasios</contributor><contributor>Athanasios Chasalevris</contributor><creatorcontrib>Chen, Zhongsheng</creatorcontrib><creatorcontrib>Zhan, Chi</creatorcontrib><creatorcontrib>He, Jing</creatorcontrib><title>Undersampled Blade Tip-Timing Vibration Reconstruction under Rotating Speed Fluctuation: Uniform and Nonuniform Sensor Configurations</title><title>Shock and vibration</title><description>Blade tip-timing (BTT) is a promising method of online monitoring rotating blade vibrations. Since BTT-based vibration signals are typically undersampled, how to reconstruct characteristic vibrations from BTT signals is a big challenge. Existing reconstruction methods are mainly based on the assumption of constant rotation speeds. However, rotating speed fluctuation is inevitable in many engineering applications. In this case, the BTT sampling process should be nonuniform, which will cause existing reconstruction methods to be unavailable. In order to solve this problem, this paper proposes a new reconstruction method based on nonlinear time transformation (NTT). Firstly, the effects of rotating speed fluctuation on BTT vibration reconstruction are analyzed. Next, the NTT of BTT sampling times under rotating speed fluctuation is presented. Then, two NTT-based reconstruction algorithms are derived for uniform and nonuniform BTT sensor configurations, respectively. Also several evaluation metrics of BTT vibration reconstruction under rotating speed fluctuation are defined. Finally, numerical simulations are done to verify the proposed algorithms. The results testify that the proposed NTT-based reconstruction method can reduce effectively the influence of rotating speed fluctuation and decrease the reconstruction error. In addition, rotating speed fluctuation has more bad effects on the reconstruction method under nonuniform sensor configuration than under uniform sensor configuration. For nonuniform BTT signal reconstruction under rotating speed fluctuation, more attentions should be paid on selecting proper angles between BTT sensors. In summary, the proposed method will benefit for detecting early blade damages by reducing frequency aliasing.</description><subject>Algorithms</subject><subject>Aliasing</subject><subject>Blade tips</subject><subject>Computer simulation</subject><subject>Configurations</subject><subject>Cracks</subject><subject>Damage detection</subject><subject>Engineering</subject><subject>Methods</subject><subject>Numerical analysis</subject><subject>Parameter identification</subject><subject>Principal components analysis</subject><subject>Rotation</subject><subject>Sampling</subject><subject>Sensors</subject><subject>Signal processing</subject><subject>Signal reconstruction</subject><subject>Strain gauges</subject><subject>Variation</subject><subject>Vibration</subject><subject>Vibration analysis</subject><subject>Vibration monitoring</subject><issn>1070-9622</issn><issn>1875-9203</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><sourceid>PIMPY</sourceid><sourceid>DOA</sourceid><recordid>eNqFkU1v1DAQhiMEEqVw44wicYS0thN_cWtXFCpVILW7XC3HHi9eJfZiJ0L8gP7vejcrOCIf7Bk_7ztjT1W9xegCY0ovCcLyUmDUEsyeVWdYcNpIgtrn5Yw4aiQj5GX1KucdQoi2rDurHjfBQsp63A9g6-tBW6jXft-s_ejDtv7h-6QnH0N9DyaGPKXZHMP5IKvv41RuC_ewhyK_GcrtfOQ_1ZvgXUxjrYOtv8Uwn8IHCDmmehWD89t5Mc-vqxdODxnenPbzanPzeb362tx9_3K7urprTMfo1BDSGWcMA00o5U6illoretNqDgJrQ4EZ2wGjXBqpKXFGcsENxri15cF9e17dLr426p3aJz_q9EdF7dUxEdNW6TR5M4DquewNs_hQp-tML6wRjjstZClOHBSv94vXPsVfM-RJ7eKcQmlfEcIl47QTrFAXC7XVxdQHF6ekTVkWRl9-FJwv-SuGMCJCCFIEHxeBSTHnBO5vmxipw5TVYcrqNOWCf1jwnz5Y_dv_j3630FAYcPofTQrMePsEGOKzEA</recordid><startdate>2019</startdate><enddate>2019</enddate><creator>Chen, Zhongsheng</creator><creator>Zhan, Chi</creator><creator>He, Jing</creator><general>Hindawi Publishing Corporation</general><general>Hindawi</general><general>John Wiley & Sons, Inc</general><general>Hindawi Limited</general><scope>ADJCN</scope><scope>AHFXO</scope><scope>RHU</scope><scope>RHW</scope><scope>RHX</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7TB</scope><scope>8FD</scope><scope>8FE</scope><scope>8FG</scope><scope>ABJCF</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>BGLVJ</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>FR3</scope><scope>HCIFZ</scope><scope>KR7</scope><scope>L6V</scope><scope>M7S</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>PTHSS</scope><scope>DOA</scope><orcidid>https://orcid.org/0000-0001-7354-0006</orcidid><orcidid>https://orcid.org/0000-0002-3650-3270</orcidid><orcidid>https://orcid.org/0000-0002-6986-0936</orcidid></search><sort><creationdate>2019</creationdate><title>Undersampled Blade Tip-Timing Vibration Reconstruction under Rotating Speed Fluctuation: Uniform and Nonuniform Sensor Configurations</title><author>Chen, Zhongsheng ; Zhan, Chi ; He, Jing</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c465t-224cfcc6ea2557f9035dd8bc3a7e81ac5e6cd4e6579c9a52fc9787c1113d005b3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2019</creationdate><topic>Algorithms</topic><topic>Aliasing</topic><topic>Blade tips</topic><topic>Computer simulation</topic><topic>Configurations</topic><topic>Cracks</topic><topic>Damage detection</topic><topic>Engineering</topic><topic>Methods</topic><topic>Numerical analysis</topic><topic>Parameter identification</topic><topic>Principal components analysis</topic><topic>Rotation</topic><topic>Sampling</topic><topic>Sensors</topic><topic>Signal processing</topic><topic>Signal reconstruction</topic><topic>Strain gauges</topic><topic>Variation</topic><topic>Vibration</topic><topic>Vibration analysis</topic><topic>Vibration monitoring</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Chen, Zhongsheng</creatorcontrib><creatorcontrib>Zhan, Chi</creatorcontrib><creatorcontrib>He, Jing</creatorcontrib><collection>الدوريات العلمية والإحصائية - e-Marefa Academic and Statistical Periodicals</collection><collection>معرفة - المحتوى العربي الأكاديمي المتكامل - e-Marefa Academic Complete</collection><collection>Hindawi Publishing Complete</collection><collection>Hindawi Publishing Subscription Journals</collection><collection>Hindawi Publishing Open Access</collection><collection>CrossRef</collection><collection>Mechanical & Transportation Engineering Abstracts</collection><collection>Technology Research Database</collection><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>Materials Science & Engineering Collection</collection><collection>ProQuest Central (Alumni)</collection><collection>ProQuest Central</collection><collection>ProQuest Central Essentials</collection><collection>ProQuest Central</collection><collection>Technology Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Central Korea</collection><collection>Engineering Research Database</collection><collection>SciTech Premium Collection</collection><collection>Civil Engineering Abstracts</collection><collection>ProQuest Engineering Collection</collection><collection>Engineering Database</collection><collection>Publicly Available Content Database</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>ProQuest Central China</collection><collection>Engineering Collection</collection><collection>DOAJ Directory of Open Access Journals</collection><jtitle>Shock and vibration</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Chen, Zhongsheng</au><au>Zhan, Chi</au><au>He, Jing</au><au>Chasalevris, Athanasios</au><au>Athanasios Chasalevris</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Undersampled Blade Tip-Timing Vibration Reconstruction under Rotating Speed Fluctuation: Uniform and Nonuniform Sensor Configurations</atitle><jtitle>Shock and vibration</jtitle><date>2019</date><risdate>2019</risdate><volume>2019</volume><issue>2019</issue><spage>1</spage><epage>13</epage><pages>1-13</pages><issn>1070-9622</issn><eissn>1875-9203</eissn><abstract>Blade tip-timing (BTT) is a promising method of online monitoring rotating blade vibrations. Since BTT-based vibration signals are typically undersampled, how to reconstruct characteristic vibrations from BTT signals is a big challenge. Existing reconstruction methods are mainly based on the assumption of constant rotation speeds. However, rotating speed fluctuation is inevitable in many engineering applications. In this case, the BTT sampling process should be nonuniform, which will cause existing reconstruction methods to be unavailable. In order to solve this problem, this paper proposes a new reconstruction method based on nonlinear time transformation (NTT). Firstly, the effects of rotating speed fluctuation on BTT vibration reconstruction are analyzed. Next, the NTT of BTT sampling times under rotating speed fluctuation is presented. Then, two NTT-based reconstruction algorithms are derived for uniform and nonuniform BTT sensor configurations, respectively. Also several evaluation metrics of BTT vibration reconstruction under rotating speed fluctuation are defined. Finally, numerical simulations are done to verify the proposed algorithms. The results testify that the proposed NTT-based reconstruction method can reduce effectively the influence of rotating speed fluctuation and decrease the reconstruction error. In addition, rotating speed fluctuation has more bad effects on the reconstruction method under nonuniform sensor configuration than under uniform sensor configuration. For nonuniform BTT signal reconstruction under rotating speed fluctuation, more attentions should be paid on selecting proper angles between BTT sensors. In summary, the proposed method will benefit for detecting early blade damages by reducing frequency aliasing.</abstract><cop>Cairo, Egypt</cop><pub>Hindawi Publishing Corporation</pub><doi>10.1155/2019/8103216</doi><tpages>13</tpages><orcidid>https://orcid.org/0000-0001-7354-0006</orcidid><orcidid>https://orcid.org/0000-0002-3650-3270</orcidid><orcidid>https://orcid.org/0000-0002-6986-0936</orcidid><oa>free_for_read</oa></addata></record> |
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subjects | Algorithms Aliasing Blade tips Computer simulation Configurations Cracks Damage detection Engineering Methods Numerical analysis Parameter identification Principal components analysis Rotation Sampling Sensors Signal processing Signal reconstruction Strain gauges Variation Vibration Vibration analysis Vibration monitoring |
title | Undersampled Blade Tip-Timing Vibration Reconstruction under Rotating Speed Fluctuation: Uniform and Nonuniform Sensor Configurations |
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